Abstract:
A communication terminal device carries out data processing based on key or touch panel operations and provides a telephone conversation function. When a key is actuated, a key input confirmation sound is generated. When data input is performed on the touch panel with a pen, a pen impact sound caused by striking the touch panel with the pen and a pen frictional sound caused by rubbing the touch panel with the pen are generated. In the telephone conversation mode, the key input confirmation sound, the pen impact sound, and the pen frictional sound are picked up as noises by the microphone. Upon detecting such noises, the communication terminal device generates noise and cancelling signals corresponding to the respective noises and cancels each noise from a voice signal input form the microphone. Thus, a voice signal free from noises is transmitted.
Abstract:
In an image processing system utilized with a car navigation system, an image photographed by a digital camera and a map image in relation to this photographed image can readily confirm a driver where this photographed image has been acquired with respect to the map. The image processing system is constituted by: an image storage unit for storing photographed image data and positional information data acquired in correspondence with the photographed image data; a map image storage unit for storing map image data; a retrieval unit for retrieving a position with respect to the map image data stored in the map image storage unit based upon the positional information data stored in the image storage unit; and an image output unit for outputting a map image of the map image data about the position retrieved by the retrieval unit, and a photographed image of the photographed image data in correspondence with the map image data.
Abstract:
Defining information (7) for defining the condition for adding background colors is previously stored in a condition storage area (10), and a spreadsheet form is registered in a form storage area (11). Alphanumeric character data to be written in a cell of a spreadsheet are stored in a record storage area. When a CPU (1) is instructed to start printing, the CPU (1) outputs the alphanumeric character data as output data (8) to a data value decision section. The data value decision section (9) read the output data (8) and decide a background color in accordance with the read output data to prepare a print record to which color information is added. A printer control section prepares print data (14) to which the background color is added in accordance with the color information (14a) for the print record (14) and the spreadsheet form registered in the form storage area (11).
Abstract:
An electronic device with a sensor displays in colors, in accordance with values measured by the sensor, information associated with the values. When a temperature measurement mode is selected, a control unit (11) causes a temperature sensor (21) and a measuring circuit (20) to detect a temperature of snow, and writes data of the detected temperature of snow in a temperature data registrer (C) of a display register (40) of a RAM (12). The control unit (11) also reads display color data, corresponding to a company name of a ski wax maker stored in a company name register (N) of the RAM (12) and a value of the temperature data register (C) of the display register (40), from a color conversion table of a ROM (13) which stores display color data representing index colors of ski wax of the respective ski wax makers. The control unit (11) causes a display unit (15) to display the company name stored in the company name register (N) and the data of detected temperature of snow stored in the temperature data register (C) in the color corresponding to the display color data stored in the display color register (L) of the display register (40).
Abstract:
An incoming calling system of the present invention purposes to securely notify the user of the incoming to a radio portable terminal of a mobile communication unit or the like without disturbing others and decrease the probability of erroneous notification. Therefore, an incoming notification signal transmitter (24) for notifying the user of incoming can detect an incoming tone by inserting a jack into and connecting it with an earphone-microphone terminal (23) provided for a portable telephone (21) side and moreover, an incoming notification signal transmitter (24) is set to and supported by portable telephone (21). When portable telephone (21) receives an incoming call signal according to incoming calling from a base station (22), it generates a speech signal of an incoming tone and the speech signal is input to the incoming notification signal transmitter (24) through the earphone-microphone terminal (23) to detect incoming. The incoming notification signal transmitter (24) is constituted so as to generate incoming notification signal (25), transmit the signal to a card-type incoming notification signal receiver (26) or a wrist-type incoming notification signal receiver (27) by radio, and notify the user of incoming at portable telephone (21) side by vibration or a sound output buzzer.
Abstract:
L'INVENTION CONCERNE UN APPAREIL D'ENREGISTREMENT OU DE REPRODUCTION. L'APPAREIL COMPREND UN DISPOSITIF DE MISE EN FORME D'ONDES COMPRENANT UNE SOURCE LUMINEUSE 10A, UNE OBTURATION DE LUMIERE A CRISTAUX LIQUIDES 10C POUR LAISSER PASSER OU ARRETER LA LUMIERE EMISE PAR LA SOURCE ET UN CIRCUIT DE COMMANDE SERVANT A COMMANDER PLUSIEURS ELECTRODES DE L'OBTURATEUR PAR UTILISATION DE SIGNAUX DE COMMANDE D'ACTIVATION COMPRENANT UN SIGNAL DE HAUTE FREQUENCE F ET UN SIGNAL DE BASSE FREQUENCE F; LES FREQUENCES F ET F SONT RESPECTIVEMENT SUPERIEURE ET INFERIEURE A LA FREQUENCE QUI ANNULE L'ANISOTROPIE DIELECTRIQUE DES CRISTAUX LIQUIDES. LE DISPOSITIF DE MISE EN FORME D'ONDES COMPORTE UNE MEMOIRE MORTE DANS LAQUELLE PLUSIEURS SIGNAUX DE COMMANDE DE BASE SONT MEMORISES, UN COMPTEUR POUR ADRESSER DES EMPLACEMENTS DESIRES DE LA MEMOIRE MORTE ET UN SELECTEUR DE FORMES D'ONDES POUR SELECTIONNER LES SIGNAUX DE COMMANDE DE BASE; LES SIGNAUX DE COMMANDE D'ACTIVATION SONT FORMES PAR COMBINAISON DES SIGNAUX DE COMMANDE DE BASE EN VUE DE PRODUIRE UN SIGNAL DE MODELE D'ACTIVATION DESIRE.
Abstract:
Appareil de reconnaissance de caractères. Cet appareil comprend une unité 17 d'introduction comportant une pluralité de touches. Lorsque le doigt d'un opérateur est en contact avec au moins deux des touches, les composantes de capacité de contact des touches sont détectées par une unité de détection de composante de capacité. Les coordonnées du point central de contact des touches sont calculées par des unités 11, 13, 14 de calcul à partir des composantes de capacité de contact de la touche ainsi détectée. Le caractère manuscrit sur la pluralité des touches est reconnu par des unités 11, 12, 14 de reconnaissance de caractères à partir des coordonnées du point central de contact calculées par les unités de calcul. Applications notamment à de petits appareils électroniques tels que des mini-ordinateurs et des chronomètres, montres et horloges électroniques. (CF DESSIN DANS BOPI)
Abstract:
A printer includes a thermal head and a processor. The thermal head energizes heating elements for printing on a printing medium. The processor generates interpolating data close to at least one step in an image to be printed with a plurality of printing dots in accordance with first print data, adds the interpolating data to the first print data to generate second print data, and controls the thermal head to print the image to be printed in accordance with the second print data. The interpolating data is for printing an interpolating dot through energization during any of sub-energization periods. An energization period for energizing the heating elements corresponding to the printing dots is divided into the sub-energization periods.
Abstract:
A digital-to-analog conversion device which performs integration processing for integrating a difference between an input signal and a first return signal generated based on the input signal, and outputting an integration result, first quantization processing for quantizing the integration result, and outputting a first quantization signal, first return signal output processing for outputting the first return signal by adding to the first quantization signal a correction value delay signal acquired by a correction value signal outputted based on the integration result being delayed, and output processing for outputting output signals including a signal whose pulse width is asymmetrical to center of a processing period, based on the first quantization signal, in which the correction value signal includes a signal indicating a correction value for correcting a difference between a center of the pulse width asymmetrical to the center of the processing period and the center of the processing period.
Abstract:
A solar panel (3) of the present invention, above which pointers (7) mounted on a pointer shaft inserted into a through hole (3a) provided at the center of the solar panel (3) move, includes a center cell (10) circularly formed around the through hole (3a) and a plurality of outer-circumferential cells (11-15) formed around the outer periphery of the center cell (10) in a manner to have substantially same light -receiving areas. The center cell (10) is formed to have a light-receiving area larger than the light-receiving area of each outer-circumferential cell (11-15), taking into consideration a light-shielding area where the pointers (7) overlap with the center cell (10). Therefore, even though the pointers (7) always overlap with the center cell (10) and part of the pointers (7) overlaps with one of the plurality of outer-circumferential cells (11-15), the fluctuation of each light-receiving area of the center cell (10) and the plurality of outer-circumferential cells (11-15) due to this overlap can be minimized.