Abstract:
Disclosed is an information processing apparatus. The information processing apparatus includes a first hard disk drive, a conversion circuit and a signal control circuit. The conversion circuit is connected with the first hard disk drive to determine whether a second hard disk drive corresponding to a slave exists when the first hard disk drive serves as a master, and the determine whether a first control signal has a first logic level in a first predetermined time.
Abstract:
A method for generating a pattern includes reading out an interconnect layout and a hole layout, the interconnect layout prescribing interconnect patterns, the hole layout prescribing hole patterns configured to connect to the interconnect patterns; extracting one of the hole patterns to be connected within the same interconnect layer level to one of the interconnect patterns in a pattern processing area; extracting a first processing area including the extracted hole pattern; calculating a first pattern density of the interconnect patterns included in the first processing area; and generating first additional patterns in the first processing area based on the first pattern density.
Abstract:
A torque control device controlling torque of first and second mechanical units connected coaxially to each other through connecting members includes a controller generating first and second references from a command from a host system, first and second motors respectively driving the first and second mechanical units, first and second motor control units respectively controlling the first and second motors on the basis of the first and second references. The first and second references synchronously accelerate the first and second motors to first rotational speed, then increase rotational speed of the second motor according to a speed profile to produce torsional torque in the connecting members, decelerate the second motor to the first rotational speed after the torsional torque reaches a predetermined value, and synchronously decelerate and stop the first and second motors after a predetermined time period elapses.
Abstract:
A data decoding apparatus has: a check matrix including a submatrix which indicates a parity restriction and used for LDPC decoding; a first decoding module configured to decode data by using the submatrix so that the parity restriction is satisfied; and a second decoding module configured to LDPC-decode the decoded data by using the check matrix.
Abstract:
A holding apparatus for holding an optical element includes a measuring part configured to measure a coordinate of the optical element, and a driving part configured to move the optical element based on the coordinate measured by the measuring part, wherein the measuring part includes a first sensor configured to detect a displacement amount of a part of the optical element, and a second sensor configured to detect that a part of the optical element is located at a predetermined position.
Abstract:
A hard disk includes: a plurality of servo areas which are elongated radially from a center of the hard disk to an outward thereof over tracks thereof; and a plurality of data areas which are respectively provided between the plurality of servo areas; wherein alternative operation is conducted per servo sector containing one of the plurality of servo areas and a data area provided subsequent to the one of the plurality of servo areas and having a defect created therein when a user sector containing at least a portion of the data area and functioning as an access unit has the defect therein.
Abstract:
A link table is generated, voice information is associated by dot patterns, and then, voice information associated with the dot pattern is reproduced from a speaker when the dot pattern is read by means of a scanner. In this manner, the dot pattern is printed on a surface of a material such as a picture book or a card, making it possible to play back voice information corresponding to a pattern or a story of a picture book and to play back voice information corresponding to a character described on the card. In addition, by means of a link table, new voice information can be associated with, dissociated from, or changed to, a new dot pattern.
Abstract:
A communication system includes a first and a second communication devices, and the first and the second communication devices includes a first and a second transmission units that are disposed respectively on bodies of the communication devices and wirelessly transmits predetermined information to each other. The first communication device further includes a first reception unit that is disposed in a position where the first reception unit is capable of communicating with the second transmission unit and receives second information that has been transmitted from the second transmission unit, and a first control unit that controls the first communication device such that, when communication becomes possible between the first reception unit and the second transmission unit, the first reception unit receives the second information, and such that, when communication becomes possible between the first transmission unit and the second reception unit, the first transmission unit transmits first information.
Abstract:
A technology that enables accurate position specification on an image displayed on a screen to perform processing and correction of the image data is provided. When the image is printed on a sheet on which a dot pattern is printed, a reference point of the image on the display device is set and the reference point is printed in a visible mark together with the image. This mark is imaged with an imaging means, and calibration is performed in which position coordinates of the marks on the sheet and the reference points of the image are matched, thereby preventing variation in coordinates between designation made on the sheet with the imaging means and processing on the image.
Abstract:
In an LDPC-code decoder, bit-processing units are provided, respectively, for the 1st to Mth rows of the parity-check matrix that is formed of (r×s) permuted matrices having respective arrays of (m×m). Each of bit-processing units sequentially updates bit information corresponding to column positions included in the respective rows of the parity-check matrix, a bit at each of the column positions being set to “1”.Parity-processing units update parity information corresponding to row positions in columns of each column block of the parity-check matrix, whenever the bit-processing units have finished bit update computation for m column positions in each column block, a bit at each row position being set to “1”.The bit-processing units starts next bit update computation after the parity-processing units finish parity update computation for m columns of the first column block of the parity-check matrix.