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    • 1. 发明授权
    • Television signal processing apparatus
    • 电视信号处理装置
    • US5142353A
    • 1992-08-25
    • US685164
    • 1991-04-12
    • Sadashi KageyamaYoshio AbeYoshio YasumotoShuji InoueHideyo Uwabata
    • Sadashi KageyamaYoshio AbeYoshio YasumotoShuji InoueHideyo Uwabata
    • H04N11/24
    • H04N11/008
    • A television signal processor which is compatible with the existing television systems and is capable of producing television signals having a larger aspect ratio than the standard aspect ratio has an arrangement such that, at the transmission side, a main signal and a multiplex signal are produced from an electrical signal obtained by receiving an original image through processes such as time-axis compression, time-axis expansion, and chrominance signal processing, and are subjected to non-time-axis multiplexing. The processor has a further arrangement such that, at the reception side, there are provided a circuit for separating the non-time-axis multiplexed signal, a circuit for separating a luminance signal and a chrominance signal, a circuit for demodulating the chrominance signal, a circuit for effecting time-axis compression, a circuit for time-axis expanding the time-axis multiplexed signal, and a circuit for time-axis compressing the non-time-axis multiplexed signal. A receiver provided with this processor may receive images broadcast under the existing television systems without troubles and also may reproduce TV images with a larger aspect ratio than the conventional 4:3 aspect ratio by the application of synchronous detection, time-axis compression, time-axis expansion, etc.
    • 与现有电视系统兼容并且能够产生具有比标准宽高比更大的纵横比的电视信号的电视信号处理器具有以下结构:在发送侧,主信号和多路信号由 通过诸如时间轴压缩,时间轴扩展和色度信号处理的处理接收原始图像而获得的电信号,并且进行非时间轴多路复用。 该处理器具有另外的结构,即在接收侧设置有用于分离非时间轴多路复用信号的电路,用于分离亮度信号和色度信号的电路,用于解调色度信号的电路, 用于实现时间轴压缩的电路,用于时间轴扩展时间轴多路复用信号的电路,以及用于时间轴压缩非时间轴多路复用信号的电路。 设置有该处理器的接收机可以在现有的电视系统下接收图像而无需麻烦,并且还可以通过应用同步检测,时间轴压缩,时间轴压缩,再现具有比传统的4:3宽高比更大的宽高比的TV图像。 轴扩展等
    • 3. 发明授权
    • Multiplex TV signal processing apparatus
    • 多路电视信号处理装置
    • US4985769A
    • 1991-01-15
    • US174452
    • 1988-03-23
    • Yoshio YasumotoSadashi KageyamaShuji InoueYoshio AbeHideyo Uwabata
    • Yoshio YasumotoSadashi KageyamaShuji InoueYoshio AbeHideyo Uwabata
    • H04N7/08H04N11/24
    • H04N11/008H04N7/08
    • Disclosed are multiplex television signal processing apparatuses in a television signal transmitting and receiving system. An apparatus at the transmitting side comprises: a signal separator to separate a multiplex signal into a first and a second part; a time-multiplexer to time-multiplex a main television signal and the first part of the multiplex signal to obtain a time-multiplexed main signal; a first amplitude-modulator for modulating a first carrier by the multiplexed main signal to obtain a vestigial side band signal, amplitude-modulated main signal; a second amplitude-modulator for modulating a second carrier which is same in frequency as but different in phase by 90 degrees from the first carrier by a second multiplex signal; an inverse Nyquist filter for filtering this signal to obtain a vestigial side band, amplitude-modulated multiplex signal; and an adder for adding the vestigial side band, amplitude-modulated main and multiplex signals to obtain a multiplexed signal.An apparatus at the receiving side comprises: a Nyquist filter for filtering the multiplexed signal; a carrier regenerator for regenerating the first and second carriers from the multiplexed signal; a main signal detector for detecting the main signal from the multiplexed signal passed through the Nyquist filter by using the first carrier; a filter for removing quadrature distortion from the multiplexed signal; a multiplex signal detector for detecting the first multiplex signal from the multiplexed signal passed through the filter by using the second carrier; a time-demultiplexer to time-demultiplexing the main signal into a main television signal and a second multiplex signal; and a signal composer for composing the first and second multiplex signal to obtain the original multiplex signal.
    • 公开了一种电视信号发送和接收系统中的多路复用电视信号处理装置。 在发送侧的装置包括:信号分离器,用于将多路复用信号分离成第一和第二部分; 时分复用器,用于时分复用主电视信号和多路复用信号的第一部分,以获得时分复用的主信号; 第一幅度调制器,用于通过所复用的主信号调制第一载波,以获得残留边带信号,幅度调制主信号; 第二幅度调制器,用于通过第二多路复用信号调制与第一载波频率相同但相位相差90度的第二载波; 逆奈奎斯特滤波器,用于对该信号进行滤波以获得残留边带,调幅多路复用信号; 以及用于将残留边带,幅度调制的主复用信号和多路复用信号相加以获得复用信号的加法器。 接收侧的装置包括:奈奎斯特滤波器,用于对复用的信号进行滤波; 载波再生器,用于从多路复用信号再生第一和第二载波; 主信号检测器,用于通过使用第一载波从经过奈奎斯特滤波器的复用信号中检测主信号; 滤波器,用于从多路复用信号中去除正交失真; 多路复用信号检测器,用于通过使用第二载波从经过滤波器的复用信号中检测第一多路复用信号; 时分解复用器,将主信号时分解复用成主电视信号和第二多路复用信号; 以及用于构成第一和第二多路复用信号以获得原始多路复用信号的信号编组器。
    • 5. 发明授权
    • Television signal processing apparatus
    • 电视信号处理装置
    • US5036386A
    • 1991-07-30
    • US383154
    • 1989-07-19
    • Yoshio YasumotoSadashi KageyamaSyuji InoueYoshio AbeHideyo Uwabata
    • Yoshio YasumotoSadashi KageyamaSyuji InoueYoshio AbeHideyo Uwabata
    • H04N11/24
    • H04N11/008
    • A signal processing apparatus in a television signal transmitting system includes: a first group of delay lines for obtaining a first series of parallel signals; a first group of coefficient multipliers for weighting the first series of signals; a first adder for adding outputs of the first group of coefficient multipliers; a second group of delay lines for obtaining a second series of parallel signals; a second group of coefficient multipliers for weighting the second series of signals; a second adder for adding outputs of the second group of coefficient multipliers and one of the first series of signals; and a transmitter for transmitting output signals from the first and second adders. A signal processing apparatus in a television signal receiving system includes: an input circuit for receiving first and second signals; a first group of delay lines for obtaining a first series of parallel signals; a first group of coefficient multipliers for weighting the first series of signals; a first adder for adding outputs of the first group of coefficient multipliers and the second signal; a second group of delay lines for obtaining a second series of parallel signals; a second group of coefficient multipliers for weighting the second series of signals; a coefficient multiplier for weighting one of the first series of signals; a second adder for adding outputs of the second group of coefficient multipliers and the coefficient multiplier; and a signal composer for composing the output signals from the first and second adders.
    • 电视信号发送系统中的信号处理装置包括:第一组延迟线,用于获得第一串并行信号; 用于对第一系列信号进行加权的第一组系数乘法器; 第一加法器,用于相加第一组系数乘法器的输出; 用于获得第二系列并行信号的第二组延迟线; 用于对第二系列信号进行加权的第二组系数乘法器; 第二加法器,用于将第二组系数乘法器的输出和第一系列信号之一相加; 以及用于发送来自第一和第二加法器的输出信号的发射器。 电视信号接收系统中的信号处理装置包括:输入电路,用于接收第一和第二信号; 用于获得第一系列并行信号的第一组延迟线; 用于对第一系列信号进行加权的第一组系数乘法器; 第一加法器,用于将第一组系数乘法器和第二信号的输出相加; 用于获得第二系列并行信号的第二组延迟线; 用于对第二系列信号进行加权的第二组系数乘法器; 用于对所述第一系列信号中的一个进行加权的系数乘法器; 第二加法器,用于将第二组系数乘法器和系数乘法器的输出相加; 以及用于组合来自第一和第二加法器的输出信号的信号编辑器。
    • 8. 发明授权
    • Cu—Mg—P based copper alloy material and method of producing the same
    • Cu-Mg-P系铜合金材料及其制造方法
    • US09255310B2
    • 2016-02-09
    • US12801359
    • 2010-06-04
    • Takeshi SakuraiYoshihiro KameyamaYoshio Abe
    • Takeshi SakuraiYoshihiro KameyamaYoshio Abe
    • C22C9/00H01B5/02C22F1/08
    • C22C9/00C22F1/08
    • A copper alloy material includes, by mass %, Mg of 0.3 to 2%, P of 0.001 to 0.1%, and the balance including Cu and inevitable impurities. An area fraction of such crystal grains that an average misorientation between all the pixels in each crystal grain is less than 4° is 45 to 55% of a measured area, when orientations of all the pixels in the measured area of the surface of the copper alloy material are measured by an EBSD method with a scanning electron microscope of an electron backscattered diffraction image system and a boundary in which a misorientation between adjacent pixels is 5° or more is considered as a crystal grain boundary, and a tensile strength is 641 to 708 N/mm2, and a bending elastic limit value is 472 to 503 N/mm2.
    • 铜合金材料以质量%计含有0.3〜2%的Mg,0.001〜0.1%的P,余量包含Cu和不可避免的杂质。 在每个晶粒中的所有像素之间的平均取向度小于4°的这种晶粒的面积分数是测量面积的45至55%,当铜的表面的测量区域中的所有像素的取向 合金材料通过电子背散射衍射图像系统的扫描电子显微镜和相邻像素之间的取向偏差为5°以上的边界的EBSD法测定为晶界,拉伸强度为641〜 708N / mm2,弯曲弹性极限值为472〜503N / mm2。
    • 9. 发明授权
    • Lenticular lens sheet and method for producing it
    • 透镜片及其制造方法
    • US06384970B1
    • 2002-05-07
    • US09359657
    • 1999-07-26
    • Yoshio AbeOsamu Shinji
    • Yoshio AbeOsamu Shinji
    • G03B2160
    • G03B21/625
    • Provided is a lenticular lens sheet on which external light reflection is greatly reduced and which gives high-contrast sharp images. The lenticular lens sheet has a plurality of lenticular lenses formed on one surface of a light-transmissive substrate and having, on the other surface of the substrate, convex lenses 2, and external light-absorbing ridges 3 as formed alternately with those convex lenses and coated with an external light-absorbing layer 4 on their tops, in which every furrow 5 between each convex lens 2 and each external light-absorbing ridge 3 that ate adjacent to each other is further coated with an external light-absorbing layer 6. The external light-absorbing layer may be not only on the top of each ridge but also around each ridge adjacent to the top thereof.
    • 提供了一种双凸透镜片,其外部光反射大大降低并且给出高对比度清晰的图像。 双凸透镜片具有形成在透光性基板的一个表面上的多个双凸透镜,并且在基板的另一个表面上具有与这些凸透镜交替形成的凸透镜2和外光吸收脊3, 在其顶部涂覆有外部光吸收层4,其中每个凸透镜2和彼此相邻的每个外部光吸收脊3之间的每个沟槽5进一步涂覆有外部光吸收层6。 外部光吸收层可以不仅在每个脊的顶部上,而且可以围绕与其顶部相邻的每个脊。