Abstract:
PROBLEM TO BE SOLVED: To facilitate exchange of hard disk drives in a server unit stored in a rack. SOLUTION: A server unit 101 consists of an outer case 102 and an inner case 109. In the inner case, a movable part 122 which can be moved downward is attached, and hard disk drives 113 are stored in two columns. When replacing a hard disk drive 112 placed on the backside, the inner case 109 is pulled out, the movable part 122 is lowered, and the end surface of a hard disk drive 112 placed on the backside is exposed. By adopting this structure, all the hard disk drives 113 are made exchangeable from the front surface side, and removal of the server unit 101 from the rack is made unnecessary in exchanging the hard disk drives 113.
Abstract:
PROBLEM TO BE SOLVED: To improve heat dissipation from servers when a plurality of thin servers are stacked in a rack. SOLUTION: In a structure in which the plurality of thin servers 101a, 101b, 101c and 101d are stacked in the rack, the individual servers are arranged while shifting each server by prescribed dimensions. An opening for heat radiation is formed at a part where each server is shifted. In such a configuration, heat radiation openings can be secured even though the thin servers are stacked in the rack, and heat dissipation from the inside of the servers can be improved.
Abstract:
PURPOSE: To provide a portable PC excellent in operability and durability while reducing its weight and thickness by making it possible to lift a pointing device of the PC. CONSTITUTION: This portable PC and keyboard system has a mechanism, for lifting the pointing device 30. A lifting mechanism can be constituted so as to lift the device 30 based upon the position of a cover for the computer. A base part 104 fixes the device 30. The base part 104 is connected to the pallet part 26 of the keyboard by hinge 106. The base part 104 is pushed up by the movement of an arm 110 interlocking with the open/close of the cover. Thereby the device 30 fixed on the base part 104 is pushed up to a position higher than an adjacent key 28.
Abstract:
To use a cable to radiate heat generated inside a wearable computer. Heat generated by a CPU 30 inside a PC body 3 is transferred to a heat conducting member 38 and is further transferred to a heat conducting sheet 22 of a cable 2 via a heat pipe 32 and a connection member 34. The heat conducting sheet 22 conducts in the longitudinal direction of the cable 2, the heat transferred via the heat collecting member 38, the heat pipe 32, and the connection member 34 while gradually releasing the heat to the exterior thereof via the coating 20 to radiate the heat from the interior of the PC body 3.
Abstract:
PROBLEM TO BE SOLVED: To provide secure earthing, and to facilitate mounting/dismounting a card. SOLUTION: In this connector 1, (1) first GND connection parts 11-1, 11-2 are provided on faces opposing to a sib-card board on latches 7-1, 7-2, and grounding is realized by making the first GND connection parts in contact with first electrodes provided on a sub-card board when the sub-card board is connected with the connector, and/or (2) second GND connecting parts 12-1, 12-1 are provided in positions opposing to the sub-card board on faces opposite to latches on latch supporting parts 6-1, 6-2, and grounding is realized by making the second GND connection parts in contact with second electrodes provided on the sub-card board when the sub-card board is connected with the connector. This connector is incorporated into a computer.
Abstract:
PROBLEM TO BE SOLVED: To provide a holding member of a drive device for preventing the damage of a holding means and including a means for improving maintainability, a storage device unit configured by including the holding member, and a computer system configured by including the storage device unit. SOLUTION: A holding member 14 includes a frame 20, a front member 22 united into a single body with the frame 20, and a gripping member 24 attached turnably to the front member 22 around a pivot 30. The gripping member 24 is always turnable without the accompaniment of relative movement with respect to a unit member of the holding member 14 when housed in the unit member to improve its maintainability. A turning prevention member is formed for an operation for separating the holding member 14 from the unit member 22, for example, a taking-out operation performed after prescribed turning of the gripping member 24. COPYRIGHT: (C)2003,JPO
Abstract:
PROBLEM TO BE SOLVED: To release heat generated in a wearable computer or the like using a cable. SOLUTION: Heat generated by a CPU 30 in a PC body 3 is transferred to a heat collecting member 38, and then is transferred to a heat conductive sheet 22 of a cable 2 through a heat pipe 32 and a connecting member 34. The heat conductive sheet 22 guides the heat transferred through the heat collecting member 38, the heat pipe 32, and the connecting member 34 to the longitudinal direction of the cable 2, and simultaneously gradually releases it to the outside through a coating to radiate heat in the PC body 3.
Abstract:
PROBLEM TO BE SOLVED: To improve the heat radiation of a thin type server unit. SOLUTION: Offset flat portions 106, 107 connected with a stepped plane 109 are formed on a back panel 102 of a server unit 101 and the stepped plane 109 has heat-radiating openings 114. By utilizing this plane 109 for forming the radiation openings, heat is effectively radiated from the unit 101, without sacrificing the area for mounting connectors 112, 113, 115, 116, 117. COPYRIGHT: (C)2003,JPO