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    • 1. 发明授权
    • Overvoltage and overcurrent protection circuit
    • 过电压和过流保护电路
    • US08472157B2
    • 2013-06-25
    • US13207431
    • 2011-08-11
    • Ji-Xiang YinYang XinYin-Zhan WangJun ZhangTsung-Jen ChuangShih-Fang Wong
    • Ji-Xiang YinYang XinYin-Zhan WangJun ZhangTsung-Jen ChuangShih-Fang Wong
    • H02H3/00H02H3/20H02H9/04H02H3/08H02H9/02
    • H02H3/08H02H3/20
    • An overvoltage and overcurrent protection circuit includes a connection jack, an overvoltage protection switch connected to the connection jack, an overcurrent protection switch, a voltage reference module, an overvoltage and overcurrent detection module, a comparing module, and a current control module. The overcurrent protection switch is connected to the overvoltage protection switch in serials, and further connected to a load. The voltage reference module is to output a reference voltage. The overvoltage and overcurrent detection module is to detect the voltage of the load and the current of the path. The comparing module is to compare the voltage of the load with the reference voltage, when greater, turns off the overvoltage protection switch, when not greater, turns on the overvoltage protection switch. The current control module is to turn off the overcurrent protection switch if greater than the preset value, and turn on the overcurrent protection switch if not greater.
    • 过电压和过流保护电路包括连接插座,连接插座的过电压保护开关,过流保护开关,电压参考模块,过电压和过电流检测模块,比较模块和电流控制模块。 过流保护开关连接到过压保护开关,并连接到负载。 电压基准模块输出参考电压。 过电压和过流检测模块用于检测负载电压和路径电流。 比较模块是将负载电压与参考电压进行比较,当较大时,关断过电压保护开关,当不大时,接通过电压保护开关。 当前的控制模块是关闭过流保护开关,如果大于预设值,并且如果不是更大的话,打开过流保护开关。
    • 2. 发明申请
    • OVERVOLTAGE AND OVERCURRENT PROTECTION CIRCUIT
    • 过电流和过流保护电路
    • US20130021701A1
    • 2013-01-24
    • US13207431
    • 2011-08-11
    • JI-XIANG YINYANG XINYIN-ZHAN WANGJUN ZHANGTSUNG-JEN CHUANGSHIH-FANG WONG
    • JI-XIANG YINYANG XINYIN-ZHAN WANGJUN ZHANGTSUNG-JEN CHUANGSHIH-FANG WONG
    • H02H3/00
    • H02H3/08H02H3/20
    • An overvoltage and overcurrent protection circuit includes a connection jack, an overvoltage protection switch connected to the connection jack, an overcurrent protection switch, a voltage reference module, an overvoltage and overcurrent detection module, a comparing module, and a current control module. The overcurrent protection switch is connected to the overvoltage protection switch in serials, and further connected to a load. The voltage reference module is to output a reference voltage. The overvoltage and overcurrent detection module is to detect the voltage of the load and the current of the path. The comparing module is to compare the voltage of the load with the reference voltage, when greater, turns off the overvoltage protection switch, when not greater, turns on the overvoltage protection switch. The current control module is to turn off the overcurrent protection switch if greater than the preset value, and turn on the overcurrent protection switch if not greater.
    • 过电压和过流保护电路包括连接插座,连接插座的过电压保护开关,过流保护开关,电压参考模块,过电压和过电流检测模块,比较模块和电流控制模块。 过流保护开关连接到过压保护开关,并连接到负载。 电压基准模块输出参考电压。 过电压和过流检测模块用于检测负载电压和路径电流。 比较模块是将负载电压与参考电压进行比较,当较大时,关断过电压保护开关,当不大时,接通过电压保护开关。 当前的控制模块是关闭过流保护开关,如果大于预设值,并且如果不是更大的话,打开过流保护开关。
    • 5. 发明授权
    • Light control signal generating circuit
    • 光控制信号发生电路
    • US08471478B2
    • 2013-06-25
    • US13095927
    • 2011-04-28
    • Ji-Xiang YinRen-Wen HuangJun-Wei ZhangJun ZhangTsung-Jen Chuang
    • Ji-Xiang YinRen-Wen HuangJun-Wei ZhangJun ZhangTsung-Jen Chuang
    • H05B37/02
    • G01J1/32G01J1/44H05B37/0218Y02B20/46Y02B20/48
    • A light control signal generating circuit includes a photosensitive element, two transistors, and four resistances. A first resistance and the photosensitive element are connected in series between a power voltage terminal and a ground terminal. A base electrode of a first transistor is connected to a node between the first resistance and the photosensitive element, a collecting electrode is connected to the power voltage terminal through a second resistance, and an emitting electrode is connected to the ground terminal through a third resistance. A base electrode of a second transistor is connected to a node between the second resistance and the first transistor, a collecting electrode is connected to the power voltage terminal through a fourth resistance, and an emitting electrode is connected to the ground terminal through the third resistance. An output terminal is formed from a node between the fourth resistance and the second transistor.
    • 光控制信号发生电路包括光敏元件,两个晶体管和四个电阻。 第一电阻和感光元件串联连接在电源电压端子和接地端子之间。 第一晶体管的基极连接到第一电阻和感光元件之间的节点,集电极通过第二电阻连接到电源电压端子,并且发射电极通过第三电阻连接到接地端子 。 第二晶体管的基极连接到第二电阻和第一晶体管之间的节点,集电极通过第四电阻连接到电源电压端子,并且发射电极通过第三电阻连接到接地端子 。 输出端由第四电阻和第二晶体管之间的节点形成。
    • 6. 发明申请
    • LIGHT CONTROL SIGNAL GENERATING CIRCUIT
    • 光控制信号发生电路
    • US20120176043A1
    • 2012-07-12
    • US13095927
    • 2011-04-28
    • JI-XIANG YINREN-WEN HUANGJUN-WEI ZHANGJUN ZHANGTSUNG-JEN CHUANG
    • JI-XIANG YINREN-WEN HUANGJUN-WEI ZHANGJUN ZHANGTSUNG-JEN CHUANG
    • H05B37/02
    • G01J1/32G01J1/44H05B37/0218Y02B20/46Y02B20/48
    • A light control signal generating circuit includes a photosensitive element, two transistors, and four resistances. A first resistance and the photosensitive element are connected in series between a power voltage terminal and a ground terminal. A base electrode of a first transistor is connected to a node between the first resistance and the photosensitive element, a collecting electrode is connected to the power voltage terminal through a second resistance, and an emitting electrode is connected to the ground terminal through a third resistance. A base electrode of a second transistor is connected to a node between the second resistance and the first transistor, a collecting electrode is connected to the power voltage terminal through a fourth resistance, and an emitting electrode is connected to the ground terminal through the third resistance. An output terminal is formed from a node between the fourth resistance and the second transistor.
    • 光控制信号发生电路包括光敏元件,两个晶体管和四个电阻。 第一电阻和感光元件串联连接在电源电压端子和接地端子之间。 第一晶体管的基极连接到第一电阻和感光元件之间的节点,集电极通过第二电阻连接到电源电压端子,并且发射电极通过第三电阻连接到接地端子 。 第二晶体管的基极连接到第二电阻和第一晶体管之间的节点,集电极通过第四电阻连接到电源电压端子,发射电极通过第三电阻连接到接地端子 。 输出端由第四电阻和第二晶体管之间的节点形成。