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    • 3. 发明申请
    • AIRFLOW GENERATOR
    • 气流发电机
    • US20090121567A1
    • 2009-05-14
    • US11939410
    • 2007-11-13
    • Te-Chang ChouSin-Wei He
    • Te-Chang ChouSin-Wei He
    • H02K7/06H02K7/106H02K7/12
    • H02K33/10F04D25/0606F04D33/00H02K7/14
    • The present invention provides an airflow generator, which includes a plate with a rotary portion and a swinging end. The airflow generator also includes a magnetic brake unit coupled with the rotary portion. The magnetic brake unit has a second magnetizing portion, such that the rotary portion can be coupled with the movable second magnetizing portion. The magnetizing action of the magnetic brake unit enables the second magnetizing portion and the rotary portion to generate reciprocating rotation, thus driving the swinging end to generate oscillating traverse motion. The airflow generator has desirable heat-radiating efficiency, so it will be widely applied to the heat-radiating structure of various lightweight electronic devices and simplified to further cut down the manufacturing costs.
    • 本发明提供了一种气流发生器,其包括具有旋转部分和摆动端的板。 气流发生器还包括与旋转部分耦合的磁性制动单元。 磁性制动单元具有第二磁化部分,使得旋转部分可以与可移动的第二磁化部分联接。 磁性制动单元的磁化作用使得第二磁化部和旋转部产生往复旋转,从而驱动摆动端产生摆动横动。 气流发生器具有期望的散热效率,因此将广泛应用于各种轻量电子设备的散热结构,并且简化为进一步降低制造成本。
    • 5. 发明申请
    • HEAT RADIATOR AND METHOD FORM FORMING THE SAME
    • 散热器及其形成方法
    • US20160345465A1
    • 2016-11-24
    • US14714956
    • 2015-05-18
    • Sin-Wei HEChih-Ren Huang
    • Sin-Wei HEChih-Ren Huang
    • H05K7/20B23P15/26
    • B23P15/26B23P2700/10H01L21/4882H01L23/3672H01L23/427
    • A heat radiator includes a seat including a contact board provided to contact with a heat source. The heat dissipating portion includes a series of fins extending from the bottom of the contact board and a groove is defined between every two adjacent fins. At least two heat dissipating plates are mounted to the heat dissipating portion, wherein the at least two heat dissipating plates are separated from each other. Each heat dissipating plate has multiple insertions formed thereon. Each insertion is inserted into a corresponding one of the grooves between two fins, wherein an air passage is defined between two adjacent heat dissipating plates. A spacing is defined between a free end of each of the insertions and a bottom of the corresponding groove, wherein each spacing communicates with a groove in the seat for forming a longitudinally air passage.
    • 散热器包括具有设置成与热源接触的接触板的座。 散热部包括从接触板的底部延伸的一系列翅片,并且在每两个相邻翅片之间限定凹槽。 至少两个散热板安装到散热部分,其中至少两个散热板彼此分离。 每个散热板在其上形成多个插入物。 每个插入件插入到两个翅片之间的相应的一个凹槽中,其中空气通道限定在两个相邻的散热板之间。 在每个插入物的自由端和相应的凹槽的底部之间限定了间隔,其中每个间隔与座中的凹槽连通以形成纵向空气通道。
    • 7. 发明申请
    • COMBINED AXLE STRUCTURE OF A STATOR ASSEMBLY FOR A RADIATOR FAN
    • 用于散热器风扇的定子组件的组合轴结构
    • US20120121388A1
    • 2012-05-17
    • US13208634
    • 2011-08-12
    • Liang-Sheng CHANGTien-Chin WuSheng-Chi Lei
    • Liang-Sheng CHANGTien-Chin WuSheng-Chi Lei
    • F01D15/12
    • F04D25/062
    • A combined axle structure of a stator assembly for a radiator fan, of which said radiator fan comprises: a pedestal, a stator assembly, a rotor blade unit and a reverse axle. The pedestal includes a sustaining face and a stator assembly face. The stator assembly includes silicon-steel sheet, coil and insulated frame. The insulated frame is mated with a metal bearing block, which is designed like a cup, and includes a bottom wall and a circumferential wall. The top of the circumferential wall is positioned into the insulated frame. An axle socket is set at the center of the bottom wall, allowing for insertion of the bottom of the reverse axle. An embedded locator is set centrally into the stator assembly face of the pedestal, allowing for mating with the bottom of the metal bearing block.
    • 一种用于散热器风扇的定子组件的组合轴结构,其中所述散热器风扇包括:基座,定子组件,转子叶片单元和反向轴。 基座包括维持面和定子组件面。 定子组件包括硅钢板,线圈和绝缘框架。 绝缘框架与金属轴承座相配,金属轴承座被设计成像杯一样,并且包括底壁和周向壁。 圆周壁的顶部位于绝缘框架内。 轴座设置在底壁的中心,允许插入倒车轴的底部。 嵌入式定位器集中放置在基座的定子组件面上,允许与金属轴承座的底部配合。
    • 8. 发明授权
    • End-side heat extraction light emitting diode (LED) lamp
    • 端侧散热发光二极管(LED)灯
    • US08057071B2
    • 2011-11-15
    • US12347224
    • 2008-12-31
    • Sin-Wei HeJhong-Yan Chang
    • Sin-Wei HeJhong-Yan Chang
    • F21V29/00
    • F21V29/83F21K9/233F21V3/00F21V29/677F21V29/74F21Y2115/10Y10S362/80
    • The present invention provides an end-side heat extraction light emitting diode or LED lamp. The LED lamp includes a lamp housing, a cooling module, and an LED lighting set. The cooling module is configured inside the housing space of the lamp housing, having a cooling fan and a cooling base. The LED lighting set is configured on the LED joint surface of the cooling base. The end-side heat extraction LED lamp also includes a circular frame and an end-side heat extraction airflow guidance passage. The circular frame forms a space extending and expanding to the end side. The end-side heat extraction airflow guidance passage forms an airflow guidance space extending and expanding to the end side, forming a heat radiating path where the heat extraction airflow generated by the running cooling fan of the LED lamp can be exhausted from the light projection end of the lamp housing.
    • 本发明提供一种端侧散热发光二极管或LED灯。 LED灯包括灯壳,冷却模块和LED照明组。 冷却模块配置在灯壳体的容纳空间内,具有冷却风扇和冷却基座。 LED灯具配置在冷却底座的LED接头表面。 端侧散热LED灯还包括圆形框架和端部侧热导气道引导通道。 圆形框架形成向端部侧延伸并扩展的空间。 端侧排热气流引导通路形成向端侧延伸扩张的气流引导空间,形成由LED灯的行驶冷却风扇产生的散热气流能够从光投射端排出的散热路径 的灯壳。
    • 9. 发明申请
    • HEAT PIPE STRUCTURE OF A HEAT RADIATOR
    • 散热器的热管结构
    • US20090050305A1
    • 2009-02-26
    • US11844946
    • 2007-08-24
    • Sin-Wei HeTzu-Hsin HuangYu-Chin Lin
    • Sin-Wei HeTzu-Hsin HuangYu-Chin Lin
    • F28F1/30
    • F28D15/0233F28D15/0275H01L23/3672H01L23/427H01L2924/0002H01L2924/00
    • The present invention provides a heat pipe structure of a heat radiator, which includes two vertically protruded radiating portions and heat-absorbing portions at a bottom of the two radiating portions. The heat-absorbing portions are assembled onto the heat-conducting pedestal. Two turning portions are formed at the intersection of the heat-absorbing portions and two radiating portions. The heat-absorbing portion has a curved shape. The heat-absorbing portions of adjacent heat pipes are misaligned, such that the turning portion of the heat-absorbing portion of one heat pipe aligns with the recessed space of the other heat pipe. A minimum of heat pipe assembly space obtains a maximum heating area, thus greatly improving the heat-radiating effect and reducing the manufacturing cost with better applicability and economic efficiency.
    • 本发明提供一种散热器的热管结构,其包括在两个辐射部分的底部的两个垂直突出的辐射部分和吸热部分。 吸热部分组装在导热基座上。 两个转动部分形成在吸热部分和两个辐射部分的相交处。 吸热部具有弯曲形状。 相邻热管的吸热部不对准,使得一个热管的吸热部的转动部与另一个热管的凹部空间对准。 最小热管组合空间可获得最大加热面积,从而大大提高散热效果,降低制造成本,具有更好的适用性和经济效益。
    • 10. 发明申请
    • PANEL-TYPE HEAT SINK MODULE
    • 面板式散热模块
    • US20080253080A1
    • 2008-10-16
    • US11744421
    • 2007-05-04
    • Sin-Wei HEJhong-Yan Chang
    • Sin-Wei HEJhong-Yan Chang
    • H05K7/20
    • H05K7/20972F21K9/00F21V29/677F21V29/717F21V29/76F21Y2105/10F21Y2115/10F28D15/0233F28D15/0266F28F3/02G02F1/133385H05K7/2099
    • The panel-type heat sink module combines the heat-conducting panel, fin heat sink, diversion tank, fan and heat pipe into a single module. There is a heat-conducting surface and an assembly surface of the heat-conducting panel. The fin heat sink is assembled onto the assembly surface. The diversion tank is adapted onto the assembly surface and located nearby the fin heat sink. The diversion tank includes a fan container and a diversion channel. The fan is assembled into the fan container, and the heat pipe is assembled between the assembly surface and the fin heat sink. The heat pipe penetrates through the diversion tank; thus, the heat sources guided by the heat-conducting panel will be uniformly guided into the fin heat sink and diversion tank via the heat pipe. An air stream generated by the fan flows towards the fin heat sink, improving heat-radiation, and reducing assembly space.
    • 面板式散热模块将导热板,散热片散热器,导流槽,风扇和热管组合成一个模块。 导热面板有导热表面和组装表面。 翅片散热器组装在组件表面上。 导流槽适用于装配表面,位于散热片散热片附近。 引水箱包括风扇容器和分流通道。 将风扇组装到风扇容器中,并且将热管组装在组装表面和散热片散热片之间。 热管穿透分流槽; 因此,由导热板引导的热源将通过热管被均匀地引导到散热片和导流槽中。 由风扇产生的空气流朝翅片式散热器流动,改善散热,减少组装空间。