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    • 2. 发明申请
    • OPTICAL OBJECT POSITIONING APPARATUS AND POSITIONING METHOD THEREOF
    • 光学对象定位装置及其定位方法
    • US20160224190A1
    • 2016-08-04
    • US14831885
    • 2015-08-21
    • Chi-Tang HsiehYu-Jie SuYu-Cheng ChangZong QinYi-Pai Huang
    • Chi-Tang HsiehYu-Jie SuYu-Cheng ChangZong QinYi-Pai Huang
    • G06F3/042G06F3/041
    • G06F3/0304G06F3/0346G06F3/0425
    • An optical object positioning apparatus including an optical element, a light sensor and a processing unit and a positioning method thereof are provided. The optical element includes a first surface and a second surface opposite to each other and perpendicular to a first axis, and has at least two light-passing regions. Light beams from an object to be positioned pass through the light-passing regions from the first surface to the second surface. The light sensor and the optical element are spaced by a predetermined distance on a direction of the first axis. The light sensor senses the light beams from the light-passing regions to generate at least two light-sensing signals. A distance between the object and the optical element is positively correlated to the predetermined distance. The processing unit receives the light-sensing signals and positions the object according to the light-sensing signals and the predetermined distance.
    • 提供一种包括光学元件,光传感器和处理单元及其定位方法的光学对象定位设备。 光学元件包括彼此相对且垂直于第一轴线的第一表面和第二表面,并且具有至少两个光通过区域。 来自待定位物体的光束从第一表面到第二表面通过光通过区域。 光传感器和光学元件在第一轴线的方向上间隔预定距离。 光传感器感测来自光通过区域的光束以产生至少两个光感测信号。 物体与光学元件之间的距离与预定距离正相关。 处理单元接收光感测信号,并根据光检测信号和预定距离对物体进行定位。
    • 3. 发明授权
    • Electronic seal with multiple means of identification and method based on electronic seal for inspecting goods
    • 电子密封具有多种识别方法和基于电子密封的方法进行货物检验
    • US08742931B2
    • 2014-06-03
    • US13220852
    • 2011-08-30
    • Ming-Town LeeYu-Cheng ChangWei-Yi Tseng
    • Ming-Town LeeYu-Cheng ChangWei-Yi Tseng
    • G08B13/14
    • G06K19/07798
    • An electronic seal includes a radio frequency identification apparatus, an antenna assembly and an impedance matching circuit. The radio frequency identification apparatus includes at least two radio frequency identification units each for providing a specific code for identification. The antenna assembly is electrically connected to the radio frequency identification units. The antenna assembly is used to receive an electromagnetic signal for identification to excite the radio frequency identification units to transmit the specific codes through the antenna assembly. The impedance matching circuit is provided between the radio frequency identification units and the antenna assembly for adjusting the impedance matching of the radio frequency identification units to the antenna assembly, thus adjusting excitation powers and feedback powers of the specific codes from the radio frequency identification units through the antenna assembly.
    • 电子密封件包括射频识别装置,天线组件和阻抗匹配电路。 射频识别装置包括至少两个用于提供用于识别的特定码的射频识别单元。 天线组件电连接到射频识别单元。 天线组件用于接收用于识别的电磁信号,以激励射频识别单元通过天线组件发送特定代码。 阻抗匹配电路设置在射频识别单元和天线组件之间,用于调整射频识别单元与天线组件的阻抗匹配,从而从射频识别单元调整特定码的激励功率和反馈功率, 天线组件。
    • 5. 发明申请
    • MULTI-SECURED RFID ELECTRONIC SEAL
    • 多安全RFID电子密封
    • US20120119975A1
    • 2012-05-17
    • US12947306
    • 2010-11-16
    • Ming-Town LeeYu-Cheng Chang
    • Ming-Town LeeYu-Cheng Chang
    • H01Q1/50H01Q17/00
    • H01Q1/2208Y10T29/49018
    • A multi-secured RFID (Radio Frequency Identification) electronic seal includes a bolt, a bolt pedestal and a RFID system. The bolt has a male bolt portion with an electrical connecting point. The bolt pedestal has a female pedestal portion with several nodes to electrically connect with the electrical connecting point to provide plural selections of connecting and disconnecting. The RFID system includes a RFID chip and a transmission conductor embedded in the bolt, and an antenna installed on the bolt pedestal. When the bolt and the bolt pedestal is securely locked together, whether the RFID chip is electrically connects to the antenna depends on if the electrical connecting point connects a preset node, so that a RFID signal may be selectively transmitted by the RFID chip through the antenna.
    • 多重RFID(射频识别)电子密封件包括螺栓,螺栓座和RFID系统。 螺栓具有带有电连接点的阳螺栓部分。 螺栓座具有一个带有几个节点的母基座部分,以与电连接点电连接,以提供多种连接和断开选择。 RFID系统包括嵌入在螺栓中的RFID芯片和传输导体,以及安装在螺栓座上的天线。 当螺栓和螺栓基座牢固地锁定在一起时,RFID芯片是否与天线电连接取决于电连接点是否连接预置节点,以便RFID芯片可以通过天线选择性地传输 。
    • 7. 发明申请
    • CAPACITANCE SENSING CIRCUIT WITH ANTI-ELECTROMAGNETIC INTERFERENCE CAPABILITY
    • 具有抗电磁干扰能力的电容式感应电路
    • US20110084711A1
    • 2011-04-14
    • US12900622
    • 2010-10-08
    • YU-CHENG CHANGCHUNG-YUAN CHEN
    • YU-CHENG CHANGCHUNG-YUAN CHEN
    • G01R27/26
    • G01D5/24G01R27/2605H03K2217/960705
    • The present invention relates to a capacitance sensing circuit with anti-EMI capability. A filter is coupled to a capacitor under test; receives a plurality of reference signals; and produces a first filter signal and a second filter signal. A difference circuit receives the first and second filter signals; eliminates the common-mode noise in the first and second filter signals; and produces a difference signal. The amplitude of the difference signal is related to the capacitance value of the capacitor under test. Thereby, the purpose of sensing capacitance can be achieved. In addition, by eliminating common-mode noise using the difference circuit, the anti-EMI capability can be achieved. Because the difference circuit can adjust the dynamic range of the output of the filter, the capacitance sensing circuit with anti-EMI capability can achieve capacitance sensing in few clock cycles.
    • 本发明涉及具有抗电磁干扰能力的电容感测电路。 滤波器耦合到被测电容器; 接收多个参考信号; 并产生第一滤波器信号和第二滤波器信号。 差分电路接收第一和第二滤波器信号; 消除了第一和第二滤波器信号中的共模噪声; 并产生差分信号。 差分信号的幅度与被测电容器的电容值有关。 因此,可以实现感测电容的目的。 此外,通过使用差分电路消除共模噪声,可以实现抗EMI能力。 由于差分电路可以调节滤波器输出的动态范围,具有抗EMI能力的电容感测电路可以在几个时钟周期内实现电容感测。
    • 8. 发明授权
    • Sequential burst mode activation circuit
    • 顺序突发模式激活电路
    • US07847491B2
    • 2010-12-07
    • US12321092
    • 2009-01-12
    • Yung-Lin LinYu-Cheng ChangBingwei Yao
    • Yung-Lin LinYu-Cheng ChangBingwei Yao
    • H05B37/02
    • H02M1/36H02J1/14H02M2001/008H05B41/3927
    • A sequential burst mode regulation system to deliver power to a plurality of loads. In the exemplary embodiments, the system of the present invention generates a plurality of phased pulse width modulated signals from a single pulse width modulated signal, where each of the phased signals regulates power to a respective load. Exemplary circuitry includes a PWM signal generator, and a phase delay array that receives a PWM signal and generates a plurality of phased PWM signals which are used to regulate power to respective loads. A frequency selector circuit can be provided that sets the frequency of the PWM signal using a fixed or variable frequency reference signal.
    • 一种用于向多个负载输送功率的连续突发模式调节系统。 在示例性实施例中,本发明的系统从单个脉冲宽度调制信号产生多个相位脉冲宽度调制信号,其中每个相控信号调节相应负载的功率。 示例性电路包括PWM信号发生器和相位延迟阵列,其接收PWM信号并产生用于调节相应负载功率的多个定相PWM信号。 可以提供使用固定或可变频率参考信号来设置PWM信号的频率的频率选择器电路。