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    • 2. 发明申请
    • APPARATUS CAPABLE OF CONTROLLING, TRACKING AND MEASURING TIGHTENING TORQUE AND LOCKING FORCE, AND METHOD FOR CONTROLLING, TRACKING, MEASURING AND CALIBRATING THEREOF
    • 控制,跟踪和测量紧固扭矩和锁定力的装置及其控制,跟踪,测量和校准的方法
    • US20120191378A1
    • 2012-07-26
    • US13355224
    • 2012-01-20
    • Hsiu-Feng ChuChe-Min Lin
    • Hsiu-Feng ChuChe-Min Lin
    • G06F19/00G01L25/00G01D7/00
    • G01L5/24G01L25/003
    • This invention discloses an apparatus capable of controlling, tracking and measuring the tightening torque and the locking force and a method thereof. The device comprises a control device, a transducing device, and a sensing device. The transducing device comprises a second connector and a first signal transmitter. The control device communicates with the transducing device through a second signal transmitter and the first signal transmitter wiredly or wirelessly. The sensing device comprises a first connector and a sensor, and electrically connects to the transducing device through the second connector and the first connector. The sensing device senses the torque applied to a fastener to transmit real-time sensing data to the control device. The control device compares the real-time sensing data with a setting value so as to measure, control or track the locking force or tightening torque applied to the fastener in real time.
    • 本发明公开了一种能够控制,跟踪和测量紧固扭矩和锁定力的装置及其方法。 该装置包括控制装置,换能装置和感测装置。 换能装置包括第二连接器和第一信号发射器。 控制装置通过第二信号发射器和第一信号发射器有线或无线地与转换装置通信。 感测装置包括第一连接器和传感器,并且通过第二连接器和第一连接器电连接到换能装置。 感测装置感测施加到紧固件的扭矩以将实时感测数据传送到控制装置。 控制装置将实时感测数据与设定值进行比较,以实时地测量,控制或跟踪施加到紧固件的锁定力或紧固扭矩。
    • 3. 发明申请
    • POSITIONING METHOD AND APPARATUS FOR INSPECTING SOLAR BATTERY PANEL
    • 用于检查太阳能电池板的定位方法和装置
    • US20110109336A1
    • 2011-05-12
    • US12613606
    • 2009-11-06
    • Yu-Hsing LINJin-Po TsaChe-Min LinPo-Wen Peng
    • Yu-Hsing LINJin-Po TsaChe-Min LinPo-Wen Peng
    • G01R31/02G01R31/20
    • G01R31/2808H02S50/10
    • In a positioning method and apparatus capable of preventing a solar battery panel from suffer damage during inspection, the method includes steps of providing a transport platen, a set of positioning device, a first probe row and a second probe row; transporting the solar battery panel to an inspecting region by the transport platen; moving the positioning devices to position the solar battery panel step by step; the first probe row pressing an electrode line on one surface of the solar battery panel; the second probe row pressing an electrode line on the other surface of the solar battery panel, thereby electrically connecting the first probe row and the second probe row. In this way, the solar battery panel can be inspected accurately without suffering damage.
    • 在能够防止太阳能电池板在检查中遭受损坏的定位方法和装置中,该方法包括提供传送台板,一组定位装置,第一探针行和第二探针列的步骤; 通过运送台板将太阳能电池板运送到检查区域; 移动定位装置逐步定位太阳能电池板; 第一探针行在太阳能电池板的一个表面上按压电极线; 第二探针行在太阳能电池面板的另一个表面上按压电极线,从而电连接第一探针列和第二探针列。 以这种方式,可以准确地检查太阳能电池板,而不会受到损坏。
    • 7. 发明授权
    • Passive current balance driving apparatus
    • 无源电流平衡驱动装置
    • US08169157B2
    • 2012-05-01
    • US12545079
    • 2009-08-21
    • Che-Min LinYi-Chun Yeh
    • Che-Min LinYi-Chun Yeh
    • H05B37/02
    • H05B33/0809Y02B20/342
    • A passive current balance driving apparatus including first and second drivers is provided. The first driver includes a first balance-capacitor having a first terminal coupled to a first terminal of an AC signal source and a second terminal providing a first balance AC-voltage; and a first rectification unit rectifying the first balance AC-voltage to output a first DC-voltage to drive a first LED string with multi-LEDs connected in series. The second driver includes a second balance-capacitor having a first terminal coupled to a first terminal of the AC signal source and a second terminal providing a second balance AC-voltage; and a second rectification unit rectifying the second balance AC-voltage to output a second DC-voltage to drive a second LED string with multi-LEDs connected in series. The capacitive reactances of these two balance-capacitors are the same and respectively greater than the total internal resistances of the first and second LED strings.
    • 提供了包括第一和第二驱动器的无源电流平衡驱动装置。 第一驱动器包括具有耦合到AC信号源的第一端子的第一端子和提供第一平衡AC电压的第二端子的第一平衡电容器; 以及第一整流单元,对所述第一平衡AC电压进行整流,以输出第一DC电压,以驱动串联连接的多LED的第一LED串。 第二驱动器包括具有耦合到AC信号源的第一端子的第一端子和提供第二平衡AC电压的第二端子的第二平衡电容器; 以及第二整流单元,对所述第二平衡AC电压进行整流,以输出第二DC电压,以驱动串联连接的多LED的第二LED串。 这两个平衡电容器的电容电抗相同,分别大于第一和第二LED串的总内阻。
    • 8. 发明申请
    • PASSIVE CURRENT BALANCE DRIVING APPARATUS
    • 被动平衡驱动装置
    • US20110018463A1
    • 2011-01-27
    • US12545079
    • 2009-08-21
    • Che-Min LinYi-Chun Yeh
    • Che-Min LinYi-Chun Yeh
    • H05B37/02
    • H05B33/0809Y02B20/342
    • A passive current balance driving apparatus including first and second drivers is provided. The first driver includes a first balance-capacitor having a first terminal coupled to a first terminal of an AC signal source and a second terminal providing a first balance AC-voltage; and a first rectification unit rectifying the first balance AC-voltage to output a first DC-voltage to drive a first LED string with multi-LEDs connected in series. The second driver includes a second balance-capacitor having a first terminal coupled to a first terminal of the AC signal source and a second terminal providing a second balance AC-voltage; and a second rectification unit rectifying the second balance AC-voltage to output a second DC-voltage to drive a second LED string with multi-LEDs connected in series. The capacitive reactances of these two balance-capacitors are the same and respectively greater than the total internal resistances of the first and second LED strings.
    • 提供了包括第一和第二驱动器的无源电流平衡驱动装置。 第一驱动器包括第一平衡电容器,其具有耦合到AC信号源的第一端子的第一端子和提供第一平衡AC电压的第二端子; 以及第一整流单元,对所述第一平衡AC电压进行整流,以输出第一DC电压,以驱动串联连接的多LED的第一LED串。 第二驱动器包括具有耦合到AC信号源的第一端子的第一端子和提供第二平衡AC电压的第二端子的第二平衡电容器; 以及第二整流单元,对所述第二平衡AC电压进行整流,以输出第二DC电压,以驱动串联连接的多LED的第二LED串。 这两个平衡电容器的电容电抗相同,分别大于第一和第二LED串的总内阻。
    • 9. 发明授权
    • Fuse detecting apparatus
    • 保险丝检测装置
    • US08253475B2
    • 2012-08-28
    • US12901450
    • 2010-10-08
    • Che-Min Lin
    • Che-Min Lin
    • H03K17/18H03K19/003H01H37/76
    • G11C17/18G11C17/16
    • A fuse detecting apparatus includes a detector, a calibrator and a logical operating unit. The detector includes a detecting switch module and a detecting latch. The detecting switch module generates an initial detecting result according to first and second control signals and a status of the fuse. The detecting latch stores a voltage level of the initial detecting result or maintains its originally stored voltage level according to the initial detecting result for generating a pre-calibrating detecting signal. The calibrator includes a calibrating switch module and a calibrating latch. The calibrating switch module generates a calibrating result according to the first and second control signals. The calibrating latch stores the calibrating result and generates a calibrating signal accordingly. The logical operating unit generates a calibrated detecting signal according to the pre-calibrating detecting signal and the calibrating signal.
    • 熔丝检测装置包括检测器,校准器和逻辑运算单元。 检测器包括检测开关模块和检测闩锁。 检测开关模块根据第一和第二控制信号和保险丝的状态产生初始检测结果。 检测锁存器根据用于生成预校准检测信号的初始检测结果存储初始检测结果的电压电平或维持其原始存储的电压电平。 校准器包括校准开关模块和校准闩锁。 校准开关模块根据第一和第二控制信号产生校准结果。 校准锁存器存储校准结果并相应地产生校准信号。 逻辑操作单元根据预校准检测信号和校准信号产生经校准的检测信号。
    • 10. 发明申请
    • FUSE DETECTING APPARATUS
    • 保险丝检测装置
    • US20120086500A1
    • 2012-04-12
    • US12901450
    • 2010-10-08
    • Che-Min Lin
    • Che-Min Lin
    • H01H37/76
    • G11C17/18G11C17/16
    • A fuse detecting apparatus including a detector, a calibrator and a logical operating unit is disclosed. The detector includes a detecting switch module and a detecting latch. The detecting switch module generates an initial detecting result according to a first and a second control signals and a status of the fuse. The detecting latch stores a voltage level of the initial detecting result or maintains its originally stored voltage level according to the initial detecting result for generating a pre-calibrating detecting signal. The calibrator includes a calibrating switch module and a calibrating latch. The calibrating switch module generates a calibrating result according to the first and the second control signals. The calibrating latch stores the calibrating result and generates a calibrating signal accordingly. The logical operating unit generates a calibrated detecting signal according to the pre-calibrating detecting signal and the calibrating signal.
    • 公开了一种包括检测器,校准器和逻辑运算单元的熔丝检测装置。 检测器包括检测开关模块和检测闩锁。 检测开关模块根据第一和第二控制信号和保险丝的状态产生初始检测结果。 检测锁存器根据用于生成预校准检测信号的初始检测结果存储初始检测结果的电压电平或维持其原始存储的电压电平。 校准器包括校准开关模块和校准闩锁。 校准开关模块根据第一和第二控制信号产生校准结果。 校准锁存器存储校准结果并相应地产生校准信号。 逻辑操作单元根据预校准检测信号和校准信号产生经校准的检测信号。