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    • 1. 发明申请
    • FLUID COOLED ELECTRIC MOTOR
    • 流体冷却电动机
    • US20110121670A1
    • 2011-05-26
    • US12951427
    • 2010-11-22
    • Xin-Yi WUChia-Hung CHIEN
    • Xin-Yi WUChia-Hung CHIEN
    • H02K9/04H02K9/06
    • H02K5/20H02K1/32H02K9/19
    • An electric motor includes a stator fixed in a motor housing, disposed around a motor shaft rotatable relative to the motor housing and formed with a radially extending through hole that is in spatial communication with an air-flow space defined between the stator and a tube body of the motor housing. The tube body is formed with an annular fluid-flow channel for receiving cooling fluid therein. A rotor is sleeved fixedly on the motor shaft. The motor shaft co-rotates with the rotor. The rotor is formed with angularly spaced apart slots extending inwardly and radially from an outer annular surface thereof, and air holes extending from an end surface thereof in an axial direction. Each air hole in the rotor is in spatial communication with corresponding slots. When the rotor rotates, the through hole in the stator is successively in spatial communication with the slots in the rotor.
    • 电动机包括固定在电动机壳体中的定子,围绕电动机轴设置,该电动机轴可相对于电动机壳体旋转,并形成有径向延伸的通孔,其与限定在定子和管体之间的空气流动空间空间连通 的电机外壳。 管体形成有用于在其中接收冷却流体的环形流体流动通道。 转子固定在电机轴上。 电动机轴与转子共旋转。 转子形成有从其外部环形表面向内并径向延伸的角度间隔开的槽,以及从其端面沿轴向延伸的气孔。 转子中的每个空气孔与相应的槽空间连通。 当转子旋转时,定子中的通孔与转子中的槽连续空间连通。
    • 2. 发明授权
    • Radiator module system for automatic test equipment
    • 散热器模块系统,用于自动测试设备
    • US09121898B2
    • 2015-09-01
    • US13415254
    • 2012-03-08
    • Xin-Yi WuJui-Che ChouMeng-Kung LuChin-Yi Ou Yang
    • Xin-Yi WuJui-Che ChouMeng-Kung LuChin-Yi Ou Yang
    • G01R31/10G01R31/28
    • G01R31/2877G01R31/2874H05K7/20136H05K7/20254
    • A radiator module system for automatic test equipment, wherein the automatic test equipment comprises at least one test arm, with the front end of the test arm being configured with a test head, and a closed-loop circulating cooling device is installed on the test arm. The closed-loop circulating cooling device includes a conduit which is in contact with the cooling device, internally contains an working fluid and is connected to the test head, a cooling device, a set of fans and a driving source for driving the working fluid. The closed-loop circulating cooling device can operate to circulate and exchange heat energy generated by a device under test (DUT) tightly stressed by downward pressure applied with the test arm, and brings up airflows by means of the fans to perform heat exchange on the cooling device thereby dissipating the generated heat energy.
    • 一种用于自动测试设备的散热器模块系统,其中所述自动测试设备包括至少一个测试臂,所述测试臂的前端配置有测试头,并且闭环循环冷却装置安装在所述测试臂 。 闭环循环冷却装置包括与冷却装置接触的管道,内部包含工作流体并连接到测试头,冷却装置,一组风扇和用于驱动工作流体的驱动源。 闭环循环冷却装置可以操作以循环和交换由被测试臂施加的向下压力紧紧地受到受试装置(DUT)产生的热能,并且通过风扇引起气流,以对其进行热交换 从而消散所产生的热能。
    • 3. 发明申请
    • Radiator Module System for Automatic Test Equipment
    • 自动测试设备散热器模块系统
    • US20130127483A1
    • 2013-05-23
    • US13415254
    • 2012-03-08
    • Xin-Yi WUJui-Che ChouMeng-Kung LuChin-Yi Ou Yang
    • Xin-Yi WUJui-Che ChouMeng-Kung LuChin-Yi Ou Yang
    • G01R31/00F28D15/00
    • G01R31/2877G01R31/2874H05K7/20136H05K7/20254
    • A radiator module system for automatic test equipment, wherein the automatic test equipment comprises at least one test arm, with the front end of the test arm being configured with a test head, and a closed-loop circulating cooling device is installed on the test arm. The closed-loop circulating cooling device includes a conduit which is in contact with the cooling device, internally contains an working fluid and is connected to the test head, a cooling device, a set of fans and a driving source for driving the working fluid. The closed-loop circulating cooling device can operate to circulate and exchange heat energy generated by a device under test (DUT) tightly stressed by downward pressure applied with the test arm, and brings up airflows by means of the fans to perform heat exchange on the cooling device thereby dissipating the generated heat energy.
    • 一种用于自动测试设备的散热器模块系统,其中所述自动测试设备包括至少一个测试臂,所述测试臂的前端配置有测试头,并且闭环循环冷却装置安装在所述测试臂 。 闭环循环冷却装置包括与冷却装置接触的管道,内部包含工作流体并连接到测试头,冷却装置,一组风扇和用于驱动工作流体的驱动源。 闭环循环冷却装置可以操作以循环和交换由被测试臂施加的向下压力紧紧地受到受试装置(DUT)产生的热能,并且通过风扇引起气流,以对其进行热交换 从而消散所产生的热能。
    • 4. 发明申请
    • Temperature Control System for IC Tester
    • IC测试仪温度控制系统
    • US20130113509A1
    • 2013-05-09
    • US13418124
    • 2012-03-12
    • Xin-Yi WUJui-Che ChouMeng-Kung LuChin-Yi Ou Yang
    • Xin-Yi WUJui-Che ChouMeng-Kung LuChin-Yi Ou Yang
    • G01R31/00
    • G01R31/2874
    • A temperature control system for IC tester, comprising: a test socket; a compressing device including a heat exchanger and a thermoelectric cooler (TEC); and a test head having a temperature sensor. The test head is configured at the front end of the compressing device such that, upon placing at least one device under test (DUT) onto the test socket, the test head coerces tightly one of the DUTs through downward pressure from the compressing device thereby allowing the temperature sensor to detect the surface temperature of the DUT to obtain a temperature signal, and then feed such a temperature signal back to a control processing unit for operations to generate a linear control signal thus that, through the control of the linear control signal, the heat absorption and heat discharge functions of the TEC are enabled to further control the temperature of the DUT within a determined range.
    • 一种用于IC测试器的温度控制系统,包括:测试插座; 包括热交换器和热电冷却器(TEC)的压缩装置; 以及具有温度传感器的测试头。 测试头被配置在压缩装置的前端,使得在将至少一个被测试装置(DUT)放置在测试插座上时,测试头通过来自压缩装置的向下的压力紧密地胁迫一个DUT,从而允许 温度传感器,用于检测DUT的表面温度以获得温度信号,然后将这样的温度信号反馈到控制处理单元,以进行操作以产生线性控制信号,从而通过控制线性控制信号, TEC的吸热和放热功能能够进一步将DUT的温度控制在一定范围内。
    • 5. 发明申请
    • UNITIZED COOLING MODULE FOR LASER DIODE ARRAY
    • 用于激光二极管阵列的独特冷却模块
    • US20100118902A1
    • 2010-05-13
    • US12346051
    • 2008-12-30
    • Xin-Yi Wu
    • Xin-Yi Wu
    • H01S3/04
    • H01S5/024H01S5/02236H01S5/02423H01S5/40
    • The unitized cooling module for a laser diode array of the invention has at least one cooling unit. The cooling unit has an inlet main channel, an outlet main channel, an inlet subchannel, an outlet subchannel and a chamber. The inlet subchannel connects the inlet main channel and the chamber, and the outlet subchannel connects the outlet main channel and the chamber. A heatsink element carrying a laser diode seals the chamber. With a cooling source flowing through the interior of the cooling unit, the heat produced by the laser diode is removed. Thus, the unitized cooling module of the invention is easily assembled, repaired and expanded, and has the effect of pressing fit. Furthermore, the unitized cooling module of the invention can be arranged and designed according to the heat produced by the laser diode to remove the heat from the laser diode, so that the performance of the unitized cooling module is ensured.
    • 本发明的激光二极管阵列的组合式冷却模块具有至少一个冷却单元。 冷却单元具有入口主通道,出口主通道,入口子通道,出口子通道和室。 入口子通道连接入口主通道和腔室,出口子通道连接出口主通道和腔室。 携带激光二极管的散热元件密封该腔室。 当冷却源流过冷却单元的内部时,消除由激光二极管产生的热量。 因此,本发明的单元化冷却模块易于组装,修理和扩展,并且具有压配合的效果。 此外,本发明的单元化冷却模块可以根据由激光二极管产生的热量来布置和设计,以消除来自激光二极管的热量,从而确保了组合式冷却模块的性能。
    • 6. 发明申请
    • Ultra-thin miniature pump
    • 超薄型微型泵
    • US20090169399A1
    • 2009-07-02
    • US12005348
    • 2007-12-27
    • Xin-Yi WuTsung-Wen HuangKuo-Feng ChenYih-Ru Jiang
    • Xin-Yi WuTsung-Wen HuangKuo-Feng ChenYih-Ru Jiang
    • F04B17/00
    • F04B19/006F04D13/0666
    • An ultra-thin miniature pump applied to transport a fluid includes a main body, a rotor, and a stator. The main body includes a cover part and a bottom part. A joint surface between the cover part and the bottom part possesses an anti-leakage device, and a chamber including a suction port and a discharge port is formed inside the main body. The rotor disposed in the chamber includes a magnet set, an impeller, and a central shaft. The magnet set is connected on the surface of the impeller, and the impeller with the magnet set is aligned by the central shaft and rotates in coaxial. The stator disposed in the chamber includes a plurality of coils corresponding to the magnet set axially. The coils and the magnet set generate an axial magnetic flux to make the impeller rotate for transporting the fluid from the suction port to the discharge port.
    • 用于运输流体的超薄型微型泵包括主体,转子和定子。 主体包括盖部和底部。 盖部和底部之间的接合面具有防漏装置,在主体内部形成有包括吸入口和排出口的室。 设置在腔室中的转子包括磁体组,叶轮和中心轴。 磁铁组连接在叶轮的表面,具有磁铁组的叶轮与中心轴对准并同轴旋转。 设置在腔室中的定子包括对应于轴向设置的磁体的多个线圈。 线圈和磁体组产生轴向磁通量,以使叶轮旋转以将流体从吸入口输送到排出口。