Abstract:
PROBLEM TO BE SOLVED: To provide a disk holding device of which the manufacturing is facilitated by simplifying the structure of a chucking member, the attaching of the chucking member to a holder for supporting this chucking member to be rotated is facilitated and the falling-off of the chucking member from the holder is prevented. SOLUTION: A chucking member 1 has a flange part 1b and an elastic deformation part 1a formed in this flange part 1b by an L-shaped notch 1d. This elastic deformation part 1a is deformed, a lower catch part 7b formed in the edge part of the opening part 7c of a holder 7 is passed into the notch 1d, and then the chucking member 1 is inserted and held in the opening part 7c.
Abstract:
PURPOSE:To assemble the vibration buffer device with simple constitution and stages by inserting detaining means of a projecting shape disposed in a prescribed external easing into through-holes of buffer members to engage these members at the time of holding internal casings via the buffer members to this external casing. CONSTITUTION:The external casing 2 of the electronic instrument 30 and the vibration buffer devices 12, 31 to be inserted between the internal casings 4 and 13 held the casing 2 are installed. Engaging projections 31 have the pawl- shaped engaging means 36 at their front ends. The through-holes 12A consist of elastic members and are supported in the internal casings 4, 13. The engaging projections 31 are inserted into these holes. The internal casings 4, 13 are held in the external casing 2 by means of these engaging means 12.
Abstract:
PURPOSE:To enhance the reliability of positioning a cartridge. CONSTITUTION:A positioning protrusion 20 to be advanced and retreated in a recessed part 200a for positioning the disk cartridge 200 is formed into such a protrusion having a guiding insertion part 20a which is tapered down to the leading edge. An apex (a) of the guiding insertion part of this protrusion is made eccentric to the opposite side to pivotally supporting a cartridge holder 25. The protrusion 20 can be set in height at an enough size to function as the positioning protrusion, so that the disk cartridge can certainly be positioned by the positioning protrusion 20.
Abstract:
PROBLEM TO BE SOLVED: To reproduce and/or record plural different kinds of disk-shaped recording media in size and also to use the device in either posture of its horizontal installation or vertical installation. SOLUTION: The device is equipped with a pull-in roller 5 and a disk guide 4, for holding an optical disk 46 between them to be pulled into the device, a spindle 33 for holding and rotating the optical disk 46, a chucking member 30 provided freely rotatably in the device for the purpose of holding the optical disk 46 with the spindle 33, a mechanical deck supporting the spindle and disposed freely pivotably in the device and a slider 35' disposed freely movably back and forth in the device to pivot the mechanical deck in accordance with this movement. Then, when the optical disk 46 is pulled into the device, the spindle 33 is moved into a temporarily chucking position so that the optical disk 46 is lightly held between the spindle 33 and the chucking member 30, and subsequently, after releasing the optical disk from being held by the pull-in roller 5 and the disk guide 4, the spindle 33 is moved into a chucking position where the optical disk 46 is completely held between the spindle 33 and the chucking member 30.
Abstract:
PROBLEM TO BE SOLVED: To provide a keyboard, wherein the rigidity of the keyboard is high, a keying feeling is excellent, and work of installation/uninstallation of a keyboard unit can be easily performed, and to provide an electronic device, a method of manufacturing the keyboard, a method of manufacturing the electronic device and a keyboard component. SOLUTION: The keyboard unit 7 is slid in a long direction of the keyboard unit 7. Thereby, a guide member 39 can be guided along the long direction of the keyboard unit 7 while engaging the guide member 39 with a guide rail 68. As a result, as shown in Fig.18, a side 81 of a projection piece 66 can be made to get into a hole 35 of a positioning protrusion 29. Next, an engagement protrusion 50 is guided to an engagement hole 17 of a protrusion 15 by a visor part 16 of the protrusion 15, and the engagement protrusion 50 can be made to get into the engagement hole 17. As a result, the keyboard unit 7 can be fixed to a body unit 8 by positioning holes 51, 61, and a plurality of insertion holes 49 or the like. COPYRIGHT: (C)2010,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To secure a stable support state of a panel part with respect to a main body part and also to reduce manufacturing cost and cost involved in exchanging liquid crystal panels. SOLUTION: The liquid crystal panel 9 is mounted to the main body part 2 having a keyboard 4 and a housing 8 through brackets 18, 18, a panel part 3 supported by the main body part through hinges 27, 27 in a freely turnable way is also provided, a turning supporting point part 31 to be a turning supporting point with respect to the main body part and a part 32 to be attached attached to the housing are formed in each of the hinges, and a holding part 19 holding the liquid crystal panel and a connection part 22 attached to the housing with at least a portion of the connection part overlapped on the part to be attached of a hinge are formed in each of the brackets.
Abstract:
PURPOSE: To record and reproduce information signal data with high accuracy by forming a loading part of an optical disk, pushing a tray loaded with the optical disk into a case and holding securely the tray with a tray lock mechanism. CONSTITUTION: When the optical disk 1 is changed or the disk 1 is loaded into the tray in the disk drive device 10, an ejecting operation member 44 is pressed. A guide part 44D is supported by a guide rib 38, and is guided by a cam pin 39 on the side of a tray main body 31, passed through a cam groove 44E, so that the member 44 is pressed into the interior of the tray 30 against the elastic force of a torsion spring 43. By the movement of the operation member 44 into the inside of the tray 30, a cam pin 45E of a lock lever 45, engaged with an inclined cam surface 44F is pressed toward the inner side of the tray 30. The device 10 is provided with a proper switch means on a tray locking and unlocking means for the purpose of preventing the tray 30 from projecting out in the midst of recording and reproducing the disk 1 by the operation of the member 44.
Abstract:
PURPOSE:To prevent a disk cartridge inserted into a cartridge holder from being inclined by extrusion force by a shutter opening/closing arm. CONSTITUTION:When the disk cartridge 7 is inserted into the cartridge holder 2, the shutter opening/closing arm 3 is pressed by the disk cartridge and rotated against the spring force of an arm turn-back spring 11. When the disk cartridge 7 is inserted into a prescribed position, a cartridge lock lever 4 provided on the cartridge holder 2 is engaged with a lock lever engaging part 12 and one end part of one side surface of the disk cartridge 7 is pressed against the spring force of the arm turn-back spring 11. Further, the other end part of the disk cartridge 7 is pressed against the spring force 11 of the arm turn-back spring 11 by an erroneous insertion preventing member 5.
Abstract:
PURPOSE:To reduce the space and the access time by making the optical head installed on an arm face each recording surface of a recording medium employing a rotating mechanism. CONSTITUTION:An optical head 10, which faces the recording surface of a recording medium 12, is driven by a motor 62 so as to rotate an arm 26 around a base section 30, move it from the outer peripheral side to the inner peripheral side along a recording surface 16 and a recording information is read. Then, drive the motor 62 to retract the arm 26 and the optical head 10 from the recording surface 16, rotate a ball screw 36 through gears 44 and 42 so as to move up a ball screw 34 with the arm 26. And, rotate the arm 26 by the motion of the motor 62, rotate the optical head 10 by 180 degrees by driving a motor 28 so as to face a recording surface 14 of a recording medium 12. Moreover, in a reversing procedure, the optical head 10 is moved from the recording surface 14 to the recording surface 16. By this method, the space is reduced and the operations of the arm and the optical head are speeded up.