Abstract:
PROBLEM TO BE SOLVED: To detect gesture input and transmit a request for a terminal to be operated, to the terminal to be operated, wherein the request corresponds to the gesture input. SOLUTION: An operation-input part 10, which receives input such as contact or depression, transmits that effect to a signal-output part 20, The signal-output part 20 outputs operation signals to a buffer 30 and a transmission part 70. The buffer 30 retains the operation signals. When inputting is repeated to the operation-input part 10, a plurality of operation signals are retained in the buffer 30. Requests to a prescribe signal sequence and equipment to be operated, which correspond to the signal sequence, are retained in a signal sequence list 40. A request retrieval part 50 retrieves a signal sequence, which accords with the signal sequence in which the operation signals retained in the buffer 30 are periodically arranged, from the signal sequence list 40. When an accordant signal sequence is retrieved, a request to equipment to be operated, which corresponds to the signal sequence, is outputted to the transmission part 70 and transmitted to the equipment to be operated. COPYRIGHT: (C)2007,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To improve convenience to users by enabling transmission of movement information representing its own movement direction and movement quantity. SOLUTION: In an information-processing device (an optical mouse 11), a mode determination part 71 determines whether an operation mode of the mouse 11 is an ordinary mode in which the mouse 11 is used in a prescribed posture or a flip mode in which the mouse 11 is used in a posture in which the mouse 11 is overturned to the prescribed posture. A movement information generation part 72 generates movement information based on light received by a light-receiving part 35. An upside-down inversion part 73 outputs the movement information as it is when the operational mode is determined to be the ordinary mode by the mode determination part 71. When the operational mode is determined to be the flip mode, the upside-down inversion part 73 inverts a direction, in which a cursor is vertically moved in the ordinary mode, in the moving direction indicated by the movement information, and then outputs the movement information. COPYRIGHT: (C)2007,JPO&INPIT
Abstract:
PURPOSE:To conduct various processing on the basis of information read by reading a code printed on printing paper by the light-receiving information of a photo-detector receiving the return light of applied light. CONSTITUTION:A code printed on printing paper 1 is irradiated with the emitted light of a light-emitting device 9 for confirming the position of the printing start of printing paper 1, the return light of applied light is received by the photo-detector 9, and the code printed on printing paper 1 is read by the light- receiving information of the photo-detector 9. The information of a statistical table 1a read by an image input section 19, statistical-table information prepared on an LCD display 23 by using a keyboard 16 and the information of the statistical table 1a read by a position-beam driving and bar-code read section 14 by employing the position beam 9 with said light-emitting section and light-receiving section are stored in a read information memory 20. The LCD display 23 is supplied with the stored image, and the stored image is displayed on the display surface of an image output memory 21.
Abstract:
PURPOSE:To print data in a frame corresponding to the specified item of an existing statistical table by converting statistical-table information prepared on the display surface of a display means by the input of a keyboard into a bar code by a conversion means. CONSTITUTION:A bar code converter for statistical-table information has a keyboard 16, a processing means such as a CPU 10 processing the input data of the keyboard 16, a display means such as an LCD display 23 displaying input data from the processing means and a conversion means converting statistical-table information prepared on a display surface into a bar code. Statistical-table information prepared on the display surface of the LCD display 23 by the input of the keyboard 16 is converted into the bar code by the CPU 10. Accordingly, when the bar code converter is applied to a word processor, etc., with a printer, the statistical-table information of statistical table paper changed into the bar code is read by simple constitution, and data in a frame corresponding to the specified item of an existing statistical table can be printed on the basis of the information.
Abstract:
PURPOSE:To print data in a frame corresponding to the specified item of an existing statistical table by reading statistical-table information by a statistical- table information read means and converting the read statistical-table information into a bar code by a bar code conversion means. CONSTITUTION:A bar code converter for statistical-table information has a read means reading statistical-table information such as a position-beam driving and bar-code read section 14 and a bar-code conversion means such as a CPU 10. Statistical-table information is read by the position-beam driving and bar- code read section 14, etc., and the read statistical-table information is converted into a bar code by the CPU 10, etc., with a statistical table/coordinate conversion section 10a and a coordinate/bar code conversion section 10b. Accordingly, when the bar code converter is applied to a word processor, etc., with a printer, the statistical-table information of statistical table paper changed into the bar code is read by simple constitution, and data in a frame corresponding to the specified item of an existing statistical table can be printed on the basis of the information.
Abstract:
PURPOSE:To provide a multi-mode step motor which can optimally be driven with a plurality of power supply voltages or a plurality of rotational speeds. CONSTITUTION:Each phase driving coil of a step motor 1 is split into sections L1, L3, L5, L7 having high number of turns and sections L2, L4, L6, L8 having low number of turns, and respective driving coils are connected with driving transistors TR1-TR8. Under low speed mode or high voltage mode, the transistors TR1, TR3, TR5, TR7 drive the coils L1, L3, L5, L7 while under high speed mode or low voltage mode, the transistors TR2, TR4, TR6, TR8 drive the coils L2, L4, L6, L8.
Abstract:
PURPOSE:To prevent abnormality such as damage or runaway from being generated even when the connection of each processing is loaded or unloaded keeping a hot line state, by providing a control means for the sequence of a signal on a first signal processing part side and a standby signal generation circuit on a second signal processing part side, and controlling the sequence of the signal based on the presence/ absence of a standby signal. CONSTITUTION:The standby signal generation circuit 11 is provided at the second signal processing part 2 which receives the supply of a power source. And when it is connected to the first signal processing part 1, the standby signal is issued after the supply of the power source is received surely and the state of a circuit is set at a normal state, and a state where the transfer of the signal can be performed is set by the control means 7 and 8 of the first signal processing part 1 which receives the standby signal. Meanwhile, since the standby signal disappears when a disconnection state is set, a separated state is set by the control means 7 and 8, and the state possible to be connected at any time is set. In such a way, it is possible to prevent the abnormality such as the damage, etc., from being generated even when loading or unloading is performed keeping the ON state of the power source of the signal processing part.