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    • 6. 发明授权
    • Plasma display panel
    • 等离子显示面板
    • US07012581B2
    • 2006-03-14
    • US10632838
    • 2003-08-04
    • Kentaro UedaToshiyuki AkiyamaYasutaka Tsutsui
    • Kentaro UedaToshiyuki AkiyamaYasutaka Tsutsui
    • G09G3/28
    • H01J11/12G09G3/2927G09G5/005G09G5/006G09G5/008G09G2310/066H01J11/24H01J11/38H01J2211/245
    • A plasma display panel includes a first substrate, a second substrate spaced away from the first substrate, scanning and sustaining electrodes formed on the first substrate and extending in a first direction, a dielectric layer formed on the first substrate, covering the scanning and sustaining electrodes therewith, and a data electrode formed on the second substrate and extending in a second direction perpendicular to the first direction, each of the scanning and sustaining electrodes being comprised of a transparent electrode, the dielectric layer being comprised of a transparent dielectric layer, the dielectric layer having a high-capacity portion having a capacity higher than that of the rest of the dielectric layer, the high-capacity portion being spaced away from a discharge gap and extending in the first direction, each of the scanning and sustaining electrodes being formed with an opening between the discharge gap and the high-capacity portion.
    • 等离子体显示面板包括第一基板,与第一基板间隔开的第二基板,形成在第一基板上并沿第一方向延伸的扫描和维持电极,形成在第一基板上的电介质层,覆盖扫描和维持电极 以及形成在第二基板上并沿与第一方向垂直的第二方向延伸的数据电极,每个扫描和维持电极由透明电极组成,电介质层由透明电介质层构成,电介质 所述高容量部分具有高于所述电介质层的其余部分的容量的高容量部分,所述高容量部分与放电间隙隔开并沿所述第一方向延伸,每个所述扫描和维持电极形成有 放电间隙和高容量部分之间的开口。
    • 8. 发明授权
    • Bi-directional digital transmission system and bi-directional digital transmission method
    • 双向数字传输系统和双向数字传输方式
    • US06381236B1
    • 2002-04-30
    • US09236602
    • 1999-01-26
    • Atsushi MiyashitaToshiyuki AkiyamaNobuo Tsukamoto
    • Atsushi MiyashitaToshiyuki AkiyamaNobuo Tsukamoto
    • H04J100
    • H04L5/1484H04L5/023
    • A bi-directional digital transmission method, and system, for sending and receiving digital transmission signals having a frame configuration modulated by an orthogonal frequency division multiplex modulation scheme. A first sending unit in a first transmission station converts first continuous data to a up-direction intermittent transmission signal, and sends it from a first antenna via a first switchover unit. The up-direction intermittent transmission signal is received by a second antenna of a second transmission station, and supplied to a second receiving unit of the second transmission station via a second switchover unit of the second transmission station. The second receiving unit determines whether receiving operation of the up-direction intermittent transmission signal has been established, and if so, restores the original first continuous data. A second sending unit in the second transmission station converts second continuous data to a down-direction intermittent transmission signal, and sends it from a second antenna via a second switchover unit. In the first transmission station, the down-direction intermittent sending transmission signal is received by the first antenna, and supplied to a first receiving unit via the first switchover unit to restore the original second continuous data.
    • 一种用于发送和接收具有由正交频分复用调制方案调制的帧配置的数字传输信号的双向数字传输方法和系统。 第一发送站中的第一发送单元将第一连续数据转换为上行间歇发送信号,并经由第一切换单元从第一天线发送。 上行间歇发送信号由第二发送站的第二天线接收,经由第二发送站的第二切换单元提供给第二发送站的第二接收单元。 第二接收单元确定上行间歇发送信号的接收操作是否已经建立,如果是,则恢复原始的第一连续数据。 第二发送站中的第二发送单元将第二连续数据转换为下行间歇发送信号,经由第二切换单元从第二天线发送。 在第一发送站中,向下方向间歇发送发送信号由第一天线接收,经由第一切换单元提供给第一接收单元,恢复原来的第二连续数据。
    • 9. 发明授权
    • Depth-of-field control apparatus and image pickup apparatus having the
same therein
    • 景深控制装置和其中具有其的图像拾取装置
    • US5282045A
    • 1994-01-25
    • US689626
    • 1991-04-23
    • Itaru MimuraKenji TakahashiToshiyuki AkiyamaYoshizumi EtoNaoki OzawaTakahiro Matsumoto
    • Itaru MimuraKenji TakahashiToshiyuki AkiyamaYoshizumi EtoNaoki OzawaTakahiro Matsumoto
    • G02B7/28H04N5/225H04N5/232H04N5/262H04N5/265
    • H04N5/2621H04N13/0235H04N13/0271H04N5/23212H04N5/2356
    • An image pickup apparatus for a television and a depth-of-field control apparatus used in the same. Image signals corresponding to a plurality of picture images different in focal point or length position are obtained by a mechanism for changing a focal point or length position to produce a new image signal by composing these image signals through a composition circuit, and motion information of an object is obtained by a circuit for detecting a moving portion in the object to control the image composition by the motion information. The focal point or length position is moved in synchronism with an integer multiple of a vertical scanning period of the television. The image signals corresponding to the plurality of picture images different in focal point or length position are obtained within one vertical scanning period determined by the system of the television. The amount of movement of the focal point or length position is controlled in conjunction with a value of a lens aperture of the camera lens. The image composition is controlled by a composition control circuit made up of a circuit for detecting individual powers of image signals corresponding to a plurality of different picture images, a circuit for comparing the detected powers with each other, and a circuit for detecting the position of an edge included in one of the image signals, wherein a control signal for the image composition produced by the power comparison circuit is compensated by the edge position information obtained by the edge detection circuit.
    • 一种用于电视的摄像装置及其场景控制装置。 通过用于通过组合电路组合这些图像信号来改变焦点或长度位置以产生新的图像信号的机构来获得与焦点或长度位置不同的多个图像图像相对应的图像信号,以及运动信息 通过用于检测对象中的移动部分的电路来获得对象,以通过运动信息来控制图像合成。 焦点或长度位置与电视的垂直扫描周期的整数倍同步地移动。 在由电视机系统确定的一个垂直扫描周期内获得与焦点或长度位置不同的多个图像图像相对应的图像信号。 焦点或长度位置的移动量与相机镜头的镜头孔径的值一起被控制。 图像组成由用于检测与多个不同图像图像相对应的图像信号的各个功率的电路组成的合成控制电路控制,用于比较检测到的功率的电路和用于检测检测到的功率的电路 包括在一个图像信号中的边缘,其中由功率比较电路产生的图像合成的控制信号由边缘检测电路获得的边缘位置信息补偿。