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    • 3. 发明授权
    • Heat dissipating module and heat sink thereof
    • 散热模块及其散热器
    • US08051899B2
    • 2011-11-08
    • US11979807
    • 2007-11-08
    • Chin-Ming ChenYu-Hung HuangYu-Hsien Lin
    • Chin-Ming ChenYu-Hung HuangYu-Hsien Lin
    • F28D15/00H05K7/20
    • H01L23/467H01L2924/0002H01L2924/00
    • A heat dissipating module includes a fan and a heat sink. The heat sink comprises a body and at least one movable member. The body comprises a plurality of fins, at least one first slot and at least one second slot. The first and second slots are integrally formed on the body as a single piece. The movable member, rotatably or movably coupled to the first slot, comprises a pivoting portion, an operating portion, a jointing portion and at least one fixing portion. The pivoting portion is rotatably or movably received in the first slot. A first end of the operating portion connects to the pivoting portion, rotating or moving the pivoting portion. The jointing portion, at a second end of the operating portion, selectively connects to or separates from the second slot. The fixing portion protrudes from the pivoting portion, abutting and securing the fan to the heat sink.
    • 散热模块包括风扇和散热器。 散热器包括主体和至少一个可动构件。 主体包括多个翅片,至少一个第一狭槽和至少一个第二狭槽。 第一和第二槽一体地形成在主体上作为单件。 可移动或可移动地联接到第一槽的可动构件包括枢转部分,操作部分,接合部分和至少一个固定部分。 枢转部分可旋转地或可移动地容纳在第一槽中。 操作部分的第一端连接到枢转部分,旋转或移动枢转部分。 在操作部分的第二端处的接合部分选择性地连接到第二槽或从第二槽分离。 固定部从枢转部突出,将风扇抵接并固定到散热器。
    • 4. 发明授权
    • Piezoelectronic device and method of fabricating the same
    • 压电器件及其制造方法
    • US07999446B1
    • 2011-08-16
    • US12662021
    • 2010-03-29
    • Wen-Kuang HsuHsin-Fu KuoYu-Hsien LinChiung-Wen TangChieh-Lien LuYao-Cheng Lai
    • Wen-Kuang HsuHsin-Fu KuoYu-Hsien LinChiung-Wen TangChieh-Lien LuYao-Cheng Lai
    • H01L41/08
    • H02N2/18H01L41/081H01L41/1136H01L41/316
    • A piezoelectronic device and a method of fabricating the same are disclosed. The piezoelectronic device of the present invention comprises: a plurality of carbon nanotubes; at least one piezoceramic layer covering the plurality of carbon nanotubes; and a supporting material for supporting the carbon nanotubes and disposed between the carbon nanotubes, the supporting layer being coated with at least one piezoceramic layer, wherein the plurality of carbon nanotubes is arranged in a comb-shape. The piezoelectronic device of the present invention is advantageous in having excellent elasticity (durability) and excellent piezoelectronical property. The induced current obtained from the piezoelectronic device of the present invention is about 1.5 μA or above as well as induced voltage being over 1V when the size of the piezoelectronic block is 2.5 mm×1 mm×1 mm (length×width×height).
    • 公开了一种压电装置及其制造方法。 本发明的压电装置包括:多个碳纳米管; 覆盖所述多个碳纳米管的至少一个压电陶瓷层; 以及用于支撑所述碳纳米管并且设置在所述碳纳米管之间的支撑材料,所述支撑层被涂覆有至少一个压电陶瓷层,其中所述多个碳纳米管被布置为梳状。 本发明的压电元件具有优异的弹性(耐久性)和优异的压电特性。 当压电电极块的尺寸为2.5mm×1mm×1mm(长×宽×高))时,从本发明的压电装置获得的感应电流为约1.5μA以上,感应电压为1V以上。