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    • 1. 发明申请
    • CONTROL APPARATUS, CONTROL SYSTEM OF ELECTRONIC DEVICE, AND METHOD FOR CONTROLLING ELECTRONIC DEVICE
    • 控制装置,电子装置的控制系统以及控制电子装置的方法
    • US20100107105A1
    • 2010-04-29
    • US12605505
    • 2009-10-26
    • Masaaki Kubo
    • Masaaki Kubo
    • G06F3/048
    • G06F3/0238H04L12/2814H04L12/282H04L2012/2849H04N5/4403H04N21/4104H04N21/42228H04N21/485
    • An AV amplifier includes a selector which outputs a video signal input from an output device to a display device, a display controller which makes a display device display a virtual controller including a plurality of operation buttons and a cursor for selecting any operation button on the virtual controller together with a output video corresponding to an AV signal input form the output device, an operation signal receiver which receives an operation signal for moving the cursor on the virtual controller so as to select an operation button corresponding to a position of the cursor together with identification information for identifying a device to be controlled from an amplifier controller, and a control signal transmitter which transmits predetermined control signals set to the operation buttons for the AV devices to the device to be controlled according to the device to be controlled and the selected operation button.
    • AV放大器包括:输出从输出装置输入到显示装置的视频信号的选择器;使显示装置显示包括多个操作按钮的虚拟控制器和用于选择虚拟的任意操作按钮的光标的显示控制器 控制器与从输出装置输入的AV信号相对应的输出视频;操作信号接收器,其接收用于在虚拟控制器上移动光标的操作信号,以便选择对应于光标位置的操作按钮连同 用于识别从放大器控制器控制的设备的识别信息;以及控制信号发送器,其根据要控制的设备将所设置的用于AV设备的操作按钮的预定控制信号发送到要控制的设备,并且所选择的操作 按钮。
    • 4. 发明授权
    • Method of scattering fine particles, method of manufacturing liquid crystal display, apparatus for scattering fine particles, and liquid crystal display
    • 散射细颗粒的方法,制造液晶显示器的方法,散射微粒的装置和液晶显示器
    • US06961112B2
    • 2005-11-01
    • US10824425
    • 2004-04-15
    • Kazuya YoshimuraMakoto NakaharaTakatoshi KiraDaisuke IkesugiAkihiko TatenoHiroyuki NakataniMasaki BanHiroshi MurataMasaaki Kubo
    • Kazuya YoshimuraMakoto NakaharaTakatoshi KiraDaisuke IkesugiAkihiko TatenoHiroyuki NakataniMasaki BanHiroshi MurataMasaaki Kubo
    • G02F1/1339G02F1/13
    • G02F1/13394
    • The present invention has its object to provide a method of spraying particles by which predetermined quantities of particles can be disposed on specified electrodes, in particular a method of spraying particles by which spacers can be sprayed in interelectrode gaps selectively even in the case of substrates comprising pattern-forming transparent electrodes, such as those used in liquid crystal display devices, and a method of producing liquid crystal display devices of high contrast and high display uniformity by which spacers can be disposed in interelectrode gaps without sacrificing the aperture ratio and by which spacers can be disposed on the substrate without irregularity to attain a uniform cell thickness over the whole substrate, as well as a particle spraying apparatus and a liquid crystal display device.The present invention provides a method of spraying particles which comprises applying a voltage of the same polarity as the particle charge polarity to a plurality of electrodes formed on a substrate and spraying the particles while utilizing the repulsive force operating on the particles, wherein means is employed for preventing the particles from being forced out of the electrode domain comprising the plurality of electrodes.
    • 本发明的目的是提供一种喷射颗粒的方法,其中预定量的颗粒可以在特定的电极上设置,特别是一种喷射颗粒的方法,其中间隔物可以选择性地喷射在电极间间隙中,即使在包括 图案形成透明电极,例如在液晶显示装置中使用的透明电极,以及制造高对比度和高显示均匀性的液晶显示装置的方法,通过该液晶显示装置可以在电极间隙内设置间隔物,而不牺牲开口率, 可以在不均匀的情况下设置在基板上,以在整个基板上获得均匀的单元厚度,以及粒子喷射装置和液晶显示装置。 本发明提供了一种喷射颗粒的方法,其包括将与颗粒电荷极性相同极性的电压施加到形成在基板上的多个电极,并且在利用在颗粒上运行的排斥力的同时喷射颗粒,其中使用手段 用于防止颗粒被强制排出包括多个电极的电极域。
    • 7. 发明授权
    • IC carrier
    • IC载体
    • US4881639A
    • 1989-11-21
    • US313604
    • 1989-02-22
    • Noriyuki MatsuokaMasaaki Kubo
    • Noriyuki MatsuokaMasaaki Kubo
    • B65D85/86B65D85/00H01L21/673H01L23/32H01R33/76H05K7/10
    • H05K7/1023
    • An IC carrier comprising a generally rectangular carrier body including a generally rectangular IC accommodating section at a generally central portion thereof, torsion bars each disposed at each corner portion of the carrier body, each torsion bar being disposed on a line opposite each corner portion of the IC accommodating section and diagonally crossing two sides forming the corner portion of the carrier body, resiliently displacable latch arms each rising from each of the torsion bars, and engaging claws each formed on a free end of each of the latch arms and adapted to engage with an upper edge portion of each of the corner portions of an IC package of a generally rectangular shape accommodated in the IC accommodating section.
    • 一种IC载体,包括大致矩形的载体主体,其大致中央部分包括大致矩形的IC容纳部分,每个设置在载体主体的每个角部的扭杆,每个扭杆设置在与所述载体主体的每个角部相对的一条线上 IC容纳部分和对角交叉的两侧形成承载体的角部,弹性可移位的闩锁臂各自从每个扭力杆上升起,并且接合爪各自形成在每个闩锁臂的自由端上并且适于与 集成电路容纳部中容纳的大致矩形的IC封装的各个角部的上缘部。
    • 8. 发明授权
    • Contact and IC socket using the contact
    • 联系人和IC插座使用联系人
    • US07621755B2
    • 2009-11-24
    • US11808672
    • 2007-06-12
    • Masaaki KuboYoshiharu Ishii
    • Masaaki KuboYoshiharu Ishii
    • H01R12/00
    • H01R13/2435H01R12/714H01R13/432
    • A contact includes a support member, a first spring portion, a second spring portion, a third spring portion and a fourth spring portion. The first spring portion extends obliquely upper forwardly from an upper end of the support member and has, at an apex, a first contact point which contacts with an IC package. The second spring portion is bent from the first contact point, to extend obliquely lower rearwardly and have a first touch portion. The third spring portion extends obliquely lower forwardly from a lower end of the support member and has a second contact point which contacts with a printed-wiring board, thus being in contrast with the first spring portion with respect to the support member. The fourth spring portion is bent from the second contact point, to extend obliquely upper rearwardly and has a second touch portion for contacting with the first touch portion.
    • 触点包括支撑构件,第一弹簧部分,第二弹簧部分,第三弹簧部分和第四弹簧部分。 第一弹簧部分从支撑构件的上端向前倾斜地向上延伸,并且在顶点处具有与IC封装件接触的第一接触点。 第二弹簧部分从第一接触点弯曲,向下倾斜向下延伸并具有第一接触部分。 第三弹簧部分从支撑构件的下端向下倾斜地向下延伸,并且具有与印刷电路板接触的第二接触点,因此与第一弹簧部分相对于支撑构件形成对比。 第四弹簧部分从第二接触点弯曲,向上倾斜向上延伸并且具有用于与第一接触部分接触的第二接触部分。
    • 9. 发明授权
    • Liquid crystal display and manufacture thereof with electrostatic control of sprayed spacer particle deposition
    • 液晶显示及其制造
    • US06639644B1
    • 2003-10-28
    • US09623376
    • 2000-10-18
    • Akihiko TatenoHiroyuki NakataniKazuya YoshimuraMakoto NakaharaTakatoshi KiraDaisuke IkesugiMasaki BanHiroshi MurataMasaaki Kubo
    • Akihiko TatenoHiroyuki NakataniKazuya YoshimuraMakoto NakaharaTakatoshi KiraDaisuke IkesugiMasaki BanHiroshi MurataMasaaki Kubo
    • G02F11339
    • G02F1/133512G02F1/13394
    • This invention has its object to provide a method of liquid display device production which enables spacer disposition in interelectrode spaces not having electrode, namely at black matrix sites, in STN type and TFT type liquid crystal display devices and further enables even spacer disposition to attain a uniform cell thickness all over the substrate to thereby produce liquid crystal display devices of high contrast and high display uniformity stably and in good yields, with a reduced spray step tact time, as well as liquid crystal display devices produced by such method. This invention provides a method for producing a liquid crystal display device comprising spraying spacers onto at least one of a first substrate comprising at least pattern-forming transparent electrodes and a second substrate to be disposed opposingly above the first substrate and filling a liquid crystal into the space between both the substrates, and comprising, in spraying positively or negatively charged spacers onto the substrate, disposing the substrate in close contact with an earthed conductive stage having a volume resistance of not more than 1010 &OHgr;cm and applying, to the transparent electrodes, a voltage of 200 V to 5 kV having the same polarity as the spacer charge polarity.
    • 本发明的目的在于提供一种液晶显示装置的制造方法,其特征在于,在STN型和TFT型液晶显示装置中,能够在不具有电极即黑矩阵的电极间空间内配置间隔物, 在整个基板上均匀的细胞厚度,从而以较低的喷雾步骤时间,以及通过这种方法制造的液晶显示装置,稳定地且以良好的产率,以高的对比度和高的显示均匀性产生液晶显示装置。本发明提供 一种制造液晶显示器的方法,其特征在于,在至少包括图案形成用透明电极的第一基板和与第一基板相对设置的第二基板的至少一方上形成喷射间隔物,将液晶填充到两者之间的空间 衬底,并且包括在喷射正或负电荷的间隔物的情况下 将衬底与具有不大于10Ω·cm的体积电阻的接地导电平台紧密接触,并向透明电极施加具有相同极性的200V至5kV的电压 间隔电荷极性。