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    • 1. 发明授权
    • Heat-dissipating member, manufacturing method and installation method
    • 散热构件,制造方法和安装方法
    • US06940722B2
    • 2005-09-06
    • US10347599
    • 2003-01-22
    • Hiroaki TetsukaKunihiko MitaKunihiro YamadaYoshitaka AokiTsutomu Yoneyama
    • Hiroaki TetsukaKunihiko MitaKunihiro YamadaYoshitaka AokiTsutomu Yoneyama
    • H01L23/427H05K7/20
    • H01L23/427F28F2013/006H01L2924/0002Y10T428/31663H01L2924/00
    • A heat-dissipating member sandwiched between a heat dissipating electronic component which reaches a higher temperature than room temperature due to operation, and a heat-dissipating component for dissipating the heat produced from this heat dissipating electronic component. The heat-dissipating member of this invention has an interlayer comprising a metal foil and/or metal mesh having a thickness of 1-50 μm and heat conductivity of 10-500 W/mK, and a layer comprising a thermally-conducting composition containing 100 wt parts of a silicone resin and 1,000-3,000 wt parts of a thermally-conducting filler formed on both surfaces of the interlayer such that the overall thickness is within the range of 40-500 μm. This heat-dissipating member is non-fluid at room temperature, but due to the action of heat emitted when the electronic component operates, its viscosity decreases, and it softens or melts based on the phase transition of the resin and low melting point metal so that it is effectively in intimate contact with the boundary between the electronic component and heat-dissipating component without any gaps. The thermally-conducting filler contains a low melting point metal powder (1) having a melting temperature of 40-250° C. and a particle diameter of 0.1-100 μm, together with a thermally-conducting powder (2) having a melting temperature exceeding 250° C. and an average particle diameter of 0.1-100 μm, such that (1)/[(1)+(2)]=0.2-1.0.
    • 夹在由于操作而达到比室温高的温度的散热电子部件之间的散热部件,以及用于散发由该散热电子部件产生的热量的散热部件。 本发明的散热构件具有中间层,其包含厚度为1-50μm,导热率为10-500W / mK的金属箔和/或金属网,以及包括含有100 重量份硅树脂和1000-3,000重量份形成在中间层的两个表面上的导热填料,使得总厚度在40-500μm的范围内。 该散热构件在室温下为非流体,但是由于电子部件运转时发出的热量的作用,其粘度降低,并且基于树脂和低熔点金属的相变而软化或熔化,因此 它有效地与电子部件和散热部件之间的边界紧密接触而没有任何间隙。 导热性填料含有熔融温度为40〜250℃,粒径为0.1〜100μm的低熔点金属粉末(1),以及具有熔融温度的导热性粉末(2) 超过250℃,平均粒径为0.1-100μm,使得(1)/ [(1)+(2)] = 0.2-1.0。
    • 2. 发明授权
    • Heat conductive composite sheet and process for producing same
    • 导热复合片及其制造方法
    • US07279224B2
    • 2007-10-09
    • US10643978
    • 2003-08-20
    • Yoshitaka AokiTsutomu YoneyamaKunihiko Mita
    • Yoshitaka AokiTsutomu YoneyamaKunihiko Mita
    • B32B25/20
    • B32B25/20B32B25/02B32B27/20H01L23/3737H01L2924/0002Y10T428/31663H01L2924/00
    • A heat conductive composite sheet comprising (a) a heat softening, heat conductive layer containing a silicone resin and a heat conductive filler, and (b) a heat conductive silicone rubber layer containing a heat conductive filler is ideally suited to use as a heat radiating structure provided between a heat generating electronic component and a heat radiating component such as a heat sink or a circuit board, for the purposes of radiating heat away from the heat generating electronic component and thus cooling it. This heat conductive composite sheet not only offers good thermal conductivity, but if an installed heat conductive member formed from this type of heat conductive composite sheet needs to be removed temporarily to enable the electronic component such as a CPU to be repaired or replaced, the electronic component is not removed together with the heat conductive member.
    • 一种导热性复合片,其特征在于,包括:(a)含有硅树脂的热软化导热层和导热性填料,(b)含有导热性填料的导热性硅橡胶层,理想地适用于散热 在发热电子部件和诸如散热器或电路板的散热部件之间提供的结构,用于将热量从发热电子部件散热并因此冷却。 该导热性复合片不仅具有良好的导热性,而且,如果需要临时移除由这种导热性复合片形成的导热性部件,能够修复或更换CPU等电子部件, 部件不与导热部件一起被去除。
    • 8. 发明申请
    • Image recording apparatus
    • 图像记录装置
    • US20050046684A1
    • 2005-03-03
    • US10925069
    • 2004-08-24
    • Tsutomu Yoneyama
    • Tsutomu Yoneyama
    • B41J2/01B41J2/21
    • B41J2/2114
    • An image recording apparatus which performs color image recording, including: a color ink recording head which jets photo-curable color ink droplets onto a recording medium; a transparent ink recording head which jets photo-curable transparent ink droplets onto a recording medium; and a light radiating device for radiating light rays onto the color ink droplets and transparent ink droplets, on the recording medium; a control section for judging the amount of color ink droplets to be jetted, and for controlling the amount of transparent ink droplets to be jetted, based on the determined amount.
    • 一种执行彩色图像记录的图像记录装置,包括:将可光固化的彩色墨滴喷射到记录介质上的彩色墨水记录头; 将可光固化的透明墨滴喷射到记录介质上的透明墨水记录头; 以及用于在记录介质上将光线照射到彩色墨滴和透明墨滴上的光辐射装置; 基于所确定的量,判断要喷射的彩色墨滴的量和用于控制要喷射的透明墨滴的量的控制部分。
    • 10. 发明授权
    • Method of insulating stem pins of a cathrode ray tube
    • 阴极射线管绝缘杆销的方法
    • US6106350A
    • 2000-08-22
    • US366211
    • 1999-08-02
    • Takashi SetsudaHirokazu KannoKazuhiko TomaruTsutomu YoneyamaHisaharu Yamaguchi
    • Takashi SetsudaHirokazu KannoKazuhiko TomaruTsutomu YoneyamaHisaharu Yamaguchi
    • C08L83/04C08K5/14H01B3/28H01B3/46H01J9/34H01J29/92H01R33/76
    • H01J9/34C08K5/14H01B3/28H01B3/46H01J29/92H01R33/7678
    • A method of insulating a cathode ray tube and enabling an electrical insulator to be produced without material loss and enabling improvement of the bonding strength between a stem and a stem base, which comprises a base through which pin through holes are formed and has provided projecting from the front surface thereof a tip holder, in a state with the stem pins inserted through the pin through holes and the tip held in the tip holder, said method comprising the steps of molding an electrical insulator composition comprising an uncured self-adhesive silicone rubber into a predetermined sheet shape by using a transfer mold to obtain an electrical insulator, arranging the electrical insulator in a state extending from the positions of the pin through holes on the back of the base of the stem base to the tip holder and adhering it to the back of the base, folding the portion of the electrical insulator extending to the tip holder to the inside surface of the tip holder, and attaching the stem base to the stem.
    • 一种绝缘阴极射线管的方法,能够在不产生材料损失的情况下制造电绝缘体,并且能够提高杆和杆基座之间的接合强度,该基座包括形成销孔的底座, 其前表面是一个尖端保持器,处于一个状态,其中杆销通过销穿过孔插入,并且把头保持在刀片保持器中,所述方法包括以下步骤:将包含未固化的自粘硅橡胶的电绝缘组合物模制成 通过使用转印模具来获得电绝缘体的预定片材形状,将电绝缘体布置在从茎基部的基部的背面上的销子通孔的位置延伸到尖端保持器并将其粘附到 将电绝缘体的延伸到尖端保持器的部分折叠到尖端保持器的内表面,并将其附接 茎基为茎。