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    • 51. 发明授权
    • Cooling device for electronic apparatus
    • 电子设备冷却装置
    • US07420807B2
    • 2008-09-02
    • US10524770
    • 2003-08-18
    • Kazuyuki MikuboSakae KitajoYasuhiro SasakiAtsushi OchiMitsuru Yamamoto
    • Kazuyuki MikuboSakae KitajoYasuhiro SasakiAtsushi OchiMitsuru Yamamoto
    • H05K7/20
    • H01L23/473G06F1/20H01L23/467H01L2924/0002H01L2924/00
    • The present invention provides a cooling apparatus which is easy to build and to fix it to electronic devices, superior in thermal conduction and heat dissipation, and possible to make thin the total configuration of the apparatus. The liquid cooling unit 9 and the air cooling unit 12 are formed in a unit. A heat absorption surface 19 of the liquid cooling unit 9 is contacted or bonded to the heat generation component such as the CPU and the heat generator, which have the largest power consumption and also locally generate heat within a small area in the box 2. In the liquid cooling unit 9, a liquid cooling pump 14 composed of an electromagnetic pump is arranged for circulating the coolant in the flow path 10. The heat generated by the heat generation components such as CPU 6, heat generator 7, and the like is thermally diffused with heat conduction into the whole liquid cooling unit 9 by circulating the coolant with the liquid cooling pump 14.
    • 本发明提供了一种易于构建并将其固定在电子设备上的散热装置,其热传导和散热优良,并且可以使装置的总体构型变薄。 液体冷却单元9和空气冷却单元12形成为一个单元。 液体冷却单元9的吸热表面19接触或结合到具有最大功率消耗的CPU和热发生器等发热组件,并且还在箱体2的小区域内局部地产生热量。 在液体冷却单元9中,布置有由电磁泵组成的液体冷却泵14,用于使冷却剂在流路10中循环。 由CPU 6,发热体7等发热部件产生的热量,通过使冷却液与液体冷却泵14循环,热传导到整个液体冷却单元9。
    • 54. 发明申请
    • Cooling device for electronic apparatus
    • 电子设备冷却装置
    • US20050231914A1
    • 2005-10-20
    • US10524770
    • 2003-08-18
    • Kazuyuki MikuboSakae KitajoYasuhiro SasakiAtsushi OchiMitsuru Yamamoto
    • Kazuyuki MikuboSakae KitajoYasuhiro SasakiAtsushi OchiMitsuru Yamamoto
    • G06F1/20H01L23/467H01L23/473H05K7/20
    • H01L23/473G06F1/20H01L23/467H01L2924/0002H01L2924/00
    • The present invention provides a cooling apparatus which is easy to build and to fix it to electronic devices, superior in thermal conduction and heat dissipation, and possible to make thin the total configuration of the apparatus. The liquid cooling unit 9 and the air cooling unit 12 are formed in a unit. A heat absorption surface 19 of the liquid cooling unit 9 is contacted or bonded to the heat generation component such as the CPU and the heat generator, which have the largest power consumption and also locally generate heat within a small area in the box 2. In the liquid cooling unit 9, a liquid cooling pump 14 composed of an electromagnetic pump is arranged for circulating the coolant in the flow path 10. The heat generated by the heat generation components such as CPU 6, heat generator 7, and the like is thermally diffused with heat conduction into the whole liquid cooling unit 9 by circulating the coolant with the liquid cooling pump 14.
    • 本发明提供了一种易于构建并将其固定在电子设备上的散热装置,其热传导和散热优良,并且可以使装置的总体构型变薄。 液体冷却单元9和空气冷却单元12形成为一个单元。 液体冷却单元9的吸热表面19接触或结合到功率消耗最大的诸如CPU和发热体的发热组件,并且还在箱2中的小区域内局部产生热量。 液体冷却单元9,由电磁泵构成的液体冷却泵14布置成使冷却剂在流路10中循环。由诸如CPU 6,发热体7等的发热组件产生的热量是热的 通过使液体冷却泵14循环冷却剂,将热传导到整个液体冷却单元9中。
    • 57. 发明授权
    • Electric double layer capacitor
    • 双电层电容器
    • US5303118A
    • 1994-04-12
    • US45613
    • 1993-04-09
    • Takashi SaitoJunji TabuchiYukari KibiAtsushi Ochi
    • Takashi SaitoJunji TabuchiYukari KibiAtsushi Ochi
    • H01G9/00H01G11/56H01G9/04
    • H01G9/155H01G11/56Y02E60/13Y10T29/417
    • An electric double layer capacitor is proposed which is constructed by sandwiching a laminated body of a pair of polarizable electrodes consisting of a porous solid conductive material each impregnated with an electrolytic solution and a platelike ion permeating separator member, between a pair of collectors for external connection terminals, and housing the aggregate in a gasket, wherein the gap between the inner surface of the gasket and the outer surface of the laminated body is filled with an auxiliary electrolytic solution. The auxiliary electrolytic solution consists of glass fibers or water absorbing polymer impregnated with gelatinous electrolytic solution or a liquid electrolytic solution, and replenishes the lost portion due to evaporation and leakage of the electrolytic solution of the electric double layer capacitor. Moreover, this auxiliary electrolytic solution acts as a buffer to mechanical impact externally applied to the capacitor. Therefore, the electric double layer capacitor according to this invention has excellent resistance to high temperature and resistance to impact.
    • 提出了一种双电层电容器,其通过将一对可极化电极的层叠体夹在由电解液和片状离子渗透分离器构件浸渍的多孔固体导电材料构成的一对集电体之间,用于外部连接 端子,并且将所述骨料容纳在垫圈中,其中所述垫圈的内表面与所述层叠体的外表面之间的间隙填充有辅助电解液。 辅助电解液由浸渍有凝胶状电解液或液体电解液的玻璃纤维或吸水性聚合物构成,并且由于双电层电容器的电解液的蒸发和泄漏而补充损失部分。 此外,该辅助电解液充当外部施加到电容器的机械冲击的缓冲器。 因此,根据本发明的双电层电容器具有优异的耐高温性和耐冲击性。
    • 58. 发明授权
    • Ceramic composition
    • 陶瓷组成
    • US5275988A
    • 1994-01-04
    • US865445
    • 1992-04-09
    • Toru MoriMitsuru FuruyaAtsushi Ochi
    • Toru MoriMitsuru FuruyaAtsushi Ochi
    • C04B35/499C04B35/46
    • C04B35/499
    • A ceramic composition is herein disclosed, which is a lead-type perovskite compound capable of being subjected to low temperature-sintering among ceramic compositions for use in making capacitors, which has a high dielectric constant at room temperature of not less than 10000, a low temperature-dependency of the dielectric constant and a low decrease in capacitance upon application of a DC bias and which comprises, as a main constituent, a ternary system comprising lead magnesium niobate: [Pb(Mg.sub.1/3 Nb.sub.2/3)O.sub.3 ], lead nickel niobate: [Pb(Ni.sub.1/3 Nb.sub.2/3)O.sub.3 ] and lead titanate: [PbTiO.sub.3 ] in which part of the Pb.sup.2+ ions present in the ternary system are substituted with a desired amount of Sr.sup.2+ ions, Ba.sup.2+ ions or Ca.sup.2+ ions.
    • 本文公开了一种陶瓷组合物,其是能够在用于制造电容器的陶瓷组合物中进行低温烧结的铅型钙钛矿化合物,其在室温下的介电常数不低于10000,低 介电常数的温度依赖性以及在施加直流偏压时电容的降低较小,并且其包含作为主要成分的包含铌酸铅镁(Pb(Mg1 / 3Nb2 / 3)O3),铅镍 铌酸盐:(Pb(Ni1 / 3Nb2 / 3)O3)和钛酸铅:(PbTiO3),其中存在于三元体系中的部分Pb 2+离子被所需量的Sr 2+离子,Ba 2+离子或Ca 2+离子所取代。