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    • 2. 发明申请
    • Coating apparatus and method using the same
    • 涂布装置及其使用方法
    • US20060008591A1
    • 2006-01-12
    • US11178069
    • 2005-07-07
    • Lu SunChing WangWen HsuYu-Ying Chan
    • Lu SunChing WangWen HsuYu-Ying Chan
    • B05D7/00
    • H01L21/6715B05C5/0254B05C13/00G03F7/16H01L21/67784
    • A coating apparatus (2) includes a work table (20) having a plurality of blowing holes (201) for suspending a substrate (200) thereabove, a coating unit (22) having a photoresist coating nozzle (222) and a supplying device (224) for photoresist material. The photoresist coating nozzle is disposed above the work table, and the supplying device connects to the coating nozzle for supplying photoresist thereto. In operation, the substrate to be coated is continuously suspended in the gas just above but not in contact with the work table. Therefore, accumulation of static electricity and/or foreign particles on the substrate can be avoided. Gas emitting from the blowing holes can remove foreign particles from the surface of the work table and the backside of the work table.
    • 涂覆装置(2)包括具有多个用于悬挂上述基板(200)的吹扫孔(201)的工作台(20),具有光致抗蚀剂涂布喷嘴(222)和供给装置(22)的涂布单元 224)用于光致抗蚀剂材料。 光致抗蚀剂涂布喷嘴设置在工作台的上方,供给装置连接到用于向其施加光致抗蚀剂的涂布喷嘴。 在操作中,待涂覆的基板连续地悬挂在正好在工作台上方但不与工作台接触的气体中。 因此,可以避免静电和/或异物在基板上的积聚。 从吹风孔排出的气体可以从工作台表面和工作台的背面除去异物。
    • 5. 发明申请
    • Self-alignment manufacturing method of the microlens and the aperture using in optical devices
    • 微透镜的自对准制造方法和光学器件中使用的孔径
    • US20060134814A1
    • 2006-06-22
    • US11052875
    • 2005-02-09
    • Yi ChiuWen HsuYu-Ru Chang
    • Yi ChiuWen HsuYu-Ru Chang
    • H01L21/00
    • H01L27/14685H01L27/14627H01L31/02327
    • The present invention discloses a self-alignment manufacturing method of a microlens and an aperture using in an optical device. The method manufactures the aperture and the circular opening in the opaque film on a transparent substrate, and utilizes the self-alignment backside exposure technology to precisely integrate the aperture and the microlens made by macromolecule material without any combination step. The claimed method is simpler than conventional technology and can precisely align and integrate the microlens and the aperture with a continuous batch manufacture. Since the aperture and the circular opening are concentric circles and formed in same step, the microlens and the aperture can be precisely aligned with the backside exposure. The claimed invention can effectively improve the optical resolution and efficiency of the optical access and measurement devices.
    • 本发明公开了一种在光学装置中使用的微透镜和孔径的自对准制造方法。 该方法在透明基板上制造不透明膜中的孔径和圆形开口,并利用自对准背面曝光技术精确地将孔径和由大分子材料制成的微透镜整合,而无需任何组合步骤。 要求保护的方法比常规技术简单,并且可以通过连续批量制造精确对准和整合微透镜和孔。 由于光圈和圆形开口是同心圆并且在同一步骤中形成,因此微透镜和光圈可以与背面曝光精确对准。 所要求保护的发明可以有效地提高光学接入和测量装置的光学分辨率和效率。
    • 7. 发明申请
    • Stand-alone video camera
    • 独立摄像机
    • US20090179990A1
    • 2009-07-16
    • US11656339
    • 2007-01-20
    • Yue ZhangWen Hsu
    • Yue ZhangWen Hsu
    • H04N5/225
    • H04N5/907H04N5/772
    • The present invention discloses a novel combination for low cost, stand alone video cameras with surveillance features. In the embodiments, the camera body can be manufactured utilizing inexpensive materials such as press molded plastic, the view finder can be a simple through-hole without a lens, simple indicator lights and buttons can be utilized for programming and status functions, and a removable memory card can be used as primary storage. The video camera can operate on one or more batteries or external power. The video camera can be embedded with surveillance functions offering a variety of programming modes for operating as a security camera. By providing only essential features and features that can be manufactured at low cost, the overall cost of the resulting camera can be kept very low.
    • 本发明公开了一种具有监视特征的低成本,独立摄像机的新颖组合。 在实施例中,可以利用诸如压制成型塑料的便宜材料制造照相机主体,取景器可以是没有透镜的简单通孔,简单的指示灯和按钮可用于编程和状态功能,并且可拆卸 存储卡可用作主存储。 摄像机可以在一个或多个电池或外部电源上工作。 视频摄像机可以嵌入监控功能,提供各种编程模式,用作安全摄像机。 通过仅提供可以以低成本制造的基本特征和特征,所得到的相机的总体成本可以保持非常低。
    • 9. 发明授权
    • Bi-directional DC to DC power converter having a neutral terminal
    • 具有中性端子的双向直流至直流功率转换器
    • US08130524B2
    • 2012-03-06
    • US12458288
    • 2009-07-08
    • Yi-Hu LeeWen HsuChin-Chang WuHung-Liang ChouYa-Tsung Feng
    • Yi-Hu LeeWen HsuChin-Chang WuHung-Liang ChouYa-Tsung Feng
    • H02M7/5387H02M3/156G05F1/577
    • H02M3/1582H02M3/1584Y10T307/685
    • A bi-directional DC to DC power converter includes two DC sources, two inductors respectively connected to the two DC sources, a first switch and a second switch respectively connected to the two inductors, two capacitors respectively connected to the two switches, and a third switch connected between the two inductors. The first, second and third switches are respectively connected reversely with a diode in parallel. When the third switch is alternately turned on and off and the first and second switches are always turned off, the power converter operates as a boost power converter and electric energy flows from the two DC sources to the two capacitors. When the third switch is always turned off and the first and second switches are synchronously turned on or off, the power converter operates as a buck power converter and electric energy flows from the two capacitors to the two DC sources.
    • 双向DC到DC电力转换器包括两个DC源,分别连接到两个DC源的两个电感器,分别连接到两个电感器的第一开关和第二开关,分别连接到两个开关的两个电容器,以及三个 开关连接在两个电感之间。 第一,第二和第三开关分别与并联的二极管反向连接。 当第三开关交替地接通和断开,并且第一和第二开关总是关断时,功率转换器作为升压功率转换器工作,电能从两个DC源流向两个电容器。 当第三开关总是关闭并且第一和第二开关同步地接通或断开时,功率转换器作为降压功率转换器工作,电能从两个电容器流到两个DC源。
    • 10. 发明申请
    • Suspension apparatus for auto-focus lens device and a method for fabricating the same
    • 用于自动对焦透镜装置的悬挂装置及其制造方法
    • US20070047108A1
    • 2007-03-01
    • US11589753
    • 2006-10-31
    • Chi ChangWen Hsu
    • Chi ChangWen Hsu
    • G02B7/02
    • G03B3/10G02B7/023G02B7/026
    • A suspension apparatus comprises a lens holder, a suspension spring and a supporting base. The supporting base is formed with an opening for accommodating the lens holder. The lens holder is for positioning a lens unit. The suspension spring is manufactured by stamping process to form a long strip with a plurality of suspension springs. The strip is then guided into a mold, and plastic injection molding process is performed in that mold so as to produce the lens holder and supporting base affixed respectively to either end of the suspension spring in one piece. After that, excess material of the strip is cut off. The suspension apparatus as above described is suitable for mass production. In addition, because of the high precision of mold, the inaccuracy of assembly and fabrication is minimized. The volume of the whole apparatus and the cost of production are also vastly decreased.
    • 悬架装置包括透镜架,悬架弹簧和支撑底座。 支撑基座形成有用于容纳透镜保持器的开口。 透镜架用于定位镜头单元。 悬挂弹簧通过冲压工艺制造以形成具有多个悬架弹簧的长条带。 然后将带材引导到模具中,并在该模具中进行塑性注射成型工艺,以便将分别固定在悬挂弹簧的任一端上的透镜保持器和支撑基座一体地固定。 之后,切断条带的多余材料。 如上所述的悬架装置适合于批量生产。 另外,由于模具的高精度,组装和制造的不准确性被最小化。 整个设备的数量和生产成本也大大降低。