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    • 41. 发明申请
    • HOSE CLAMP PLIERS
    • 软管夹钳
    • US20090064823A1
    • 2009-03-12
    • US11853251
    • 2007-09-11
    • CHUAN MAO HUANG
    • CHUAN MAO HUANG
    • B25B27/10
    • B25B25/005
    • A hose clamp pliers comprises first and second pliers bodies axially combined together by a pivot pillar for forming operating segments and working segments thereon including fitting seats disposed on the front ends thereof for fitting clamping members therein individually, the clamping members including positioning portions for accommodation various types of hose members mounted on one ends thereof, and including shanks with smaller diameters coupled on another ends thereof and inserting through the fitting seats respectively, the inner end surfaces of the positioning portions being biased against the inner end surfaces of the fitting seats respectively, and one ends of the shanks projecting out of the outer end surfaces of the fitting seats, the shanks including holes formed therein for receiving compression springs including balls placed on the free ends thereof and pushed out of the shanks thereby for being retained on the outer end surface of the fitting seats respectively, thus quickly replacing different sizes or shapes of clamping members.
    • 软管夹钳包括通过枢轴柱轴向组合在一起的第一和第二钳体,用于形成操作段及其上的工作段,其上包括设置在其前端上的装配座,用于将夹紧构件单独装配在其中,夹紧构件包括用于容纳各种 安装在其一端的软管构件的类型,并且包括具有较小直径的柄,其另一端连接并分别插入通过安装座,定位部分的内端表面分别偏置在装配座的内端表面上, 并且柄部的一端突出配合座的外端表面之外,其中包括形成在其中的孔,用于接收压缩弹簧,该压缩弹簧包括放置在其自由端上的滚珠并被推出柄部,从而保持在外端 配件座的表面分别为q 呃替换不同尺寸或形状的夹紧件。
    • 46. 发明申请
    • ROBOT POSITIONING SYSTEM FOR SEMICONDUCTOR TOOLS
    • 用于半导体工具的机器人定位系统
    • US20130325179A1
    • 2013-12-05
    • US13486019
    • 2012-06-01
    • Wen-Huang LIAOHsien-Mao HUANG
    • Wen-Huang LIAOHsien-Mao HUANG
    • G05B19/04
    • B25J9/1697B25J9/1692G05B2219/39008G05B2219/39046G05B2219/45031G06K9/3208H01L21/67259H01L21/681
    • A system and method for adjusting the position and orientation of a feed arm associated with a wafer handling robot. In one embodiment, the system includes a positioning plate detachably carried by the feed arm and insertable therewith into a wafer carrier. The positioning plate includes graphic alignment indicia. An alignment apparatus is provided configured for insertion into wafer-holding slots in the wafer carrier. The apparatus includes at least one digital image sensor. With the positioning plate and alignment apparatus located in the wafer carrier, an image of the alignment indicia is displayed on a video monitor by the image sensor for comparison to a reference mark superimposed on the monitor for determining the relative position and orientation of the feed arm with respect to the wafer carrier. Some embodiments of the apparatus further include a distance detection device to measure the distance to the plate.
    • 一种用于调节与晶片处理机器人相关联的进给臂的位置和方向的系统和方法。 在一个实施例中,系统包括可由进给臂可拆卸地承载并可插入到晶片载体中的定位板。 定位板包括图形对齐标记。 提供配置用于插入晶片载体中的晶片保持槽的对准装置。 该装置包括至少一个数字图像传感器。 利用位于晶片载体中的定位板和对准装置,通过图像传感器在视频监视器上显示对准标记的图像,以与叠加在监视器上的参考标记进行比较,以确定进给臂的相对位置和方向 相对于晶片载体。 该装置的一些实施例还包括测量到板的距离的距离检测装置。
    • 48. 发明申请
    • CONTROL SYSTEM AND METHOD FOR CAPACITIVE TOUCH SCREEN
    • 电容触摸屏的控制系统和方法
    • US20130234981A1
    • 2013-09-12
    • US13748607
    • 2013-01-24
    • Chien-Ying HuangHsin-Mao Huang
    • Chien-Ying HuangHsin-Mao Huang
    • G06F3/044
    • G06F3/044G06F3/0416
    • A control system for a capacitive touch screen is provided. The control system comprises a touch detecting circuit, touch hard instruction, a storage module and a controller. The touch detecting circuit detects a capacitance variance to generate touch data. The touch hard instruction executes a touch computing function on the touch data. The storage module is connected to the touch detecting circuit and the at least one touch hard instruction, and records the touch data generated by the touch detecting circuit and the touch data computed by the touch hard instruction. The controller is connected to the touch detecting circuit, the at least one touch hard instruction, and the storage module, and assigns at least one touch task of a touch algorithm to the at least one touch hard instruction, so as to execute a corresponding touch computing function of the touch algorithm.
    • 提供了一种用于电容式触摸屏的控制系统。 控制系统包括触摸检测电路,触摸硬指令,存储模块和控制器。 触摸检测电路检测电容变化以产生触摸数据。 触摸硬指令在触摸数据上执行触摸计算功能。 存储模块连接到触摸检测电路和至少一个触摸硬指令,并且记录由触摸检测电路产生的触摸数据和由触摸硬指令计算的触摸数据。 控制器连接到触摸检测电路,至少一个触摸硬指令和存储模块,并且将至少一个触摸算法的触摸任务分配给至少一个触摸硬指令,以便执行相应的触摸 触摸算法的计算功能。
    • 49. 发明申请
    • BOARD TO BOARD CONNECTORS AND ASSEMBLY THEREOF WITH CONTACT-MOUNTING WALL HAVING VARIABLE THICKNESS
    • 具有可变厚度的接触式安装板的板对连接器及其组件
    • US20130084717A1
    • 2013-04-04
    • US13252079
    • 2011-10-03
    • YUNG-MAO HUANGPo Lin Chang
    • YUNG-MAO HUANGPo Lin Chang
    • H01R12/71
    • H01R12/716
    • A board to board connector includes a connector housing and a number of contacts mounted to the connector housing. The connector housing includes a base and a pair of side walls extending from the base along a vertical direction. Each side wall includes a number of first mounting walls and a plurality of second mounting walls alternatively arranged along a longitudinal direction perpendicular to the vertical direction. The contacts are fixed to the first mounting walls and each contact is positioned by the adjacent two second mounting walls along the longitudinal direction. A thickness of each second mounting wall is variable along the vertical direction for avoiding irrecoverable deformation or damage thereof
    • 板对板连接器包括连接器壳体和安装到连接器壳体的多个触点。 连接器壳体包括基部和从基部沿垂直方向延伸的一对侧壁。 每个侧壁包括多个第一安装壁和沿着垂直于垂直方向的纵向方向交替布置的多个第二安装壁。 接触件固定到第一安装壁上,并且每个接触件沿着纵向方向由相邻的两个第二安装壁定位。 每个第二安装壁的厚度沿垂直方向是可变的,以避免不可恢复的变形或损坏
    • 50. 发明申请
    • LED BULB STRUCTURE
    • LED球泡结构
    • US20120080992A1
    • 2012-04-05
    • US12897345
    • 2010-10-04
    • Chiu-Mao Huang
    • Chiu-Mao Huang
    • H01J61/52
    • F21V29/777F21K9/23F21S8/033F21V29/75F21V29/767F21Y2105/10F21Y2115/10
    • An LED bulb structure includes a base having a first end and a second end. The first end has a connection section. The second end has a surface section and an extension section substantially perpendicularly protruding from the second end without interfering with the surface section. The extension section has a mount face on which an LED module is disposed and a heat dissipation section disposed on an outer surface of the extension section. a transparent space being defined between the mount face and the surface section. When the LED bulb structure is horizontally locked in a socket on a wall of a building, the projection angle and range of the LED module are modified to enhance lighting efficiency of the LED module.
    • LED灯泡结构包括具有第一端和第二端的基座。 第一端有连接部分。 第二端具有表面部分和从第二端部基本上垂直地突出而不与表面部分干涉的延伸部分。 延伸部具有设置有LED模块的安装面和设置在延伸部的外表面上的散热部。 在安装面和表面部之间限定透明空间。 当LED灯泡结构水平地锁定在建筑物墙壁上的插座中时,改变LED模块的投影角度和范围,以提高LED模块的照明效率。