Abstract:
In a disk cartridge (1) for storing therein a plurality of disks (3) so that the disks are stacked therein, slide tabs (6) for removing a desired disk are slidably provided along disk discharge and loading directions, and click engaging portions (12a, 12b, 13) for temporarily locking the slide tabs (6) at a predetermined position along the sliding direction are offset by a predetermined amount along the sliding direction as between different ones of the stages thereby reducing the load on a drive mechanism for aligning the slide tabs when the cartridge is mounted on a player.
Abstract:
A recording and/or reproducing apparatus for recording and/or reproducing information signals with the use of a tape cassette (300) is provided with a pair of reel shafts (6, 7), each having an engaging member (6b, 7b) mounted with a bias towards the end of the supporting shaft, and a tape cassette transfer mechanism adapted for shifting the tape cassette inserted by way of the cassette inserting opening (2a) in a first direction normal to the reel shafts and guiding or loading the tape cassette for inserting and engaging the reel shafts with a pair of tape reels (302, 303) within the tape cassette. When at least the tape cassette transfer mechanism is set at a position facing the cassette inserting opening, the tape cassette is moved by the tape cassette transfer mechanism towards the proximal side of reel shafts, to reduce the displacement in the second direction of the tape reel of the tape cassette by the tape cassette transfer mechanism to a value lesser than the thickness of the tape cassette to reduce the thickness of the apparatus. After completion of the tape cassette loading by the tape cassette transfer mechanism, the tape cassette is partially exposed to the cassette inserting opening to prevent a second tape cassette from being introduced into the cassette inserting opening after completion of loading of the first-mentioned cassette.
Abstract:
A disc player fitted for automatic change of discs comprises a disc pack receiving table for receiving and holding a disc pack containing a plurality of discs, a disc rotating device for rotating a disc taken out from the disc pack and loaded thereon, and a movable chassis operative to move up and down in relation to the disc pack receiving table and provided with a mechanical arrangement comprising a sliding lever for actuating a sliding member provided in the disc pack to take a selected disc out of the disc pack, a motor for rotating selectively in the clockwise and counterclockwise directions, a driving roller for being rotated with the rotatory driving force produced by the motor to carry the selected disc taken out from the disc pack to the disc rotating device, and a driving mechanism actuated with the rotatory driving force produced by the motor for driving the sliding lever in the manner for taking a disc out of the disc pack when the motor rotates in one of the clockwise and counterclockwise directions and for driving the sliding lever to put back the same when the motor rotates in the other of the clockwise and counterclockwise directions.
Abstract:
PROBLEM TO BE SOLVED: To provide an inexpensive small and thin light-emitting device in which uniform intensity and chrominance can be achieved and heat dissipation properties of a light-emitting element can be assured sufficiently, and to provide a light source device employing that light-emitting device and a liquid crystal display employing that light source device as a bakcklight. SOLUTION: On one side of a mounting substrate 1, a light-emitting element 4 is mounted in the state of bare chip. For each light-emitting element 4, a p-electrode side wiring pattern 2 and an n-electrode side wiring pattern 3 are arranged such that one becomes a wide wiring pattern and the other becomes a narrow wiring pattern, and the light-emitting element 4 is arranged in the center of the wide wiring pattern. While keeping a short distance between the light-emitting elements 4, positions for light-emitting element 4L, 4M and 4S are shifted in the length direction of the substrate 1 so that the wide wiring patterns do not overlap in the width direction of the substrate 1 as much as possible. A gap for assuring insulation is formed with a fixed width between the side of the substrate 1 and the wiring pattern and between the wiring patterns. COPYRIGHT: (C)2009,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a light source apparatus capable of improving light extracting efficiency from a light-emitting device. SOLUTION: The light source apparatus consists of a substrate 1 having a pair of electrodes 2, 3, the light-emitting device 4, and a transparent resin 7 for sealing the light-emitting device 4. A white resist layer 6 is formed on the substrate 1 so as to cover one part of the electrodes 2, 3; an opening 6A is provided on the white resist layer 6 on at least the light-emitting device 4 and its vicinity, and on terminals of the electrodes 2, 3; and a white member 8 is formed on the white resist layer 6. In this light source apparatus, the light-emitting device 4 consists of two kinds of light-emitting devices 4 having different emission colors including red, a red light-emitting device 4R is formed so to have a wider area of the opening 6A of the white resist layer 6 inside the transparent resin 7 than the light-emitting devices of the other colors, and the electrodes 2, 3 face the transparent resin 7 with a wide area from the opening 6A. COPYRIGHT: (C)2007,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To solve the problem that the chip-to-chip distance becomes wide and no white light can be obtained at other positions than those distant from the light emitting surface, if taking the packing density and the extrusion of adhesives such as Ag paste or short circuit prevention into consideration when packing RGB LED chips individually. SOLUTION: The multichip type white light source device is manufactured by forming a light emitting element (red LED) 12 on a first substrate 11, forming light emitting elements (blue LED and green LED) 16, 17 on a second substrate 15, laminating both substrates 11, 15 so that both light emitting elements are not superposed one above the other, and electrically connecting a wiring layer 13 with electrodes 18 through, e.g., bumps 19, thus reducing the mutual spacing of the light emitting elements to dispose closely them apparently without gap therebetween. COPYRIGHT: (C)2007,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To eliminate a dead angle or a dead end of pan angle and a tilt angle of an image pickup device. SOLUTION: A camera part 2 is provided with a transmission part 16 for radio signal transmission and a reception part 17 for radio signal reception, and a tilt mechanism part 3 is provided with a slip ring 27 correspondingly to rotation in the panning direction, and a pan mechanism part 4 is provided with a terminal part 32 for sliding the slip ring 27, and a remote control part 5 has a transmission part 60 for radio signal transmission to the camera part 2 and a reception part 61 for radio signal reception from the camera part 2. The remote control part 5 transmits a control signal to the camera part 2 by radio, and the camera part 2 transmits picked-up image data to the remote control part 5 by radio, and the tilt mechanism part 3 and the pan mechanism part 4 turn the camera part 2 in the panning direction and the tilting direction on the basis of the control signal from the remote control part 5. COPYRIGHT: (C)2004,JPO
Abstract:
PROBLEM TO BE SOLVED: To reproduce the information on a once reproduced block to be reproduced from the middle information on the block at the middle when the information on a prescribed block to be reproduced is reproduced. SOLUTION: A central control part 2 controls an HDD 11 according to the reproduction control information for the HDD 11 to reproduced information and/or the non-outputted information on a magnetic disk. The part 2 also controls a DTR 9 according to the non-outputted information, so that the HDD 11 reproduces the head information on a prescribed block to be reproduced, that is designated by the reproduction control information or the reproduced information and/or non-outputted information from the magnetic disk and the DTR 9 reproduces the information recorded on the prescribed block to be reproduced from a magnetic tape.
Abstract:
PURPOSE:To miniaturize a device by making the loading vertically movable to a pack fitting part, making a disk pack fittable from a side of the pack fitting part which is fixed and facilitating the fitting of the disk pack to the pack fitting part. CONSTITUTION:The disk pack 1 is fitted to a pack fitting base 30 in such a way that the pack 1 is engaged with the base 30 from its side along the fitting direction of an arrow X, and a groove provided on the pack is engaged with a guide projecting part 31 of the base 30, and is also slid on the base 30 by depressing an ejecting lever 33 against a spring 32. Then, when the pack 1 reaches a prescribed fitting position, a lock member 35 projecting through a hole 34 provided on the base 30 from the lower surface side of the base 30 to the upper surface side is engaged with a lock recessed part 15 of the pack 1. By this method, the pack 1 is fixed on the base 30 under the state of an opening part provided on the pack 1 opposite to a disk loading part 28. At this time, the pack 1 is regulated in its movement in the upward direction by a pressing plate 30a.
Abstract:
PURPOSE:To provide the brake device regulating effectively a rotation of a tape reel on which a tape is wound by driving to rotate a 1st brake lever via a 1st brake release lever so as to drive a 2nd brake lever thereby bringing both a couple of reel bases to be rotation-free. CONSTITUTION:A 2nd brake lever 5 is driven to rotate by driving a 1st brake lever 3 via a 1st brake release lever 11 and both a couple of reel bases 6, 7 are set to be rotation-free. In this case, the recording and/or reproduction device using the brake device for the reel bases 6, 7 drives a tape in the so-called recording and/or reproduction mode or the fast feed mode or the rewinding mode or the like. Then in the tape loading mode, the lever 5 is driven to rotate by the 2nd brake release lever 17, a lever 3 controlling the rotation of the reel base 6 is not operated and the reel base 7 is rotated.