Abstract:
When directed to transmit data in a personal computer (1), a document image data generating section (22) generates document image data obtained by imaging a document content based on document data for every page. An index image generating section (23) composites a file name of the document data and icon image data corresponding to application software by which the document data is created, and thereby generates index image data. The folder generating section (26) generates a PC folder based on the document image data, the index image data, and the management data, and generated by a management file generating section (24) transmits the PC folder to a digital camera (51) via a data transmitting section (27).
Abstract:
When a user operates the telephone book button of a cellular phone (terminal), a terminal-unique ID, connection request command, and a telephone book application start instruction command are transmitted to a server apparatus. The server apparatus reads out telephone book data managed in correspondence with the terminal ID, generates a telephone book list screen, and transfers it to the terminal to display it. A user selects, with a cursor, the range of a desired telephone number on the telephone book list screen displayed on the terminal. The server apparatus displays and confirms the cursor designation range based on a key operation signal. When the user operates the outgoing call/incoming call button, the server apparatus generates outgoing call data in accordance with the numeric code of the telephone number corresponding to the cursor designation range on the telephone book list screen. The obtained outgoing call data is transferred to the terminal to make an outgoing call.
Abstract:
A semiconductor device includes an oxide semiconductor thin film layer (3) of zinc oxide. The (002) lattice planes of at least a part of the oxide semiconductor thin film layer have a preferred orientation along a direction perpendicular to a substrate (l) of the semiconductor device and a lattice spacing doo2 of at least 2.619A.
Abstract:
When the length of a print area in a print tape is designated and an instruction to print a symbol image(Q,R) of a two-dimensional code and character information(C) is given, a printing apparatus sets the print size of the symbol image(Q,R) of the two-dimensional code to a predetermined print size defined as the initial setting, but changes the print attributes of the character information(C) from the initial values to adjust the length of the character string, so that the character information(C) can be printed together with the symbol image(Q,R) of the two-dimensional code within the print area in the print tape, that has the designated length. The printing apparatus(l) prints the character information(C) whose print size is adjusted and the symbol image(Q), of the two-dimensional code maintained at the predetermined print size, in a serial arrangement, in a range of the print tape(31) having the designated length.
Abstract:
A virtual display magnification (α) is set in a client apparatus (20) so that the size of a display screen of this client apparatus (H x W) is, for example, a VGA size. Display data (G) of a drawing area (Hα x Wα) is generated in a server apparatus (10). When a real display command is received from the client apparatus (20), display data (G1) having the display screen size (H x W) whose origin is at a designated display position (x, y) on the drawing area (Hα x Wα) is cut as it is, and then transferred and displayed. When a full display command is received, full display data on the drawing area (Hα x Wα) is scaled (reduced) in accordance with the display screen size (H x W), and then transferred and displayed as full screen display data (Gs). Even when the size of the display screen of the connected client apparatus is small, the display data in the display area corresponding to a request from the client apparatus is transferred so that the display data can be displayed on the client apparatus in an easy-to-view manner.
Abstract:
A screen display control apparatus receives screen update information which represents content of display update. Screen image is updated in an update area in accordance with the received screen update information. When the update area is not in a display range of the display screen and a size of the update area is greater than a predetermined size, the display range of the display screen is moved in order that the display range contains the update area.
Abstract:
A semiconductor device includes an oxide semiconductor thin film layer (3) primarily including zinc oxide having at least one orientation other than (002) orientation. The zinc oxide may have a mixed orientation including (002) orientation and (101) orientation. Alternatively, the zinc oxide may have a mixed orientation including (100) orientation and (l0l) orientation.
Abstract:
A thin film transistor includes a substrate (1, 11), and a pair of source/drain electrodes (2, 14) (i.e., a source electrode and a drain electrode) formed on the substrate and defining a gap therebetween. A pair of low resistance conductive thin films (10, 20) are provided such that each coats at least a part of one of the source/drain electrodes. The low resistance conductive thin films define a gap therebetween. An oxide semiconductor thin film layer (3, 15) is continuously formed on upper surfaces of the pair of low resistance conductive thin films and extends along the gap defined between the low resistance conductive thin films so as to function as a channel. Side surfaces of the oxide semiconductor thin film layer and corresponding side surfaces of the low resistance conductive thin films coincide with each other in a channel width direction of the channel.
Abstract:
There is disclosed a shift register circuit including plural stages of signal holding circuits (FF' n) which are cascade-connected to hold a signal based on a supplied input signal, to output an output signal (out) based on the held signal based on the supplied input signal, and to supply the output signal as an input signal to a subsequent stage, each of the plural stages of signal holding circuits including an output circuit which is supplied with two types of clock signals consisting of a first clock signal (ck) and a second clock signal (ck' ), a timing of the second clock signal is delayed by a predetermined delay time with respect to a timing of applying the input signal (IN), which is supplied with a signal at a timing delayed by the delay time of the second clock signal from the timing of applying the input signal, and which outputs the output signal (OUT) at a timing responsive to the first clock signal. Also disclosed is a display drive device including the shift register circuit.
Abstract:
When a camera shake correction function is set to "on", a control unit (50) exposes a CCD ( 32). Simultaneously during the exposure, the control unit (50) generates a CCD drive signal for changing relative positions of the CCD ( 32) and a lens in accordance with a shake detection signal received from a pose sensor. In response to this signal, the position of the CCD (32) is shifted in X and Y directions perpendicular to the optical axis of the lens, thereby camera shake correction is performed. Next, the control unit (50) outputs an imaging signal obtained by using the inside of a use range for camera shake correction with the CCD (32). On the other hand, when the camera shake correction function is set to "off", the control unit (50) exposes the CCD (32) while the CCD (32) is fixed at a center position. The control unit (50) outputs an imaging signal obtained by using the entire area of the CCD (32).