Abstract:
Color-corrected picture signal by color signal converting part(6) is recorded in frame buffer(14) via frame buffer controller(7). Recorded picture data in frame buffer(14) is output to compressing/decompressing part(8) via frame buffer controller(7) for compression. Compressing/decompressing part(8) compresses the input picture signal in accordance with JPEG standard to output it to memory card controller(9), then the memory card controller(9) records that compressed picture signal onto PCMCIA memory card(10). The compress picture signal written on the memory card(10) is read in order by memory card controller(9) to be decompressed at compressing/decompressing part(8). The decompressed data is stored in frame buffer(14) through frame buffer controller(7). Once the decompression is done, the restored signal stored in frame buffer(14) is selected by multiplexor(19) to be transferred to digital encoder(20).
Abstract:
a microcomputer (46) for analyzing a mode control signal to output a mode selection recording/reproducing command; a multi-display controller (50) for outputting the first and the second sampling clocks (ADCK)(DACK), multi-display record/play control signal, the first and the second switching signals; an A/D converter (52) for converting an input analog signal to a digital signal based on the first sampling clock (ADCK); an analog switch (48) for selecting a luminescence signal (Y) and the first and the second color-difference signals (R-Y)(B-Y) to send to the A/D converter (52); a multi-display memory including a number of memories (54)(56)(58); a D/A converters (60)(62)(64) for converting the output data from the memories (54)(56)(58) to the analog form of the luminescence signal (Y) and the first and the second color-difference signals (R-Y)(B-Y); a video switch (66) for selectively outputting the luminescence signal (Y) and the first and the second color-difference signals (R-Y)(B-Y) from the D/A converters under a second switching control signal; and an encoder (42) for encoding the output signal of the video switch (66) and the sync signal to generate a complex video signal.
Abstract in simplified Chinese:一种读取设备包含一用以投影光之投影设备,该光系为一光源所放出而至具有予以被扫描之一标志或多数标志表面区域的部份,与一光学单元用以十取与摄影反射光至一影像感应器。该影像感应器把反射光转换成一串行之信号。读取设备同时也包含一移动检测器,用以当读取设备之移动于表面区域时,产生同步信号,与一信号处理单元,把影像感应器的信号转换成数据封包,诸封包包含来自该表面区域之自由选择部份之文数字,图形或绘画数据。然后,这些信号是被存盘于一存储单元并能被叫出作更进一步处理。
Abstract in simplified Chinese:将2 台电子式静像摄影机的通信端子之间以所定的电缆或红外线连接。将可从记忆在要发送图像一边的电子式静像摄影机内的瞬时内存之图像数据中,发送的图像数据显示于液晶显示器上。按下当作主方功能一边的电子式静像摄影机的输入键盘之快门键,确定图像数据后,指示发信或收信。被按下快门键的摄影机成为主方侧,另一边的成为从属侧。发信时,可向从属一方发送瞬时内存内的任一或所有图像数据,收信时,可由从属一边向主方一边发发图像数据。接收到的图像数据系经由动态随机存取内存,记亿在瞬时内存之内。
Abstract:
According to an embodiment, an image forming apparatus belonging to a pre-defined group comprises a storage section, an interface section and a processor. The storage section stores first setting information. The interface section receives second setting information. The processor compares the first setting information with the second setting information. If the second setting information is the newer one, the processor replaces the first setting information with the second setting information to update it, and reflects it to enable the image forming apparatus to operate according to the second setting information, and controls the interface section to send the second setting information to other image forming apparatuses belonging to the group. If the first setting information is the newer one, the processor controls the interface section to send the first setting information to other image forming apparatuses belonging to the group.
Abstract:
A wireless mode between a scanner and an image communication apparatus is changed, in response to completion of image transmission from the scanner to the image communication apparatus, completion of print of the image sent from the scanner to the image communication apparatus, completion of transmission via a communication line connected to the image communication apparatus of the image sent from the scanner to the image communication apparatus, instructions to stop print of the image sent from the scanner to the image communication apparatus, instructions to stop transmission via the communication line connected to the image communication apparatus of the image sent from the scanner to the image communication apparatus, and states of the scanner and the image communication apparatus at a predetermined time and so on. For example, a low power consumption mode and communication mode of Bluetooth communication are switched to each other.
Abstract:
An image processing adapter having an input connected to a digital image source for receiving digital image data generated or captured by the source. A processing system in the adapter automatically processes the received digital image data to produce processed image data customized for the digital image source. An output connected to the processing system outputs the processed image data to a connected PC or to a network node at a predetermined network destination.
Abstract:
When a user logs in to an MFP (S200), places an original on a scanner, and instructs the MFP to start a process, the MFP scans the original to recognize characters and words, and creates a word appearance frequency list (S201). Thereafter, records (histories) contained in information about histories of jobs that were executed in the past are narrowed into histories that were executed by users having the same attribute as that of the login user (S202). Functions of jobs contained in identified histories are compared, and job histories having similar functions are grouped. Finally, functions and settings of remaining histories are displayed on a user interface (S204). When any of them is selected, a document is processed according to the selected function and setting (S205). Thereafter, a history of the job is stored (S206).
Abstract:
An image forming apparatus monitoring system which is configured so as to reduce an installing operation load for installation of image forming apparatuses including settings relating to monitoring apparatus. In the present system, when a multi-function machine determines that it is not registered in the image forming apparatus monitoring system, the multi-function machine searches for a monitoring apparatus 105 which matches the multi-function machine, and selects the monitoring apparatus 105 which is to monitor the multi-function machine, based on monitoring apparatus information acquired from the searched monitoring apparatus 105. When receiving a notification of the start of monitoring from the selected monitoring apparatus 105, the multi-function machine stores the notification in a storage area as registration completion information. On the other hand, the monitoring apparatus 105 transmits monitor request information received from the multi-function machine to the monitoring host 101, and starts monitoring the multi-function machine when determining from the result of the monitor request that registration of the multi-function machine in the monitoring host 101 is completed.