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    • 22. 发明申请
    • ELECTROMAGNETIC OPENING/CLOSING DEVICE
    • 电磁开关/闭合装置
    • US20140002092A1
    • 2014-01-02
    • US14004892
    • 2012-03-09
    • Kazuhiro KodamaTakeshi Okada
    • Kazuhiro KodamaTakeshi Okada
    • G01R31/327
    • G01R31/327G01R31/3278H01H1/0015H01H9/0066H01H36/0046H01H47/002H01H50/54H01H50/541H01H50/545H01H71/04
    • An electromagnetic opening/closing device comprises: a measurement part that measure a change associated with opening/closing of a contact (the number of times the contact has been opened or closed); a life determining part that determines a state of the contact, based on the change (the number of times the contact has been opened or closed) measured by the measurement part; and an output part that outputs the determined result by the life determining part to outside. Accordingly, differently from the conventional technique, an apparatus, equipped with the electromagnetic opening/closing device, has no need to count the number of times the contact has been opened or closed in order to manage the lifetime of the device, and it is possible to easily manage the lifetime compared with conventional devices.
    • 一种电磁开闭装置,其特征在于,包括:测量部件,其测量与所述触点的打开/关闭有关的变化(所述接触已经被打开或关闭的次数); 基于由测量部测量的变化(接触被打开或关闭的次数)确定接触状态的人生决定部; 以及输出部,其将所述寿命确定部的确定结果输出到外部。 因此,与传统技术不同,配备有电磁开闭装置的装置不需要计数触点打开或关闭的次数,以便管理装置的寿命,并且可能 与常规设备相比,易于管理寿命。
    • 26. 发明授权
    • Method of manufacturing optical communication module, and optimum mold and lead frame for use in the manufacturing method
    • 光通信模块的制造方法以及用于制造方法的最佳模具和引线框架
    • US07311451B2
    • 2007-12-25
    • US10349692
    • 2003-01-23
    • Takeshi OkadaHiromi Nakanishi
    • Takeshi OkadaHiromi Nakanishi
    • G02B6/42H01L21/02
    • G02B6/4201G02B6/4245G02B6/4255Y10T29/49121Y10T29/49176
    • A method of manufacturing an optical communication module, and a mold and a lead frame that are suitable for the method are provided. The method comprises the steps of: placing in a mold the lead frame on which a ferrule and an optical communication facility section are mounted; pressing the ferrule by a moving part that can be stopped at a given position relative to the mold (lower mold tool) such that the distal end of the ferrule is positioned at a proper location within the mold; and filling a resin into the mold, wherein a displacement and a reactive force generated in the lead frame when it is pressed are absorbed by springs provided in the lead frame when it is pressed are absorbed by springs provided in the lead frame such that a catching portion for coupling to a connector is formed with high accuracy at a proper position relative the distal end of the ferrule.
    • 提供了一种制造适于该方法的光通信模块,模具和引线框架的方法。 该方法包括以下步骤:在模具中放置安装有套圈和光通信设备部分的引线框架; 通过可以相对于模具(下模具)在给定位置处停止的移动部件来挤压套圈,使得套圈的远端位于模具内的适当位置; 以及将树脂填充到所述模具中,其中当所述引线框架被按压时在所述引线框架中产生的位移和反作用力被设置在所述引线框架中的弹簧所吸收时,其被按压时被设置在所述引线框架中的弹簧吸收, 在相对于套圈的远端的适当位置处以高精度形成用于联接到连接器的部分。
    • 28. 发明申请
    • Optical module
    • US20070047880A1
    • 2007-03-01
    • US11510461
    • 2006-08-24
    • Takeshi Okada
    • Takeshi Okada
    • G02B6/36
    • G02B6/4246G02B6/29361
    • An optical transmitter-receiver module has a structure in which a light-emitting device and a light-receiving device are coupled with an optical fiber through a wavelength-selecting filter. In the above structure, part of the lightwave of the light-emitting device is reflected from the wavelength-selecting filter, is reflected again from a wall in the opposite direction, and enters the light-receiving device, causing optical crosstalk between the light-emitting device and the light-receiving device. An object of the invention is to prevent the crosstalk between the light-emitting device and the light-receiving device. An inverted conical hole is provided in a wall at which the lightwave of the light-emitting device arrives after it is reflected from the wavelength selecting filter. The hole has a size larger than the spread of the reflected lightwave of the light-emitting device. The hole has a vertical angle of 72 to 80 degrees or 100 to 160 degrees.
    • 30. 发明申请
    • Rear projection device
    • 后投影装置
    • US20060066823A1
    • 2006-03-30
    • US11223176
    • 2005-09-09
    • Takeshi OkadaFumiaki Yasui
    • Takeshi OkadaFumiaki Yasui
    • G03B21/00
    • G03B21/10H04N5/63H04N9/3141
    • An object of the invention is to provide a rear projection device capable of inhibiting noises generated from respective circuits from mutually affecting each other. With the rear projection device, an optical unit is disposed substantially at the center part of a chassis frame of a body cabinet, and an analog signal processing circuit board and a power-source circuit board for the light-source lamp are disposed at the left and right ends of the chassis frame of the body cabinet, respectively, a shield case being provided there between so as to be erect and run along a front-to-rear direction. Accordingly, the shield case is disposed in a region where the analog signal processing circuit board is linearly connected to the power-source circuit board for the light-source lamp in such a way as to provide complete blockage therebetween, so that noises occurring to the respective circuit boards will be absorbed by the shield case to thereby prevent those noises from having an effect on each other.
    • 本发明的目的是提供一种能够抑制由各个电路产生的噪声相互影响的背面投影装置。 利用后投影装置,光学单元基本上设置在主体机壳的机架框架的中心部分,并且模拟信号处理电路板和用于光源灯的电源电路板设置在左侧 以及主体机壳的底盘框架的右端,分别设置在其间的直立并沿着前后方向延伸的屏蔽壳。 因此,屏蔽壳体设置在模拟信号处理电路板与光源灯的电源电路基板线性连接的区域,以便在其间提供完全的阻塞,使得对 各个电路板将被屏蔽壳体吸收,从而防止这些噪声彼此产生影响。