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    • 2. 发明申请
    • MEASUREMENT CIRCUIT FOR CAPACITOR
    • 电容器测量电路
    • US20120161781A1
    • 2012-06-28
    • US12981507
    • 2010-12-30
    • QI-YAN LUOSONG-LIN TONGPENG CHENYUN BAI
    • QI-YAN LUOSONG-LIN TONGPENG CHENYUN BAI
    • G01R31/12
    • G01R31/028G01R31/025
    • A measurement circuit includes a switch unit with a number of keys selectively pressed to output different resistance regulating signals. A resistance setting circuit receives the resistance regulating signals and connects different resistances to a voltage circuit and a current circuit. The voltage circuit outputs different voltages. The current voltage receives a voltage from the voltage circuit and outputs a current to a capacitor. A detecting circuit measures a temperature of the capacitor and outputs the temperature to the resistance setting circuit. The resistance setting circuit compares the received temperature with a preset temperature. If the received temperature is equal to or greater than the preset temperature, the resistance setting circuit outputs short-circuit information of the capacitor. If the received temperature is less than the preset temperature, the resistance setting circuit outputs normal information of the capacitor. A display unit displays the information of the capacitor.
    • 测量电路包括具有多个键的开关单元,其被选择性地按压以输出不同的电阻调节信号。 电阻设定电路接收电阻调节信号,并将不同的电阻连接到电压电路和电流电路。 电压电路输出不同的电压。 电流电压从电压电路接收电压并向电容器输出电流。 检测电路测量电容器的温度并将温度输出到电阻设定电路。 电阻设定电路将接收到的温度与预设温度进行比较。 如果接收到的温度等于或大于预设温度,则电阻设定电路输出电容器的短路信息。 如果接收到的温度低于预设温度,则电阻设定电路输出电容器的正常信息。 显示单元显示电容器的信息。
    • 3. 发明申请
    • MEASUREMENT CIRCUIT FOR LEAKAGE CURRENT OF CAPACITOR
    • 电容器漏电流的测量电路
    • US20140015542A1
    • 2014-01-16
    • US13598863
    • 2012-08-30
    • YUN BAIPENG CHENSONG-LIN TONG
    • YUN BAIPENG CHENSONG-LIN TONG
    • G01R31/02
    • G01R31/028G01R31/025
    • A measurement circuit includes an instruction input unit, a charging circuit to charge a capacitor, a charging and discharging circuit to control the capacitor to leakage discharge, a control circuit, a first amplifying circuit, and a display unit. The control circuit receives a measurement instruction through the instruction input unit to control the charging circuit to charge the capacitor, and receives a stop charging signal from the charging circuit when a voltage of the capacitor reaches a saturation voltage for controlling the charging circuit to stop charging the capacitor. The first amplifying circuit measures a leakage voltage of the capacitor, amplifies the measured leakage voltage, and outputs the amplified leakage voltage to the control circuit. The display unit displays the leakage voltage of the capacitor.
    • 测量电路包括指令输入单元,对电容器充电的充电电路,用于控制电容器泄漏放电的充电和放电电路,控制电路,第一放大电路和显示单元。 控制电路通过指令输入单元接收测量指令,以控制充电电路对电容器充电,并且当电容器的电压达到用于控制充电电路停止充电的饱和电压时从充电电路接收停止充电信号 电容器。 第一放大电路测量电容器的漏电压,放大测得的漏电电压,并将放大的漏电电压输出到控制电路。 显示单元显示电容器的漏电压。
    • 5. 发明申请
    • MEASUREMENT SYSTEM FOR MEASURING INDUCTANCE
    • 测量电感测量系统
    • US20140019075A1
    • 2014-01-16
    • US13628072
    • 2012-09-27
    • YUN BAIPENG CHENSONG-LIN TONG
    • YUN BAIPENG CHENSONG-LIN TONG
    • G01R27/26G06F19/00
    • G01R27/2611
    • A measurement system includes a control circuit, a measurement circuit, and a display circuit. The measurement circuit includes a first capacitor. The control circuit outputs control signals to control first or second inductors and the first capacitor to compose an LC circuit. Inductance can be gained according to the formula: L = 1 4  π · f 2 · C , where L stands for the inductance, f stands for a frequency of the LC circuit, π stands for ratio of a circle's circumference to its diameter, and C stands for capacitance of the first capacitor. The control circuit also controls the first and second inductors to be connected in parallel and then connected in parallel to the first capacitor to compose an LC circuit, to determine a coupling inductance. A leak inductance is equal to a half of the coupling inductance. The display circuit displays the inductances of the first and second inductors and the leak inductance.
    • 测量系统包括控制电路,测量电路和显示电路。 测量电路包括第一电容器。 控制电路输出控制信号以控制第一或第二电感器和第一电容器以组成LC电路。 电感可根据下列公式得到:L = 14πpi·f 2·C,其中L代表电感,f代表LC电路的频率,pi代表圆周长与其直径的比值, C代表第一电容器的电容。 控制电路还控制并联连接的第一和第二电感器,然后并联连接到第一电容器以组成LC电路,以确定耦合电感。 漏电感等于耦合电感的一半。 显示电路显示第一和第二电感器的电感和漏电感。
    • 6. 发明申请
    • GROUND TEST CIRCUIT
    • 接地测试电路
    • US20130328405A1
    • 2013-12-12
    • US13680129
    • 2012-11-19
    • YUN BAIPENG CHENSONG-LIN TONG
    • YUN BAIPENG CHENSONG-LIN TONG
    • G01R31/40H02J4/00
    • G01R31/40G01R31/025Y10T307/696
    • A ground test circuit for a power supply unit includes a sampling circuit, a converting circuit, a processing circuit, and a switch circuit. The sampling circuit detects a voltage difference between a first ground terminal and a second ground terminal. The converting circuit converts the voltage difference to a digital value. The processing circuit compares the digital value to a predetermined value. As long as the digital value is smaller than the predetermined value, the switch circuit allows an external power source to be connected to the power supply unit. Thereby, the ground test circuit controls the connection between the external power source and the power supply unit according to the result of comparison of values done by the processing circuit.
    • 电源单元的接地测试电路包括采样电路,转换电路,处理电路和开关电路。 采样电路检测第一接地端子和第二接地端子之间的电压差。 转换电路将电压差转换为数字值。 处理电路将数字值与预定值进行比较。 只要数字值小于预定值,开关电路允许外部电源连接到电源单元。 因此,接地测试电路根据由处理电路完成的值进行比较的结果来控制外部电源与电源单元之间的连接。
    • 7. 发明申请
    • LOAD LINE CALIBRATION DEVICE
    • 负载线校准装置
    • US20120267954A1
    • 2012-10-25
    • US13167724
    • 2011-06-24
    • FU-SEN YANGQI-YAN LUOPENG CHENYUN BAISONG-LIN TONG
    • FU-SEN YANGQI-YAN LUOPENG CHENYUN BAISONG-LIN TONG
    • H02J1/14
    • G06F1/28Y10T307/406
    • An adjusting device adjusts a load line of a CPU power supply circuit. The adjusting device includes a controller, a DC electronic load device, a voltage follower, an adjustable resistor, and an indicator. The controller controls the DC electronic load device to change an output current of the circuit. The voltage follower sends an output voltage of the circuit to the controller. The controller calculates the load line of the circuit based on the output current and the output voltage of the circuit, determines whether the load line satisfies the required value, changes a resistance of the adjustable resistor until the load line satisfies the required value, and sends a resistance of the adjustable resistor to the indicator.
    • 调整装置调整CPU电源电路的负载线。 调节装置包括控制器,DC电子负载装置,电压跟随器,可调电阻器和指示器。 控制器控制DC电子负载装置以改变电路的输出电流。 电压跟随器将电路的输出电压发送到控制器。 控制器基于电路的输出电流和输出电压来计算电路的负载线,确定负载线是否满足要求值,改变可调电阻的电阻,直到负载线满足要求值为止,并发送 可调电阻对指示器的电阻。
    • 8. 发明申请
    • DRIVING CIRCUIT
    • 驱动电路
    • US20120242306A1
    • 2012-09-27
    • US13167714
    • 2011-06-24
    • SONG-LIN TONGQI-YAN LUOPENG CHENYUN BAI
    • SONG-LIN TONGQI-YAN LUOPENG CHENYUN BAI
    • G05F1/00
    • H02M1/08
    • A driving circuit includes a switching circuit, an acquiring circuit, an amplifying circuit, and an adjusting circuit. The switching circuit includes a driving chip and a switching unit. The switching unit is connected between a power source and a load, the driving chip is configured for controlling the connection and disconnection of the switching unit. The acquiring circuit is connected between the switching unit and the load, and is configured for providing a feedback to the amplifying circuit. The amplifying circuit includes two amplifying input terminals connected to two terminals of the acquiring circuit and an amplifying output terminal outputting an amplified voltage. The adjusting circuit is connected to the amplifying output terminal and is configured for outputting different control voltages to the driving chip according to the amplified voltage. The driving chip outputs different driving voltages to the switching unit according to the control voltages.
    • 驱动电路包括开关电路,采集电路,放大电路和调整电路。 开关电路包括驱动芯片和开关单元。 开关单元连接在电源和负载之间,驱动芯片用于控制开关单元的连接和断开。 采集电路连接在开关单元和负载之间,并被配置为向放大电路提供反馈。 放大电路包括连接到采集电路的两个端子的两个放大输入端子和输出放大电压的放大输出端子。 调整电路连接到放大输出端,并被配置为根据放大的电压向驱动芯片输出不同的控制电压。 驱动芯片根据控制电压向开关单元输出不同的驱动电压。
    • 9. 发明申请
    • DRIVER CIRCUIT
    • 驱动电路
    • US20120176166A1
    • 2012-07-12
    • US13110917
    • 2011-05-19
    • SONG-LIN TONGQI-YAN LUOPENG CHENYUN BAI
    • SONG-LIN TONGQI-YAN LUOPENG CHENYUN BAI
    • H03L7/00
    • G06F1/26
    • A driver circuit drives a pulse width modulation (PWM) controller. The driver circuit includes an enabling circuit, a power supply input control circuit, a stabilizing circuit, and a discharge circuit. The stabilizing circuit is electrically connected to the PWM controller. The power supply input control circuit is electrically connected between the enabling circuit and the stabilizing circuit. The discharge circuit is electrically connected between the stabilizing circuit and the ground. In response to the driver circuit working in normal operation, the enabling circuit enables the power supply input control circuit to output a working voltage to the stabilizing circuit, and in response to the process of the driver circuit restarting, the enabling circuit enables the power supply input to stop outputting power supply to the stabilizing circuit. The discharge circuit leads a residual voltage of the stabilizing circuit to the ground, during the process of the driver circuit being restarted.
    • 驱动电路驱动脉宽调制(PWM)控制器。 驱动器电路包括使能电路,电源输入控制电路,稳定电路和放电电路。 稳压电路与PWM控制器电连接。 电源输入控制电路电连接在使能电路和稳定电路之间。 放电电路电连接在稳压电路和地之间。 响应于驱动电路正常工作,使能电路使得电源输入控制电路向稳定电路输出工作电压,并且响应于驱动电路重新启动的过程,使能电路使电源 输入停止向稳定电路输出电源。 在驱动器电路重新启动的过程中,放电电路将稳定电路的剩余电压引向地。
    • 10. 发明申请
    • BUCK CONVERTER
    • BUCK转换器
    • US20120169314A1
    • 2012-07-05
    • US13093209
    • 2011-04-25
    • SONG-LIN TONGQI-YAN LUOPENG CHEN
    • SONG-LIN TONGQI-YAN LUOPENG CHEN
    • G05F1/618
    • H02M3/1588G06F1/26Y02B70/1466
    • A buck converter includes a first MOSFET and a second MOSFET connected in series, a PWM module coupled to gates of the first MOSFET and the second MOSFET, and a control unit being coupled to the input current acquired unit, the input voltage acquired unit, the output current acquired unit, the output voltage acquired unit and the PWM module respectively, wherein the control unit controls a switch frequency of the PWM module and acquires the input current, the input voltage, the output current and the output voltage from the input current acquired unit, the input voltage acquired unit, the output current acquired unit and the output voltage acquired unit respectively.
    • 降压转换器包括串联连接的第一MOSFET和第二MOSFET,连接到第一MOSFET和第二MOSFET的栅极的PWM模块,以及耦合到输入电流获取单元的控制单元,输入电压获取单元, 输出电流获取单元,输出电压获取单元和PWM模块,其中控制单元控制PWM模块的开关频率,并从获得的输入电流获取输入电流,输入电压,输出电流和输出电压 单位,输入电压获取单位,输出电流获取单位和输出电压采集单位。