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    • 2. 发明授权
    • Threshold voltage fluctuation compensation circuit for FETS
    • FETS的阈值电压波动补偿电路
    • US4857769A
    • 1989-08-15
    • US143385
    • 1988-01-13
    • Nobuo KoteraKiichi YamashitaTaizo KinoshitaHirotoshi TanakaSatoshi TanakaMinoru Nagata
    • Nobuo KoteraKiichi YamashitaTaizo KinoshitaHirotoshi TanakaSatoshi TanakaMinoru Nagata
    • H03K19/003
    • H03K19/00384
    • This invention relates to a threshold voltage detection circuit for detecting the threshold voltage of field effect transistors (FETs) and to a semiconductor circuit capable of a stable operation irrespective of the fluctuation of the threshold voltage by utilizing this threshold voltage detection circuit. The source-drain path of first FET is connected in series with that of second FET having substantially the same threshold voltage as that of the first FET and the conductances of these first and second FETs are set to a predetermined ratio to generate a voltage drop associated with the threshold voltage in the first FET. This voltage drop can be used for detecting the threshold voltage and for level-shifting. The output of the series connection of the first and second FETs is applied to the gate of a constant current FET having the same threshold voltage as that of the first and second FETs and the drain current of the constant current FET can thus be set irrespective of the fluctuation of the threshold voltage.
    • 本发明涉及一种阈值电压检测电路,用于通过利用该阈值电压检测电路来检测场效应晶体管(FET)的阈值电压和能够稳定工作的半导体电路,而与阈值电压的波动无关。 第一FET的源极 - 漏极路径与具有与第一FET基本相同的阈值电压的第二FET的源极 - 漏极路径串联连接,并且将这些第一和第二FET的电导设置为预定的比率以产生相关的电压降 与第一FET中的阈值电压。 该电压降可用于检测阈值电压和电平转换。 第一和第二FET的串联连接的输出被施加到具有与第一和第二FET相同的阈值电压的恒流FET的栅极,因此可以设定恒定电流FET的漏极电流,而不管 阈值电压的波动。
    • 5. 发明授权
    • Multi-point motion picture encoding and decoding apparatus
    • 多点运动图像编解码装置
    • US5568184A
    • 1996-10-22
    • US440710
    • 1995-05-15
    • Koichi ShibataTaizo Kinoshita
    • Koichi ShibataTaizo Kinoshita
    • H04N7/15H04N7/26H04N7/50H04N21/2365H04N21/434
    • H04N21/4347H04N19/423H04N19/61H04N21/2365H04N7/15H04N7/152H04N19/30Y10S370/902
    • A display system for displaying a plurality of video windows on a display screen. A receiving element is included for receiving video data packets from a plurality of video sources in a time sharing manner, each of the video data packets including: coded video information for representing a partial image contained within one of a plurality of blocks constituting a video frame; attribute information for indicating at least a location of a block corresponding thereto within the video frame; and identification information of the video source. A decoder element is connected to the receiving element for decoding the coded video information extracted from each of the video data packets and for outputting a partial image corresponding to one of the blocks in the video frame. A set of frame memories are included for assembling partial images into video frames, each of the frame memories having a plurality of window areas located in a predetermined layout defined therein, and a set of the window areas each located at a same location within respective frame memories being associated with a same video source with respect to each other. A writing element is included for writing each partial image derived from the decoder element into one of the window areas within one of the frame memories which is specified in accordance with the identification information extracted from a video data packet related to the partial image and a utilization status of the window areas. Finally, an outputting element is included for selectively outputting contents of the frame memories on a display screen by changing over the frame memories depending upon a display position on the display screen thereby to present a plurality of video frames at a plurality of window areas on the display screen.
    • 一种用于在显示屏幕上显示多个视频窗口的显示系统。 包括接收元件,用于以时分方式从多个视频源接收视频数据分组,每个视频数据分组包括:用于表示包含在构成视频帧的多个块之一内的部分图像的编码视频信息 ; 属性信息,用于指示视频帧内至少与其对应的块的位置; 和视频源的识别信息。 解码器元件连接到接收元件,用于对从每个视频数据包提取的编码视频信息进行解码,并输出与视频帧中的一个块对应的部分图像。 包括一组帧存储器,用于将部分图像组合成视频帧,每个帧存储器具有位于其中定义的预定布局中的多个窗口区域,以及一组各自位于相应帧内的相同位置处的窗口区域 存储器相对于彼此与相同的视频源相关联。 包括写入元件,用于将从解码器元件导出的每个部分图像写入根据与部分图像相关的视频数据包提取的识别信息指定的一个帧存储器中的一个窗口区域中,以及利用 窗口区域的状态。 最后,包括输出元件,用于通过根据显示屏幕上的显示位置改变帧存储器来在显示屏上选择性地输出帧存储器的内容,从而在多个窗口区域上呈现多个视频帧 显示屏。
    • 7. 发明授权
    • Multi-point visual communication system
    • 多点视觉通信系统
    • US5617135A
    • 1997-04-01
    • US299633
    • 1994-09-02
    • Fumio NodaKoichi ShibataTaizo Kinoshita
    • Fumio NodaKoichi ShibataTaizo Kinoshita
    • H04N7/15H04N7/14H04N7/52H04N7/60H04N7/10
    • H04N7/147H04N19/61H04N19/80H04N19/82H04N21/236H04N21/434H04N7/52
    • A multi-point visual communication system which includes an adaptive filter part for controlling a spatial frequency characteristic of a video signal, a filter selector for selecting a video quality to be transmitted from its own site on the basis of integrated requests received from sites, and a filter control for adaptively controlling a filter characteristic taking both of a video information quantity and situations of a telecommunication network into consideration, and wherein a video signal processed by the adaptive filter part is subjected to an encoding operation and then transmitted to the telecommunication network. Thereby, the video quality can be selected according to users' requests, and the video quality of the multi-point visual communication can be improved without incurring an excessive increase of a video information quantity. Further, through the video signal processing taking both the video characteristic and the telecommunication network situations into consideration, a comparatively high quality of video transmission can be realized when viewed from an information quantity.
    • 一种多点视觉通信系统,包括:用于控制视频信号的空间频率特性的自适应滤波器部分;滤波器选择器,用于根据从站点接收到的综合请求,从其自身站点中选择要发送的视频质量;以及 滤波器控制,用于考虑视频信息量和电信网络的情况自适应地控制滤波器特性,并且其中由自适应滤波器部分处理的视频信号进行编码操作,然后发送到电信网络。 因此,可以根据用户的请求选择视频质量,并且可以提高多点可视通信的视频质量,而不会导致视频信息量的过度增加。 此外,通过考虑视频特性和电信网络情况的视频信号处理,当从信息量观察时,可以实现较高质量的视频传输。
    • 10. 发明授权
    • Video signal transmitting method and equipment of the same
    • 视频信号传输方法和设备相同
    • US5159452A
    • 1992-10-27
    • US604638
    • 1990-10-22
    • Taizo KinoshitaYoshizumi Eto
    • Taizo KinoshitaYoshizumi Eto
    • H04N1/32H04B14/04H04L12/70H04L12/951H04N1/40H04N7/60H04N19/89
    • H04N21/434H04N19/85H04N19/88H04N19/89H04N21/236
    • A video signal transmitting method comprising: a sending method including the steps of: dividing an analog video signal in a unit corresponding to integer times of a number of bits composing an information field of one packet in packet transmission and converting into a digital video signal, forming a digitalized video signal into a plurality of packets, forming a plurality of packets into a first packet block in M lines.times.N columns, adding an error correction code which corrects a longitudinal error of data in a first packet block as a second packet block in P lines.times.N columns in an (M+1)th line and thereafter, and sending a packet; and a receiving method including the steps of: recomposing the same packet block as that composed on a sending side from plurality of received packets, recovering a video signal with packet loss information from an exchange and an error correction code formed into a packet, and regenerating an analog video signal from a digital video signal after recovery.
    • 一种视频信号发送方法,包括:发送方法,包括以下步骤:将分组发送中组成一个分组的信息字段的位数的整数倍的整数倍的模拟视频信号分割成数字视频信号, 将数字化视频信号形成多个分组,将多个分组形成为M行×N列中的第一分组块,添加纠错码,其将第一分组块中的数据的纵向误差校正为第二分组块,其中P (M + 1)行中的linesxN列,之后发送分组; 以及接收方法,包括以下步骤:从多个接收到的分组重构与在发送侧构成的分组块相同的分组块,从交换机恢复分组丢失信息的视频信号和形成分组的纠错码,并重新生成 来自恢复后的数字视频信号的模拟视频信号。