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    • 2. 发明授权
    • Discharge control apparatus for power converting system with capacitor
    • 具有电容器的电力转换系统的放电控制装置
    • US09093920B2
    • 2015-07-28
    • US13579962
    • 2011-03-30
    • Yoshiyuki HamanakaTsuneo MaebaraYusuke ShindoKoichi Sakata
    • Yoshiyuki HamanakaTsuneo MaebaraYusuke ShindoKoichi Sakata
    • H02M7/48H02M1/32
    • H02M7/48B60L3/04H02M2001/322
    • A discharge controller carries out discharge control by determining a voltage to be applied to a conduction control terminal of each of switching elements such that a current in a non-saturation region of one of the switching elements is lower than a current in a non-saturation region of the other thereof, and applying the voltage to the conduction control terminal of each switching element with an opening-closing member opening an electrical path to turn on the switching elements, resulting in short-circuit of both electrodes of a capacitor so that a discharge current is outputted from the capacitor based on the discharge control. A manipulator manipulates, based on a value of the discharge current, how to apply the voltage to the conduction control terminal of the one of the switching elements, thus controlling an amount of heat to be generated in the one of the switching elements.
    • 放电控制器通过确定要施加到每个开关元件的导通控制端子的电压来执行放电控制,使得一个开关元件的非饱和区域中的电流低于不饱和电流 区域,并且通过打开电气路径的开闭构件将电压施加到每个开关元件的导通控制端子,以导通开关元件,导致电容器的两个电极短路,使得 基于放电控制从电容器输出放电电流。 操纵器基于放电电流的值操作如何将电压施加到开关元件之一的导通控制端子,从而控制在一个开关元件中产生的热量。
    • 3. 发明申请
    • DISCHARGE CONTROL APPARATUS FOR POWER CONVERTING SYSTEM WITH CAPACITOR
    • 具有电容器功率转换系统的放电控制装置
    • US20120320649A1
    • 2012-12-20
    • US13579962
    • 2011-03-30
    • Yoshiyuki HamanakaTsuneo MaebaraYusuke ShindoKoichi Sakata
    • Yoshiyuki HamanakaTsuneo MaebaraYusuke ShindoKoichi Sakata
    • H02M7/537
    • H02M7/48B60L3/04H02M2001/322
    • A discharge controller carries out discharge control by determining a voltage to be applied to a conduction control terminal of each of switching elements such that a current in a non-saturation region of one of the switching elements is lower than a current in a non-saturation region of the other thereof, and applying the voltage to the conduction control terminal of each switching element with an opening-closing member opening an electrical path to turn on the switching elements, resulting in short-circuit of both electrodes of a capacitor so that a discharge current is outputted from the capacitor based on the discharge control. A manipulator manipulates, based on a value of the discharge current, how to apply the voltage to the conduction control terminal of the one of the switching elements, thus controlling an amount of heat to be generated in the one of the switching elements.
    • 放电控制器通过确定要施加到每个开关元件的导通控制端子的电压来执行放电控制,使得一个开关元件的非饱和区域中的电流低于不饱和电流 区域,并且通过打开电气路径的开闭构件将电压施加到每个开关元件的导通控制端子,以导通开关元件,导致电容器的两个电极短路,使得 基于放电控制从电容器输出放电电流。 操纵器基于放电电流的值操作如何将电压施加到开关元件之一的导通控制端子,从而控制在一个开关元件中产生的热量。
    • 8. 发明申请
    • PHYSICAL QUANTITY DETECTING APPARATUS
    • 物理量检测装置
    • US20110122917A1
    • 2011-05-26
    • US12950083
    • 2010-11-19
    • Yoshiyuki HAMANAKATsuneo Maebara
    • Yoshiyuki HAMANAKATsuneo Maebara
    • G01K7/00
    • G01K7/01
    • A physical quantity detecting apparatus includes a plurality of physical quantity conversion circuits, an output selection circuit and a signal conversion circuit. Each of the plurality of physical quantity conversion circuits converts a physical quantity to be detected into a voltage corresponding to the physical quantity and outputs the voltage. The output selection circuit is electrically connected to the plurality of physical quantity conversion circuits to select a maximum voltage from among the voltages outputted from the plurality of physical quantity conversion circuits. The signal conversion circuit is electrically connected to the output selection circuit to convert the voltage outputted from the output selection circuit into a pulse signal having a pulse width or frequency corresponding to the voltage and output the pulse signal.
    • 物理量检测装置包括多个物理量转换电路,输出选择电路和信号转换电路。 多个物理量转换电路中的每一个将要检测的物理量转换成与物理量相对应的电压并输出电压。 输出选择电路电连接到多个物理量转换电路,以从多个物理量转换电路输出的电压中选择最大电压。 信号转换电路电连接到输出选择电路,以将从输出选择电路输出的电压转换成具有对应于电压的脉冲宽度或频率的脉冲信号并输出​​脉冲信号。