Abstract:
Colors of a plurality of pixels constituting a source video image are corrected by a computer (10), a hard disk unit (20) and a picture processing unit (30) which are connected through a local bus BUS. The computer (10) functions as parameter setting means for setting a plurality of parameters for designating a source color and a destination color, and as arithmetic means for computing correction data for color correction from the source color to the destination color by using the plurality of parameters set by the parameter setting means. The hard disk unit (20) stores a source video image, and color correction for correcting the color of a pixel corresponding to the source color included in the source video image to the destination color is carried out by the picture processing unit (30).
Abstract:
[Object] To provide a new and improved information processing apparatus, information processing method, and program, capable of improving technology related to FEC for achieving low delay transfer. [Solution] Provided is an information processing apparatus including: an arrangement unit configured to arrange datagrams in a number of a predetermined matrix size or less in at least a portion of the matrix of the predetermined size, by repeating arrangement of the datagrams in order along a first direction according to a second direction; and a generation unit configured to generate a redundant datagram for forward error correction for each of the datagrams belonging to one row, and for each of the datagrams belonging to one column of the matrix arranged by the arrangement unit.
Abstract:
PROBLEM TO BE SOLVED: To prevent a disk-shaped recording medium from dropping out of the recess of a disk tray at a loading end or an ejection end while using a disk drive vertically. SOLUTION: An optical disk drive equipped with a disk tray 7 and a nearly circular recess 7c formed in the disk tray 7, is provided with a tapered part 123 which is formed on the bottom of the recess 7c of the disk tray 7 in a concentric circular shape, and is formed on a decline toward the center of the recess 7c, a disk outer periphery positioning part 124 formed on the inner periphery of the tapered part 123 in a concentric circular shape, a plurality of projections 126 for disk fitting which are formed at a plurality of places of the outer periphery of the tapered part 123 on the upper part open part 125 of the recess 7c, and in which a disk outer periphery fitting groove 127 is formed, and a plurality of projections 129 for preventing disk dropping which have a step part 130 on the upper part at the tip part of the inner side of the plurality of projections 126 for disk fitting, and are integrally formed.
Abstract:
PROBLEM TO BE SOLVED: To make easily and surely executable the emergency operation of a disk drive device. SOLUTION: A tool 105 is inserted through an emergency ejection hole 12 that is formed on the front panel of an optical disk drive device 1, and guided via a tool guide part 103 that is pressed to a main chassis 3 and the led to a tool engagement recess part 102 of a fan-shaped gear 28 that is constructed on a chucking canceling rotator.
Abstract:
PROBLEM TO BE SOLVED: To make a guide axis not fall out even when a strong external impact is applied. SOLUTION: Both ends of a guide secondary axis 77 are fixed by pressure by a pair of leaf springs 138, 139 on two points of the rear surface 62e of a unit frame 62 and a pair of reference surfaces 134, 135 for positioning. A protruding piece 152 to prevent the turning of the axis 77 is cut and erected in the rear surface 62e of the unit frame 62 so that the axis 77 does not turn along the rear surface 62e of the unit frame 62 to fall out from one leaf spring 135.
Abstract:
PROBLEM TO BE SOLVED: To enable recording/reproducing into/from a disk caddy in a driving device for a disk-like recording medium by constituting a shutter of shutter pieces divided into plural segments in the slide direction. SOLUTION: A disk caddy 1 for a 80 mm disk is inserted from the backward side toward the forward side of an attaching space 31 for a disk adapter 29, and guide rails 33 of the disk adapter 29 are fitted into side grooves 11 of the disk caddy 1. Back end parts 33a of the guide rails 33 are abutted on the locking surfaces of rack claws 20 of shutter opening and closing mechanisms 18 in the disk caddy 1 to hook the claws and relatively moved backward. The hook claws 20 moved backward are dropped into saving recessed parts 23 formed in the side grooves 11, hooking with the rack claws 20 of the back end parts 33a of the guide rails 33 is released, shutters reach an opening position and a shutter opening 3 is opened.
Abstract:
PROBLEM TO BE SOLVED: To protect a flexible printed board against damage by forming a tapered part at the fringe of a planar member on the side where a through hole touches the wiring plane of a flexible printed board. SOLUTION: A tapered part 11 is formed at the fringe where a through hole 10 faces the of a flexible printed board 8. The tapered part 11 is formed such that the thickness of a planar member 9 is varied toward the inserting direction of the flexible printed board 8. When the flexible printed board 8 is inserted into the through hole 10 of the planar member 9, the wiring plane of the flexible printed board 8 is directed toward the tapered part 11 of the through hole 10 and the flexible printed board 8 is inserted into the through hole 10 by pulling the inserted end part of the printed board 8 up to a position predetermined for the planar member 9. According to the arrangement, the wiring can be protected against disconnection, or the like.
Abstract:
PROBLEM TO BE SOLVED: To absorb generated vibration by a movable side member so as to prevent the fluttering of a door by supporting the door on a front panel to be freely rotated, supporting the same by the movable side member, providing an operating member brought into contact with the operated part of the door to press the same for rotating the door and bringing the operating member into repulsive contact with the operated part of the door via a repulsive means. SOLUTION: Supporting pieces are provided to be raised as rotational fulcrums 9 protruded backward from positions near left and right ends from the left and right edge parts of the notch 5 of a frame 3, and one rotary shaft for two corner doors is supported. Supporting projections are formed as rotational fulcrums 10 having shaft holes in the upper left and right corner parts of dressed panel 2, and as in the case of shaft supporting parts 8 and 8, the supporting projections support a rotary shaft for the other of the two doors. By using a movable side member 12a as a part of a movable side member 12 attached to a chassis as a fixing member 11 by an insulator, vibration generated in the movable part is shut off to the outside.
Abstract:
PROBLEM TO BE SOLVED: To provide an image processing apparatus capable of executing image processing with a higher degree of freedom by an easy operation. SOLUTION: A secondary processing section 50 composed of a coordinate transformation circuit 51, look-up table 52, and adder circuits 54Y, 54U, 54V updates the content of the look-up table 52 which holds data corresponding to a color difference signal of a video signal according to the control by an image processing unit controller 31, and corrects input data based on the look-up table 52 to output. COPYRIGHT: (C)2007,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To eliminate shaking of a rise and fall driving frame independently of dimensional precision. SOLUTION: When a pair of right and left supporting point pins 122 provided in a both right and left sides arm part 121b of the rise and fall driving frame 121 is fitted in a pair of right and left supporting point pin fitting holes 125 formed in a pair of right and left inner side vertical wall part 82e of a chassis 82 and is supported freely rotatably, the upper part of the pair of right and left supporting point pin 122 is elastically pressed by a pair of right and left up elastic arm part 127 integrally formed on the chassis 82 made of sheet metal, and a proximity position of the one supporting point pin 122 of the rise and fall driving frame 121 is elastically pressed to an axial direction to position by a side part elastic arm part 128 integrally formed on one inner side perpendicular wall part 82eA of the chassis 82.