USRE35915E - Apparatus for removably supporting a plurality of hot plug-connected hard disk drives - Google Patents

Apparatus for removably supporting a plurality of hot plug-connected hard disk drives Download PDF

Info

Publication number
USRE35915E
USRE35915E US08/518,164 US51816495A USRE35915E US RE35915 E USRE35915 E US RE35915E US 51816495 A US51816495 A US 51816495A US RE35915 E USRE35915 E US RE35915E
Authority
US
United States
Prior art keywords
disk drive
support tray
circuit board
printed circuit
cage structure
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
US08/518,164
Inventor
Robert J. Hastings
Paily T. Varghese
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Hewlett Packard Development Co LP
Original Assignee
Compaq Computer Corp
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Compaq Computer Corp filed Critical Compaq Computer Corp
Priority to US08/518,164 priority Critical patent/USRE35915E/en
Application granted granted Critical
Publication of USRE35915E publication Critical patent/USRE35915E/en
Assigned to COMPAQ INFORMATION TECHNOLOGIES GROUP, L.P. reassignment COMPAQ INFORMATION TECHNOLOGIES GROUP, L.P. ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS). Assignors: COMPAQ COMPUTER CORPORATION
Assigned to HEWLETT-PACKARD DEVELOPMENT COMPANY, L.P. reassignment HEWLETT-PACKARD DEVELOPMENT COMPANY, L.P. CHANGE OF NAME (SEE DOCUMENT FOR DETAILS). Assignors: COMPAQ INFORMATION TECHNOLOGIES GROUP, L.P.
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Images

Classifications

    • GPHYSICS
    • G11INFORMATION STORAGE
    • G11BINFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
    • G11B33/00Constructional parts, details or accessories not provided for in the other groups of this subclass
    • G11B33/12Disposition of constructional parts in the apparatus, e.g. of power supply, of modules
    • G11B33/125Disposition of constructional parts in the apparatus, e.g. of power supply, of modules the apparatus comprising a plurality of recording/reproducing devices, e.g. modular arrangements, arrays of disc drives
    • G11B33/126Arrangements for providing electrical connections, e.g. connectors, cables, switches
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/16Constructional details or arrangements
    • G06F1/18Packaging or power distribution
    • G06F1/181Enclosures
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/16Constructional details or arrangements
    • G06F1/18Packaging or power distribution
    • G06F1/183Internal mounting support structures, e.g. for printed circuit boards, internal connecting means
    • G06F1/184Mounting of motherboards
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/16Constructional details or arrangements
    • G06F1/18Packaging or power distribution
    • G06F1/183Internal mounting support structures, e.g. for printed circuit boards, internal connecting means
    • G06F1/187Mounting of fixed and removable disk drives
    • GPHYSICS
    • G11INFORMATION STORAGE
    • G11BINFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
    • G11B33/00Constructional parts, details or accessories not provided for in the other groups of this subclass
    • G11B33/12Disposition of constructional parts in the apparatus, e.g. of power supply, of modules
    • G11B33/125Disposition of constructional parts in the apparatus, e.g. of power supply, of modules the apparatus comprising a plurality of recording/reproducing devices, e.g. modular arrangements, arrays of disc drives
    • G11B33/127Mounting arrangements of constructional parts onto a chassis
    • G11B33/128Mounting arrangements of constructional parts onto a chassis of the plurality of recording/reproducing devices, e.g. disk drives, onto a chassis
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K7/00Constructional details common to different types of electric apparatus
    • H05K7/14Mounting supporting structure in casing or on frame or rack
    • H05K7/1485Servers; Data center rooms, e.g. 19-inch computer racks
    • H05K7/1488Cabinets therefor, e.g. chassis or racks or mechanical interfaces between blades and support structures
    • H05K7/1489Cabinets therefor, e.g. chassis or racks or mechanical interfaces between blades and support structures characterized by the mounting of blades therein, e.g. brackets, rails, trays
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10STECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10S439/00Electrical connectors
    • Y10S439/928Modular electrically interengaging parts, e.g. stove with replaceable heating elements formed on coupling parts

Definitions

  • the present invention relates generally to the mounting and support of hard disk drives for computers, and more particularly relates to apparatus for removably supporting a plurality of hot plug-connected hard disk drives.
  • Hard disk drives for a file server or other computer are often mounted, in a vertically spaced array external to the file server, in a rectangular sheet metal "cage" structure within an external disk drive support housing.
  • each disk drive is typically "hot plug” connected within the support housing. This type of electrical connection permits any of the supported disk drives to be removed and re-installed within the support housing without disturbing the operation of the other disk drives.
  • each disk drive is mounted atop a printed circuit board having a rear card edge portion which is insertable into a back plane hot plug socket within the cage structure.
  • side edge portions of its supporting printed circuit board are inserted into a pair of track members mounted on opposed side wall portions of the cage and then slid rearwardly along the tracks until the rear card edge portion of the circuit board is operatively received its associated hot plug socket at the back of the cage.
  • circuit board-supported disk drives On some circuit board-supported disk drives, a considerable amount of manual pulling force is required to disconnect the board from its associated hot plug socket within the cage.
  • circuit board On other conventionally supported disk drives, the circuit board is provided with pivotable ejection latches that must be screwed or pinned to the circuit board, thereby increasing the overall complexity and fabricational cost of the support system.
  • a typical method of securing an installed disk drive within the cage is to install a screw in the cage which acts as a stop to prevent removal of the disk drive assembly from the cage. This undesirably complicates and lengthens the individual disk drive installation and removal procedure.
  • each disk drive with a plurality of indicating lights showing the operative state of the drive.
  • these indicating light arrays typically must be located on the support housing remote from the disk drives. This can lead to visual confusion as to which indicating lights are associated with which disk drive.
  • apparatus for removably supporting and providing a hot plug connection for a disk drive such as one of a series of external disk drives used in conjunction with a file server or other computer device.
  • a disk drive such as one of a series of external disk drives used in conjunction with a file server or other computer device.
  • the preferred embodiment of the apparatus incorporates therein a variety of operational, fabricational and safety improvements.
  • the overall disk drive support apparatus representatively comprises a housing structure with a sheet metal cage structure disposed therein and having an open front end, a rear end wall having a hot plug socket thereon, first and second opposite side walls extending between the open front end and the rear end wall, and an opposing pair of wall channel portions formed on front ends of the cage structure side walls.
  • First and second molded plastic guide channel members having open side portions, and generally U-shaped cross-sections along their lengths are mounted on the facing surfaces of the cage structure side walls in a parallel relationship in which the open side portions of the guide channel members face one another, the lengths of the guide channel members are generally transverse to the front wall channel portions of the cage structure, and the guide channel members are in a generally laterally aligned relationship with the hot plug socket.
  • the disk drive to be supported within the cage structure is removably secured to the top side of a molded plastic support tray having opposite side edges slidably and supportingly receivable in the interiors of the guide channel members in a manner permitting the support tray to be slid rearwardly along the guide channel members to bring the support tray to an operating position within the cage structure.
  • a printed circuit board is removably mounted on a rear end portion of the support tray in a manner such that when the support tray is rearwardly moved through the cage structure to its operating position therein the circuit board is conductively and removably received within the hot plug socket.
  • Wiring means are provided for electrically coupling the printed circuit board to the disk drive to transmit power thereto from the hot plug socket.
  • the use of the molded plastic support tray to carry the disk drive, and the use of a relatively small connector circuit board on the rear end of the tray to connect to the hot plug socket reduces the cost of operatively supporting the disk drive, compared to the conventional practice of using a larger printed circuit board to both carry the disk drive and connect it to the hot plug socket, and further provides more user friendly handling characteristics by eliminating the sharp solder and wiring points typically found along the entire underside of the larger circuit board.
  • Extending rearwardly along a side surface of the small printed circuit board are pluralities of conductive ground and signal traces.
  • the ground traces extend rearwardly beyond the signal traces.
  • This aspect of the present invention facilitates the electrical performance of the disk drive support structure since when the disk drive is rearwardly moved to its operating position within the cage structure a grounding connection is formed between the circuit board before a signal connection therebetween. Conversely, as the circuit board is unplugged from the hot plug socket, the signal connection is broken before the grounding connection is.
  • means are formed on the tray for providing a releasable snap-fit attachment engagement with the circuit board.
  • a transverse end plate upon which a plurality of disk drive indicating lights are operatively mounted, the wiring means from the circuit board being conveniently routed to the indicating lights via a wire passage formed by wall means on the top side of the support tray body beneath the disk drive.
  • ejection latch members are pivotally secured to front corner portions of the support tray and operate in a generally conventional manner, via reactive forces with the front wall channel portions of the cage structure, to exert leveraged insertion and withdrawal forces on tray.
  • the latch members are removably secured to the front corner tray portions using a specially designed molded connection structure that eliminates the requirement for attachment screws or rivets and simplifies the fabrication of the overall disk drive support structure.
  • the rear end wall of the cage structure has guard wall means projecting forwardly therefrom and operative to block manual access to the printed circuit board when it is adjacent the hot plug socket.
  • the guide channel members which are preferably plastic moldings, have snap-fitted thereon sheet metal grounding clips that are deformingly pressed against the metal cage side walls. Grounding screws secured to and projecting outwardly beyond the disk drive are brought into contact with the clips when the tray is rearwardly moved to its operating position within the cage structure, thereby reliably grounding the inserted disk drive to the metal cage structure.
  • Inward projections formed on the cage structure side walls are positioned to block these grounding screws, in the event that an attempt is made to rearwardly insert the tray in an upside-down orientation, in a manner preventing the tray from being fully inserted in this improper orientation.
  • FIG. 1 is a partially phantomed, simplified perspective view of a representative external, hot-plug connection hard disk drive support housing structure embodying principles of the present invention
  • FIG. 2 is an enlarged scale, partially exploded fragmentary perspective view of an interior sheet metal cage portion of the housing, with one of the tray-supported disk drives removed therefrom;
  • FIG. 3 is an enlarged scale partially exploded perspective view of the removed FIG. 2 disk drive and its underlying support tray structure;
  • FIG. 4 is an exploded perspective view of a rear end portion of the support tray structure illustrating the snap-fit installation thereon of a printed circuit board connector member
  • FIG. 5 is an exploded outer side perspective view of a specially designed support rail structure used to slidably carry the disk drives within the cage;
  • FIG. 6 is an exploded perspective view of the support rail structure and a side wall portion of the cage, and illustrates the snap-fit connection between the support rail structure and the cage wall;
  • FIG. 7 is a schematic cross-sectional view through one of the support tray structures illustrating the operation of a grounding clip portion of one of its associated support rail structures;
  • FIG. 8 is a schematic cross-sectional view through a rear end portion of the cage taken along line 8--8 of FIG. 2 and illustrating the operation of a spaced series of forwardly projecting safety guard plates therein;
  • FIGS. 9A-9D are bottom side perspective views of a rear corner portion of one of the disk drive support trays and sequentially illustrate the unique installation and operation thereon of an ejection latch member utilized to facilitate the installation and removal of a disk drive into and from the cage.
  • the present invention provides apparatus for removably supporting and providing hot plug connections for a vertically spaced plurality of disk drives 10 (FIG. 2) such as those externally utilized in conjunction with a file server (not shown) or other computer device.
  • the support apparatus representatively includes a generally rectangular housing 12 having an open front end 14, and a generally rectangular sheet metal cage structure 16 disposed within the housing.
  • Cage 16 has an open front end 18 rearwardly adjacent the housing end 14, top and bottom walls 20 and 22, left and right side walls 24 and 26, and a rear end wall 28 spaced inwardly apart from the rear end wall 30 of housing 12.
  • a vertically spaced pair of horizontally elongated hot plug sockets 32 are mounted on the rear cage end wall 28 (FIG. 2).
  • each of the sockets 32 being disposed between and parallel to a vertically adjacent pair of the plates 34.
  • Front end portions of the cage side walls 24,26 are bent to form a pair of vertically extending wall channel portions 36 having generally U-shaped cross-sections along their lengths, and horizontally facing open sides.
  • each of the disk drives 10 is supported on the top side of one of a specially designed pair of molded plastic support trays 38 each having a generally rectangular body 40.
  • Body 40 has a series of cooling holes 42 formed therethrough; a rear end portion 44 (see FIG. 4); a pair of outwardly projecting opposite side edges 46 rearwardly terminating at rear end portion 44; an upwardly projecting front end plate portion 48 with three LED disk drive activity indicating lights 50 mounted thereon; and a pair of opposite front corner portions 52 projecting outwardly beyond the lower side edge of the front end plate 48.
  • Each disk drive 10 is of a conventional construction and has a pair of mounting rail sections 54 extending forwardly and rearwardly along opposite lower side portions thereof. For purposed later described, metal grounding screws 56 are connected to and project outwardly from the mounting rails adjacent their rear ends.
  • each disk drive 10 is operatively mounted atop the body portion 40 of its associated support tray 38, the disk drive is positioned between the plate 48 and the rear end portion 44 of the tray body.
  • Each disk drive 10 is removably secured to its associated support tray 38 by screws 58 extending upwardly through the tray body and threaded into the bottom side of the disk drive.
  • each support tray 38 Mounted atop the rear end portion 44 of each support tray 38 is a small printed circuit board 60 having an elongated rectangular body portion 62 from which a somewhat shorter rectangular plug portion 64 centrally projects in a rearward direction.
  • Plug portion 64 has formed on its top side a series of forwardly and rearwardly extending electrically conductive surface traces including grounding traces 66 and signal traces 68.
  • the grounding traces 66 extend rearwardly beyond the signal traces 68.
  • a slot 78, parallel to the traces 66 and 68, is formed in the circuit board plug portion 64 and functions in a conventional manner to assure the proper orientation of the plug portion when it is operatively inserted into one of the hot plug sockets 32 as later described.
  • each circuit board body portion 62 is releasably snap-fitted onto the top of its associated rear support tray end portion 44 by means of a pair of abutment tabs 72 formed on opposite sides of the tray body 40; a pair of upwardly projecting latch portions 74 formed on the rear end of the tray; a pair of upwardly projecting cylindrical post portions 76 formed on the rear tray end portion 44 between the facing abutment and latch pairs 72,74; and a pair of circular holes 78 formed through the circuit board body 62.
  • the circuit board 60 is removably installed on the rear support tray end portion 44 by inserting a front side edge portion 80 of the circuit board body under the abutment tabs 72 and then downwardly pivoting the circuit board 60 to cause the posts 76 to upwardly enter the circuit board body holes 78.
  • rear side edge portions 82 of the circuit board body rearwardly deflect the latch portions 74 until hooked upper end portions thereof forwardly snap over top side portions of the circuit board body (see FIG. 3) to releasably lock the circuit board on the rear end portion of the support tray 38.
  • a protective abutment wall section 84 is formed on the rear tray end portion 44 a short distance behind and around the outer side of each latch portion 74. These abutment walls 84 act as stops to limit the rearward deflection of each latch portion 74, and as guards to protect the latch portions from damage.
  • opposite end edge portions 90 of the circuit board body 62 define rearward continuations of the side edge portions 46 of the support tray 38.
  • various connector pin sections such as the illustrated pin sections 86 and 88, are mounted on the circuit board body 62.
  • Pin section 86 is operatively connected to the rear end of the mounted disk drive 10 by a conventional ribbon cable 92
  • pin section 88 is operatively connected to the indicating lights 50 by wires 94 (see FIG. 3)
  • pin section 88 is operatively connected to the underside of the disk drive 10 by wires 96.
  • the wires 94,96 are conveniently routed to the indicating lights 50 and the underside of the disk drive 10 through a wire passage disposed on the top side of the support tray body 40 and generally defined by notches 98 formed in transverse stiffening rib portions 100 of the support tray body, and holding tab portions 102 that overlie the routed wiring.
  • each guide channel member 106 has an elongated configuration; a rear end 108; a transversely enlarged front end 110; an outer side 112; an inner side 114; and a generally U-shaped cross-section along its length.
  • each guide channel member defines therein a longitudinally extending channel or track 116 that laterally opens through the inner side 114 of the member and vertically widens at the front end of the member to facilitate the slidable insertion therein of a circuit board end edge portion as later described.
  • the four guide channel members 106 are arranged in an upper pair removably secured in a parallel, laterally opposing relationship to the inner sides of the cage side walls 24 and 26, and a lower pair removably secured in a parallel, laterally opposing relationship to the inner sides of the cage side walls 24 and 26.
  • Guide channel members 106 are releasably snap-fitted onto the cage side walls 24,26 using upper and lower horizontal rows of generally T-shaped openings 118,120,122 formed in each of the cage side walls 24 and 26 (see FIGS. 1, 2 and 6).
  • each of the side wall openings 118,120,122 has a vertically enlarged front end portion 124, and a rear end portion 126 that is vertically narrowed by upper and lower portions 128,130 or the particular cage side wall.
  • horizontally elongated rectangular openings 132 are formed in the cage side walls 24,26 between each pair of openings 118 and 120, and inturned side wall tab portions 134 are positioned beneath the front ends of the openings 132.
  • each of the guide channel members 106 Formed on the outer side of each of the guide channel members 106, and projecting outwardly therefrom, are three longitudinally spaced pairs of upwardly and downwardly extending holding tabs 136 and 138. Between the front two sets of tabs 136,138 the guide channel member has formed thereon a horizontally elongated, inwardly deflectable resilient latch portion 140 laterally projecting outwardly beyond the outer side surface 112 of the guide channel member and having a front end surface 142.
  • each guide channel member 106 has two longitudinally spaced pairs 144,146 of ribbed outward projections formed on its top and bottom side edge surfaces. These projections have removably snap-fitted thereon clip member pairs 148,150 projecting inwardly from the outwardly bowed body portion 152 of a resiliently deformable sheet metal grounding clip member 154 positioned on the outer side of the guide channel member as illustrated in FIGS. 5 and 6. Projecting inwardly from the top and bottom side edges of the grounding clip member 154, and respectively overlying the top and bottom side edges of the guide channel member 106, are top and bottom side portions 156 and 158. As illustrated, side portion 156 has upturned front and rear ends, and side portion 158 has downturned front and rear ends.
  • each guide channel member 106 is removably snap-fitted onto its associated cage side wall (for example, the illustrated left cage side wall 24) by first outwardly inserting the three tab pairs 136,138 into the enlarged front portions 124 of the side wall openings 118,120,122 as indicated by the dashed arrows in FIG. 6, and pressing the guide channel member against the interior surface of the cage side wall.
  • This initial insertion and pressing causes the latch portion 140 to be engaged and inwardly depressed by the side wall 24, and also resiliently bends the clip member body portion 152 against the side wall 24.
  • the guide channel member 106 With the guide channel member 106 pressed against the cage side wall, the guide channel member is then rearwardly slid along the side wall until the latch portion 140 snaps outwardly into the side wall opening 132.
  • This releasably locks the guide channel member in place on the cage side wall, the front end surface 142 of the latch portion 140 rearwardly overlying the front end surface 162 of the side wall opening 132 and preventing forward movement of the guide channel member relative to the cage, and the rear edge portions of the tab pairs 136,138 abutting the rear end surfaces 164 of the side wall opening portions 126 and preventing rearward movement of the guide channel member relative to the cage.
  • Each guide channel member 106 may be quickly removed from the cage 16 simply by depressing the latch portion 140 from the outside of the cage, forwardly sliding the guide channel member along the inner surface of its associated cage side wall, and then removing the tab pairs 136,138 from the front end portions 124 of the side wall openings 118,120 and 122.
  • the configuration of each guide channel member 106 makes it reversible--i.e., each guide channel member may be operatively installed on either of the cage side walls 24 and 26. For example, the illustrated FIG.
  • guide channel member 106 installed on the left cage side wall 24 can be alternately installed on the right cage side wall 26 simply by removing the guide channel member from the left side wall, rotating the removed guide channel member 180° about its longitudinal axis, and then snapping the guide channel into place on the right cage side wall 26.
  • the two tray-mounted disk drives 10 may simply be pushed into place within the cage 16 by inserting opposite end edge portions of the circuit board body portions 62 into the track portions of the upper and lower opposing guide channel pairs and rearwardly sliding the circuit board and tray edge portions along the tracks until the circuit board portions 64 are operatively hot-plugged into their associated sockets 32 at the rear end of the cage. Either of the disk drives 10 may be removed from the cage, without disturbing the operation of the other disk drive, by simply pulling the disk drive rearwardly out of the cage.
  • each of the disk drives 10 rearwardly reaches its operating position within the cage 16, the grounding screws 56 projecting outwardly from opposite sides of the disk drive slide under and upwardly engage the upper side portions 156 of the resilient sheet metal grounding clips 154 on the two guide channel members 106 that slidingly support the inserted disk drive.
  • This engagement between the grounding screws 56 and the upper grounding clip side portions 156 forms secure and reliable electrical grounding connections between the disk drive and the metal cage structure via the grounding screws and the grounding clips.
  • the guide channel member 106 shown in FIG. 7 was installed on cage side wall 26 instead of the illustrated cage wall 24, the clip member side portion 158, and not the side portion 156, would be engaged by one of the grounding screws 56.
  • the two metal grounding screws 56 attached to the opposite sides of each of the disk drives 10 provide another useful function in the overall disk drive support apparatus of the present invention--they cooperate with the inturned cage side wall projections 134 (FIG. 6) to prevent the full rearward insertion of either disk drive into the cage in the event that the disk drive is in an improper upside-down orientation. Specifically, if either disk drive is turned upside-down and then inserted into the cage, the two disk drive 56 strike and are rearwardly stopped by an associated opposing pair of the inturned side wall portions 134, thereby preventing further rearward insertion of the improperly oriented disk drive into the cage. In turn, this prevents the disk drive circuit board 70 from improperly engaging its associated hot plug socket 32.
  • each of the disk drives 10 rearwardly reaches its operative position in which its circuit board 60 is fully inserted into its associated hot plug socket 32, a pair of the forwardly projecting guard plates 34 come into play to block both upper and lower manual access to the circuit board as it approaches its associated hot plug socket, the circuit board passing between the two guard plates as it approaches the socket.
  • each ejection latch member 166 is pivotable relative to its associated tray corner portion 52 between an outwardly pivoted dotted line release position and an inwardly pivoted solid line locking position.
  • the inner ends of the latch members 166 are provided with hook portions 168 that extend into the interiors of the wall channel portions 36 of the cage structure 16.
  • ejection latch members 166 are pivotally and removably secured to the support tray corner portions 52 in a unique manner that avoids the necessity using of connecting screws or rivets, and which will now be described in conjunction with FIGS. 9A-9D.
  • each of the support tray corner portions 52 Projecting outwardly from the underside of each of the support tray corner portions 52 are a cylindrical boss 170; an inwardly depressible resilient latch portion 172 having an outer end surface 174; and a cylindrical post 176 having a circular outer end portion 178 from which three circumferentially and equally spaced projections 180 radially outwardly extend.
  • the illustrated ejection latch member 166 has a connection plate portion 182 from which the hook portion 168 outwardly extends. Extending outwardly from the plate portion 182 in the opposite direction is a lever plate section 184. Lever plate section 184 has an inner side surface 186 from which a laterally spaced pair of elongated resilient latch portions 188 outwardly extend, outer end sections of the latch portions 188 having facing arcuate notches 190 formed therein.
  • a hole 192 is formed transversely through the connection plate portion 182 and is complementarily configured relative to the upper post end 178, the hole having three circumferentially spaced radially outwardly projecting portions through which the upper post end projections 180 may be passed when the upper post end projections 180 and the hole portions 194 are circumferentially aligned.
  • Each ejection latch member 166 is pivotally and removably installed on the underside of its associated support tray corner portion 52 in the following manner. Referring first to FIG. 9A, the latch member 166 is oriented as shown so that its connection plate hole 192 is positioned outwardly from the outer post end portion 175 in a manner such that the hole portions 194 are circumferentially aligned with the post end projections 180.
  • the latch member connection plate portion 182 is moved inwardly toward and pressed against the underside of the corner portion 52 to cause the post projections 180 to pass through the hole portions 194 and outwardly overlie the connection plate portion 182. With the connection plate portion 182 in its FIG. 9B orientation it contacts and inwardly depresses the corner portion latch 172.
  • the latch member 166 While the connection plate portion 182 is held against the support tray corner portion 52, the latch member 166 is rotated a short distance about post 176 in a clockwise direction to move the plate hole portions 194 out of circumferential alignment with the post projections 180 as shown in FIG. 9C. At this point, in which the latch member 166 is in its dotted line position shown in FIG. 2, the latch portion 172 pops back up so that its end surface 174 faces the plate portion edge surface 196, and the latch member 166 is pivotally and captively retained on the support tray corner portion 52.
  • the latch member cannot be pivoted in a counterclockwise direction past its FIG. 9C position, to align the hole portions 194 with the post end portions 180 and permit removal of the connecting plate portion 182 from the post 176, unless the latch portion 172 is manually depressed and the latch 166 pivoted back to its FIG. 9B position.
  • the latch member 166 may be pivoted in a clockwise direction to its FIG. 9D closed position in which the boss 170 is received within and releasably held between the arcuate notches 190 in the latch portions 188. At this point the latch member is still captively retained on the post 176 since the hole portions 194 have not been rotated far enough to be brought into alignment with the post end portions 180.
  • the latch member may be quickly removed from the post 176 simply by rotating the latch member in a counterclockwise direction to its FIG. 9C position, manually depressing the latch 172 and further rotating the latch member to its FIG. 9B position, and then lifting the connecting plate portion 182 off the post 176.
  • disk drive support apparatus representatively described above provides hot plug connections for the disk drives, it will readily be appreciated by those skilled in this art that it could also be employed using non-hot plug socket connections for the disk drives if desired.

Abstract

A series of hard disk drives are secured atop molded plastic support trays slidably and removably received in opposing guide channel member pairs snap-fitted into opposite side walls of a sheet metal cage structure externally used in conjunction with a file server or other computer device. Snap-fitted into rear end portions of the trays are small printed circuit boards that are insertable into hot plug sockets at the rear of the cage. Forwardly projecting guard plates on the rear end of the cage block manual access to the board/socket interface, and the surface mounted grounding leads on the board extend rearwardly beyond its signal leads to enhance grounding safety during disk drive installation and removal. At the front end of each tray is a vertical support plate upon which LED indicating lights are conveniently mounted for the associated disk drive. Each guide channel member has a metal grounding clip portion that is pressed against the adjacent cage wall and is contacted by a grounding screw on the disk drive as the drive is slid into the housing, the grounding crew also functioning to prevent inadvertent upside-down installation of the drive. To assist in installing and removing each disk drive, its associated support tray is provided at its front corners with pivotable ejection latch members removably secured thereto using a molded connection structure that eliminates the requirement for attachment screws or rivets.

Description

BACKGROUND OF THE INVENTION
1. Field of the Invention
The present invention relates generally to the mounting and support of hard disk drives for computers, and more particularly relates to apparatus for removably supporting a plurality of hot plug-connected hard disk drives.
2. Description of Related Art
Hard disk drives for a file server or other computer are often mounted, in a vertically spaced array external to the file server, in a rectangular sheet metal "cage" structure within an external disk drive support housing. For operational convenience and flexibility, each disk drive is typically "hot plug" connected within the support housing. This type of electrical connection permits any of the supported disk drives to be removed and re-installed within the support housing without disturbing the operation of the other disk drives.
Under a conventional practice, each disk drive is mounted atop a printed circuit board having a rear card edge portion which is insertable into a back plane hot plug socket within the cage structure. To install each disk drive within the cage, side edge portions of its supporting printed circuit board are inserted into a pair of track members mounted on opposed side wall portions of the cage and then slid rearwardly along the tracks until the rear card edge portion of the circuit board is operatively received its associated hot plug socket at the back of the cage.
Some or all of the following problems, limitations and disadvantages are commonly associated with conventional hot plug disk drive support apparatus of this general type:
1. The use of a printed circuit board to underlie and carry each hard disk drive tends to increase both the complexity and cost associated with removably supporting each disk drive, and additionally presents sharp solder and wire points along the underside of the board which the installer must carefully handle to avoid scratches and nicks in his fingers when installing and removing the disk drive from the cage.
2. On some circuit board-supported disk drives, a considerable amount of manual pulling force is required to disconnect the board from its associated hot plug socket within the cage. On other conventionally supported disk drives, the circuit board is provided with pivotable ejection latches that must be screwed or pinned to the circuit board, thereby increasing the overall complexity and fabricational cost of the support system.
3. A typical method of securing an installed disk drive within the cage is to install a screw in the cage which acts as a stop to prevent removal of the disk drive assembly from the cage. This undesirably complicates and lengthens the individual disk drive installation and removal procedure.
4. Among other grounding-related problems, the necessary grounding between each disk drive and the sheet metal cage in which it is removably supported often requires fairly complex interconnections therebetween which tend to be rather tedious and time consuming to properly utilize. Additionally, the card edge hot plug socket interface area is normally exposed within the cage where it can be inadvertently touched by an installer trying to make alignment or other adjustments within the cage.
5. It is conventional to provide each disk drive with a plurality of indicating lights showing the operative state of the drive. However, under conventional practice, these indicating light arrays typically must be located on the support housing remote from the disk drives. This can lead to visual confusion as to which indicating lights are associated with which disk drive.
It can be seen from the foregoing that it would be desirable to provide external hot plug disk drive support apparatus, of the general type described above, with a variety of operational, fabricational and safety improvements. It is accordingly an object of the present invention to provide hot plug-connected external disk drive support apparatus incorporating such improvements.
SUMMARY OF THE INVENTION
In carrying out principles of the present invention, in accordance with a preferred embodiment thereof, apparatus is provided for removably supporting and providing a hot plug connection for a disk drive such as one of a series of external disk drives used in conjunction with a file server or other computer device. In accordance with various separate aspects of the present invention, the preferred embodiment of the apparatus incorporates therein a variety of operational, fabricational and safety improvements.
The overall disk drive support apparatus representatively comprises a housing structure with a sheet metal cage structure disposed therein and having an open front end, a rear end wall having a hot plug socket thereon, first and second opposite side walls extending between the open front end and the rear end wall, and an opposing pair of wall channel portions formed on front ends of the cage structure side walls.
First and second molded plastic guide channel members having open side portions, and generally U-shaped cross-sections along their lengths are mounted on the facing surfaces of the cage structure side walls in a parallel relationship in which the open side portions of the guide channel members face one another, the lengths of the guide channel members are generally transverse to the front wall channel portions of the cage structure, and the guide channel members are in a generally laterally aligned relationship with the hot plug socket.
The disk drive to be supported within the cage structure is removably secured to the top side of a molded plastic support tray having opposite side edges slidably and supportingly receivable in the interiors of the guide channel members in a manner permitting the support tray to be slid rearwardly along the guide channel members to bring the support tray to an operating position within the cage structure.
A printed circuit board is removably mounted on a rear end portion of the support tray in a manner such that when the support tray is rearwardly moved through the cage structure to its operating position therein the circuit board is conductively and removably received within the hot plug socket. Wiring means are provided for electrically coupling the printed circuit board to the disk drive to transmit power thereto from the hot plug socket.
The use of the molded plastic support tray to carry the disk drive, and the use of a relatively small connector circuit board on the rear end of the tray to connect to the hot plug socket reduces the cost of operatively supporting the disk drive, compared to the conventional practice of using a larger printed circuit board to both carry the disk drive and connect it to the hot plug socket, and further provides more user friendly handling characteristics by eliminating the sharp solder and wiring points typically found along the entire underside of the larger circuit board.
Extending rearwardly along a side surface of the small printed circuit board are pluralities of conductive ground and signal traces. The ground traces extend rearwardly beyond the signal traces. This aspect of the present invention facilitates the electrical performance of the disk drive support structure since when the disk drive is rearwardly moved to its operating position within the cage structure a grounding connection is formed between the circuit board before a signal connection therebetween. Conversely, as the circuit board is unplugged from the hot plug socket, the signal connection is broken before the grounding connection is. To facilitate the mounting of the circuit board on the rear end of the support tray, means are formed on the tray for providing a releasable snap-fit attachment engagement with the circuit board.
Projecting upwardly from the front end of the support tray body is a transverse end plate upon which a plurality of disk drive indicating lights are operatively mounted, the wiring means from the circuit board being conveniently routed to the indicating lights via a wire passage formed by wall means on the top side of the support tray body beneath the disk drive.
To assist in inserting and withdrawing the disk drive from the cage structure, ejection latch members are pivotally secured to front corner portions of the support tray and operate in a generally conventional manner, via reactive forces with the front wall channel portions of the cage structure, to exert leveraged insertion and withdrawal forces on tray. According to a feature of the present invention, the latch members are removably secured to the front corner tray portions using a specially designed molded connection structure that eliminates the requirement for attachment screws or rivets and simplifies the fabrication of the overall disk drive support structure.
As a safety feature, the rear end wall of the cage structure has guard wall means projecting forwardly therefrom and operative to block manual access to the printed circuit board when it is adjacent the hot plug socket. For electrostatic discharge purposes, the guide channel members, which are preferably plastic moldings, have snap-fitted thereon sheet metal grounding clips that are deformingly pressed against the metal cage side walls. Grounding screws secured to and projecting outwardly beyond the disk drive are brought into contact with the clips when the tray is rearwardly moved to its operating position within the cage structure, thereby reliably grounding the inserted disk drive to the metal cage structure.
Inward projections formed on the cage structure side walls are positioned to block these grounding screws, in the event that an attempt is made to rearwardly insert the tray in an upside-down orientation, in a manner preventing the tray from being fully inserted in this improper orientation.
While the various aspects of the present invention summarized above have been described in conjunction with the removable support and hot plug connection of a single disc drive, it will be readily appreciated that by simply using additional hot plug sockets and support components, such as additional guide channel members, support trays and rear end circuit boards, grounding clips, etc., a spaced array of disk drives may be removably supported and hot plug-connected within a housing cage structure.
BRIEF DESCRIPTION OF THE DRAWINGS
FIG. 1 is a partially phantomed, simplified perspective view of a representative external, hot-plug connection hard disk drive support housing structure embodying principles of the present invention;
FIG. 2 is an enlarged scale, partially exploded fragmentary perspective view of an interior sheet metal cage portion of the housing, with one of the tray-supported disk drives removed therefrom;
FIG. 3 is an enlarged scale partially exploded perspective view of the removed FIG. 2 disk drive and its underlying support tray structure;
FIG. 4 is an exploded perspective view of a rear end portion of the support tray structure illustrating the snap-fit installation thereon of a printed circuit board connector member;
FIG. 5 is an exploded outer side perspective view of a specially designed support rail structure used to slidably carry the disk drives within the cage;
FIG. 6 is an exploded perspective view of the support rail structure and a side wall portion of the cage, and illustrates the snap-fit connection between the support rail structure and the cage wall;
FIG. 7 is a schematic cross-sectional view through one of the support tray structures illustrating the operation of a grounding clip portion of one of its associated support rail structures;
FIG. 8 is a schematic cross-sectional view through a rear end portion of the cage taken along line 8--8 of FIG. 2 and illustrating the operation of a spaced series of forwardly projecting safety guard plates therein; and
FIGS. 9A-9D are bottom side perspective views of a rear corner portion of one of the disk drive support trays and sequentially illustrate the unique installation and operation thereon of an ejection latch member utilized to facilitate the installation and removal of a disk drive into and from the cage.
DETAILED DESCRIPTION
Referring initially to FIGS. 1 and 2 of the drawings, in a preferred embodiment thereof the present invention provides apparatus for removably supporting and providing hot plug connections for a vertically spaced plurality of disk drives 10 (FIG. 2) such as those externally utilized in conjunction with a file server (not shown) or other computer device. The support apparatus representatively includes a generally rectangular housing 12 having an open front end 14, and a generally rectangular sheet metal cage structure 16 disposed within the housing.
Cage 16 has an open front end 18 rearwardly adjacent the housing end 14, top and bottom walls 20 and 22, left and right side walls 24 and 26, and a rear end wall 28 spaced inwardly apart from the rear end wall 30 of housing 12. A vertically spaced pair of horizontally elongated hot plug sockets 32 are mounted on the rear cage end wall 28 (FIG. 2).
For purposes later described, three vertically spaced, horizontally elongated rectangular guard plate members 34 project forwardly beyond the rear cage end wall 28, with each of the sockets 32 being disposed between and parallel to a vertically adjacent pair of the plates 34. Front end portions of the cage side walls 24,26 are bent to form a pair of vertically extending wall channel portions 36 having generally U-shaped cross-sections along their lengths, and horizontally facing open sides.
Referring now to FIGS. 1-4, each of the disk drives 10 is supported on the top side of one of a specially designed pair of molded plastic support trays 38 each having a generally rectangular body 40. Body 40 has a series of cooling holes 42 formed therethrough; a rear end portion 44 (see FIG. 4); a pair of outwardly projecting opposite side edges 46 rearwardly terminating at rear end portion 44; an upwardly projecting front end plate portion 48 with three LED disk drive activity indicating lights 50 mounted thereon; and a pair of opposite front corner portions 52 projecting outwardly beyond the lower side edge of the front end plate 48.
Each disk drive 10 is of a conventional construction and has a pair of mounting rail sections 54 extending forwardly and rearwardly along opposite lower side portions thereof. For purposed later described, metal grounding screws 56 are connected to and project outwardly from the mounting rails adjacent their rear ends. When each disk drive 10 is operatively mounted atop the body portion 40 of its associated support tray 38, the disk drive is positioned between the plate 48 and the rear end portion 44 of the tray body. Each disk drive 10 is removably secured to its associated support tray 38 by screws 58 extending upwardly through the tray body and threaded into the bottom side of the disk drive.
Mounted atop the rear end portion 44 of each support tray 38 is a small printed circuit board 60 having an elongated rectangular body portion 62 from which a somewhat shorter rectangular plug portion 64 centrally projects in a rearward direction. Plug portion 64 has formed on its top side a series of forwardly and rearwardly extending electrically conductive surface traces including grounding traces 66 and signal traces 68. For purposes later described, the grounding traces 66 extend rearwardly beyond the signal traces 68. A slot 78, parallel to the traces 66 and 68, is formed in the circuit board plug portion 64 and functions in a conventional manner to assure the proper orientation of the plug portion when it is operatively inserted into one of the hot plug sockets 32 as later described.
With reference now to FIG. 4, each circuit board body portion 62 is releasably snap-fitted onto the top of its associated rear support tray end portion 44 by means of a pair of abutment tabs 72 formed on opposite sides of the tray body 40; a pair of upwardly projecting latch portions 74 formed on the rear end of the tray; a pair of upwardly projecting cylindrical post portions 76 formed on the rear tray end portion 44 between the facing abutment and latch pairs 72,74; and a pair of circular holes 78 formed through the circuit board body 62.
As may be seen by comparing FIGS. 3 and 4, the circuit board 60 is removably installed on the rear support tray end portion 44 by inserting a front side edge portion 80 of the circuit board body under the abutment tabs 72 and then downwardly pivoting the circuit board 60 to cause the posts 76 to upwardly enter the circuit board body holes 78. As the circuit board is pivoted downwardly to its operative position on the support tray, rear side edge portions 82 of the circuit board body rearwardly deflect the latch portions 74 until hooked upper end portions thereof forwardly snap over top side portions of the circuit board body (see FIG. 3) to releasably lock the circuit board on the rear end portion of the support tray 38.
With the circuit board 70 releasably mounted on the support tray 38 in this manner, the posts 76 preclude edgewise movement of the circuit board relative to the support tray so that the posts 76 resist in shear the insertion and removal loads imposed on the circuit board as its plug portion 64 is pushed into and pulled out of its associated hot plug socket 32 as later described. To protect the latch portions 74 against excessive rearward bending, due to installation forces or other forces exerted thereon, a protective abutment wall section 84 is formed on the rear tray end portion 44 a short distance behind and around the outer side of each latch portion 74. These abutment walls 84 act as stops to limit the rearward deflection of each latch portion 74, and as guards to protect the latch portions from damage.
As best illustrated in FIG. 3, with the circuit board 70 mounted on the support tray 38, opposite end edge portions 90 of the circuit board body 62 define rearward continuations of the side edge portions 46 of the support tray 38. To provide for operative wiring interconnections between the circuit board 70, the disk drive 10, and the indicating lights 50, various connector pin sections, such as the illustrated pin sections 86 and 88, are mounted on the circuit board body 62.
Pin section 86 is operatively connected to the rear end of the mounted disk drive 10 by a conventional ribbon cable 92, pin section 88 is operatively connected to the indicating lights 50 by wires 94 (see FIG. 3), and pin section 88 is operatively connected to the underside of the disk drive 10 by wires 96. The wires 94,96 are conveniently routed to the indicating lights 50 and the underside of the disk drive 10 through a wire passage disposed on the top side of the support tray body 40 and generally defined by notches 98 formed in transverse stiffening rib portions 100 of the support tray body, and holding tab portions 102 that overlie the routed wiring.
Referring now to FIGS. 2, 5 and 6, the support trays 38 are slidably and removably mounted within the cage structure 16 by means of four molded plastic guide channel members 106, one of which is visible in FIG. 2 and perspectively illustrated in FIGS. 5 and 6. Each guide channel member 106 has an elongated configuration; a rear end 108; a transversely enlarged front end 110; an outer side 112; an inner side 114; and a generally U-shaped cross-section along its length. The cross-sectional configuration of each guide channel member defines therein a longitudinally extending channel or track 116 that laterally opens through the inner side 114 of the member and vertically widens at the front end of the member to facilitate the slidable insertion therein of a circuit board end edge portion as later described.
The four guide channel members 106 are arranged in an upper pair removably secured in a parallel, laterally opposing relationship to the inner sides of the cage side walls 24 and 26, and a lower pair removably secured in a parallel, laterally opposing relationship to the inner sides of the cage side walls 24 and 26. Guide channel members 106 are releasably snap-fitted onto the cage side walls 24,26 using upper and lower horizontal rows of generally T-shaped openings 118,120,122 formed in each of the cage side walls 24 and 26 (see FIGS. 1, 2 and 6).
As best illustrated in FIG. 6, each of the side wall openings 118,120,122 has a vertically enlarged front end portion 124, and a rear end portion 126 that is vertically narrowed by upper and lower portions 128,130 or the particular cage side wall. For purposes later described, horizontally elongated rectangular openings 132 are formed in the cage side walls 24,26 between each pair of openings 118 and 120, and inturned side wall tab portions 134 are positioned beneath the front ends of the openings 132.
Formed on the outer side of each of the guide channel members 106, and projecting outwardly therefrom, are three longitudinally spaced pairs of upwardly and downwardly extending holding tabs 136 and 138. Between the front two sets of tabs 136,138 the guide channel member has formed thereon a horizontally elongated, inwardly deflectable resilient latch portion 140 laterally projecting outwardly beyond the outer side surface 112 of the guide channel member and having a front end surface 142.
Between its rear two pairs of tabs 136,138 each guide channel member 106 has two longitudinally spaced pairs 144,146 of ribbed outward projections formed on its top and bottom side edge surfaces. These projections have removably snap-fitted thereon clip member pairs 148,150 projecting inwardly from the outwardly bowed body portion 152 of a resiliently deformable sheet metal grounding clip member 154 positioned on the outer side of the guide channel member as illustrated in FIGS. 5 and 6. Projecting inwardly from the top and bottom side edges of the grounding clip member 154, and respectively overlying the top and bottom side edges of the guide channel member 106, are top and bottom side portions 156 and 158. As illustrated, side portion 156 has upturned front and rear ends, and side portion 158 has downturned front and rear ends.
As representatively illustrated in FIG. 6, each guide channel member 106 is removably snap-fitted onto its associated cage side wall (for example, the illustrated left cage side wall 24) by first outwardly inserting the three tab pairs 136,138 into the enlarged front portions 124 of the side wall openings 118,120,122 as indicated by the dashed arrows in FIG. 6, and pressing the guide channel member against the interior surface of the cage side wall. This initial insertion and pressing causes the latch portion 140 to be engaged and inwardly depressed by the side wall 24, and also resiliently bends the clip member body portion 152 against the side wall 24.
With the guide channel member 106 pressed against the cage side wall, the guide channel member is then rearwardly slid along the side wall until the latch portion 140 snaps outwardly into the side wall opening 132. This releasably locks the guide channel member in place on the cage side wall, the front end surface 142 of the latch portion 140 rearwardly overlying the front end surface 162 of the side wall opening 132 and preventing forward movement of the guide channel member relative to the cage, and the rear edge portions of the tab pairs 136,138 abutting the rear end surfaces 164 of the side wall opening portions 126 and preventing rearward movement of the guide channel member relative to the cage.
Each guide channel member 106 may be quickly removed from the cage 16 simply by depressing the latch portion 140 from the outside of the cage, forwardly sliding the guide channel member along the inner surface of its associated cage side wall, and then removing the tab pairs 136,138 from the front end portions 124 of the side wall openings 118,120 and 122. The configuration of each guide channel member 106 makes it reversible--i.e., each guide channel member may be operatively installed on either of the cage side walls 24 and 26. For example, the illustrated FIG. 2 guide channel member 106 installed on the left cage side wall 24 can be alternately installed on the right cage side wall 26 simply by removing the guide channel member from the left side wall, rotating the removed guide channel member 180° about its longitudinal axis, and then snapping the guide channel into place on the right cage side wall 26.
With the two horizontally opposed pairs of guide channel members 106 operatively installed on the inner sided of the cage side walls 24,26 as described above, the two tray-mounted disk drives 10 may simply be pushed into place within the cage 16 by inserting opposite end edge portions of the circuit board body portions 62 into the track portions of the upper and lower opposing guide channel pairs and rearwardly sliding the circuit board and tray edge portions along the tracks until the circuit board portions 64 are operatively hot-plugged into their associated sockets 32 at the rear end of the cage. Either of the disk drives 10 may be removed from the cage, without disturbing the operation of the other disk drive, by simply pulling the disk drive rearwardly out of the cage.
Referring now to FIG. 7, as each of the disk drives 10 rearwardly reaches its operating position within the cage 16, the grounding screws 56 projecting outwardly from opposite sides of the disk drive slide under and upwardly engage the upper side portions 156 of the resilient sheet metal grounding clips 154 on the two guide channel members 106 that slidingly support the inserted disk drive. This engagement between the grounding screws 56 and the upper grounding clip side portions 156 forms secure and reliable electrical grounding connections between the disk drive and the metal cage structure via the grounding screws and the grounding clips. It should be noted that if the guide channel member 106 shown in FIG. 7 was installed on cage side wall 26 instead of the illustrated cage wall 24, the clip member side portion 158, and not the side portion 156, would be engaged by one of the grounding screws 56.
In addition to their electrical grounding function, the two metal grounding screws 56 attached to the opposite sides of each of the disk drives 10 provide another useful function in the overall disk drive support apparatus of the present invention--they cooperate with the inturned cage side wall projections 134 (FIG. 6) to prevent the full rearward insertion of either disk drive into the cage in the event that the disk drive is in an improper upside-down orientation. Specifically, if either disk drive is turned upside-down and then inserted into the cage, the two disk drive 56 strike and are rearwardly stopped by an associated opposing pair of the inturned side wall portions 134, thereby preventing further rearward insertion of the improperly oriented disk drive into the cage. In turn, this prevents the disk drive circuit board 70 from improperly engaging its associated hot plug socket 32.
Referring now to FIG. 8 it can be seen that as each of the disk drives 10 rearwardly reaches its operative position in which its circuit board 60 is fully inserted into its associated hot plug socket 32, a pair of the forwardly projecting guard plates 34 come into play to block both upper and lower manual access to the circuit board as it approaches its associated hot plug socket, the circuit board passing between the two guard plates as it approaches the socket.
Referring now to FIGS. 1, 2 and 9A-9D, the manual pushing and pulling forces on the support trays 38 necessary to respectively insert their circuit board portions into the hot plug sockets, and remove their circuit board portions from the sockets, are desirably lessened by the use of pairs of ejection latch members 166 pivotally secured to the front corner portions 52 of the support trays 38. As representatively illustrated in FIG. 2, each ejection latch member 166 is pivotable relative to its associated tray corner portion 52 between an outwardly pivoted dotted line release position and an inwardly pivoted solid line locking position. The inner ends of the latch members 166 are provided with hook portions 168 that extend into the interiors of the wall channel portions 36 of the cage structure 16.
In a conventional manner, when a given pair of latch members 166 are manually pivoted outwardly from their solid line positions (when their associated disk drive is in its operatively inserted position within the cage) their hook portions 168 bear against the interiors of the channel wall portions 36 in a manner forcibly moving the disk drive rearwardly to unplug its circuit board from its associated hot plug socket. When the latch members 166 are fully pivoted outwardly to their dotted line positions, their hook portions 168 are automatically removed from the wall channel portions 36, thereby permitting the disc drives to be slid rearwardly out of the cage.
Conversely, when one of the disk drives 10 is slid partially into the cage with its latch members 166 in their dotted line positions, to bring the hook portions 168 into alignment with their associated wall channel portions 36, inward pivoting of the latch members 166 from their dotted line positions to their solid line positions causes the hook portions to enter the wall channel portions 36 and then bear against them in a manner forcing the support tray circuit board 60 rearwardly into its associated hot plug socket 32.
Although the general operation of the ejection latch members 166 is conventional, they are pivotally and removably secured to the support tray corner portions 52 in a unique manner that avoids the necessity using of connecting screws or rivets, and which will now be described in conjunction with FIGS. 9A-9D.
Projecting outwardly from the underside of each of the support tray corner portions 52 are a cylindrical boss 170; an inwardly depressible resilient latch portion 172 having an outer end surface 174; and a cylindrical post 176 having a circular outer end portion 178 from which three circumferentially and equally spaced projections 180 radially outwardly extend.
The illustrated ejection latch member 166 has a connection plate portion 182 from which the hook portion 168 outwardly extends. Extending outwardly from the plate portion 182 in the opposite direction is a lever plate section 184. Lever plate section 184 has an inner side surface 186 from which a laterally spaced pair of elongated resilient latch portions 188 outwardly extend, outer end sections of the latch portions 188 having facing arcuate notches 190 formed therein.
A hole 192 is formed transversely through the connection plate portion 182 and is complementarily configured relative to the upper post end 178, the hole having three circumferentially spaced radially outwardly projecting portions through which the upper post end projections 180 may be passed when the upper post end projections 180 and the hole portions 194 are circumferentially aligned.
Each ejection latch member 166 is pivotally and removably installed on the underside of its associated support tray corner portion 52 in the following manner. Referring first to FIG. 9A, the latch member 166 is oriented as shown so that its connection plate hole 192 is positioned outwardly from the outer post end portion 175 in a manner such that the hole portions 194 are circumferentially aligned with the post end projections 180.
Next, as depicted in FIG. 9B, the latch member connection plate portion 182 is moved inwardly toward and pressed against the underside of the corner portion 52 to cause the post projections 180 to pass through the hole portions 194 and outwardly overlie the connection plate portion 182. With the connection plate portion 182 in its FIG. 9B orientation it contacts and inwardly depresses the corner portion latch 172.
While the connection plate portion 182 is held against the support tray corner portion 52, the latch member 166 is rotated a short distance about post 176 in a clockwise direction to move the plate hole portions 194 out of circumferential alignment with the post projections 180 as shown in FIG. 9C. At this point, in which the latch member 166 is in its dotted line position shown in FIG. 2, the latch portion 172 pops back up so that its end surface 174 faces the plate portion edge surface 196, and the latch member 166 is pivotally and captively retained on the support tray corner portion 52.
It can be seen that, due to the latch end abutment surface 174, the latch member cannot be pivoted in a counterclockwise direction past its FIG. 9C position, to align the hole portions 194 with the post end portions 180 and permit removal of the connecting plate portion 182 from the post 176, unless the latch portion 172 is manually depressed and the latch 166 pivoted back to its FIG. 9B position.
From its FIG. 9C open position the latch member 166 may be pivoted in a clockwise direction to its FIG. 9D closed position in which the boss 170 is received within and releasably held between the arcuate notches 190 in the latch portions 188. At this point the latch member is still captively retained on the post 176 since the hole portions 194 have not been rotated far enough to be brought into alignment with the post end portions 180.
The latch member may be quickly removed from the post 176 simply by rotating the latch member in a counterclockwise direction to its FIG. 9C position, manually depressing the latch 172 and further rotating the latch member to its FIG. 9B position, and then lifting the connecting plate portion 182 off the post 176.
While the disk drive support apparatus representatively described above provides hot plug connections for the disk drives, it will readily be appreciated by those skilled in this art that it could also be employed using non-hot plug socket connections for the disk drives if desired.
The foregoing detailed description is to be clearly understood as being given by way of illustration and example only, the spirit and scope of the present invention being limited solely by the appended claims.

Claims (38)

What is claimed is:
1. Apparatus for supporting and providing a plug connection for a disk drive, comprising:
a housing cage structure having an open front end, a rear end wall having a plug socket thereon, and first and second opposite side walls extending between said open front end and said rear end wall, said first and second opposite side walls having facing surfaces;
first and second elongated guide channel members having open side portions with interiors, and generally U-shaped cross-sections along their lengths;
means for mounting said guide channel members on the facing surfaces of said first and second side walls in a parallel relationship in which said open side portions of the mounted first and second guide channel members face one another and said first and second guide channel members longitudinally extend toward said plug socket in a generally laterally aligned relationship therewith;
a support tray member having opposite side edge portions slidably and supportingly receivable in the interiors of said first and second guide channel members in a manner permitting said support tray member to be slid rearwardly along said first and second guide channel members to bring said support tray member to an operating position within said cage structure, said support tray member having a rear end portion and a top side portion disposed forwardly of said rear end portion;
a printed circuit board having a connector edge portion;
means for removably mounting said printed circuit board on said rear end portion of said support tray member for movement therewith in a manner such that when said support tray member is rearwardly moved through said cage structure to said operating position the connector edge portion of the mounted printed circuit board is conductively and removably received within said plug socket;
means for removably securing the disk drive to said top side portion of said support tray member for movement therewith; and
means for electrically coupling said printed circuit board to the disk drive.
2. The apparatus of claim 1 wherein:
said printed circuit board has formed on said connector edge portion thereof a plurality of conductive, rearwardly extending signal traces electrically connectable to said plug socket in response to operative rearward insertion of said connector edge portion into said plug socket, and a plurality of conductive grounding traces electrically connectable to said plug socket in response to operative rearward insertion of said connector edge portion into said plug socket,
said grounding traces extending rearwardly beyond said signal traces, whereby, upon insertion of said connector edge portion into said plug socket a grounding connection is formed therebetween before a signal connection and, upon removal of said connector edge portion from said plug socket, the signal connection therebetween is broken before the grounding connection.
3. The apparatus of claim 1 wherein said means for removably mounting said printed circuit board on said rear end portion of said support tray member include:
upwardly projecting clip means formed on said rear end portion of said printed circuit board and operative to engage said printed circuit board and provide for a releasable snap-on fit thereof on said rear end portion of said support tray member.
4. The apparatus of claim 3 wherein:
said clip means include a spaced plurality of upwardly projecting resilient clip members positioned on a rear edge portion of said support tray member and being rearwardly deflectable to lockingly engage rear edge portions of said printed circuit board, and
said support tray member has wall means formed thereon and operative to protectively limit rearward deflection of said resilient clip members.
5. The apparatus of claim 3 wherein said means for removably mounting said printed circuit board on said rear end portion of said support tray member further include:
a spaced plurality of holes extending transversely through said printed circuit board, and
a spaced plurality of upwardly projecting post portions disposed on said rear end portion of said support tray member and being receivable in said holes to essentially preclude edgewise movement of said printed circuit board relative to said support tray member.
6. The apparatus of claim 1 wherein:
said support tray member is of a molded plastic construction.
7. The apparatus of claim 1 wherein:
said support tray member has a plate member projecting upwardly from the front end thereof in front of the front end of the mounted disk drive,
said plate member has a plurality of disk drive indicating lights operatively mounted thereon, and
said apparatus further comprises wiring means, interconnected between said printed circuit board and said indicating lights, for transmitting electrical signals from said printed circuit board to said indicating lights.
8. The apparatus of claim 7 further comprising:
wall means associated with said support tray member for forming thereon a wire passage, beneath the mounted disk drive, through which said wiring means extend.
9. The apparatus of claim 1 wherein:
said housing cage structure has opposing channel portions formed on said open front end thereof and extending transversely to said guide channel members,
said support tray member has opposite front corner portions, and
said apparatus further comprises a pair of ejection latch members pivotally mountable on said opposite front corner portions and operative, when pivoted relative thereto, to engage said cage channel portions in a manner selectively creating an insertion or withdrawal force on said support tray member, and means for removably and pivotally mounting said ejection latch members on said opposite front corner portions of said support tray members.
10. The apparatus of claim 9 wherein, for each of said ejection latch members, said means for removably and pivotally mounting said ejection latch members include:
a hole formed through the ejection latch member,
a post member formed on one of said front corner portions of said support tray and insertable through said hole, when the latch member is in a first pivotal orientation relative to the post member, to rotatably support the latch member on the post member,
first cooperating means on the post member and the latch member for preventing withdrawal of the post member from the latch member hole when the latch member is rotated about the post member away from said first pivotal orientation relative thereto, and
second cooperating means on said one of said front corner portions and the latch member for releasably blocking rotation of the latch member to said first pivotal orientation thereof after the latch member is operatively installed on the post member.
11. The apparatus of claim 10 wherein:
said first cooperating means include a circumferentially spaced plurality of radially outwardly extending projections on an outer end portion of the post member, and a complementarily configured circumferentially spaced plurality of radially outwardly extending portions of the latch member hole through which said projections may be extended to outwardly overlie the latch member when it is in said first pivotal orientation relative to the post member, and
said second cooperating means include a stop surface on the latch member and a resilient locking portion disposed on said one of said corner portions of said support tray member, the locking portion being depressible to permit rotation of the latch member about the post member to said first pivotal orientation, and releasable to form an abutment for said stop surface to releasably preclude rotation of the latch member to said first pivotal orientation thereof.
12. The apparatus of claim 1 wherein:
said printed circuit board has opposite side edge portions slidably receivable in said guide channel members and defining rearward extensions of said opposite side edge portions of said support tray member.
13. The apparatus of claim 1 wherein:
said rear end wall of said housing cage structure has guard wall means projecting forwardly therefrom and operative to block manual access to said printed circuit board when it is adjacent said plug socket.
14. The apparatus of claim 13 wherein:
said plug socket is horizontally elongated, and
said guard wall means include first and second guard plates projecting forwardly beyond said rear end wall of said housing cage structure above and below said plug socket.
15. The apparatus of claim 1 wherein:
said housing cage structure is formed from a metal material,
said first and second guide channel members are formed from a plastic material, and
said apparatus further comprises sheet metal grounding clip members carried by said guide channel members and deformingly pressed against said first and second side walls of said housing cage structure, and metal grounding members secured to and projecting outwardly beyond opposite side portions of the mounted disk drive, said metal grounding members being configured and positioned to releasably engage said grounding clip members when said support member is rearwardly brought to said operating position thereof within said housing cage structure.
16. The apparatus of claim 15 further comprising:
cooperating means on said grounding clip members and said guide channel members for providing a releasable snap-fit mounting connection between said grounding clip members and their associated guide channel members.
17. The apparatus of claim 1 further comprising:
cooperating means on said guide channel members and said side walls of said housing cage structure for providing a releasable snap-fit attachment engagement between said guide channel members and said side walls of said housing cage structure.
18. The apparatus of claim 1 further comprising:
cooperating means disposed on the disk drive and said side walls of said housing cage structure for preventing upside-down insertion of said support tray member fully into said housing cage structure.
19. The apparatus of claim 18 wherein said cooperating means include:
an inward projection formed on one of said side walls of said housing cage structure, and
a stop member secured to and projecting outwardly from a side portion of the disk drive,
said inward projection being positioned to be engaged by said stop member, when said support tray member is partially inserted rearwardly into said guide channel members in an upside-down orientation, in a manner precluding further rearward insertion into said housing cage structure.
20. Apparatus for removably supporting a disk drive, comprising:
a housing cage structure having an open front end, a rear end wall having a plug socket thereon, and first and second opposite side walls extending between said open front end and said rear end wall, and opposing wall channel portions formed on said open front end, said first and second opposite side walls having facing surfaces;
first and second elongated guide channel members having open side portions, and generally U-shaped cross-sections along their lengths;
means for mounting said guide channel members on the facing surfaces of said first and second side walls in a parallel relationship in which said open side portions of the mounted first and second guide channel members face one another and said first and second guide channel members longitudinally extend toward said plug socket in a generally laterally aligned relationship therewith and generally perpendicular to said opposing wall channel portions of said housing cage structure;
a generally flat support member having opposite front corner portions, and opposite side edge portions slidably and supportingly receivable in the interiors of said first and second guide channel members in a manner permitting said support member to be slid rearwardly along said first and second guide channel members to bring said support member to an operating position within said housing cage structure;
a pair of ejection latch members pivotally mountable on said opposite front corner portions of said support member and operative, when pivoted relative thereto, to engage said wall channel portions of said housing cage structure in a manner selectively creating an insertion or withdrawal force on said support member; and
means for removably and pivotally mounting said ejection latch members on said opposite front corner portions of said support member, said means for removably and pivotally mounting, for each ejection latch member, including:
a hole formed through the ejection latch member,
a post member formed on one of said front corner portions of said support member and insertable through said hole, when the latch member is in a first pivotal orientation relative to the post member, to rotatably support the latch member on the post member,
first cooperating means on the post member and the latch member for preventing withdrawal of the post member from the latch member hole when the latch member is rotated about the post member away from said first pivotal orientation relative thereto, and
second cooperating means on said one of said front corner portions of said support member and the latch member for releasably blocking rotation of the latch member to said first pivotal orientation thereof after the latch member is rotatably installed on the post member.
21. The apparatus of claim 20 wherein:
said first cooperating means include a circumferentially spaced plurality of radially outwardly extending projections on an outer end portion of the post member, and a complementarily configured circumferentially spaced plurality of radially outwardly extending portions of the latch member hole through which said projections may be extended to outwardly overlie the latch member when it is in said first pivotal orientation relative to the post member, and
said second cooperating means include a stop surface on the latch member and a resilient locking portion disposed on said one of said corner portions of said support member, the locking portion being depressible to permit rotation of the latch member about the post member to said first pivotal orientation, and releasable to form an abutment for said stop surface to releasably preclude rotation of the latch member to said first pivotal orientation thereof.
22. The apparatus of claim 20 wherein said plug socket is a hot plug socket. .Iadd.
23. For use in conjunction with a housing cage structure having an open end, and an end wall spaced inwardly apart from and facing the open end and having a plug socket thereon, disk drive apparatus insertable inwardly through the open housing cage structure end in a manner removably holding said disk drive apparatus therein and operatively coupling it to the plug socket, said disk drive apparatus comprising:
a support tray member having a base wall with opposite top and bottom sides, a rear end portion, and a front end portion disposed forwardly of said rear end portion, said support tray member being rearwardly movable inwardly through the open housing cage structure end, toward the plug socket, to an operating position;
a printed circuit board having a connector edge portion;
mounting means for mounting said printed circuit board on one of said opposite top and bottom sides of said rear end portion of said base wall, in a parallel relationship therewith, for movement with said support tray member in a manner such that when said support tray member is rearwardly moved through the cage structure to said operating position said connector edge portion of the mounted printed circuit board is conductively and removably received within the plug socket;
securing means for securing a disk drive to one of said top and bottom sides of said front end portion of said base wall, forwardly of the printed circuit board, for movement therewith;
coupling means for electrically coupling said printed circuit board to the disk drive; and
support means associated with said support tray member and cooperatively engageable with a portion of the housing cage structure, in response to movement of said support tray member into the housing cage structure to said operating position, to removably support said support tray member within the housing cage structure. .Iaddend..Iadd.
24. The disk drive apparatus of claim 23 further comprising:
a hard disk drive secured by said securing means to said top side of said front end portion of said base wall forwardly of said printed circuit board. .Iaddend..Iadd.25. The disk drive apparatus of claim 24 wherein:
said printed circuit board is mounted on said top side of said front end portion of said base wall. .Iaddend..Iadd.26. The disk drive apparatus of claim 23 wherein:
said printed circuit board has formed on said connector edge portion thereof a plurality of conductive, rearwardly extending signal traces electrically connectable to the plug socket in response to operative rearward insertion of said connector edge portion into the plug socket, and a plurality of conductive grounding traces electrically connectable to said plug socket in response to operative rearward insertion of said connector edge portion into the plug socket, said grounding traces
extending rearwardly beyond said signal traces. .Iaddend..Iadd.27. The disk drive apparatus of claim 23 wherein said means for mounting said printed circuit board on said rear end portion of said support tray member include:
upwardly projecting clip means formed on said rear end portion of said printed circuit board and operative to engage said printed circuit board and provide for a releasable snap-on fit thereof on said rear end portion of said support tray member. .Iaddend..Iadd.28. The apparatus of claim 27 wherein:
said clip means include a spaced plurality of upwardly projecting resilient clip members positioned on a rear edge portion of said support tray member and being rearwardly deflectable to lockingly engage rear edge portions of said printed circuit board, and
said support tray member has wall means formed thereon and operative to protectively limit rearward deflection of said resilient clip members. .Iaddend..Iadd.29. The disk drive apparatus of claim 27 wherein said means for mounting said printed circuit board on said rear end portion of said support tray member further include:
a spaced plurality of holes extending transversely through said printed circuit board, and
a spaced plurality of upwardly projecting post portions disposed on said rear end portion of said support tray member and being receivable in said holes to essentially preclude edgewise movement of said printed circuit board relative to said support tray member. .Iaddend..Iadd.30. The disk drive apparatus of claim 23 wherein:
said support tray member is of a molded plastic construction. .Iaddend..Iadd.31. The disk drive apparatus of claim 23 wherein:
said support tray member has a plate member projecting upwardly from the front end thereof,
said plate member has a plurality of disk drive indicating lights operatively mounted thereon, and
said disk drive apparatus further comprises wiring means, interconnected between said printed circuit board and said indicating lights, for transmitting electrical signals from said printed circuit board to said indicating lights. .Iaddend..Iadd.32. The disk drive apparatus of claim 31 further comprising:
wall means associated with said support tray member for forming thereon a wire passage, disposed along the underside of said support tray member,
through which said wiring means extend. .Iaddend..Iadd.33. For use in conjunction with a housing cage structure having an open end, and an end wall spaced inwardly apart from and facing the open end and having a plug socket thereon, disk drive apparatus insertable inwardly through the open housing cage structure end in a manner removably holding said disk drive apparatus therein and operatively coupling it to the plug socket, said disk drive apparatus comprising:
a support tray member having a base wall with opposite top and bottom sides, a rear end portion, and a front end portion disposed forwardly of said rear end portion, said support tray member being rearwardly movable inwardly through the open housing cage structure end, toward the plug socket, to an operating position, said front end portion of said base wall having opposite side edge portions extending in front-to-rear directions;
a printed circuit board anchored to one of said top and bottom sides of said base wall and being positioned rearwardly of said front end portion of said base wall, said printed circuit board extending generally parallel to said base wall and having opposite side edge portions generally aligned with and forming rearward extensions of said opposite side edge portions of said base wall, said printed circuit board further having a rearwardly extending connector edge portion removably and operatively receivable in the plug socket;
a disk drive secured to one of said top and bottom sides of said front end portion of said base wall and being electrically coupled to said printed circuit board; and
support means associated with said support tray member and cooperatively engageable with a portion of the housing cage structure, in response to movement of said support tray member into the housing cage structure to said operating position, to removably support said support tray member within the housing cage structure, said support means including the aligned opposite side edge portions of said base wall and said printed circuit board. .Iaddend..Iadd.34. The disk drive apparatus of claim 33 wherein:
the housing cage structure has guide channel structures disposed therein, and
the aligned opposite side edge portions of said base wall and said printed circuit board are configured to be slidably and supportingly received in the guide channel structures. .Iaddend..Iadd.35. The disk drive apparatus of claim 33 further comprising:
a plate member projecting upwardly from a front end portion of said support tray member forwardly of said disk drive,
a plurality of disk drive indicating lights operatively mounted on said plate member, and
wiring means, interconnected between said printed circuit board and said indicating lights, for transmitting electrical signals from said printed circuit board to said indicating lights. .Iaddend..Iadd.36. The disk drive apparatus of claim 35 further comprising:
wall means associated with said support tray member for forming along an underside portion thereof a wire passage through which said wiring means extend. .Iaddend..Iadd.37. For use in conjunction with a housing cage structure having an open end, and an end wall spaced inwardly apart from and facing the open end and having a plug socket thereon, disk drive apparatus insertable inwardly through the open housing cage structure end in a manner removably holding said disk drive apparatus therein and operatively coupling it to the plug socket, said disk drive apparatus comprising:
a support tray member having a rear end portion and a top side portion disposed forwardly of said rear end portion, said top side portion having opposite front corner portions, said support tray member being rearwardly movable inwardly through the open housing cage structure end, toward the plug socket on the end wall of the housing cage structure, to an operating position;
a printed circuit board having a connector structure thereon;
mounting means for mounting said printed circuit board on said rear end portion of said support tray member for movement therewith in a manner such that when said support tray member is rearwardly moved through the cage structure to said operating position said connector structure of the mounted printed circuit board is conductively and removably received within the plug socket;
securing means for securing a disk drive to said top side portion of said support tray member for movement therewith;
coupling means for electrically coupling said printed circuit board to the disk drive;
support means associated with said support tray member and cooperatively engageable with a portion of the housing cage structure, in response to movement of said support tray member into the housing cage structure to said operating position, to removably support said support tray member within the housing cage structure;
a pair of ejection latch members pivotally mountable on said opposite front corner portions of said support tray member and operative, when pivoted relative thereto, to engage a portion of the housing cage structure in a manner selectively creating an insertion or withdrawal force on said support tray member; and
means for removably and pivotally mounting said ejection latch members on corner portions of said support tray member, said means for removably and pivotally mounting, for each ejection latch member, including:
a hole formed through the ejection latch member,
a post member formed on one of said front corner portions of said support member and insertable through said hole, when the latch member is in a first pivotal orientation relative to the post member, to rotatably support the latch member on the post member,
first cooperating means on the post member and the latch member for preventing withdrawal of the post member from the latch member hole when the latch member is rotated about the post member away from said first pivotal orientation relative thereto, and
second cooperating means on said one of said front corner portions of said support member and the latch member for releasably blocking rotation of the latch member to said first pivotal orientation thereof after the latch member is rotatable installed on the post member. .Iaddend..Iadd.38. The disk drive apparatus of claim 37 wherein:
said first cooperating means include a circumferentially spaced plurality of radially outwardly extending projections on an outer end portion of the post member, and a complementarily configured circumferentially spaced plurality of radially outwardly extending portions of the latch member hole through which said projections may be extended to outwardly overlie the latch member when it is in said first pivotal orientation relative to the post member, and
said second cooperating means include a stop surface on the latch member and a resilient locking portion disposed on said one of said corner portions of said support member, the locking portion being depressible to permit rotation of the latch member about the post member to said first pivotal orientation, and releasable to form an abutment for said stop surface to releasably preclude rotation of the latch member to said first pivotal orientation thereof. .Iaddend..Iadd.39. For use in conjunction with a housing cage structure having an open end, and an end wall spaced inwardly apart from and facing the open end and having a plug socket thereon, disk drive apparatus insertable inwardly through the open housing cage structure end in a manner removably holding said disk drive apparatus therein and operatively coupling it to the plug socket, said disk drive apparatus comprising:
a support tray member having a base wall with a rear portion and a front portion disposed forwardly of said rear portion, said support tray member being rearwardly movable inwardly through the open housing cage structure end, toward the plug socket, to an operating position;
a printed circuit board mounted on a side of said rear portion of said base wall in a generally parallel relationship therewith and having a rearwardly projecting connector edge portion with a plurality of signal traces disposed thereon, and a grounding trace disposed thereon and extending rearwardly of said signal traces, said connector edge portion being removably receivable in the plug socket in response to rearward movement of said support tray member through the housing cage structure to said operating position;
securing means for securing a disk drive to said front portion of said base wall for movement therewith;
coupling means for electrically coupling said printed circuit board to the disk drive; and
support means associated with said support tray member and cooperatively engageable with a portion of the housing cage structure, in response to movement of said support tray member into the housing cage structure to said operating position, to removably support said support tray structure
within the housing cage structure. .Iaddend..Iadd.40. The disk drive apparatus of claim 39 further comprising:
a disk drive secured by said securing means to said front portion of said support tray member forwardly of said printed circuit board. .Iaddend..Iadd.41. The disk drive apparatus of claim 40 wherein:
said disk drive is a hard disk drive. .Iaddend..Iadd.42. The disk drive apparatus of claim 39 wherein:
said support tray member is of a plastic construction. .Iaddend..Iadd.43. Apparatus for supporting and providing a plug connection for a disk drive, comprising:
a housing cage structure having an open front end, a rear end wall having a plug socket thereon, and first and second opposite side walls extending between said open front end and said rear end wall, said first and second opposite side walls having facing surfaces;
first and second elongated guide channel members having open side portions with interiors, and generally U-shaped cross-sections along their lengths;
means for mounting said guide channel members on the facing surfaces of said first and second side walls in a parallel relationship in which said open side portions of the mounted first and second guide channel members face one another and said first and second guide channel members longitudinally extend toward said plug socket in a generally laterally aligned relationship therewith;
a support tray member having opposite side edge portions slidably and supportingly receivable in the interiors of said first and second guide channel members in a manner permitting said support tray member to be slid rearwardly along said first and second guide channel members to bring said support tray member to an operating position within said cage structure, said support tray member having a rear end portion and a top side portion disposed forwardly of said rear end portion;
a printed circuit board having a connector edge portion;
means for mounting said printed circuit board on said rear end portion of said support tray member for movement therewith in a manner such that when said support tray member is rearwardly moved through said cage structure to said operating position the connector edge portion of the mounted printed circuit board is conductively and removably received within said plug socket;
means for securing the disk drive to said top side portion of said support tray member for movement therewith; and
means for electrically coupling said printed circuit board to the disk
drive. .Iaddend..Iadd.44. The apparatus of claim 43 wherein:
said printed circuit board has formed on said connector edge portion thereof a plurality of conductive, rearwardly extending signal traces electrically connectable to said plug socket in response to operative rearward insertion of said connector edge portion into said plug socket, and a plurality of conductive grounding traces electrically connectable to said plug socket in response to operative rearward insertion of said connector edge portion into said plug socket,
said grounding traces extending rearwardly beyond said signal traces, whereby, upon insertion of said connector edge portion into said plug socket a grounding connection is formed therebetween before a signal connection and, upon removal of said connector edge portion from said plug socket, the signal connection therebetween is broken before the grounding connection. .Iaddend..Iadd.45. The apparatus of claim 43 wherein said means for mounting said printed circuit board on said rear end portion of said support tray member include:
upwardly projecting clip means formed on said rear end portion of said printed circuit board and operative to engage said printed circuit board and provide for a releasable snap-on fit thereof on said rear end portion of said support tray member. .Iaddend..Iadd.46. The apparatus of claim 45 wherein:
said clip means include a spaced plurality of upwardly projecting resilient clip members positioned on a rear edge portion of said support tray member and being rearwardly deflectable to lockingly engage rear edge portions of said printed circuit board, and
said support tray member has wall means formed thereon and operative to protectively limit rearward deflection of said resilient clip members. .Iaddend..Iadd.47. The apparatus of claim 45 wherein said means for mounting said printed circuit board on said rear end portion of said support tray member further include:
a spaced plurality of holes extending transversely through said printed circuit board, and
a spaced plurality of upwardly projecting post portions disposed on said rear end portion of said support tray member and being receivable in said holes to essentially preclude edgewise movement of said printed circuit
board relative to said support tray member. .Iaddend..Iadd.48. The apparatus of claim 43 wherein said support tray member is of a molded plastic construction. .Iaddend..Iadd.49. The apparatus of claim 43 wherein:
said support tray member has a plate member projecting upwardly from the front end thereof in front of the front end of the mounted disk drive,
said plate member has a plurality of disk drive indicating lights operatively mounted thereon, and
said apparatus further comprises wiring means, interconnected between said printed circuit board and said indicating lights, for transmitting electrical signals from said printed circuit board to said indicating lights. .Iaddend..Iadd.50. The apparatus of claim 49 further comprising:
wall means associated with said support tray member for forming thereon a wire passage, beneath the mounted disk drive, through which said wiring
means extend. .Iaddend..Iadd.51. The apparatus of claim 43 wherein:
said housing cage structure has opposing channel portions formed on said open front end thereof and extending transversely to said guide channel members,
said support tray member has opposite front corner portions, and
said apparatus further comprises a pair of ejection latch members pivotally mountable on said opposite front corner portions and operative, when pivoted relative thereto, to engage said cage channel portions in a manner selectively creating an insertion or withdrawal force on said support tray member, and means for removably and pivotally mounting said ejection latch members on said opposite front corner portions of said support tray members. .Iaddend..Iadd.52. The apparatus of claim 51 wherein, for each of said ejection latch members, said means for removably and pivotally mounting said ejection latch members include:
a hole formed through the ejection latch member,
a post member formed on one of said front corner portions of said support tray and insertable through said hole, when the latch member is in a first pivotal orientation relative to the post member, to rotatably support the latch member on the post member,
first cooperating means on the post member and the latch member for preventing withdrawal of the post member from the latch member hole when the latch member is rotated about the post member away from said first pivotal orientation relative thereto, and
second cooperating means on said one of said front corner portions and the latch member for releasably blocking rotation of the latch member to said first pivotal orientation thereof after the latch member is operatively
installed on the post member. .Iaddend..Iadd.53. The apparatus of claim 52 wherein:
said first cooperating means include a circumferentially spaced plurality of radially outwardly extending projections on an outer end portion of the post member, and a complementarily configured circumferentially spaced plurality of radially outwardly extending portions of the latch member hole through which said projections may be extended to outwardly overlie the latch member when it is in said first pivotal orientation relative to the post member, and
said second cooperating means include a stop surface on the latch member and a resilient locking portion disposed on said one of said corner portions of said support tray member, the locking portion being depressible to permit rotation of the latch member about the post member to said first pivotal orientation, and releasable to form an abutment for said stop surface to releasably preclude rotation of the latch member to
said first pivotal orientation thereof. .Iaddend..Iadd.54. The apparatus of claim 43 wherein:
said printed circuit board has opposite side edge portions slidably receivable in said guide channel members and defining rearward extensions of said opposite side edge portions of said support tray member. .Iaddend..Iadd.55. The apparatus of claim 43 wherein:
said rear end wall of said housing cage structure has guard wall means projecting forwardly therefrom and operative to block manual access to said printed circuit board when it is adjacent said plug socket. .Iaddend..Iadd.56. The apparatus of claim 55 wherein:
said plug socket is horizontally elongated, and
said guard wall means include first and second guard plates projecting forwardly beyond said rear end wall of said housing cage structure above and below said plug socket. .Iaddend..Iadd.57. The apparatus of claim 43 wherein:
said housing cage structure is formed from a metal material,
said first and second guide channel members are formed from a plastic material, and
said apparatus further comprises sheet metal grounding clip members carried by said guide channel members and deformingly pressed against said first and second side walls of said housing cage structure, and metal grounding members secured to and projecting outwardly beyond opposite side portions of the mounted disk drive, said metal grounding members being configured and positioned to releasably engage said grounding clip members when said support member is rearwardly brought to said operating position thereof within said housing cage structure. .Iaddend..Iadd.58. The apparatus of claim 57 further comprising:
cooperating means on said grounding clip members and said guide channel members for providing a releasable snap-fit mounting connection between said grounding clip members and their associated guide channel members. .Iaddend..Iadd.59. The apparatus of claim 43 further comprising:
cooperating means on said guide channel members and said side walls of said housing cage structure for providing a releasable snap-fit attachment engagement between said guide channel members and said side walls of said housing cage structure. .Iaddend..Iadd.60. The apparatus of claim 43 further comprising:
cooperating means disposed on the disk drive and said side walls of said housing cage structure for preventing upside-down insertion of said support tray member fully into said housing cage structure.
.Iaddend..Iadd.1. The apparatus of claim 60 wherein said cooperating means include:
an inward projection formed on one of said side walls of said housing cage structure, and
a stop member secured to and projecting outwardly from a side portion of the disk drive,
said inward projection being positioned to be enraged by said stop member, when said support tray member is partially inserted rearwardly into said guide channel members in an upside-down orientation, in a manner precluding further rearward insertion into said housing cage structure. .Iaddend..Iadd.62. The disk drive apparatus of claim 33 wherein:
said disk drive is mounted on the top side of said front end portion of said base wall, and
said printed circuit board is mounted on the top side of said rear end
portion of said base wall. .Iaddend..Iadd.63. For use conjunction with a housing cage structure having an open end, and an end wall spaced inwardly apart from and facing the open end and having a plug socket thereon, disk drive apparatus insertable inwardly through the open housing cage structure end in a manner removably holding said disk drive apparatus therein and operatively coupling it to the plug socket, said disk drive apparatus comprising:
a support tray having a base wall structure with opposite top and bottom sides, a front end portion, a rear end portion having a downwardly offset top side portion, and a rear edge, said support tray being rearwardly movable inwardly through the open housing cage structure end, toward the plug socket on the end wall of the housing cage structure, to an operating position;
a printed circuit board having a connector edge portion;
mounting means for mounting said printed circuit board on said downwardly offset top side portion of said rear end portion of said base wall structure, in a parallel relationship therewith, with said connector edge portion of said printed circuit board projecting rearwardly beyond said rear edge of said rear end portion of said base wall structure, for movement with said support tray in a manner such that when said support tray is rearwardly moved through the cage structure to said operating position said connector edge portion of the mounted printed circuit board is conductively and removably received within the plug socket;
securing means for securing a disk drive to the top side of said front end portion of said base wall structure forwardly of said printed circuit board;
coupling means for electrically coupling said printed circuit board to the disk drive; and
support means associated with said support tray and cooperatively engageable with a portion of the housing cage structure, in response to movement of said support tray member into the housing cage structure to said operating position, to removably support said support tray within the
housing cage structure. .Iaddend..Iadd.64. The disk drive apparatus of claim 63 wherein:
said base wall structure of said support tray further has opposite side edge portions longitudinally extending in front-to-rear directions, and
said printed circuit board is generally vertically aligned with said opposite side edge portions of said base wall structure of said support tray. .Iaddend..Iadd.65. The disk drive apparatus of claim 64 wherein:
said printed circuit board has opposite side edge portions that generally define rearward extensions of said opposite side edge portions of said base wall structure of said support tray. .Iaddend..Iadd.66. The disk drive apparatus of claim 63 wherein:
said base wall structure of said support tray has opposite side edge portions longitudinally extending in front-to-rear directions, and
said support means include said opposite side edge portions of said base wall structure of said support tray. .Iaddend..Iadd.67. The disk drive apparatus of claim 63 further comprising a disk drive secured by said securing means to the top side of said front end portion of said base wall
structure. .Iaddend..Iadd.68. The disk drive apparatus of claim 67 wherein:
said disk drive apparatus further comprises a disk drive indicating light carried on a front end portion of said support tray, and
said coupling means include electrical wiring connected to said printed circuit board and having a first portion electrically coupling said printed circuit board to said disk drive, and a second portion extending between said disk drive and said base wall structure and connected to said disk drive indicating light. .Iaddend..Iadd.69. The disk drive apparatus of claim 63 wherein:
said disk drive apparatus further comprises a pair of ejection latch members pivotally carried on a front end portion of said support tray and being operative to engage the housing cage structure in a manner selectively creating an insertion or withdrawal force on said support tray. .Iaddend..Iadd.70. For use in conjunction with a housing cage structure having an open end, and an end wall spaced inwardly apart from and facing the open end and having a plug socket thereon, disk drive apparatus insertable inwardly through the open housing cage structure end in a manner removably holding said disk drive apparatus therein and operatively coupling it to the plug socket, said disk drive apparatus comprising:
a support tray having a base wall structure with opposite top and bottom sides, a front end portion having an upstanding front transverse wall, and a rear end portion having a rear edge, said support tray being rearwardly movable inwardly through the open housing cage structure end, toward the plug socket on the end wall of the housing cage structure, to an operating position;
a disk drive indicating light carried on said upstanding front transverse wall;
a printed circuit board having a connector edge portion;
mounting means for mounting said printed circuit board on a side of said rear end portion of said base wall structure, in a parallel relationship therewith, with said connector edge portion of said printed circuit board projecting rearwardly beyond said rear edge of said rear end portion of said base wall structure, for movement with said support tray in a manner such that when said support tray is rearwardly moved through the cage structure to said operating position said connector edge portion of the mounted printed circuit board is conductively and removably received within the plug socket;
securing means for securing a disk drive to the top side of said front end portion of said base wall structure forwardly of said printed circuit board;
wiring means for electrically coupling said printed circuit board to the disk drive and to said disk drive indicating light;
a pair of ejection latch members pivotally carried on said upstanding front transverse wall and being operative to engage a portion of the housing cage structure in a manner selectively creating an insertion or withdrawal force on said support tray; and
support means associated with said support tray and cooperatively engageable with a portion of the housing cage structure, in response to movement of said support tray into the housing cage structure to said operating position, to removably support said support tray within the
housing cage structure. .Iaddend..Iadd.71. The disk drive apparatus of claim 70 wherein:
said upstanding front transverse wall has a forwardly projecting portion, and
said pair of ejection latch members are pivotally carried on said forwardly projecting portion. .Iaddend..Iadd.72. The disk drive apparatus of claim 70 further comprising a disk drive secured by said securing means to said top side of said front end portion of said base wall structure, between said upstanding front transverse wall and said printed circuit board. .Iaddend..Iadd.73. The disk drive apparatus of claim 72 wherein a portion of said wiring means extends between said disk drive and said base wall structure and is interconnected between said printed circuit board and said indicating light. .Iaddend..Iadd.74. The disk drive apparatus of claim 70 wherein said printed circuit board is mounted on the top side of
said rear end portion of said base wall structure. .Iaddend..Iadd.75. The disk drive apparatus of claim 70 wherein:
said base wall structure further has opposite side edge portions longitudinally extending in front-to-rear directions, and
said support means include said opposite side edge portions of said base wall structure. .Iaddend.
US08/518,164 1992-09-24 1995-08-23 Apparatus for removably supporting a plurality of hot plug-connected hard disk drives Expired - Lifetime USRE35915E (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
US08/518,164 USRE35915E (en) 1992-09-24 1995-08-23 Apparatus for removably supporting a plurality of hot plug-connected hard disk drives

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
US07/950,598 US5277615A (en) 1992-09-24 1992-09-24 Apparatus for removably supporting a plurality of hot plug-connected hard disk drives
US08/518,164 USRE35915E (en) 1992-09-24 1995-08-23 Apparatus for removably supporting a plurality of hot plug-connected hard disk drives

Related Parent Applications (1)

Application Number Title Priority Date Filing Date
US07/950,598 Reissue US5277615A (en) 1992-09-24 1992-09-24 Apparatus for removably supporting a plurality of hot plug-connected hard disk drives

Publications (1)

Publication Number Publication Date
USRE35915E true USRE35915E (en) 1998-10-06

Family

ID=25490650

Family Applications (3)

Application Number Title Priority Date Filing Date
US07/950,598 Ceased US5277615A (en) 1992-09-24 1992-09-24 Apparatus for removably supporting a plurality of hot plug-connected hard disk drives
US08/004,696 Expired - Lifetime US5340340A (en) 1992-09-24 1993-01-14 Apparatus for removably supporting a plurality of hot plug-connected hard disk drives
US08/518,164 Expired - Lifetime USRE35915E (en) 1992-09-24 1995-08-23 Apparatus for removably supporting a plurality of hot plug-connected hard disk drives

Family Applications Before (2)

Application Number Title Priority Date Filing Date
US07/950,598 Ceased US5277615A (en) 1992-09-24 1992-09-24 Apparatus for removably supporting a plurality of hot plug-connected hard disk drives
US08/004,696 Expired - Lifetime US5340340A (en) 1992-09-24 1993-01-14 Apparatus for removably supporting a plurality of hot plug-connected hard disk drives

Country Status (5)

Country Link
US (3) US5277615A (en)
EP (1) EP0589708B1 (en)
AT (1) ATE201279T1 (en)
CA (1) CA2106626C (en)
DE (1) DE69330224T2 (en)

Cited By (39)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6178091B1 (en) * 1998-07-09 2001-01-23 Dell Usa, L.P. Computer system having surface mount PWB grounding clips
US6240058B1 (en) * 1996-07-11 2001-05-29 Nsm Aktiengesellschaft Disk-changing unit with modular design
US6256204B1 (en) * 1999-03-19 2001-07-03 International Business Machines Corporation Injection molded disk drive carrier with integral latch and wire form retention
US6275382B1 (en) 1999-04-13 2001-08-14 Dell Usa, L.P. Apparatus for mounting a peripheral device in a computer system
US6301105B2 (en) * 1998-10-13 2001-10-09 Avid Technology, Inc. Disk drive enclosure
US6304439B1 (en) 1999-08-30 2001-10-16 Connex, Total Technologies, Inc. Disk drive sled insertion and removal system
US6310777B1 (en) * 1999-04-17 2001-10-30 John Knott Electronic apparatus
US6377448B1 (en) * 1999-11-08 2002-04-23 Hon Hai Precision Ind. Co., Ltd. Device housing with a grounding clip
US6462953B2 (en) 1999-08-03 2002-10-08 Belkin Components Universal serial bus module and system
US20030030991A1 (en) * 2001-08-10 2003-02-13 Riddiford Martin P. Support module ejection mechanism
US6525933B2 (en) 2001-01-31 2003-02-25 Hewlett-Packard Company Computer peripheral mounting bracket
US6529374B2 (en) * 2001-02-26 2003-03-04 Teac Corporation Electronic apparatus
US6532150B2 (en) 2001-05-31 2003-03-11 American Megatrends, Inc. Disk drive carrier apparatus and associated method
US6560099B1 (en) * 2002-07-10 2003-05-06 Cheng-Chun Chang Double interface external box for a computer
US6619766B1 (en) 1999-10-12 2003-09-16 Gateway, Inc. Device mounting and retention assembly
US20030224645A1 (en) * 2002-05-31 2003-12-04 Racksaver, Inc. Rack mountable computer component power distribution unit and method
US20030223193A1 (en) * 2002-05-31 2003-12-04 Racksaver, Inc. Method and apparatus for rack mounting computer components
US20030223199A1 (en) * 2002-05-31 2003-12-04 Racksaver, Inc. Rack mountable computer component and method of making same
US20040057216A1 (en) * 2002-09-25 2004-03-25 Smith John V. Electronic component rack assembly and method
US6788997B1 (en) * 1998-06-01 2004-09-07 Medselect, Inc. Medical cabinet with adjustable drawers
US6801428B2 (en) 2002-05-31 2004-10-05 Racksaver, Inc. Rack mountable computer component fan cooling arrangement and method
US20050047099A1 (en) * 2003-08-26 2005-03-03 Belkin Corporation Universal serial bus hub and method of manufacturing same
US20050094355A1 (en) * 2003-08-26 2005-05-05 Belkin Corporation Universal serial bus hub and method of manufacturing same
US20050094366A1 (en) * 2003-10-31 2005-05-05 Lewis Jeffrey M. Mount for computer drive
US20060050477A1 (en) * 2004-09-09 2006-03-09 Wu Victor C Mass storage cradle device
US20060061955A1 (en) * 2004-09-21 2006-03-23 Imblum Raymond W Disk drive support system
US20060286840A1 (en) * 2005-06-20 2006-12-21 Belkin Corporation Multi-standard connection hub and method of manufacturing same
US20070167071A1 (en) * 2006-01-13 2007-07-19 Hon Hai Precision Industry Co., Ltd. Mounting apparatus for circuit board
US20080200064A1 (en) * 2007-01-05 2008-08-21 Belkin International, Inc. Electrical Grommet Device
US20080239650A1 (en) * 2007-03-28 2008-10-02 International Business Machines Corporation Mounting electronic components
US20080239651A1 (en) * 2007-03-28 2008-10-02 International Business Machines Corporation Tool-less electronic component retention
US20100184322A1 (en) * 2007-06-12 2010-07-22 Toyota Jidosha Kabushiki Kaisha Connector structure of electrical equipment and vehicle
US20110043986A1 (en) * 2008-04-30 2011-02-24 Conn Kevin D Power supply assembly for server rack and method for mounting power supply for server rack
US20110069443A1 (en) * 2009-09-22 2011-03-24 Jabil Circuit, Inc. Electronic connectors and form factor adapters for electronic components
US8014170B2 (en) 2003-08-26 2011-09-06 Belkin International, Inc. Cable management device and method of cable management
AT511424A1 (en) * 2011-04-26 2012-11-15 Zizala Lichtsysteme Gmbh LOCKING DEVICE FOR CONNECTING COMPONENTS
US20130250524A1 (en) * 2012-03-20 2013-09-26 Brocade Communications Systems, Inc. Compact Flash Retainer
US20130279129A1 (en) * 2012-04-23 2013-10-24 Wistron Corporation Storage device assembling module and electronic apparatus using the same
US20140076829A1 (en) * 2012-09-20 2014-03-20 Hon Hai Precision Industry Co., Ltd. Rack for electronic apparatus

Families Citing this family (295)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2752247B2 (en) * 1990-11-29 1998-05-18 富士通株式会社 Information storage device
US5483419A (en) * 1991-09-24 1996-01-09 Teac Corporation Hot-swappable multi-cartridge docking module
JPH07176168A (en) 1991-09-24 1995-07-14 Kalok Corp Large-capacity thin disk drive system, disk drive assembly and assembly method
US5596738A (en) * 1992-01-31 1997-01-21 Teac Corporation Peripheral device control system using changeable firmware in a single flash memory
EP0558770A1 (en) * 1992-02-29 1993-09-08 International Business Machines Corporation A hot pluggable electrical circuit
US5277615A (en) * 1992-09-24 1994-01-11 Compaq Computer Corporation Apparatus for removably supporting a plurality of hot plug-connected hard disk drives
US5507650A (en) * 1992-11-16 1996-04-16 Hjs & E Engineering Universal slide mounted adaptor for storage devices
US5515515A (en) * 1993-02-18 1996-05-07 Ast Research, Inc. Live data storage array system having individually removable, and self-configuring data storage units
JP2567629Y2 (en) 1993-03-23 1998-04-02 バーグ・テクノロジー・インコーポレーテッド Connector device
US5503472A (en) * 1993-06-29 1996-04-02 Sun Microsystems, Inc. Method and apparatus for assembly of a multi-disk pack unit
US5653518A (en) * 1993-09-10 1997-08-05 Compaq Computer Corporation Quick release drive unit rail members
US5431491A (en) * 1993-10-12 1995-07-11 Despatch Industries Insertion and ejection apparatus for environmental test chambers
US5564804A (en) * 1993-12-17 1996-10-15 Silicon Graphics, Inc. Disk drive bracket
US5530302A (en) * 1994-01-13 1996-06-25 Network Systems Corporation Circuit module with hot-swap control circuitry
US5481431A (en) * 1994-01-28 1996-01-02 Sun Microsystems, Inc. System having U-shaped actuator and handle with cam surfaces for mounting computer hard drive or the like
FR2715739B1 (en) * 1994-02-01 1996-03-01 Aerospatiale Soc Nat Industrielle ADAPTER FOR TESTING MACHINE FOR ELECTRONIC EQUIPMENT
US5562410A (en) * 1994-02-10 1996-10-08 Emc Corporation Self-aligning hot-pluggable fan assembly
US5527104A (en) * 1994-04-06 1996-06-18 Dell Usa, L. P. Computer chassis cover alignment apparatus
US5557499A (en) * 1994-06-28 1996-09-17 Ast Research, Inc. Hard-disk drive tray assembly with pivotally rotatable front bezel
US5594627A (en) * 1994-06-28 1997-01-14 Ast Research, Inc. Circuit card retainer
US5579491A (en) * 1994-07-07 1996-11-26 Dell U.S.A., L.P. Local proactive hot swap request/acknowledge system
US5600539A (en) * 1994-10-11 1997-02-04 At&T Global Information Solutions Company Secure interface card extractor/ejector mechanism
US5587877A (en) * 1994-10-26 1996-12-24 Amco Engineering Co. Computer organizer enclosure and method
DE69533487T2 (en) * 1994-11-29 2005-09-22 Intel Corp., Santa Clara PORTABLE DISK DRIVE AND FRAME FRAME
US5574865A (en) * 1994-12-01 1996-11-12 Unisys Corporation System for data transfer protection during module connection/disconnection onto live bus
US5713747A (en) * 1995-01-06 1998-02-03 Berg Technology, Inc. Memory card connector
EP0801823B1 (en) * 1995-01-06 2003-05-02 Fci Shielded memory card connector
US5625238A (en) * 1995-02-03 1997-04-29 Motorola, Inc. Apparatus for non-disruptively interconnecting perpheral device modules with a host device
JP2658954B2 (en) * 1995-03-23 1997-09-30 日本電気株式会社 Disk drive unit for magnetic disk drive
DE69604005T2 (en) * 1995-04-12 2000-04-06 Digital Equipment Corp RAID disk enclosure with ESD resistance
US5668697A (en) * 1995-04-20 1997-09-16 Hewlett-Packard Company Data storage module having cradles on housing and elastomeric member mounted on data storage mechanism
US5668696A (en) * 1995-07-10 1997-09-16 Dell Usa, L.P. Carrier-based mounting structure for computer peripheral chassis
EP0757351B1 (en) * 1995-07-31 2001-08-16 Hewlett-Packard Company, A Delaware Corporation Computer frame structure with modular housings
GB9515982D0 (en) * 1995-08-04 1995-10-04 Havant International Ltd Disk file mounting
KR0163706B1 (en) * 1995-08-31 1998-12-15 김광호 Computer system component commuting circuit
US6059586A (en) * 1995-09-12 2000-05-09 The Whitaker Corporation Memory card connector
US5595501A (en) * 1995-09-29 1997-01-21 Ho; Hsin C. Sliding case mounting device
US5850296A (en) * 1995-10-10 1998-12-15 Storm Technology, Inc. Scanner housing structure
US5673171A (en) * 1995-12-05 1997-09-30 Compaq Computer Corporation Hard disc drive support tray apparatus with built-in handling shock reduction, EMI shielding and mounting alignment structures
US5673172A (en) * 1996-01-05 1997-09-30 Compaq Computer Corporation Apparatus for electromagnetic interference and electrostatic discharge shielding of hot plug-connected hard disk drives
DE19603092C1 (en) * 1996-01-29 1997-04-30 Siemens Nixdorf Inf Syst Disc drive insert especially for 'hot-replace' function
US5654873A (en) * 1996-01-29 1997-08-05 Silicon Graphics, Inc. Single connector attachment drive sled assembly having light pipe coupled to a rail
USD379623S (en) * 1996-02-12 1997-06-03 Jeff Wu Computer housing
EP0834880B1 (en) * 1996-10-03 2001-05-09 Hewlett-Packard Company, A Delaware Corporation Arrangement for mounting a subsystem unit
US5805420A (en) * 1996-04-09 1998-09-08 Scitex Digital Video, Inc. Mounting assembly for removable installation of electronic components into a housing
US5797767A (en) * 1996-05-31 1998-08-25 Berg Technology, Inc. Indicator light modular jack
US5761030A (en) * 1996-06-19 1998-06-02 Compaq Computer Corporation Electronic device with circuit board latching and retaining structure
US5912799A (en) * 1996-07-01 1999-06-15 Sun Microsystems, Inc. Multiple disk drive storage enclosure with ventilation
US5791753A (en) * 1996-08-29 1998-08-11 Compaq Computer Corp. Computer component handle assembly
US5734557A (en) * 1996-09-13 1998-03-31 Deli U.S.A., L.P. Mounting assembly for electronic equipment
US5790373A (en) * 1996-09-13 1998-08-04 Silicon Graphics, Inc. Disk drive loading mechanism
DE69627326T2 (en) * 1996-09-24 2004-03-04 Hewlett-Packard Co. (N.D.Ges.D.Staates Delaware), Palo Alto Computer with a mounting arrangement for an optional unit
US5757998A (en) * 1996-10-02 1998-05-26 International Business Machines Corporation Multigigabit adaptable transceiver module
US5816673A (en) * 1996-10-11 1998-10-06 Sauer; James P. Computer chassis assembly
US5933322A (en) * 1996-10-23 1999-08-03 Compaq Computer Corporation Computer docking station with integral base security system
KR100433510B1 (en) * 1996-10-28 2004-07-16 삼성전자주식회사 Compter having tool for fixing auxiliary storage to main body
US5738226A (en) * 1996-10-31 1998-04-14 Hewlett-Packard Company Guide piece and method for mounting to a chassis in multiple orientations
DE29619481U1 (en) * 1996-11-11 1997-12-11 Siemens Ag Subrack with at least one vertical mounting groove on the front
US6088222A (en) * 1996-11-14 2000-07-11 Dell Usa, L.P. Computer peripheral chassis frame structure having a split lance for location, electrical grounding, and load bearing of chassis carriers
US6049451A (en) * 1996-11-14 2000-04-11 Dell Usa, L.P. Mounting rail retaining pin aperture
US5959841A (en) * 1996-12-31 1999-09-28 Compaq Computer Corp. Modular computer chassis with extractor device mounted to the housing
US5896273A (en) * 1996-12-31 1999-04-20 Compaq Computer Corp. Modular computer chassis interchangeable between stand alone and rack mounted states
DE19718173C2 (en) * 1997-04-29 1999-03-18 Siemens Nixdorf Inf Syst Device for protecting a computer system against unauthorized pulling of a hardware component
SG79940A1 (en) * 1997-05-02 2001-04-17 Chen Chih Kung A grounding structure for extractable harddisk
US6324608B1 (en) * 1997-05-13 2001-11-27 Micron Electronics Method for hot swapping of network components
US6247080B1 (en) 1997-05-13 2001-06-12 Micron Electronics, Inc. Method for the hot add of devices
US6163849A (en) * 1997-05-13 2000-12-19 Micron Electronics, Inc. Method of powering up or powering down a server to a maintenance state
US6145098A (en) * 1997-05-13 2000-11-07 Micron Electronics, Inc. System for displaying system status
US6179486B1 (en) 1997-05-13 2001-01-30 Micron Electronics, Inc. Method for hot add of a mass storage adapter on a system including a dynamically loaded adapter driver
US6163853A (en) * 1997-05-13 2000-12-19 Micron Electronics, Inc. Method for communicating a software-generated pulse waveform between two servers in a network
US6134615A (en) * 1997-05-13 2000-10-17 Micron Electronics, Inc. System for facilitating the replacement or insertion of devices in a computer system through the use of a graphical user interface
US6266721B1 (en) 1997-05-13 2001-07-24 Micron Electronics, Inc. System architecture for remote access and control of environmental management
US6243773B1 (en) 1997-05-13 2001-06-05 Micron Electronics, Inc. Configuration management system for hot adding and hot replacing devices
US6219734B1 (en) 1997-05-13 2001-04-17 Micron Electronics, Inc. Method for the hot add of a mass storage adapter on a system including a statically loaded adapter driver
US6330690B1 (en) 1997-05-13 2001-12-11 Micron Electronics, Inc. Method of resetting a server
US6046742A (en) * 1997-05-13 2000-04-04 Micron Electronics, Inc. Display of system information
US6202111B1 (en) 1997-05-13 2001-03-13 Micron Electronics, Inc. Method for the hot add of a network adapter on a system including a statically loaded adapter driver
US6269417B1 (en) 1997-05-13 2001-07-31 Micron Technology, Inc. Method for determining and displaying the physical slot number of an expansion bus device
US6192434B1 (en) 1997-05-13 2001-02-20 Micron Electronics, Inc System for hot swapping a programmable adapter by using a programmable processor to selectively disabling and enabling power thereto upon receiving respective control signals
US6058445A (en) * 1997-05-13 2000-05-02 Micron Electronics, Inc. Data management method for adding or exchanging components on a running computer
US6195717B1 (en) 1997-05-13 2001-02-27 Micron Electronics, Inc. Method of expanding bus loading capacity
US6363497B1 (en) 1997-05-13 2002-03-26 Micron Technology, Inc. System for clustering software applications
US5892928A (en) * 1997-05-13 1999-04-06 Micron Electronics, Inc. Method for the hot add of a network adapter on a system including a dynamically loaded adapter driver
US6170028B1 (en) 1997-05-13 2001-01-02 Micron Electronics, Inc. Method for hot swapping a programmable network adapter by using a programmable processor to selectively disabling and enabling power thereto upon receiving respective control signals
US6249834B1 (en) 1997-05-13 2001-06-19 Micron Technology, Inc. System for expanding PCI bus loading capacity
US6418492B1 (en) 1997-05-13 2002-07-09 Micron Electronics Method for computer implemented hot-swap and hot-add
US6338150B1 (en) * 1997-05-13 2002-01-08 Micron Technology, Inc. Diagnostic and managing distributed processor system
US6249828B1 (en) 1997-05-13 2001-06-19 Micron Electronics, Inc. Method for the hot swap of a mass storage adapter on a system including a statically loaded adapter driver
US6425006B1 (en) 1997-05-13 2002-07-23 Micron Technology, Inc. Alert configurator and manager
US6243838B1 (en) 1997-05-13 2001-06-05 Micron Electronics, Inc. Method for automatically reporting a system failure in a server
US6173346B1 (en) 1997-05-13 2001-01-09 Micron Electronics, Inc. Method for hot swapping a programmable storage adapter using a programmable processor for selectively enabling or disabling power to adapter slot in response to respective request signals
US6292905B1 (en) 1997-05-13 2001-09-18 Micron Technology, Inc. Method for providing a fault tolerant network using distributed server processes to remap clustered network resources to other servers during server failure
US6253334B1 (en) 1997-05-13 2001-06-26 Micron Electronics, Inc. Three bus server architecture with a legacy PCI bus and mirrored I/O PCI buses
US6249885B1 (en) 1997-05-13 2001-06-19 Karl S. Johnson Method for managing environmental conditions of a distributed processor system
US6553416B1 (en) 1997-05-13 2003-04-22 Micron Technology, Inc. Managing computer system alerts
US6304929B1 (en) 1997-05-13 2001-10-16 Micron Electronics, Inc. Method for hot swapping a programmable adapter by using a programmable processor to selectively disabling and enabling power thereto upon receiving respective control signals
US6202160B1 (en) 1997-05-13 2001-03-13 Micron Electronics, Inc. System for independent powering of a computer system
US6269412B1 (en) 1997-05-13 2001-07-31 Micron Technology, Inc. Apparatus for recording information system events
US6105089A (en) * 1997-05-13 2000-08-15 Micron Electronics, Inc. Data management system for adding or exchanging components on a running computer
US6499073B1 (en) 1997-05-13 2002-12-24 Micron Electronics, Inc. System using programmable processor for selectively enabling or disabling power to adapter in response to respective request signals
US6134614A (en) * 1997-05-13 2000-10-17 Micron Electronics, Inc. Method for facilitating the replacement or insertion of devices in a computer system through the use of a graphical user interface
US5949645A (en) * 1997-06-02 1999-09-07 Northern Telecom Limited Electronic unit
US5806948A (en) * 1997-06-16 1998-09-15 Rowan, Sr.; W. Frank Retrofittable battery cabinet for telecommunications enclosures
US5973918A (en) * 1997-06-16 1999-10-26 Compaq Computer Corporation Aligned pivoting power supply tray and guided input/output tray for connection of the power supply and input/output to the computer motherboard
US5877939A (en) * 1997-07-16 1999-03-02 Samsung Electronics Co., Ltd. Snap door for a household electric appliance
EP0898219A1 (en) * 1997-08-22 1999-02-24 Compaq Computer Corporation Upgrading a storage media bay
US6034868A (en) * 1997-09-15 2000-03-07 Kingston Technology Company Expansion chassis having a removable wiring bracket and external computer memory
US5978821A (en) * 1997-09-17 1999-11-02 Automated Business Companies Smart modular electronic machine
US6137678A (en) * 1997-09-30 2000-10-24 Compaq Computer Corporation Configuring a computer system
US6138179A (en) * 1997-10-01 2000-10-24 Micron Electronics, Inc. System for automatically partitioning and formatting a primary hard disk for installing software in which selection of extended partition size is not related to size of hard disk
US6212585B1 (en) 1997-10-01 2001-04-03 Micron Electronics, Inc. Method of automatically configuring a server after hot add of a device
US6068661A (en) * 1997-10-01 2000-05-30 Micron Electronics, Inc. Method of emulating synchronous communication
US6175490B1 (en) 1997-10-01 2001-01-16 Micron Electronics, Inc. Fault tolerant computer system
US6263387B1 (en) 1997-10-01 2001-07-17 Micron Electronics, Inc. System for automatically configuring a server after hot add of a device
US6199173B1 (en) 1997-10-01 2001-03-06 Micron Electronics, Inc. Method for mapping environmental resources to memory for program access
US6061232A (en) * 1997-10-31 2000-05-09 Ho; Ming-Chiao Supporting bracket assembly for drawer-type hard-disk drive
US6125417A (en) * 1997-11-14 2000-09-26 International Business Machines Corporation Hot plug of adapters using optical switches
US5986881A (en) * 1997-11-17 1999-11-16 Hon Hai Precision Ind. Co., Ltd. Disk driver cage assembly with locking device
US5970030A (en) * 1997-12-02 1999-10-19 International Business Machines Corporation Automated data storage library component exchange using media accessor
US6580604B1 (en) 1997-12-23 2003-06-17 Dell U.S.A., L.P. Peripheral device bay with adapter plates
US5914855A (en) * 1997-12-30 1999-06-22 International Business Machines Corporation Apparatus and method for damping disk drive vibration
US5871264A (en) * 1998-01-20 1999-02-16 Ohara; Takeyoshi Structure of drawer type computer housing mounting system
US6272010B1 (en) 1998-01-27 2001-08-07 Dell Usa, L.P. Peripheral device mounting apparatus
US6799224B1 (en) 1998-03-10 2004-09-28 Quad Research High speed fault tolerant mass storage network information server
US6166901A (en) * 1998-03-13 2000-12-26 International Business Machines Corporation Vibration dampening system for removable hard disk drive carriers
GB2336248A (en) * 1998-04-08 1999-10-13 Ibm Accessory mounting for digital computer
US6260155B1 (en) 1998-05-01 2001-07-10 Quad Research Network information server
US6247944B1 (en) 1998-06-15 2001-06-19 Compaq Computer Corporation Slide-activated, spring-loaded ejector for hot-pluggable disk drive carrier
US6442021B1 (en) 1998-06-15 2002-08-27 Compaq Computer Corporation Hot-pluggable disk carrier having enhanced rotational drive vibration control capability
US6088221A (en) * 1998-06-15 2000-07-11 Compaq Computer Corporation Hot-pluggable disk drive carrier assembly with no loose parts
US6373696B1 (en) 1998-06-15 2002-04-16 Compaq Computer Corporation Hard drive cooling using finned heat sink and thermally conductive interface pad
US6084768A (en) * 1998-06-15 2000-07-04 Compaq Computer Corporation Non-operational shock protection for disk carriers in a high density package
GB2339080A (en) 1998-06-29 2000-01-12 Havant International Ltd Mounting and testing of electrical devices such as disc drives
US6205503B1 (en) 1998-07-17 2001-03-20 Mallikarjunan Mahalingam Method for the hot swap and add of input/output platforms and devices
US6223234B1 (en) 1998-07-17 2001-04-24 Micron Electronics, Inc. Apparatus for the hot swap and add of input/output platforms and devices
US6022224A (en) * 1998-07-22 2000-02-08 International Business Machines Corporation Shock mount connector for head disk assembly
US6988626B2 (en) 1998-07-31 2006-01-24 Varghese Paily T Computer component rack mounting arrangement
US6351786B2 (en) 1998-08-24 2002-02-26 Racal Instr Inc VXI backplane system improvements and methods
WO2000013054A1 (en) * 1998-09-02 2000-03-09 The Whitaker Corporation Transceiver housing and ejection mechanism therefore
US6058016A (en) * 1998-09-10 2000-05-02 International Business Machines Corporation Direct dock storage device carrier
US6154361A (en) * 1998-10-02 2000-11-28 International Business Machines Corporation Disk-drive chassis for reducing transmission of vibrations between disk-drive units of a disk-drive array
AU3479900A (en) * 1999-02-19 2000-09-04 General Dynamics Information Systems, Inc. Data storage housing
US6325353B1 (en) * 1999-03-08 2001-12-04 Intel Corporation Carrier for disk drive hot swapping
US6407913B1 (en) 1999-04-08 2002-06-18 Intel Corporation Removable carrier for hard disk drive
US6292359B1 (en) * 1999-05-10 2001-09-18 Micron Electronics, Inc. Component mount
US7271999B2 (en) * 1999-05-11 2007-09-18 Josef Rabinovitz Enclosure for computer peripheral devices
EP1185154B1 (en) * 1999-05-31 2006-10-18 Fujitsu Limited Communication device and plug unit
US6359836B1 (en) * 1999-06-09 2002-03-19 Hewlett-Packard Company Locking isolation mounting system for data storage modules
US6236563B1 (en) * 1999-06-30 2001-05-22 Dell Usa, L.P. Retention apparatus for a peripheral device
US6370022B1 (en) * 1999-07-13 2002-04-09 Gateway, Inc. Screwless computer drive assembly
US6885550B1 (en) * 1999-08-26 2005-04-26 Axxion Group Corporation Screw less clip mounted computer drive
US6320749B1 (en) * 1999-08-30 2001-11-20 John W. Ayres Zero height power unit shelf system
US6385036B1 (en) * 1999-09-10 2002-05-07 Robert C. Chien Screwless computer case assembly
US6233143B1 (en) 1999-09-22 2001-05-15 International Business Machines Corporation Shock dampening system for hard disk drive carrier
US6431718B1 (en) * 1999-09-22 2002-08-13 International Business Machines Corporation Interconnector and light pipe guide for disk drive and disk drive carrier
US6231224B1 (en) 1999-09-22 2001-05-15 International Business Machines Corporation Light pipe guide and carrier for hard disk drive
US6299266B1 (en) 1999-10-12 2001-10-09 Hewlett-Packard Company Mounting arrangement for computer and other units
US6460948B2 (en) * 1999-10-29 2002-10-08 Hewlett-Packard Company Drive bracket
US6304440B1 (en) * 1999-11-04 2001-10-16 Liken Lin Shock-proof device of external hard disk driver box
US6337793B1 (en) 1999-11-23 2002-01-08 Dell Usa, L.P. Apparatus and method for mounting a peripheral device in a computer system
TW447726U (en) * 1999-12-09 2001-07-21 Hon Hai Prec Ind Co Ltd Fixing device of data accessing device
US6467858B1 (en) 1999-12-23 2002-10-22 Gateway, Inc. Computer component retention tray
US6293636B1 (en) 1999-12-30 2001-09-25 Gateway, Inc. Device retention assembly
US6381139B1 (en) * 1999-12-30 2002-04-30 Silicon Graphics, Inc. Carrier for computer peripheral device
US6480398B1 (en) 2000-01-05 2002-11-12 Compaq Computer Corporation CPU easy access panels
US6685033B1 (en) 2000-03-03 2004-02-03 Dell Products L.P. System and apparatus enabling top, front and rear access to a rack mounted computer device
US6392879B1 (en) * 2000-03-15 2002-05-21 Compal Electronics, Inc. Disk drive mounting device for a portable computer
US6220456B1 (en) * 2000-04-19 2001-04-24 Dell Products, L.P. Method and apparatus for supporting a computer chassis
US6310769B1 (en) 2000-05-03 2001-10-30 Dell Products L.P. Mounting bracket assembly for system components in a computer
US6456489B1 (en) 2000-05-25 2002-09-24 Gateway, Inc. Device retention apparatus
US7263476B1 (en) * 2000-06-12 2007-08-28 Quad Research High speed information processing and mass storage system and method, particularly for information and application servers
US6351379B1 (en) * 2000-08-09 2002-02-26 Lite-On Enclosure Inc. Extracting and positioning structure for hard disk drive
US6373694B1 (en) * 2000-08-10 2002-04-16 Inventec Corporation Fastening device for hard disk
US7275646B2 (en) * 2000-11-07 2007-10-02 Innovation First, Inc. Apparatus and method for adapting two-post rack systems to support four-post rack mounted equipment
US6487081B2 (en) 2000-12-29 2002-11-26 Compaq Information Technologies Group, L.P. Hard disk drive mounting system and method
US6452793B1 (en) * 2001-01-26 2002-09-17 Micron Technology, Inc. Apparatuses and methods for preventing disengagement of electrical connectors in the assembly of computers
GB2372872A (en) * 2001-03-03 2002-09-04 John Eric Dowell Computer hard drive rack
US6401475B1 (en) 2001-04-23 2002-06-11 International Business Machines Corporation Temperature adjustment module and method using same
US6616252B2 (en) * 2001-07-30 2003-09-09 Hewlett-Packard Development Company, L.P. Permanently attached rackmount handles and spacing brackets
US6746254B2 (en) 2001-08-10 2004-06-08 Axxion Group Corporation Screwless circuit board attachment
US6618254B2 (en) 2001-09-05 2003-09-09 Hewlett-Packard Development Company, L.P. Methods and apparatus for securing disk drives in a disk array
US6976745B2 (en) * 2001-09-19 2005-12-20 Hewlett-Packard Development Company, L.P. Snap-on slide and rail assembly
US6702412B2 (en) 2001-09-19 2004-03-09 Hewlett-Packard Development Company, L.P. Expandable slide and rail assembly for a rack and method of installing same
US6614653B2 (en) 2001-10-03 2003-09-02 International Business Machines Corporation Disk drive insertion tool and method
US6616106B1 (en) 2002-02-21 2003-09-09 Hewlett-Packard Development Company, L.P. System and means for the secure mounting of a device bracket
US6666414B2 (en) * 2002-02-21 2003-12-23 Hewlett-Packard Development Company, L.P. Deformable mounting bracket
US7134558B1 (en) * 2002-03-14 2006-11-14 Innovation First, Inc. Universal rack mountable shelf
US6625014B1 (en) 2002-05-07 2003-09-23 Hewlett-Packard Development Company, L.P. System and method for situating a disk drive
US7201279B1 (en) * 2002-07-18 2007-04-10 Innovation First, Inc. Sliding rack-mountable shelf for rack-mountable components
US6795309B2 (en) * 2002-09-20 2004-09-21 Quantum Corporation Tool-less field replaceable peripheral mounting system
KR100404777B1 (en) * 2002-10-26 2003-11-07 Id Digital Co Ltd Digital set-top box having detachable storage element, and method for storing digital broadcast program
US7012808B2 (en) * 2002-12-20 2006-03-14 Hewlett-Packard Development Company, L.P. Multi-configurable telecommunications rack mounting system and method incorporating same
US6853548B2 (en) * 2003-01-02 2005-02-08 Quantum Corporation 1U rack mount equipment enclosure with increased structural support
US7137512B2 (en) * 2003-02-19 2006-11-21 Hewlett-Packard Development Company, L.P. Removable rails for use on racks
US20050092727A1 (en) * 2003-03-20 2005-05-05 Fraley Peter D. Independent electronics equipment heater using phase width modulation
TW577617U (en) * 2003-04-25 2004-02-21 Hon Hai Prec Ind Co Ltd Button structure assembly for optical disk drive
US6884096B2 (en) * 2003-04-29 2005-04-26 International Business Machines Corporation Apparatus for positioning an electrical assembly within a housing
US20040217073A1 (en) * 2003-05-01 2004-11-04 Dobler Karl J. System and method for utilizing a tool-less rail in a rack
US7121854B2 (en) * 2003-05-28 2006-10-17 Eastway Fair Company Limited Slide type battery ejection mechanism
US6955549B2 (en) * 2003-05-28 2005-10-18 One World Technologies Limited Slide type battery ejection mechanism
US20050007747A1 (en) * 2003-07-11 2005-01-13 Michael Axelrod Metal electronics device enclosure
US20050051672A1 (en) * 2003-09-04 2005-03-10 Dean Ronald Paul System and means for the secure mounting of a device bracket
US6972948B1 (en) * 2003-09-05 2005-12-06 New Gerald W Computer drawer assembly
US20050152061A1 (en) * 2003-10-31 2005-07-14 Havard Hoelsaeter Configurable storage system with swappable tape magazines and hard-disk magazines
TWM250209U (en) * 2004-01-20 2004-11-11 Quanta Comp Inc Slidable motherboard tray structure
TWM255625U (en) * 2004-03-05 2005-01-11 Quanta Comp Inc Extendable tray structure
US7634784B2 (en) 2004-04-08 2009-12-15 Hewlett-Packard Development Company, L.P. Data storage means
US7280352B2 (en) * 2004-06-07 2007-10-09 Sun Microsystems, Inc. Drive carrier
US7215506B2 (en) * 2004-06-30 2007-05-08 Hitachi Global Storage Technologies Netherlands B.V. Hard disk drive (HDD) assembly of small form-factor HDD shock-mounted in frame having dimensions of larger form-factor HDD
US7901723B2 (en) * 2004-08-31 2011-03-08 Restaurant Technology, Inc. Food tray
US7083444B1 (en) * 2005-03-14 2006-08-01 International Business Machines Corporation Daughterboard with sense and release system
US7324349B2 (en) * 2005-04-26 2008-01-29 Dell Products L.P. Method and apparatus for coupling a modular component to a chassis
US20060243472A1 (en) * 2005-04-28 2006-11-02 Datavan International Corp. [mainframe mounting structure]
US7447010B2 (en) * 2005-07-28 2008-11-04 Inventec Corporation Supporting mechanism for storage drives
CN100489731C (en) * 2005-09-30 2009-05-20 鸿富锦精密工业(深圳)有限公司 Pin of cradle server
US7447011B2 (en) * 2005-12-01 2008-11-04 Xyratex Technology Limited Data storage device carrier and carrier tray
US7835154B2 (en) * 2006-06-30 2010-11-16 Siemens Industry, Inc. Electronic module having a locking member and system including same
TWI409804B (en) * 2006-07-17 2013-09-21 Xyratex Tech Ltd Dongles and methods of manufacturing a dongle
DE102006034402B3 (en) * 2006-07-25 2007-12-20 Fujitsu Siemens Computers Gmbh Mounting frame for regulating computer component, has two side parts, computer component and heading section fixed with side parts, where pivoted unlocking lever is arranged at frame
CN100449472C (en) * 2006-09-08 2009-01-07 华为技术有限公司 Method and apparatus for treating disc hot insert
US7460365B2 (en) * 2006-10-02 2008-12-02 Dell Products L.P. Interposer for a drive bay
US7525796B2 (en) * 2006-11-29 2009-04-28 Foreshot Industrial Corporation Storage device
US7782605B2 (en) * 2006-12-01 2010-08-24 Hon Hai Precision Industry Co., Ltd. Drive bracket assembly
US7990724B2 (en) 2006-12-19 2011-08-02 Juhasz Paul R Mobile motherboard
US7660108B2 (en) * 2007-01-25 2010-02-09 International Business Machines Corporation Apparatus for positioning electronic component modules within an equipment chassis
US8050027B2 (en) * 2007-07-05 2011-11-01 Ablecom Technology Incorporated Data cartridge device for computer equipment
US7601026B2 (en) * 2007-07-31 2009-10-13 Hitachi Global Storage Technologies Netherlands B.V. Card-through-connector fastener for reducing connector distortion
US8023260B2 (en) * 2007-09-04 2011-09-20 Apple Inc. Assembly of an electronic device
US7864539B2 (en) * 2008-04-11 2011-01-04 Lsi Corporation Horizontal drive drawer system and method
DE102008019763B4 (en) * 2008-04-18 2019-02-21 Phoenix Contact Gmbh & Co. Kg Assembly with a fastening device for releasably latching holder of an electrical distributor
US20100110628A1 (en) * 2008-10-30 2010-05-06 Mark Barrenechea Apparatus and Method for Enhancing the Maintainability and Cooling of Computer Components on Trays in a Cabinet
CN201348758Y (en) * 2009-01-05 2009-11-18 鸿富锦精密工业(深圳)有限公司 Disk drive extraction structure
BRPI0901450A2 (en) * 2009-05-04 2011-01-18 Weg Automacao S A communication protocol interface module
CN102081952B (en) * 2009-11-27 2015-04-15 中山市云创知识产权服务有限公司 Hard disk fixing device
CN102136912B (en) * 2010-01-25 2013-06-05 鸿富锦精密工业(深圳)有限公司 Plug device and communication equipment using same
TWI383733B (en) * 2010-01-26 2013-01-21 Hon Hai Prec Ind Co Ltd Handle assembly and communication device
DE102010012044A1 (en) 2010-03-19 2011-09-22 Friedrich-Schiller-Universität Jena Structured silicon layer for e.g. silicon solar cell, has boundary surface with bent partial surfaces exhibiting nano-structure that is extended into layer upto depth between four hundred nanometer and five micrometer
CN102215645A (en) * 2010-04-07 2011-10-12 鸿富锦精密工业(深圳)有限公司 Assembly and disassembly structure for connection card
EP2378388A1 (en) * 2010-04-13 2011-10-19 Siemens Aktiengesellschaft Computer with a housing and a storage drive
CN102236384A (en) * 2010-04-23 2011-11-09 鸿富锦精密工业(深圳)有限公司 Electronic device combination
CN102281735B (en) * 2010-06-08 2016-03-30 赛恩倍吉科技顾问(深圳)有限公司 Server fixing structure
CN102298426B (en) * 2010-06-28 2016-08-24 上海力锐网络科技有限公司 Pulling-out fixed structure
KR101255340B1 (en) * 2010-11-16 2013-04-16 도시바삼성스토리지테크놀러지코리아 주식회사 Multimedia device
US8416563B2 (en) * 2011-01-14 2013-04-09 Chicony Power Technology Co., Ltd. Swapping apparatus of electronic device
US8644017B2 (en) 2011-05-26 2014-02-04 Lsi Corporation Storage device carriers for adapting a storage device of a first size to a slot for a storage device of a second size
US8717752B2 (en) 2011-06-28 2014-05-06 Lsi Corporation Drive enclosures for tool-less removable mounting of solid state drives onto printed circuit board devices
US8654525B2 (en) * 2012-02-02 2014-02-18 Hewlett-Packard Development Company, L.P. Clips and latch to receive a computing component
TWM436911U (en) * 2012-02-10 2012-09-01 Cal Comp Electronics & Comm Co Network attached storage device
TWI548329B (en) * 2012-06-07 2016-09-01 Tseng Ching Chao Active ear holder and equipment auxiliary replacement device
CN103533799B (en) * 2012-07-06 2016-08-17 曾庆照 Activity ear mount and comprise the equipment auxiliary replacement device of this activity ear mount
CN103823517B (en) * 2012-11-19 2017-02-08 英业达科技有限公司 Hard disk frame and server
US8758040B2 (en) * 2012-11-29 2014-06-24 Eaton Corporation Systems and methods for aligning and connecting electrical components
US9420716B2 (en) * 2013-07-02 2016-08-16 Atlas Sound Lp Electronic module installation tools for electronic racks
US9320169B2 (en) * 2013-07-03 2016-04-19 Dell Products, L.P. Modular dense storage array
CN104516445B (en) * 2013-09-30 2017-09-29 纬创资通股份有限公司 The self-locking structure of bogey and bogey
USD736770S1 (en) * 2014-03-05 2015-08-18 Inx8 Inc. Drive carrier for external storage enclosure
USD736769S1 (en) * 2014-03-05 2015-08-18 Inx8 Inc. Drive carrier for external storage enclosure
CN105578833B (en) * 2014-10-14 2019-06-28 鸿富锦精密电子(天津)有限公司 Slide rail interlocking device and electronic device provided with same
US9913395B2 (en) * 2014-12-05 2018-03-06 Seagate Technology Llc Data storage enclosure with latch feature
WO2016099513A1 (en) 2014-12-18 2016-06-23 Hewlett Packard Enterprise Development Lp Storage drive adapter
DE102015100409B3 (en) * 2015-01-13 2016-03-17 Fujitsu Technology Solutions Intellectual Property Gmbh Frame for mounting a drawer assembly in a slot, computer system with a slot and slot
DE102015105482B4 (en) * 2015-04-10 2019-02-07 Rittal Gmbh & Co. Kg Control cabinet or rack for receiving electrical energy storage, especially batteries, and a corresponding cabinet or rack assembly
DE102015121292A1 (en) * 2015-12-07 2017-06-08 Eaton Electrical Ip Gmbh & Co. Kg Bus arrangement with a first subscriber arrangement and method for operating a bus arrangement
US10481648B2 (en) * 2016-01-28 2019-11-19 Hewlett Packard Enterprise Development Lp Securing an expansion card in a computing device
JP6198086B1 (en) * 2016-03-29 2017-09-20 Necプラットフォームズ株式会社 Board guide member and housing
US9743547B1 (en) * 2016-04-19 2017-08-22 Western Digital Technologies, Inc. Switchable mechanical constraint for electrical connector with compliant mounting
US10757829B2 (en) * 2016-04-24 2020-08-25 Rahi Systems Inc. Modular server
US9861011B1 (en) 2016-06-22 2018-01-02 HGST Netherlands B.V. Stackable sleds for storing electronic devices
US10390114B2 (en) * 2016-07-22 2019-08-20 Intel Corporation Memory sharing for physical accelerator resources in a data center
TWM545426U (en) * 2017-02-20 2017-07-11 Super Micro Computer Inc Server device
US9894796B1 (en) 2017-03-15 2018-02-13 International Business Machines Corporation Slam latch
US9939857B1 (en) 2017-03-20 2018-04-10 Hewlett Packard Enterprise Development Lp Chassis and hard drive
CN107464576B (en) * 2017-08-07 2019-05-28 郑州云海信息技术有限公司 A kind of hard disk mould group tool-free quick disassembly and assembly device
US11229140B2 (en) * 2017-11-28 2022-01-18 Seagate Technology Llc Device carriers
US11489274B2 (en) * 2017-12-22 2022-11-01 Ting-Jui Wang Quick release connecting device
JP6599967B2 (en) * 2017-12-25 2019-10-30 ファナック株式会社 Electronic equipment
JP6599966B2 (en) * 2017-12-25 2019-10-30 ファナック株式会社 Electronic equipment
TWI652977B (en) * 2018-02-13 2019-03-01 緯創資通股份有限公司 a casing and a host including the casing
CN110794928B (en) * 2018-08-01 2023-05-02 联想企业解决方案(新加坡)有限公司 Support device
US10706894B1 (en) * 2019-01-09 2020-07-07 Super Micro Computer Inc. Data storage device for server
JP6947766B2 (en) * 2019-02-13 2021-10-13 ファナック株式会社 Electronic device
JP7063836B2 (en) * 2019-03-22 2022-05-09 ファナック株式会社 Circuit board omission prevention structure and numerical control device
CN112083765B (en) * 2019-06-14 2023-01-06 纬联电子科技(中山)有限公司 Server equipment and tray mechanism thereof
TWI688319B (en) * 2019-07-29 2020-03-11 緯創資通股份有限公司 Electronic device capable of providing a restraining installation sequence for different modules and case module thereof
CN112445294A (en) * 2019-08-27 2021-03-05 纬联电子科技(中山)有限公司 Fixing assembly, shell assembly and electronic device
US10939573B1 (en) * 2019-08-28 2021-03-02 Dell Products, L.P. Electronic module carrier for an information handling system
US11294436B2 (en) * 2020-01-30 2022-04-05 Dell Products L.P. Modular removable air mover for dual access
CN113782064B (en) * 2020-06-09 2023-04-14 英业达科技有限公司 Hard disk fixing assembly
CN114265477B (en) * 2020-09-16 2024-04-05 纬联电子科技(中山)有限公司 Electronic device and board module thereof
CN114253362B (en) * 2020-09-23 2023-09-26 戴尔产品有限公司 Carrier for supporting nested replaceable hardware components
CN112037826A (en) * 2020-09-27 2020-12-04 记忆科技(深圳)有限公司 Structure convenient for hard disk maintenance and hard disk maintenance method
CN114811540A (en) * 2021-01-28 2022-07-29 常州鹏凯电子有限公司 Vertical multifunctional driving power supply
TWD218655S (en) * 2021-09-17 2022-05-01 緯穎科技服務股份有限公司 Handle
TWI771193B (en) * 2021-09-23 2022-07-11 緯穎科技服務股份有限公司 Unlock mechanism and server
CN114727535B (en) * 2022-03-18 2023-10-03 国网山东省电力公司惠民县供电公司 Electric power communication management machine

Citations (32)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP0029484A1 (en) * 1979-11-21 1981-06-03 Contraves Ag Locking and extraction member
CA1123503A (en) * 1979-09-18 1982-05-11 Northern Telecom Limited Latching lever for printed circuit boards
US4530615A (en) * 1984-07-02 1985-07-23 Nikko Kogyo Kabushiki Kaisha Locking and releasing device for use with a panel plate
US4550362A (en) * 1982-11-22 1985-10-29 Gte Automatic Electric Inc. Board positioning arrangement
US4579478A (en) * 1984-12-24 1986-04-01 Nifco Inc. Sheet part fixing device
US4692571A (en) * 1986-09-02 1987-09-08 Motorola, Inc. Panel assembly with easily detachable switch actuators
US4694380A (en) * 1986-06-11 1987-09-15 Tektronix, Inc. Carrier tray for circuit board
US4742608A (en) * 1982-04-19 1988-05-10 General Electric Company Method of retaining molded case circuit breakers
EP0278358A1 (en) * 1987-02-06 1988-08-17 Sony Corporation Disk for recording and/or reproducing apparatus having magnetic chucking device
US4840568A (en) * 1987-03-31 1989-06-20 Adc Telecommunications, Inc. Jack assembly
EP0349285A2 (en) * 1988-06-27 1990-01-03 Teknekron Infoswitch Corporation Plug-in card module
US4894739A (en) * 1986-07-04 1990-01-16 Teac Corporation Disc recording and/or reproducing apparatus
US4896777A (en) * 1988-04-06 1990-01-30 Digital Equipment Corporation Lock and shock mounted device for computer disk drive
US4912580A (en) * 1984-01-17 1990-03-27 Norand Corporation Information storage system with readily removable high capacity disk drive unit
US4941841A (en) * 1988-06-09 1990-07-17 Darden Julius C Adapter and a removable slide-in cartridge for an information storage system
US4979909A (en) * 1989-12-18 1990-12-25 Hewlett-Packard Company Release apparatus for computer mass storage devices
FR2649854A1 (en) * 1989-07-12 1991-01-18 Cit Alcatel Band for a printed-circuit board
US5003431A (en) * 1989-12-18 1991-03-26 Unisys Corporation Insertion, extraction, and clamping apparatus for electrical modules
EP0425175A2 (en) * 1989-10-27 1991-05-02 International Business Machines Corporation Grounding structure for rail-mounted devices employed in a computer
EP0428294A2 (en) * 1989-11-13 1991-05-22 International Business Machines Corporation Deflectable contact for providing positive surface contact for shielding electromagnetic interference
US5045960A (en) * 1989-06-13 1991-09-03 Zenith Data Systems Corporation Self-aligning guide and track for removable disk drive module
US5112119A (en) * 1989-10-27 1992-05-12 International Business Machines Corp. Support structure for devices in a computer apparatus
EP0488679A2 (en) * 1990-11-30 1992-06-03 Fujitsu Limited Storage disk module and storage disk device having a plurality of storage disk modules
US5187643A (en) * 1992-02-04 1993-02-16 Shou Tsai I Computer mounting structure for a detachable hard disk drive
US5216578A (en) * 1990-09-04 1993-06-01 Fujitsu Limited Structure for holding packages on backboard of electronics apparatus
US5233594A (en) * 1991-05-02 1993-08-03 Wilhelm Joseph R Easily installable removable integrated hard disk and controller
US5299944A (en) * 1992-11-16 1994-04-05 Larabell Henri J Universal bracket and assembly slide for storage devices
US5325263A (en) * 1991-07-22 1994-06-28 Silicon Graphics, Inc. Rack and pinion retaining and release device for removable computer components
US5332306A (en) * 1992-06-05 1994-07-26 Compaq Computer Corporation Computer disk drive mounting apparatus
US5340340A (en) * 1992-09-24 1994-08-23 Compaq Computer Corporation Apparatus for removably supporting a plurality of hot plug-connected hard disk drives
US5596484A (en) * 1991-02-22 1997-01-21 Sony Corporation Mounting device for mounting a small electronic device in a space for a larger electronic device
US5673171A (en) * 1995-12-05 1997-09-30 Compaq Computer Corporation Hard disc drive support tray apparatus with built-in handling shock reduction, EMI shielding and mounting alignment structures

Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4377315A (en) * 1981-02-09 1983-03-22 Bell Telephone Laboratories, Incorporated Circuit board keying arrangement
US4574332A (en) * 1983-06-29 1986-03-04 Calabro Anthony Denis Cage apparatus for printed circuit boards and method for preventing sharp spikes in the signal applied to said printed circuit boards
US4537454A (en) * 1983-07-25 1985-08-27 Amp Incorporated Intercard-extraction means
JPH0690872B2 (en) * 1986-08-18 1994-11-14 東京電気株式会社 Memory card device
JPH01162400A (en) * 1987-12-18 1989-06-26 Matsushita Electric Ind Co Ltd Electric equipment case

Patent Citations (32)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CA1123503A (en) * 1979-09-18 1982-05-11 Northern Telecom Limited Latching lever for printed circuit boards
EP0029484A1 (en) * 1979-11-21 1981-06-03 Contraves Ag Locking and extraction member
US4742608A (en) * 1982-04-19 1988-05-10 General Electric Company Method of retaining molded case circuit breakers
US4550362A (en) * 1982-11-22 1985-10-29 Gte Automatic Electric Inc. Board positioning arrangement
US4912580A (en) * 1984-01-17 1990-03-27 Norand Corporation Information storage system with readily removable high capacity disk drive unit
US4530615A (en) * 1984-07-02 1985-07-23 Nikko Kogyo Kabushiki Kaisha Locking and releasing device for use with a panel plate
US4579478A (en) * 1984-12-24 1986-04-01 Nifco Inc. Sheet part fixing device
US4694380A (en) * 1986-06-11 1987-09-15 Tektronix, Inc. Carrier tray for circuit board
US4894739A (en) * 1986-07-04 1990-01-16 Teac Corporation Disc recording and/or reproducing apparatus
US4692571A (en) * 1986-09-02 1987-09-08 Motorola, Inc. Panel assembly with easily detachable switch actuators
EP0278358A1 (en) * 1987-02-06 1988-08-17 Sony Corporation Disk for recording and/or reproducing apparatus having magnetic chucking device
US4840568A (en) * 1987-03-31 1989-06-20 Adc Telecommunications, Inc. Jack assembly
US4896777A (en) * 1988-04-06 1990-01-30 Digital Equipment Corporation Lock and shock mounted device for computer disk drive
US4941841A (en) * 1988-06-09 1990-07-17 Darden Julius C Adapter and a removable slide-in cartridge for an information storage system
EP0349285A2 (en) * 1988-06-27 1990-01-03 Teknekron Infoswitch Corporation Plug-in card module
US5045960A (en) * 1989-06-13 1991-09-03 Zenith Data Systems Corporation Self-aligning guide and track for removable disk drive module
FR2649854A1 (en) * 1989-07-12 1991-01-18 Cit Alcatel Band for a printed-circuit board
EP0425175A2 (en) * 1989-10-27 1991-05-02 International Business Machines Corporation Grounding structure for rail-mounted devices employed in a computer
US5112119A (en) * 1989-10-27 1992-05-12 International Business Machines Corp. Support structure for devices in a computer apparatus
EP0428294A2 (en) * 1989-11-13 1991-05-22 International Business Machines Corporation Deflectable contact for providing positive surface contact for shielding electromagnetic interference
US4979909A (en) * 1989-12-18 1990-12-25 Hewlett-Packard Company Release apparatus for computer mass storage devices
US5003431A (en) * 1989-12-18 1991-03-26 Unisys Corporation Insertion, extraction, and clamping apparatus for electrical modules
US5216578A (en) * 1990-09-04 1993-06-01 Fujitsu Limited Structure for holding packages on backboard of electronics apparatus
EP0488679A2 (en) * 1990-11-30 1992-06-03 Fujitsu Limited Storage disk module and storage disk device having a plurality of storage disk modules
US5596484A (en) * 1991-02-22 1997-01-21 Sony Corporation Mounting device for mounting a small electronic device in a space for a larger electronic device
US5233594A (en) * 1991-05-02 1993-08-03 Wilhelm Joseph R Easily installable removable integrated hard disk and controller
US5325263A (en) * 1991-07-22 1994-06-28 Silicon Graphics, Inc. Rack and pinion retaining and release device for removable computer components
US5187643A (en) * 1992-02-04 1993-02-16 Shou Tsai I Computer mounting structure for a detachable hard disk drive
US5332306A (en) * 1992-06-05 1994-07-26 Compaq Computer Corporation Computer disk drive mounting apparatus
US5340340A (en) * 1992-09-24 1994-08-23 Compaq Computer Corporation Apparatus for removably supporting a plurality of hot plug-connected hard disk drives
US5299944A (en) * 1992-11-16 1994-04-05 Larabell Henri J Universal bracket and assembly slide for storage devices
US5673171A (en) * 1995-12-05 1997-09-30 Compaq Computer Corporation Hard disc drive support tray apparatus with built-in handling shock reduction, EMI shielding and mounting alignment structures

Non-Patent Citations (4)

* Cited by examiner, † Cited by third party
Title
IBM Technical Disclosure Bulletin, vol. 33, No. 12, May, 1991, "Removable Tray Assembly", pp. 178-183.
IBM Technical Disclosure Bulletin, vol. 33, No. 12, May, 1991, Removable Tray Assembly , pp. 178 183. *
Patent Abstracts of Japan, vol. 13, No. 435, (E 825), Sep. 28, 1989. *
Patent Abstracts of Japan, vol. 13, No. 435, (E-825), Sep. 28, 1989.

Cited By (64)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6240058B1 (en) * 1996-07-11 2001-05-29 Nsm Aktiengesellschaft Disk-changing unit with modular design
US6788997B1 (en) * 1998-06-01 2004-09-07 Medselect, Inc. Medical cabinet with adjustable drawers
US6178091B1 (en) * 1998-07-09 2001-01-23 Dell Usa, L.P. Computer system having surface mount PWB grounding clips
US6301105B2 (en) * 1998-10-13 2001-10-09 Avid Technology, Inc. Disk drive enclosure
US6256204B1 (en) * 1999-03-19 2001-07-03 International Business Machines Corporation Injection molded disk drive carrier with integral latch and wire form retention
US6275382B1 (en) 1999-04-13 2001-08-14 Dell Usa, L.P. Apparatus for mounting a peripheral device in a computer system
US6310777B1 (en) * 1999-04-17 2001-10-30 John Knott Electronic apparatus
US6462953B2 (en) 1999-08-03 2002-10-08 Belkin Components Universal serial bus module and system
US6304439B1 (en) 1999-08-30 2001-10-16 Connex, Total Technologies, Inc. Disk drive sled insertion and removal system
US6619766B1 (en) 1999-10-12 2003-09-16 Gateway, Inc. Device mounting and retention assembly
US6377448B1 (en) * 1999-11-08 2002-04-23 Hon Hai Precision Ind. Co., Ltd. Device housing with a grounding clip
US6560102B1 (en) 2000-10-23 2003-05-06 Belkin Components Universal serial bus docking station
US6525933B2 (en) 2001-01-31 2003-02-25 Hewlett-Packard Company Computer peripheral mounting bracket
US6529374B2 (en) * 2001-02-26 2003-03-04 Teac Corporation Electronic apparatus
US6532150B2 (en) 2001-05-31 2003-03-11 American Megatrends, Inc. Disk drive carrier apparatus and associated method
US20030030991A1 (en) * 2001-08-10 2003-02-13 Riddiford Martin P. Support module ejection mechanism
US6912132B2 (en) * 2001-08-10 2005-06-28 Sun Microsystems, Inc. Support module ejection mechanism
US20030223199A1 (en) * 2002-05-31 2003-12-04 Racksaver, Inc. Rack mountable computer component and method of making same
US7420805B2 (en) 2002-05-31 2008-09-02 Verari Systems, Inc. Method and apparatus for rack mounting computer components
US20030224645A1 (en) * 2002-05-31 2003-12-04 Racksaver, Inc. Rack mountable computer component power distribution unit and method
US20030223193A1 (en) * 2002-05-31 2003-12-04 Racksaver, Inc. Method and apparatus for rack mounting computer components
US6801428B2 (en) 2002-05-31 2004-10-05 Racksaver, Inc. Rack mountable computer component fan cooling arrangement and method
US6836030B2 (en) 2002-05-31 2004-12-28 Verari Systems, Inc. Rack mountable computer component power distribution unit and method
US20050024825A1 (en) * 2002-05-31 2005-02-03 Smith John V. Rack mountable computer component fan cooling arrangement and method
US6909611B2 (en) 2002-05-31 2005-06-21 Verari System, Inc. Rack mountable computer component and method of making same
US6867966B2 (en) 2002-05-31 2005-03-15 Verari Systems, Inc. Method and apparatus for rack mounting computer components
US6560099B1 (en) * 2002-07-10 2003-05-06 Cheng-Chun Chang Double interface external box for a computer
US20040057216A1 (en) * 2002-09-25 2004-03-25 Smith John V. Electronic component rack assembly and method
US20050094355A1 (en) * 2003-08-26 2005-05-05 Belkin Corporation Universal serial bus hub and method of manufacturing same
US8014170B2 (en) 2003-08-26 2011-09-06 Belkin International, Inc. Cable management device and method of cable management
US20050047099A1 (en) * 2003-08-26 2005-03-03 Belkin Corporation Universal serial bus hub and method of manufacturing same
US7167372B2 (en) 2003-08-26 2007-01-23 Belkin Corporation Universal serial bus hub and method of manufacturing same
US20080133813A1 (en) * 2003-08-26 2008-06-05 Belkin International, Inc. Universal Serial Bus Hub Attachably Stackable In Multiple Orientations, And Method
US20060256539A1 (en) * 2003-08-26 2006-11-16 Belkin Corporation Universal serial bus hub and method of manufacturing same
US20060256538A1 (en) * 2003-08-26 2006-11-16 Belkin Corporation Universal serial bus hub and method of connecting peripheral devices to computers
US7329152B2 (en) 2003-08-26 2008-02-12 Belkin International, Inc. Universal serial bus hub and method of manufacturing same
US7054153B2 (en) 2003-10-31 2006-05-30 Hewlett-Packard Development Company, L.P. Mount for computer drive
US20050094366A1 (en) * 2003-10-31 2005-05-05 Lewis Jeffrey M. Mount for computer drive
US20060050477A1 (en) * 2004-09-09 2006-03-09 Wu Victor C Mass storage cradle device
US7428742B2 (en) * 2004-09-09 2008-09-23 Victor Chuan-Chen Wu Mass storage cradle device
US7362565B2 (en) 2004-09-21 2008-04-22 Dot Hill Systems Corporation Disk drive support system
US20060061955A1 (en) * 2004-09-21 2006-03-23 Imblum Raymond W Disk drive support system
US20060286840A1 (en) * 2005-06-20 2006-12-21 Belkin Corporation Multi-standard connection hub and method of manufacturing same
US7381095B2 (en) 2005-06-20 2008-06-03 Belkin International, Inc. Multi-standard connection hub and method of manufacturing same
US20070167071A1 (en) * 2006-01-13 2007-07-19 Hon Hai Precision Industry Co., Ltd. Mounting apparatus for circuit board
US7518877B2 (en) 2006-01-13 2009-04-14 Hong Fu Jin Precision Industry (Shenzhen) Co., Ltd. Mounting apparatus for circuit board
US20080200064A1 (en) * 2007-01-05 2008-08-21 Belkin International, Inc. Electrical Grommet Device
US7806723B2 (en) 2007-01-05 2010-10-05 Belkin International, Inc. Electrical grommet device
US7782603B2 (en) 2007-03-28 2010-08-24 International Business Machines Corporation Tool-less electronic component retention
US20080239651A1 (en) * 2007-03-28 2008-10-02 International Business Machines Corporation Tool-less electronic component retention
US20080239650A1 (en) * 2007-03-28 2008-10-02 International Business Machines Corporation Mounting electronic components
US8297999B2 (en) * 2007-06-12 2012-10-30 Toyota Jidosha Kabushiki Kaisha Connector structure of electrical equipment and vehicle
US20100184322A1 (en) * 2007-06-12 2010-07-22 Toyota Jidosha Kabushiki Kaisha Connector structure of electrical equipment and vehicle
US20110043986A1 (en) * 2008-04-30 2011-02-24 Conn Kevin D Power supply assembly for server rack and method for mounting power supply for server rack
US8441786B2 (en) * 2009-09-22 2013-05-14 Jabil Circuit, Inc. Electronic connectors and form factor adapters for electronic components
US20110069443A1 (en) * 2009-09-22 2011-03-24 Jabil Circuit, Inc. Electronic connectors and form factor adapters for electronic components
AT511424A1 (en) * 2011-04-26 2012-11-15 Zizala Lichtsysteme Gmbh LOCKING DEVICE FOR CONNECTING COMPONENTS
AT511424B1 (en) * 2011-04-26 2014-06-15 Zizala Lichtsysteme Gmbh LOCKING DEVICE FOR CONNECTING COMPONENTS
US20130250524A1 (en) * 2012-03-20 2013-09-26 Brocade Communications Systems, Inc. Compact Flash Retainer
US10015900B2 (en) * 2012-03-20 2018-07-03 Brocade Communications Systems LLC Compact flash retainer
US20130279129A1 (en) * 2012-04-23 2013-10-24 Wistron Corporation Storage device assembling module and electronic apparatus using the same
US9207709B2 (en) * 2012-04-23 2015-12-08 Wistron Corporation Storage device assembling module and electronic apparatus using the same
US20140076829A1 (en) * 2012-09-20 2014-03-20 Hon Hai Precision Industry Co., Ltd. Rack for electronic apparatus
US8985345B2 (en) * 2012-09-20 2015-03-24 Zhongshan Innocloud Intellectual Property Services Co., Ltd. Rack for electronic apparatus

Also Published As

Publication number Publication date
EP0589708A2 (en) 1994-03-30
DE69330224D1 (en) 2001-06-21
US5340340A (en) 1994-08-23
US5277615A (en) 1994-01-11
CA2106626A1 (en) 1994-03-25
EP0589708B1 (en) 2001-05-16
DE69330224T2 (en) 2001-09-06
EP0589708A3 (en) 1995-08-30
ATE201279T1 (en) 2001-06-15
CA2106626C (en) 2003-02-04

Similar Documents

Publication Publication Date Title
USRE35915E (en) Apparatus for removably supporting a plurality of hot plug-connected hard disk drives
US5566383A (en) Drive platform assembly with rotatable mounting brackets and automatic grounding bracket
US5673172A (en) Apparatus for electromagnetic interference and electrostatic discharge shielding of hot plug-connected hard disk drives
CA2328231C (en) Circuit card insertion and removal system
EP0834880B1 (en) Arrangement for mounting a subsystem unit
US5673171A (en) Hard disc drive support tray apparatus with built-in handling shock reduction, EMI shielding and mounting alignment structures
US6064568A (en) Computer system with peripheral device carrier
US5726922A (en) Assembly for removably connecting data storage devices
US7441744B2 (en) Mounting apparatus for disk drive
US7023693B2 (en) Mounting apparatus for peripheral device
US7808801B2 (en) Mounting apparatus for expansion card
US7402070B1 (en) Latch mechanism with spring back function
US7355846B1 (en) Mounting device for disk drive
US20120087084A1 (en) Drive Carrier With Pivoting Handle
EP0965992A1 (en) Hot-pluggable disk drive carrier assembly with no loose parts
US20090040744A1 (en) Mounting apparatus for back panel
US7841565B2 (en) Mounting apparatus for data storage devices
US7746664B2 (en) Mounting apparatus for expansion card
US6972370B2 (en) Mounting device for mounting expansion cards in computer enclosure
US6272010B1 (en) Peripheral device mounting apparatus
US8050021B2 (en) Ejectable/retractable interface module for a computer system
US6927984B2 (en) Expansion card retention apparatus
US7252528B1 (en) Mounting assembly for expansion card
US6437992B1 (en) Hot pluggable printed circuit board insulating system and method
WO1997043804A1 (en) Shielded jack socket assembly

Legal Events

Date Code Title Description
FEPP Fee payment procedure

Free format text: PAYOR NUMBER ASSIGNED (ORIGINAL EVENT CODE: ASPN); ENTITY STATUS OF PATENT OWNER: LARGE ENTITY

FPAY Fee payment

Year of fee payment: 8

FEPP Fee payment procedure

Free format text: PAYER NUMBER DE-ASSIGNED (ORIGINAL EVENT CODE: RMPN); ENTITY STATUS OF PATENT OWNER: LARGE ENTITY

Free format text: PAYOR NUMBER ASSIGNED (ORIGINAL EVENT CODE: ASPN); ENTITY STATUS OF PATENT OWNER: LARGE ENTITY

FPAY Fee payment

Year of fee payment: 12

AS Assignment

Owner name: COMPAQ INFORMATION TECHNOLOGIES GROUP, L.P., TEXAS

Free format text: ASSIGNMENT OF ASSIGNORS INTEREST;ASSIGNOR:COMPAQ COMPUTER CORPORATION;REEL/FRAME:026908/0672

Effective date: 20010531

Owner name: HEWLETT-PACKARD DEVELOPMENT COMPANY, L.P., TEXAS

Free format text: CHANGE OF NAME;ASSIGNOR:COMPAQ INFORMATION TECHNOLOGIES GROUP, L.P.;REEL/FRAME:026909/0243

Effective date: 20021001