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    • 22. 发明授权
    • Cathode-ray tube dividing apparatus and cathode-ray tube dividing method
    • 阴极射线管分割装置和阴极射线管分割方法
    • US6089937A
    • 2000-07-18
    • US316043
    • 1999-05-21
    • Takashi ShojiTadanori KawamuraTomoya Oikawa
    • Takashi ShojiTadanori KawamuraTomoya Oikawa
    • H01J9/50H01J9/52
    • H01J9/52Y02W30/828
    • Disclosed are a cathode-ray tube dividing apparatus and a cathode-ray tube dividing method intended to simply and stably divide a cathode-ray tube in a shortened time. The dividing apparatus includes a positioning means for fixedly positioning the used cathode-ray tube at a specific location, and a cathode-ray tube heating means which is brought into contact with a specific portion on side surfaces of the cathode-ray tube for linearly heating the specific portions. The cathode-ray tube heating means includes linear heating members for imparting thermal strain to the side surfaces of the cathode-ray tube upon receiving a power, thereby dividing the cathode-ray tube into the panel portion and the funnel portion, and a power supply for supplying a heating power to the linear heating members. The power supply is adapted to supply a first power for generating cracks on the side surfaces of the cathode-ray tube to the linear heating members, and to supply, after generation of the cracks, a second power larger than the first power to the linear heating members.
    • 公开了一种阴极射线管分割装置和阴极射线管分割方法,其目的是在缩短的时间内简单且稳定地分割阴极射线管。 分割装置包括:定位装置,用于将所用的阴极射线管固定在特定位置,阴极射线管加热装置与阴极射线管侧面的特定部分接触,用于线性加热 具体部分。 阴极射线管加热装置包括线性加热构件,用于在接收电力时向阴极射线管的侧表面施加热应变,从而将阴极射线管分成面板部分和漏斗部分,以及电源 用于向线性加热件提供加热功率。 电源适于在线性加热部件的阴极射线管的侧面产生产生裂纹的第一电力,并且在产生裂纹之后,将大于第一功率的第二功率提供给线性 加热构件。
    • 24. 发明授权
    • CDMA communication method, CDMA transmitter and CMDA receiver
    • CDMA通信方式,CDMA发射机和CMDA接收机
    • US5926471A
    • 1999-07-20
    • US878629
    • 1997-06-19
    • Takashi Shoji
    • Takashi Shoji
    • H04B1/707H04B1/7073H04L7/00H04B7/216
    • H04B1/707
    • For a CDMA communication system using an interference canceller, a communication system which enables the interference canceller to easily confirm pulling-in of its own signal is disclosed. Input transmission signals are stored through a serial-parallel converter 101 in storage circuits 301 and 302, each of which holds one frame of transmission signals for I and Q axes. An area for holding one cycle of spreading codes for the I and Q axes output from a spreading code generator 105 is formed in the rearmost part of each of the transmission data strings of the storage circuits 301 and 302. One frame of transmission signals prepared by a pilot inserting device 102 and frame synchronizing signals are transferred to a transmitted circuit 103 in sequence. These signals are then transmitted as data for the I and Q axes by symbol rate clocks. The data for the I and Q axes are multiplied by chip rate spreading codes output from a spreading code generator 105, a spreading code for the I axis and a spreading code for the Q axis in a spreader 104 and then output as spread spectrum signals.
    • 对于使用干扰消除器的CDMA通信系统,公开了能够使干扰消除器容易地确认其自身信号的引入的通信系统。 输入传输信号通过串行/并行转换器101存储在存储电路301和302中,每个存储电路保持用于I和Q轴的一帧传输信号。 在存储电路301和302的每个发送数据串的最后部分中形成用于保持从扩​​展码发生器105输出的用于I和Q轴的一个扩展码的一个周期的区域。一帧传输信号由 导频插入装置102和帧同步信号依次传送到发射电路103。 然后,通过符号速率时钟作为I轴和Q轴的数据发送这些信号。 将I轴和Q轴的数据乘以从扩展码发生器105输出的码片速率扩展码,I轴的扩展码和扩频器104中的Q轴的扩展码,然后作为扩展频谱信号输出。
    • 27. 发明授权
    • Laser beam recording apparatus
    • 激光束记录装置
    • US4831626A
    • 1989-05-16
    • US157813
    • 1988-02-19
    • Hideo WatanabeTakashi Shoji
    • Hideo WatanabeTakashi Shoji
    • G11B7/003G11B7/125H01S5/0683
    • G11B7/126G11B7/003H01S5/0683
    • A laser beam recording apparatus is provided with a laser operation control circuit for controlling a drive current for a semiconductor laser based on a light emission level instructing signal to modulate the optical intensity of a laser beam emitted by the semiconductor laser, an optical output stabilizing circuit for feeding a feedback signal corresponding to a detected intensity of the laser beam to the light emission level instructing signal, a gain adjuster provided in the optical output stabilizing circuit, and a gain controller for controlling the gain adjuster based on the light emission level instructing signal to compensate for fluctuations in a differential quantum efficiency of the semiconductor laser, and maintaining constant the gain of the optical output stabilizing circuit. Or, the laser operation control circuit is provided with the optical output stabilizing circuit, and a gain adjuster is provided in the optical output stabilizing circuit.
    • 激光束记录装置设置有激光操作控制电路,用于根据发光电平指示信号来控制半导体激光器的驱动电流,以调制由半导体激光器发射的激光束的光强度,光输出稳定电路 用于将对应于激光束的检测强度的反馈信号馈送到发光电平指令信号,设置在光输出稳定电路中的增益调节器,以及用于基于发光电平指示信号控制增益调节器的增益控制器 以补偿半导体激光器的差分量子效率的波动,并且保持光输出稳定电路的增益的恒定。 或者,激光操作控制电路设置有光输出稳定电路,并且在光输出稳定电路中设置增益调节器。
    • 28. 发明授权
    • Solid-state imaging device and imaging device
    • 固态成像装置和成像装置
    • US08525911B2
    • 2013-09-03
    • US13053950
    • 2011-03-22
    • Takashi Shoji
    • Takashi Shoji
    • H04N3/14H04N5/335H01L27/00H01L31/062H01L31/113H01L27/146
    • H01L27/1464H01L27/14641H04N5/3742H04N5/37457H04N9/045
    • Disclosed herein is a solid-state imaging device including: a plurality of common pixel sections arranged in a matrix form so that pixel signals of a plurality of photoelectric conversion elements arranged in the same row can be output; a plurality of row address lines used to select some of the photoelectric conversion elements in each row; and a scan section that allows for the pixel signals of the plurality of photoelectric conversion elements to be output through addressing adapted to select the plurality of row address lines one at a time in sequence, in which the plurality of row address lines are connected to the plurality of photoelectric conversion elements arranged in the same row in each of the common pixel sections so that the scan section can individually select the plurality of photoelectric conversion elements arranged in the same row in each of the common pixel sections during addressing.
    • 这里公开了一种固态成像装置,其包括:以矩阵形式布置的多个公共像素部分,使得可以输出布置在同一行中的多个光电转换元件的像素信号; 多行行地址线,用于选择各行中的一些光电转换元件; 以及扫描部,其允许通过寻址输出所述多个光电转换元件的像素信号,所述寻址适于一次一个地选择所述多个行地址线,其中所述多个行地址线连接到 在每个公共像素部分中布置在同一行中的多个光电转换元件,使得扫描部分可以在寻址期间分别选择在每个公共像素部分中布置在同一行中的多个光电转换元件。
    • 29. 发明授权
    • Display device
    • 显示设备
    • US08446356B2
    • 2013-05-21
    • US12572383
    • 2009-10-02
    • Yoshihisa OoishiJunichi MaruyamaTakashi ShojiKikuo OnoMasahiro Fukata
    • Yoshihisa OoishiJunichi MaruyamaTakashi ShojiKikuo OnoMasahiro Fukata
    • G09G3/36
    • G09G3/3611G09G3/2011G09G3/2025G09G3/2081G09G3/3406G09G2320/0261G09G2320/0271G09G2320/0646G09G2340/0435G09G2360/16H04N7/0132
    • The display device including: a display panel; a backlight; a memory for converting frame rate of an input video signal and outputting a video signal; an interpolation frame generation unit for generating an interpolation frame based on the video signal output from the memory; a histogram generator for generating a histogram based on the input video signal; and a backlight brightness calculation unit for calculating a backlight control signal, the display device further comprising: wherein image data for display, which is obtained by an N-th frame of the input video signal, and image data of the interpolation frame generated based on the N-th frame and an (N+1)-th frame of the input video signal, is input to the display panel; and wherein the backlight control signal calculated based on the histogram generated based on the image data of the N-th frame is used for displaying the image data for display.
    • 该显示装置包括:显示面板; 背光; 用于转换输入视频信号的帧速率并输出视频信号的存储器; 内插帧生成单元,用于基于从存储器输出的视频信号来生成内插帧; 直方图生成器,用于基于输入视频信号生成直方图; 以及用于计算背光控制信号的背光亮度计算单元,所述显示装置还包括:其中通过所述输入视频信号的第N帧获得的用于显示的图像数据和基于所述输入视频信号生成的内插帧的图像数据 输入视频信号的第N帧和第(N + 1)帧被输入到显示面板; 并且其中基于基于第N帧的图像数据生成的直方图计算的背光控制信号用于显示用于显示的图像数据。