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    • 51. 发明申请
    • ALTERNATING CURRENT REGULATING MEANS
    • 替代当前的调节手段
    • US20110317449A1
    • 2011-12-29
    • US12823094
    • 2010-06-24
    • Chao-Lin Wu
    • Chao-Lin Wu
    • H02M7/02G05F3/02
    • H02M5/293
    • The present invention provides an alternating current regulating means including a positive half-cycle current-limiting circuit and a negative half-cycle current-limiting circuit. The positive half-cycle current-limiting circuit includes a first diode and a first current-limiting circuit. The negative half-cycle current-limiting circuit includes a second diode and a second current-limiting circuit. The first diode allows the positive half-cycle current of the alternating current to pass through, and the second diode allows the negative half-cycle current of the alternating current to pass through. Thus, when the input power supply generates an alternating current, the first diode and the second diode respectively allow the positive half-cycle current and the negative half-cycle current of the alternating current to pass through. Then, the first current-limiting circuit and the second current-limiting current respectively process the positive half-cycle current and the negative half-cycle current, so that the average current value of the outputted alternating current can be restricted to a stable value for a load.
    • 本发明提供一种包括正半周期限流电路和负半周期限流电路的交流调节装置。 正半周期限流电路包括第一二极管和第一限流电路。 负半周期限流电路包括第二二极管和第二限流电路。 第一个二极管允许交流电流的正半周期电流通过,第二个二极管允许交流电流的负半周期电流通过。 因此,当输入电源产生交流电时,第一二极管和第二二极管分别允许正半周电流和交流电的负半周电流通过。 然后,第一限流电路和第二限流电流分别处理正半周期电流和负半周期电流,使得输出的交流电流的平均电流值可以被限制为稳定的值 负载。
    • 54. 发明授权
    • Systems and methods for laser material manipulation
    • 激光材料操纵的系统和方法
    • US07893384B2
    • 2011-02-22
    • US11160270
    • 2005-06-16
    • Shih-Chao Lin
    • Shih-Chao Lin
    • B23K26/00B23K26/02
    • B23K26/032B23K26/03B23K26/0624B23K26/066
    • A laser material manipulation system is provided for material processing, such as laser ablation, laser deposition and laser machining. The system includes a laser for emitting laser pulses and a laser imaging device having an array of controllable imaging elements. The laser imaging device receives the laser pulses emitted from the laser, forms a laser image through the controllable imaging elements, and projects the laser image onto a target material which is to be processed. The projected laser image processes the material according to a desired pattern. The laser can be a femtosecond laser. The laser imaging device can be a liquid crystal display (LCD) or a digital micromirror device (DMD). An SEM can be used for monitoring the material distribution and dynamically adjust the laser image according to the monitor result.
    • 提供激光材料操作系统,用于材料加工,如激光烧蚀,激光沉积和激光加工。 该系统包括用于发射激光脉冲的激光器和具有可控成像元件阵列的激光成像装置。 激光成像装置接收从激光发射的激光脉冲,通过可控成像元件形成激光图像,并将激光图像投影到待处理的目标材料上。 投影的激光图像根据期望的图案处理材料。 激光可以是飞秒激光。 激光成像装置可以是液晶显示器(LCD)或数字微镜装置(DMD)。 SEM可用于监测材料分布,并根据监测结果动态调整激光图像。
    • 56. 发明申请
    • MOBILE DIGITAL VIDEO RECORDER
    • 移动数字视频录像机
    • US20100328911A1
    • 2010-12-30
    • US12491989
    • 2009-06-25
    • Chao-Lin Tang
    • Chao-Lin Tang
    • H05K5/00
    • H05K7/1422H04N5/77H04N5/775H04N21/4122H04N21/41422H04N21/4147H04N21/4223
    • A mobile digital video recorder (MDVR) has a hollow shell, two board tracks, two brackets, a main board, power board, VSM board, and a storage device. The board tracks and the brackets are attached securely in the shell. The main board is mounted slidably and detachably in the shell via the tracks. The power board is mounted slidably and detachably in the shell via the tracks. The VSM board is mounted slidably and detachably in the shell via the tracks. The storage device is mounted slidably and detachably in the shell via the brackets. Therefore, the main board, power board, VSM board and the storage device are easily pulled out from the shell for repairing, replacing, or upgrading to new technology.
    • 移动数字录像机(MDVR)有一个空心的外壳,两个板轨,两个支架,一个主板,电源板,VSM板和一个存储设备。 电路板轨道和支架牢固地连接在外壳中。 主板通过轨道可滑动和可拆卸地安装在外壳中。 电源板通过轨道可滑动和可拆卸地安装在外壳中。 VSM板通过轨道可滑动和可拆卸地安装在外壳中。 存储装置通过支架可滑动地且可拆卸地安装在外壳中。 因此,主板,电源板,VSM板和存储设备容易从外壳中拔出,用于修理,更换或升级到新技术。
    • 58. 发明申请
    • CONNECTING STRUCTURE FOR SWIVEL SHAFTS
    • SWIVEL SHAFTS连接结构
    • US20100260537A1
    • 2010-10-14
    • US12551690
    • 2009-09-01
    • Chao-Lin Qin
    • Chao-Lin Qin
    • F16C11/10
    • F16D1/02F16D1/10F16D1/104F16D2001/102Y10T403/32631
    • A connecting structure for a first swivel shaft and a second swivel shaft includes a connecting plug, a connecting socket, and positioning members. The connecting plug extends from an end of the first swivel shaft and includes an extending portion having engaging surfaces. The connecting socket is formed on an end of the second swivel shaft and defines a receiving hole receiving the extending portion of the connecting plug. The positioning members are positioned in the inner surface of the receiving hole. Each of the positioning members includes a resisting point abutting one engaging surface of the extending portion such that the extending portion of the connecting plug is non-rotatable relative to the connecting socket. Projections of the resisting points of the positioning members form a circle concentric with the second swivel shaft on a plane perpendicular to the axis of the second swivel shaft.
    • 用于第一旋转轴和第二旋转轴的连接结构包括连接插头,连接插座和定位部件。 连接插头从第一旋转轴的端部延伸并且包括具有接合表面的延伸部分。 所述连接插座形成在所述第二旋转轴的端部上并且限定容纳所述连接插头的延伸部分的容纳孔。 定位构件定位在容纳孔的内表面中。 每个定位构件包括邻接延伸部分的一个接合表面的阻力点,使得连接插头的延伸部分相对于连接插座不能旋转。 定位构件的阻力点的投影在与第二旋转轴的轴线垂直的平面上形成与第二旋转轴同心的圆。
    • 59. 发明授权
    • Non-contact temperature-measuring device and the method thereof
    • 非接触式温度测量装置及其方法
    • US07810992B2
    • 2010-10-12
    • US11957658
    • 2007-12-17
    • Kun Sung ChenYing Chao LinHsing Ou Yang
    • Kun Sung ChenYing Chao LinHsing Ou Yang
    • G01C3/08G01J5/00G01V8/00
    • G01J5/0022G01J5/0025G01J5/02G01J5/026G01J5/0275G01J5/08G01J5/0896
    • This invention provides a non-contact temperature-measuring device including a distance sensor unit, an alarm unit, a temperature sensor unit, a microprocessor unit and a display unit. The distance sensor unit measures the distance between the device and a target. The alarm unit gives an alarm when the distance sensor unit measures a predetermined distance value. The temperature sensor unit measures a temperature of the target after the alarm unit gives the alarm. The microprocessor unit stores data of the predetermined distance value and the temperature value measured by the temperature sensor unit; the microprocessor unit also processes a distance signal emitted by the distance sensor unit and a temperature signal emitted by the temperature sensor unit. When the target's distance value equals the predetermined distance value, the microprocessor unit will further send a command for the alarm unit to give an alarm. The display unit of the device displays the temperature value that is measured by the temperature sensor unit and processed by the microprocessor unit subsequently.
    • 本发明提供一种包括距离传感器单元,报警单元,温度传感器单元,微处理器单元和显示单元的非接触式温度测量装置。 距离传感器单元测量设备和目标之间的距离。 当距离传感器单元测量预定的距离值时,报警单元发出报警。 报警单元报警后,温度传感器单元测量目标温度。 微处理器单元存储由温度传感器单元测量的预定距离值和温度值的数据; 微处理器单元还处理由距离传感器单元发出的距离信号和温度传感器单元发出的温度信号。 当目标的距离值等于预定距离值时,微处理器单元将进一步发送报警单元的命令以发出报警。 设备的显示单元显示由温度传感器单元测量并随后由微处理器单元处理的温度值。