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    • 31. 发明授权
    • Ozone generator having micro pump
    • 臭氧发生器具有微型泵
    • US5908603A
    • 1999-06-01
    • US887540
    • 1997-07-03
    • Ming-Jye TsaiShih-Che LoRay-Ten ChenTung-Chuan Wu
    • Ming-Jye TsaiShih-Che LoRay-Ten ChenTung-Chuan Wu
    • C01B13/11F04B43/04B01J19/08
    • C01B13/11F04B43/046C01B2201/12C01B2201/22Y10S422/906
    • An integrated ozone generator is disclosed. It includes: (a) an upper covering layer having a thin film, and a permanent magnet being installed on the thin film, the permanent magnet having a periphery which is surrounded with a coil on which a plurality of contact points are installed for inputting an oscillating signal, so as to form an electromagnetically actuating micro pump, the upper covering layer further having a hole formed on a first side of the upper covering layer and an upper thin film electrode and a discharging teethed structure installed on an inside surface of the covering layer away from the hole; and (b) a base having a groove which is connected with an inner hole of the upper covering layer to form a gas chamber, a gradually opened channel at one side of the gas chamber for inputting gas, and another gradually reducing channel at another side of the gas chamber. The base also contains a lower thin film electrode connected to the gradually reducing channel and a plurality of discharging micro tips being installed inside the base at a position corresponding to the lower thin film electrode, the lower thin film electrode being positioned opposite to the upper electrode thin film inside the upper covering layer and the discharging micro tips which are installed on either the upper thin film electrode or the lower thin film electrode, or both, to form an arc discharging structure.
    • 公开了一种综合臭氧发生器。 它包括:(a)具有薄膜的上覆盖层,和安装在薄膜上的永磁体,永久磁铁具有围绕着线圈的周边,在该线圈上安装有多个接触点,用于输入 振荡信号,以形成电磁致动微型泵,所述上覆盖层还具有形成在所述上覆盖层的第一侧上的孔和安装在所述覆盖层的内表面上的上薄膜电极和排出端口结构 层离开洞; 和(b)具有与上覆盖层的内孔连接以形成气室的槽的基部,在用于输入气体的气室的一侧的逐渐开放的通道,以及在另一侧的另一个逐渐减小的通道 的气室。 基底还包含连接到逐渐减少通道的下薄膜电极,并且在与底部薄膜电极相对应的位置处在基底内部安装多个放电微尖端,下部薄膜电极位于与上部电极相对的位置 上部覆盖层内的薄膜和安装在上部薄膜电极或下部薄膜电极上的放电微型尖端,或两者形成电弧放电结构。
    • 35. 发明授权
    • Path guidance method for autonomous mobile device
    • 自主移动设备的路径引导方法
    • US07636621B2
    • 2009-12-22
    • US11498824
    • 2006-08-04
    • Shih-Ping LeeYu-Liang ChungHung-Hsiu YuTung-Chuan Wu
    • Shih-Ping LeeYu-Liang ChungHung-Hsiu YuTung-Chuan Wu
    • H02J7/00G06F19/00
    • G05D1/028G05D1/0225G05D2201/0215
    • A path guidance method for autonomous mobile device, by which a directional wireless reception unit, arranged on the autonomous mobile device, is enabled to receive a radio wave guidance signal issued by a call unit while the direction pointing to the call unit can be determined with respect to the intensity and direction of the received radio wave guidance signal, and thus the autonomous mobile device is directed to move toward the pointing direction until the autonomous mobile device reaches a location specified by the call unit. In a preferred aspect, the autonomous mobile device is determined to be not far from the call unit when the intensity of the radio wave guidance signal, received by the directional wireless reception unit, is larger than a predefined value.
    • 自主移动装置的路径引导方法,通过该方式,布置在自主移动装置上的定向无线接收单元能够接收由呼叫单元发出的无线电波引导信号,同时能够以 相对于所接收的无线电波引导信号的强度和方向,自主移动装置被指向朝着指向方向移动,直到自主移动装置到达由呼叫单元指定的位置。 在一个优选的方面,当由无线接收单元接收到的无线电波引导信号的强度大于预定值时,自主移动设备被确定为离呼叫单元不远。
    • 37. 发明申请
    • 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
    • US20090091343A1
    • 2009-04-09
    • US12032169
    • 2008-02-15
    • Tung-Chuan WuMin-Chieh ChouHung-Yi Lin
    • Tung-Chuan WuMin-Chieh ChouHung-Yi Lin
    • G01R1/067H01B13/00
    • 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 an 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堆叠基板形成的特定厚度的叠层结构,而每个基板具有形成在其上的金属微线阵列, 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所需的尺寸,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。
    • 38. 发明申请
    • ANOMALY DETECTION SYSTEM AND METHOD
    • 异常检测系统和方法
    • US20080300816A1
    • 2008-12-04
    • US11839507
    • 2007-08-15
    • Ya-Hui TsaiTung-Chuan WuChun-Hsien Liu
    • Ya-Hui TsaiTung-Chuan WuChun-Hsien Liu
    • G06F19/00
    • G08B13/184G08B13/19613G08B13/19615
    • An anomaly detection system and a method thereof are disclosed. The system comprises at least a light reflecting unit, a light-emitting unit, an image pick-up unit and a processing module. Each of the light reflecting unit is disposed on an object-to-be-detected that all of which are capable of reflecting light emitted from the light-emitting unit and thus cooperatively generating a reflection image relating to the object-to-be-detected to be received by the image pick-up unit for enabling the same to generate an image signal accordingly. The image signal is then transmitted to the processing module where it is analyzed and compared with a standard image signal so as to determine whether the position of the object-to-be-detected is abnormal.
    • 公开了一种异常检测系统及其方法。 该系统至少包括光反射单元,发光单元,图像拾取单元和处理模块。 每个光反射单元设置在被检测物体上,所有这些都能够反射从发光单元发射的光,从而协同地产生与要被检测物体相关的反射图像 由图像拾取单元接收以使其能够相应地生成图像信号。 然后将图像信号发送到处理模块,在该处理模块中对其进行分析并与标准图像信号进行比较,以便确定待检测对象的位置是否异常。
    • 39. 发明申请
    • MINIATURE HEAT-DISSIPATING FAN DEVICE
    • 微型散热风扇装置
    • US20080277094A1
    • 2008-11-13
    • US11834162
    • 2007-08-06
    • Wen-Yang PengTung-Chuan WuChan-Hsing Lo
    • Wen-Yang PengTung-Chuan WuChan-Hsing Lo
    • F28F7/00H02K1/27H02K11/00
    • H02K21/24F04D25/0653H02K1/2793H02K3/26H02K9/06H02K2211/03
    • A miniature heat-dissipating fan device is disclosed, which comprises: a frame; a shaft, pivotally connected to the frame; at least a planar coil, each being received in the frame and formed in a wave winding manner; at least a permanent magnet, each being connected to the shaft while being positioned about parallel to the at least one planar coil for enabling the generation of an alternating multipolar magnetic field; a plurality of blades, being disposed at positions corresponding to the at least one permanent magnet while centering around the axis of the shaft in a centrifugal manner; and at least a magnetically permeable back iron, disposed at a side of the at least one planar coil and being structured with a geometrical shape matching to the wave winding planar coil; wherein the plural blades are integrated with the at least one permanent magnet for enabling the same to rotate with the at least one permanent magnet synchronously. In an exemplary embodiment of the invention, the planar coil is structured with at least a hollowed area, each having a Hall-effect sensor embedded therein. With the aforesaid device, not only it can be structured as a thin-type device with improved convection efficiency, but also the magnetic flux density is increased.
    • 公开了一种微型散热风扇装置,其包括:框架; 枢转地连接到框架的轴; 至少一个平面线圈,每个线圈被接收在框架中并以波浪形式形成; 至少一个永久磁体,每个永磁体连接到所述轴,同时被定位成与所述至少一个平面线圈平行,以便产生交替的多极磁场; 多个叶片,设置在与所述至少一个永磁体相对应的位置处,同时围绕所述轴的轴线以离心方式居中; 以及至少一个导磁背铁,设置在所述至少一个平面线圈的一侧并且被构造成具有与所述波浪绕组平面线圈匹配的几何形状; 其中所述多个叶片与所述至少一个永磁体集成,以使得所述永磁体能够与所述至少一个永磁体同步地旋转。 在本发明的示例性实施例中,平面线圈被构造成至少具有中空区域,每个具有嵌入其中的霍尔效应传感器。 利用上述装置,不仅可以构造为具有改善的对流效率的薄型装置,而且增加磁通密度。
    • 40. 发明申请
    • Impeller Structure and the Centrifugal Fan Device Using the Same
    • 叶轮结构和使用其的离心式风扇装置
    • US20080050228A1
    • 2008-02-28
    • US11533554
    • 2006-09-20
    • Jiing-Fu ChenTung-Chuan WuChan-Hsing LoChung-Ping ChiangYu-Liang ChungYann-Shuoh Sun
    • Jiing-Fu ChenTung-Chuan WuChan-Hsing LoChung-Ping ChiangYu-Liang ChungYann-Shuoh Sun
    • F03B3/16
    • F04D29/281F04D29/30
    • An impeller structure for a centrifugal fan device is disclosed, in which the impeller structure is primarily comprised of: a disc; and a plurality of blade structures, each being arranged on the disc; wherein, each blade structure further comprises: a first blade; and a second blade, arranged at a circumferential length away from a side of the first blade while radially overlapping with the radial of the first blade by a specific overlap area for forming a gap passage functioning as a nozzle. As a fluidic is flowing through and shooting out of the gap passage, not only the growth of the boundary layers on the suction surfaces of front blades are interrupted, but also as the fluidic with high kinetic energy is mixing with the low-kinetic fluidic flowing on the suction surfaces of rear blades, the thickness of the boundary layer is reduced while the separation point is delayed and thus separation can be prevented.
    • 公开了一种用于离心风扇装置的叶轮结构,其中叶轮结构主要包括:盘; 以及多个叶片结构,每个叶片结构布置在盘上; 其中,每个叶片结构还包括:第一叶片; 以及第二叶片,其布置成沿着所述第一叶片的一侧的周向长度,同时与所述第一叶片的径向径向重叠,具有特定的重叠区域,用于形成用作喷嘴的间隙通道。 当流体流过并从间隙通道中流出时,不仅前缘叶片的吸附表面上的边界层的生长被中断,而且具有高动能的流体与低动力流体流动混合 在后刀片的吸附面上,边界层的厚度减小,同时分离点延迟,从而可以防止分离。