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    • 12. 发明授权
    • Swinging type power generator
    • 摆动式发电机
    • US5684761A
    • 1997-11-04
    • US594667
    • 1996-02-02
    • Shih-Chou ChenTung-Chuan WuChen-Sheng WengRay-Ten ChenChang-Chun Chen
    • Shih-Chou ChenTung-Chuan WuChen-Sheng WengRay-Ten ChenChang-Chun Chen
    • G04C10/00G04B27/12G04C3/00
    • G04C10/00
    • An improved swinging type generator for use in automatic wrist watches is disclosed. It contains: (a) a base with a center shaft hole, (b) a stator mounted on the base containing at least one layer of ring-shaped coil plate having at least one periodic-wave-shaped induction coil arranged on and along a circumference of the ring-shaped coil plate; (c) an unbalanced-and-weighted swinging magnetic rotor having a central rotary shape. The rotary shaft is mounted in the shaft hole of the base, and the unbalanced-and-weighted swinging magnetic rotor includes a magnetic ring having a plurality of magnets arranged in a head-to-tail manner along a circumference of the magnetic ring. In a preferred embodiment the induction coil has the shape of a multiple-cycle square-wave, and the angle of the square wave equals the magnetic angle, which is the angle formed between half of the arc length of an individual magnet of the magnetic ring and the center of the shaft hole, so as to maximize the electro-motive force that can be generated.
    • 公开了一种用于自动手表的改进的摆动式发生器。 它包括:(a)具有中心轴孔的基座,(b)安装在基座上的定子,其包含至少一层环形线圈板,所述至少一层环形线圈板具有至少一个周期波形感应线圈, 环形线圈板的周长; (c)具有中心旋转形状的不平衡重量的摆动磁转子。 旋转轴安装在基座的轴孔中,不平衡重量的摆动磁转子包括具有多个磁体的磁环,该多个磁体沿着磁环的圆周方向以头对齐的方式布置。 在优选实施例中,感应线圈具有多次方波的形状,并且方波的角度等于磁角,其是在磁环的单个磁体的一半弧长之间形成的角度 和轴孔的中心,以便最大化可产生的电动势。
    • 14. 发明申请
    • APPARATUS OF CENTRIFUGAL FAN AND A DUST-COLLECTING MODULE USING THE SAME
    • 离心风机的装置和使用它的集尘模块
    • US20120210685A1
    • 2012-08-23
    • US13465318
    • 2012-05-07
    • YANN-SHUOH SUNYu-Liang ChungJiing-Fu ChenTung-Chuan WuChun-Hsien Liu
    • YANN-SHUOH SUNYu-Liang ChungJiing-Fu ChenTung-Chuan WuChun-Hsien Liu
    • B01D46/42
    • F02C7/052A47L9/0081A47L9/2842
    • A centrifugal fan apparatus is disclosed in the present invention. The characteristics of the centrifugal fan apparatus lies in that the width of airflow channel defined between the rim of the impeller and the inner wall of the housing accommodating the impeller is uniform, and two airflow spaces defined between the axial cross section of the impeller and upper housing and lower housing respectively are not symmetry. Due to these two characteristics, the centrifugal fan apparatus is capable of making larger pressure difference to inducing higher flow rate and reducing noise while the centrifugal fan apparatus is operated. The present invention also provides a dust-collecting module that is formed by adopting the centrifugal fan apparatus with a designed dust-collecting casing, which is capable of being a sucker of a vacuum cleaner to collect dust of the surroundings for the purpose of environment cleaning.
    • 在本发明中公开了一种离心式风扇装置。 离心风机装置的特点在于,限定在叶轮的边缘和容纳叶轮的壳体的内壁之间限定的气流通道的宽度是均匀的,并且在叶轮的轴向横截面和上部 外壳和下壳分别不对称。 由于这两个特征,离心式风扇装置能够在离心式风扇装置运转时产生较大的压力差,以产生更高的流量和降低噪音。 本发明还提供一种集尘模块,其采用具有设计的集尘壳体的离心式风扇装置形成,该集尘箱能够作为真空吸尘器的吸盘,以便为了环境清洁而收集周围的灰尘 。
    • 16. 发明授权
    • Method for making a conductive film and a probe card using the same
    • 制造导电膜的方法和使用其的探针卡
    • US07710132B2
    • 2010-05-04
    • US12032169
    • 2008-02-15
    • Tung-Chuan WuMin-Chieh ChouHung-Yi Lin
    • Tung-Chuan WuMin-Chieh ChouHung-Yi Lin
    • G01R31/02H01R43/00
    • G01R3/00G01R1/07314G01R1/07378Y10T29/49222
    • A method for manufacturing a conductive film as well as the structure thereof and a probe card using the same are provided in the invention. The conductive film is substantially a stacked structure of a specific thickness formed by the adhering and stacking of at least a substrate in a vacuum environment by the use of surface processing and mechanical healing whereas each substrate has an array of metal micro-threads formed thereon, in which the plural metal micro-threads, each being wrapped in an insulating film, are arranged on the substrate to form the array in a unidirectional and single-layered manner by the use of a LIGA process and polymer thin film technology. In an exemplary embodiment, the insulating film can be a polymer thin film of high dielectric constant, being made of a material such as polydimethylsiloxane (PDMA) or polyimide (PI); and the metal micro-thread is made of a high conductivity and high strength Ni—Co alloy. Moreover, the so-formed conductive film can be cut into any desired dimensions by the use of an energy beam, such as laser beam, ion beam and plasma beam, etc. while combining the conductive film with a panel so as to be used for forming a probe card with large area detection ability that is low-cost, ease-to-maintain and capable of being adapted for wafers of various bonding pad arrangements.
    • 本发明提供一种制造导电膜及其结构的方法和使用该导电膜的探针卡。 导电膜基本上是通过使用表面处理和机械愈合在真空环境中至少粘附和层叠基板形成的特定厚度的堆叠结构,而每个基板具有在其上形成的金属微线阵列, 其中通过使用LIGA工艺和聚合物薄膜技术,将单个缠绕在绝缘膜中的多个金属微细线布置在基板上以单向和单层形式形成阵列。 在一个示例性实施例中,绝缘膜可以是由诸如聚二甲基硅氧烷(PDMA)或聚酰亚胺(PI)的材料制成的具有高介电常数的聚合物薄膜; 金属微细线由高导电率和高强度的Ni-Co合金制成。 此外,通过使用诸如激光束,离子束和等离子体束等的能量束,可以将如此形成的导电膜切割成任何期望的尺寸,同时将导电膜与面板组合,以便用于 形成具有大面积检测能力的探针卡,其具有低成本,易于维护并且能够适用于各种焊盘布置的晶片。
    • 18. 发明授权
    • Pickup mechanism for microworkpiece
    • 微型工件拾取机构
    • US06817465B2
    • 2004-11-16
    • US10014490
    • 2001-12-14
    • Cheng-Tan PanTung-Chuan Wu
    • Cheng-Tan PanTung-Chuan Wu
    • B65G4714
    • H05K13/028
    • A pickup mechanism for handling micro components includes a microworkpiece supplying unit, a microworkpiece orientation unit and a microworkpiece separation unit. The microworkpiece orientation unit connects with the microworkpiece supplying unit and the microworkpiece separation unit. The micro components are supplied by the supplying unit, then orientated by the orientation unit. Those components orientated in a specific direction are led to the separation unit and separated for a following working device to process. Therefore, the pickup mechanism provides a continuous supplying, orientation and separation of the micro components for further assembly or fabrication processes.
    • 用于处理微型部件的拾取机构包括微型工件供应单元,微型工件定向单元和微型工件分离单元。 微型工件取向单元与微型工件供应单元和微型工件分离单元连接。 微量元件由供给单元提供,然后由取向单元定向。 沿特定方向取向的那些部件被引导到分离单元并被分离以用于下一个工作装置以进行处理。 因此,拾取机构提供用于进一步组装或制造工艺的微组件的连续供应,取向和分离。
    • 20. 发明授权
    • Method of making molds for manufacturing multiple-lead microstructures
    • 制造多铅微结构的模具的方法
    • US5645977A
    • 1997-07-08
    • US532951
    • 1995-09-22
    • Tung-Chuan WuJar-Sian HsiauMin-Chieh ChouJiing-Song LuMu-Tien Liang
    • Tung-Chuan WuJar-Sian HsiauMin-Chieh ChouJiing-Song LuMu-Tien Liang
    • B29C33/38B29C33/42G03F7/00C25D1/10
    • G03F7/00B29C33/3842B29C33/42Y10S430/168
    • A method for making molds for use in manufacturing multiple-lead microstructures is disclosed. Each of the molds comprises a set of punch head molds and a set of matching die plate molds, and the method comprises the steps of (a) dividing the multiple-lead microstructure into a plurality of portions, each portion is to be prepared by a pair of a punch head, which contains a plurality of prutrusions, and a die plate, which contains a plurality of matching recesses; (b) preparing each of the punch head molds using a first lithographic technique; and (c) preparing each of the die plate molds using a second lithographic technique. The first lithographic technique comprises the steps of: (i) forming a thick layer of a photoresist on a baseplate; (ii) irradiating an x-ray of ultraviolet ray onto the photoresist via a first photomask; (iii) developing the photoresist to remove undesired portion thereof; (iv) electroplating a metal or metal-ceramic composite material onto the photoresist that has been developed; (v) removing the photoresist to form a micromold having recesses matching the portion of the microstructure to be prepared. The second lithographic technique involves the same steps except a second photomask, which is conjugate to the first photomask, is used.
    • 公开了一种制造用于制造多引线微结构的模具的方法。 每个模具包括一组冲头模具和一组匹配的模板模具,该方法包括以下步骤:(a)将多导线微结构分成多个部分,每个部分由 一对包含多个弯曲部的冲头,以及包含多个匹配凹部的模板; (b)使用第一平版印刷技术准备每个冲头模具; 和(c)使用第二光刻技术制备每个模板模具。 第一平版印刷技术包括以下步骤:(i)在基板上形成厚的光致抗蚀剂层; (ii)通过第一光掩模将紫外线的X射线照射到光致抗蚀剂上; (iii)显影光致抗蚀剂以除去其不期望的部分; (iv)将金属或金属 - 陶瓷复合材料电镀到已经开发的光致抗蚀剂上; (v)去除光致抗蚀剂以形成具有与要制备的微结构的部分相匹配的凹部的微镜。 第二光刻技术涉及相同的步骤,除了使用与第一光掩模共轭的第二光掩模。