Abstract:
PURPOSE:To reduce remarkably a distance between a tape cassette and a rotary head drum by using a moving a chassis so as to move a loaded tape cassette together with a couple of left/right reel bases while the rotary head drum is fixed and approaching the cassette to the rotary head drum. CONSTITUTION:While the rotary head drum 18 is fixed onto the fixed chassis 17, the tape cassette 71 loaded on the moving chassis 1 is moved with the moving chassis 1 together with a couple of left/right reel bases 3a, 3b so as to approach the tape cassette to the rotary head drum 18. Thus, the increase in the unstable element of tape running due to the movement of the rotary head drum 18 does not take place entirely thereby reducing remarkably the distance between the tape cassette 71 and the rotary head drum 18. Through the reciprocation of the moving chassis 1, the relative position of two photodetectors 91a, 91b is varied into two states so as to attain the detection of the presence absence of the tape cassette and the detection of tape end during recording/reproduction.
Abstract:
PROBLEM TO BE SOLVED: To reduce cost by reducing the number of components. SOLUTION: An input device 11 is grasped by a user and operated in a three-dimensional free space in order to remotely operate an image display 12. The image display 12 obtains a gesture signal in the free space of the input device 11. The image display 12 sets a mode on the basis of a first gesture in the free space of the input device 11, and executes processing in the mode set based on the first gesture on the basis of a second gesture in the free space of the input device 11 different from the first gesture. COPYRIGHT: (C)2011,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a loading device wherein a carrier member is disposed outside the outer peripheral edge of a recording medium loaded in a loading part in the front side of an insertion port, thereby enabling an operator to smoothly insert/eject the recording medium, and the entire device is thinned, and a recording and/or reproducing device. SOLUTION: This loading device is provided with a casing having an insertion port 24 for inserting/ejecting an optical disk, and a carrier mechanism for carrying the optical disk between the insertion position of inserting the optical disk of the insertion port and the loading position of a loading part. The carrier mechanism includes a carrier roller 40 having a rotary shaft 48 extended in a direction roughly parallel to the main surface of the optical disk, an axial direction length longer than the diameter of the optical disk, and rotated into contact with the outer peripheral edge of the main surface to move the optical disk in its surface direction by a friction force. The carrier roller is disposed outside the outer peripheral edge of the optical disk loaded in the loading part. COPYRIGHT: (C)2008,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To solve the problem that there is the possibility of generating an abnormal sound or damaging the surface of the optical disk by coming a rotary-driven optical disk into contact with surrounding mechanical components in a conventional thin disk driving device. SOLUTION: The disk driving device includes a casing 11, a disk conveying mechanism 30, a rotary-driving mechanism 41, an optical pickup 42, a pickup moving mechanism 43, a base member 40, a base moving mechanism 83, and a posture adjusting mechanism 90. A disk insertion port 24 for inserting/ejecting an optical disk 7 is provided in the casing. The disk conveying mechanism, conveys an optical disk between a disk ejecting position and a disk loading position. The rotary-driving mechanism is provided with a disk loading part, and rotates the optical disk. The optical pickup records/reproduces an information signa. The pickup moving mechanism moves the optical pickup. The rotary-driving mechanism, the optical pickup, and the pickup moving mechanism are mounted on the base member. The base moving mechanism supports the base member to change a posture. The posture adjusting mechanism adjusts the posture of the base member with respect to the casing. COPYRIGHT: (C)2008,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a disk driver and electronic equipment which can draw a recording medium from a slot side to a loading part side without depending on a position of the recording medium in the slot, and can also be miniaturized. SOLUTION: The disk driver is provided with a 1st conveyance mechanism 300 which can draw an optical disk from the slot 19 side to the disk loading part 23 side. The optical disk 2 can be drawn to the disk loading part 23 side without depending on the position of the optical disk in the slot 19, and the optical disk drawn to the disk loading part 23 side by the 1st conveyance mechanism 300 can also be received by a 1st and 2nd rotary arms 35, 36 and a lever member 46 and is conveyed to the loading position by the disk loading part 23. Since the optical disk can be released from the 1st conveyance mechanism 300, for example, a mechanism for moving the 1st conveyance mechanism 300 in the direction perpendicular to the optical disk is not required, and the disk driver can be miniaturized (thinned). COPYRIGHT: (C)2007,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To prevent a base from rattling at the recording/reproducing time. SOLUTION: The disk drive apparatus is provided with: a base elevating and lowering mechanism 55 elevating and lowering the base 22 among a chucking position for elevating the base 22 and loading an optical disk 2 on a turntable 23a, a chucking release position for lowering the base 22 and detaching the optical disk 2 from the turntable 23a and an intermediate position for positioning the base 22 in a position between the chucking position and the chucking release position and performing recording or reproduction of signals to the optical disk 2; and a rattling preventing mechanism 140 preventing the base 22 from rattling in the intermediate position. COPYRIGHT: (C)2006,JPO&NCIPI
Abstract:
PROBLEM TO BE SOLVED: To properly and surely perform chucking release operations of optical disks differing in outer diameters. SOLUTION: The disk driving device is provided with a plurality of push-up pins 66a, 66b made to project upward from the bottom of a case 3, and when a base lift mechanism 55 lowers a base 27 up to a chucking release position, the a plurality of push-up pins 66a, 66b are made to abut on a large diameter disk 2A or a small diameter disk 2B mounted to a turntable 23a, and the large diameter disk 2A or the small diameter disk 2B is surely released from the turntable 23a by pushing up the disk. COPYRIGHT: (C)2006,JPO&NCIPI
Abstract:
PROBLEM TO BE SOLVED: To provide a disk driving device capable of dealing with disks different in diameters, and meeting the request of further miniaturizing, reducing weight and thinning the entire device. SOLUTION: This device is provided with: a device main body 3; an optical pickup unit where a disk loading part 27, a disk rotary driving mechanism 60, an optical pickup mechanism 61, and a pickup moving mechanism 62 are integrally disposed in a base frame 63; a pickup unit elevating mechanism 6 for supporting the optical pickup unit 5 to move in the thickness direction of a disk recording medium 2; a disk conveying mechanism 4 equipped with a conveying roller 20 abutted on one primary surface of the disk recording medium 2 to convey the disk recording medium 2; and a disk centering mechanism 7 for guiding the media 2 different in diameters to a position where the disk recording medium 2 is engaged with the disk rotary driving mechanism 6. The optical pickup unit 5, the pickup unit elevating mechanism 6, the disk conveying mechanism 4 and the disk centering mechanism 7 are arranged on one surface side of the disk recording medium 2. COPYRIGHT: (C)2005,JPO&NCIPI
Abstract:
PROBLEM TO BE SOLVED: To load disks having two or more diameters while achieving miniaturization and light weight. SOLUTION: This disk loading device is provided with a slider 21 movable in the conveying direction of an optical disk, guide members 22, 23 disposed in the slider, moved in a direction orthogonal to the conveying direction of the optical disk, and pressed in a direction to approach each other, guide rollers 37a, 37b, 39a, 39b disposed in the guide members and engaged with the outer peripheral end of the optical disk in ends, rotary arms 24, 25 having base end parts rotatably attached to the slider, and a connection gear 35 disposed in the slider and moved so as to bring the pair of guide members close to or apart from each other. When the optical disk is inserted, the guide members are moved in the direction to be apart from each other by the connection gear, the rotary arms are rotated by the optical disk to engage the guide rollers, the slider is slid in the inserting direction of the optical disk, and the optical disk is moved to a rotating position in the state of being engaged and held with the guide rollers. COPYRIGHT: (C)2005,JPO&NCIPI
Abstract:
PROBLEM TO BE SOLVED: To reduce thickness for a hard disc device by reducing the thickness for a head actuator without deteriorating its strength. SOLUTION: On a rear end side for a suspension 4, a boss 12, projecting toward the direction with the side on which a magnetic head 3 is arranged, is installed, and on a frontal end side for an arm body 5, a suspension fixing part 13 with 14 holes, to which the boss 12 is inserted, is formed. The boss 12 for one suspension 4 is inserted to the 14 holes from an upper end part and the boss 12 for the other suspension 4 is inserted to the 14 holes from a lower end part. The arm body 5 is fixed by being pinched with two suspensions 4 both from upper and lower sides. COPYRIGHT: (C)2004,JPO