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    • 1. 发明授权
    • Infrared sensor and method for compensating temperature thereof
    • 红外传感器及其温度补偿方法
    • US6043493A
    • 2000-03-28
    • US10513
    • 1998-01-21
    • In Sik KimTae Yoon KimYoung Cho ShimJun Bae Lee
    • In Sik KimTae Yoon KimYoung Cho ShimJun Bae Lee
    • G01J5/00G01J5/06G01J5/08G01J5/10G01J5/16
    • G01J5/16G01J5/06G01J5/08G01J5/0815G01J5/0846G01J5/0862G01J5/0893G01J2005/068G01J5/026
    • Infrared sensor that can make a temperature compensation by itself, and method for compensating a temperature thereof, are disclosed. The infrared sensor preferably includes a substrate, a diaphragm formed on the substrate, and a first thermopile sensor formed on a region of the diaphragm for sensing an infrared radiation emitted from a measured object and infrared radiations emitted from regions other than the measured object. A second thermopile sensor is formed on a region of the diaphragm and connected to the first thermopile sensor for sensing the infrared radiations emitted from the regions other than the measured object. A housing protects a front face of the substrate including the first, and second thermopile sensors includes an infrared filter in the housing over the first and second thermopile sensors for transmission of infrared radiations, and a reflector reflects the infrared radiation emitted from the measured object toward the first thermopile sensor. The method for temperature compensation can include the steps of letting an infrared radiation from a measured object be directed to the first thermopile sensor and letting infrared radiations from regions other than the measured object be directed to the first and second thermopile sensors, respectively, sensing the infrared radiations in the first and second thermopile sensors directed thereto, and making a temperature compensation for the infrared radiations from regions other than the measured object using the first and second thermopile sensors to provide a temperature component of the measured object only.
    • 公开了能够自行进行温度补偿的红外线传感器及其温度补偿方法。 红外线传感器优选地包括基板,形成在基板上的光阑和形成在光阑的区域上的第一热电堆传感器,用于感测从测量对象发射的红外辐射和从测量对象以外的区域发射的红外辐射。 第二热电堆传感器形成在隔膜的一个区域上并连接到第一热电堆传感器,用于感测从测量对象以外的区域发射的红外辐射。 壳体保护基板的前表面,包括第一和第二热电堆传感器在壳体中包括在第一和第二热电堆传感器上的红外滤光器,用于传输红外辐射,并且反射器将从测量对象发射的红外辐射反射到 第一个热电堆传感器。 用于温度补偿的方法可以包括以下步骤:将来自测量对象的红外辐射引导到第一热电堆传感器并且使来自被测物体以外的区域的红外辐射分别被引导到第一和第二热电堆传感器,感测 第一和第二热电堆传感器中的红外辐射被引导到其上,并且使用第一和第二热电堆传感器对来自除被测物体之外的区域的红外辐射进行温度补偿,以仅提供被测物体的温度分量。
    • 2. 发明授权
    • Arc wave generator for testing an arc-fault circuit interrupter
    • 用于测试电弧故障电路断路器的电弧波发生器
    • US07652566B2
    • 2010-01-26
    • US11905508
    • 2007-10-01
    • Jun Bae LeeShin Yon Jo
    • Jun Bae LeeShin Yon Jo
    • G08B29/00G08B21/00H02H3/00G01R31/08
    • H03K5/08G01R31/3272H03K7/02H03K12/00
    • Apparatus includes an arc wave generator for testing an arc fault circuit interrupter (AFCI) for use in a test system for testing whether or not an arc fault circuit interrupter (AFCI) is operating normally, in which a false arc is generated for use in testing the arc fault circuit interrupter (AFCI). The arc wave generator includes a rectifier which receives a commercial power source as an input source and rectifies alternating-current voltage of the commercial power source to generate a rectified signal. A drop resistor drops the voltage of the rectified signal to generate a voltage-dropped signal. A mono-stable multivibrator adjusts a voltage level and a pulse width of the voltage-dropped signal and generates a pulse signal which is used to generate a false arc for testing the arc fault circuit interrupter (AFCI). Thus, a false arc is generated with a simple circuit to accurately test the actions of the arc fault circuit interrupter (AFCI).
    • 装置包括用于测试用于测试系统中的电弧故障电路断续器(AFCI)的电弧波发生器,用于测试电弧故障电路断续器(AFCI)是否正常运行,其中产生用于测试的假电弧 电弧故障断路器(AFCI)。 电弧波发生器包括:整流器,其接收商用电源作为输入源,并对商用电源的交流电压进行整流,以产生整流信号。 降压电阻降低整流信号的电压,产生降压信号。 单稳态多谐振荡器调节电压下降信号的电压电平和脉冲宽度,并产生用于产生用于测试电弧故障电路断续器(AFCI)的假电弧的脉冲信号。 因此,通过简单的电路产生误电弧,以准确测试电弧故障电路断续器(AFCI)的动作。
    • 3. 发明授权
    • Composite type electric circuit breaker and method thereof
    • 复合式电路断路器及其方法
    • US08189307B2
    • 2012-05-29
    • US12732375
    • 2010-03-26
    • Jun Bae LeeShin Yon JoSeung Gil LeeKi Heung Chang
    • Jun Bae LeeShin Yon JoSeung Gil LeeKi Heung Chang
    • H02H3/16
    • H02H3/33G01R31/025G01R31/1272H02H1/0015H02H3/044H02H3/105
    • A composite electric circuit breaker, and method thereof, is configured to detect signals regarding arc faults, overcurrent, and earth leakage. Arcs and electric currents are detected by a current transformer and earth leakage is detected by a zero phase current transformer. A variation of electric current, the number of arcs which are generated per a unit time, a present electric current value, and electric current earth leakage are combined to judge whether arc faults occur to then interrupt an electric power supply. Temperature is measured on a printed circuit board, and if temperature rise occurs, the electric power supply is interrupted, and an interruption cause is displayed. Electric accidents and occurrence of fires are prevented simultaneously and more accurately. The interruption causes can be confirmed, analyzed and externally monitored through a network, to thus maximize efficiency of electric management.
    • 复合电路断路器及其方法被配置为检测关于电弧故障,过电流和接地泄漏的信号。 电流和电流由电流互感器检测,漏电流由零相电流互感器检测。 组合电流变化,每单位时间产生的电弧数,当前电流值和电流接地泄漏,判断电弧故障是否发生,然后中断电源。 在印刷电路板上测量温度,如果发生温度升高,则电源中断,并显示中断原因。 同时,更准确地防止电气事故和火灾发生。 中断原因可以通过网络进行确认,分析和外部监控,从而最大限度地提高电力管理的效率。
    • 4. 发明申请
    • Arc wave generator for testing an arc-fault circuit interrupter
    • 用于测试电弧故障电路断路器的电弧波发生器
    • US20080284450A1
    • 2008-11-20
    • US11905508
    • 2007-10-01
    • Jun Bae LeeShin Yon Jo
    • Jun Bae LeeShin Yon Jo
    • H03K3/01
    • H03K5/08G01R31/3272H03K7/02H03K12/00
    • Provided is an arc wave generator for testing an arc fault circuit interrupter (AFCI) for use in a test system for testing whether or not an arc fault circuit interrupter (AFCI) is operating normally, in which a false arc is generated for use in testing the arc fault circuit interrupter (AFCI). The arc wave generator includes a rectifier which receives a commercial power source as an input source and rectifies alternating-current voltage of the commercial power source to generate a rectified signal. A drop resistor drops the voltage of the rectified signal to generate a voltage-dropped signal. A mono-stable multivibrator adjusts a voltage level and a pulse width of the voltage-dropped signal and generates a pulse signal which is used to generate a false arc for testing the arc fault circuit interrupter (AFCI). Thus, a false arc is generated with a simple circuit to accurately test the actions of the arc fault circuit interrupter (AFCI).
    • 提供一种电弧波发生器,用于测试用于测试系统中用于测试电弧故障电路断续器(AFCI)是否正常运行的电弧故障电路断续器(AFCI),其中产生用于测试的假电弧 电弧故障断路器(AFCI)。 电弧波发生器包括:整流器,其接收商用电源作为输入源,并对商用电源的交流电压进行整流,以产生整流信号。 降压电阻降低整流信号的电压,产生降压信号。 单稳态多谐振荡器调节电压下降信号的电压电平和脉冲宽度,并产生用于产生用于测试电弧故障电路断续器(AFCI)的假电弧的脉冲信号。 因此,通过简单的电路产生误电弧,以准确测试电弧故障电路断续器(AFCI)的动作。
    • 5. 发明授权
    • Resistive bolometer sensor
    • 电阻式辐射热量计传感器
    • US06346703B1
    • 2002-02-12
    • US09534496
    • 2000-03-24
    • Jun Bae LeeDon Hee Lee
    • Jun Bae LeeDon Hee Lee
    • G01J500
    • G01J5/24G01J5/20
    • A resistive bolometer sensor is provided, in which a fixed resistor is replaced with a sensor resistor to reduce an error of an output value due to temperature variation, thereby improving sensitivity. The resistive bolometer sensor comprises: a sensing unit for sensing an infrared ray, the sensing unit including a sensor resistor and three compensation sensor resistors; a supporting unit for supporting the sensing unit, for controlling heat transfer to the outside; and a silicon rim supporting the overall elements of the sensor, for reflecting an external temperature, wherein the sensor resistor senses a resistance value by incident infrared ray, and the three compensation sensor resistors have a bridge structure with the sensor resistor and senses a environmental temperature to compensate a resistance value that varies in accordance with temperature variation.
    • 提供了一种电阻式测辐射热计传感器,其中固定电阻器被传感器电阻器代替,以减少由于温度变化引起的输出值的误差,从而提高灵敏度。 电阻辐射热计传感器包括:用于感测红外线的感测单元,感测单元包括传感器电阻器和三个补偿传感器电阻器; 用于支撑感测单元的支撑单元,用于控制向外部的热传递; 以及支撑传感器的整体元件的硅边缘,用于反射外部温度,其中传感器电阻器通过入射红外线感测电阻值,并且三个补偿传感器电阻器具有与传感器电阻器的桥接结构,并感测环境温度 以补偿根据温度变化而变化的电阻值。
    • 6. 发明授权
    • AFCI device
    • AFCI设备
    • US08072716B2
    • 2011-12-06
    • US12257592
    • 2008-10-24
    • Jun Bae Lee
    • Jun Bae Lee
    • H02H9/08H02H3/00
    • H02H1/04H02H1/0015
    • An arc fault circuit interrupter (AFCI) device prevents malfunction of an electric circuit and checks the state of the circuit and connection state of lines. One of a phase conductor line and a neutral conductor line is wound around a transformer which converts a current difference flowing in the AC line into voltage to detect whether an arc fault occurs, and a voltage induced by the wound line is rectified into direct-current and is converted into constant voltage to obtain power for the AFCI. An arc wave generator includes a rectifier to generate a rectified signal; a drop resistor which drops the voltage of the rectified signal to generate a voltage-dropped signal; and a mono-stable multivibrator which adjusts a voltage level and a pulse width of the voltage-dropped signal and generates a pulse signal that is used to generate a false arc for testing the AFCI.
    • 电弧故障电路断路器(AFCI)装置可防止电路故障,并检查电路的状态和线路的连接状态。 相导体线和中性线之一缠绕在将AC线中流动的电流差转换为电压的变压器中,以检测是否发生电弧故障,并且由绕线生成的电压被整流为直流 并转换为恒定电压以获得AFCI的电力。 电弧波发生器包括:整流器,用于产生整流信号; 降压电阻器,其降低整流信号的电压以产生电压下降信号; 以及单稳态多谐振荡器,其调节电压下降信号的电压电平和脉冲宽度,并产生用于产生用于测试AFCI的假电弧的脉冲信号。
    • 7. 发明申请
    • COMPOSITE TYPE ELECTRIC CIRCUIT BREAKER AND METHOD THEREOF
    • 复合型电路断路器及其方法
    • US20100324747A1
    • 2010-12-23
    • US12732375
    • 2010-03-26
    • Jun Bae LeeShin Yon JoSeung Gil LeeKi Heung Chang
    • Jun Bae LeeShin Yon JoSeung Gil LeeKi Heung Chang
    • H02H3/08H02H3/00G06F1/28
    • H02H3/33G01R31/025G01R31/1272H02H1/0015H02H3/044H02H3/105
    • A composite electric circuit breaker, and method thereof, is configured to detect signals regarding arc faults, overcurrent, and earth leakage. Arcs and electric currents are detected by a current transformer and earth leakage is detected by a zero phase current transformer. A variation of electric current, the number of arcs which are generated per a unit time, a present electric current value, and electric current earth leakage are combined to judge whether arc faults occur to then interrupt an electric power supply. Temperature is measured on a printed circuit board, and if temperature rise occurs, the electric power supply is interrupted, and an interruption cause is displayed. Electric accidents and occurrence of fires are prevented simultaneously and more accurately. The interruption causes can be confirmed, analyzed and externally monitored through a network, to thus maximize efficiency of electric management.
    • 复合电路断路器及其方法被配置为检测关于电弧故障,过电流和接地泄漏的信号。 电流和电流由电流互感器检测,漏电流由零相电流互感器检测。 组合电流变化,每单位时间产生的电弧数,当前电流值和电流接地泄漏,判断电弧故障是否发生,然后中断电源。 在印刷电路板上测量温度,如果发生温度升高,则电源中断,并显示中断原因。 同时,更准确地防止电气事故和火灾发生。 中断原因可以通过网络进行确认,分析和外部监控,从而最大限度地提高电力管理的效率。