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    • 1. 发明申请
    • SWITCHING POWER SUPPLY DEVICE
    • 切换电源设备
    • US20130242630A1
    • 2013-09-19
    • US13988917
    • 2011-01-17
    • Hiroshi KurushimaMasato MatsubaraHitoshi KidokoroAkihiro Suzuki
    • Hiroshi KurushimaMasato MatsubaraHitoshi KidokoroAkihiro Suzuki
    • H02M7/537
    • H02M7/537H02M7/48H02M2001/007
    • A switching power supply device includes: a chopper circuit that adjusts a DC voltage input through a reactor to a desired DC voltage by performing an on/off operation of a switching element; an inverter circuit that converts an output of the chopper circuit into a desired AC voltage; a first capacitor that is provided on a side of the inverter circuit relative to the switching element; a second capacitor that is provided on a side of the inverter circuit relative to the switching element; and a resistor that is in a resonant loop formed by three constituent elements that are the first capacitor, the second capacitor, and a wiring inductance between the chopper circuit and the inverter circuit, where the resistor is connected in series to the second capacitor and inserted between the DC bus-bars.
    • 开关电源装置包括:斩波电路,其通过执行开关元件的导通/截止操作来将通过电抗器输入的直流电压调节到期望的直流电压; 将所述斩波电路的输出转换为期望的交流电压的逆变器电路; 第一电容器,设置在逆变器电路的相对于开关元件的一侧; 第二电容器,其设置在逆变器电路相对于开关元件的一侧; 以及电阻器,其在由扼流器电路和逆变器电路之间的第一电容器,第二电容器和布线电感的三个构成元件构成的谐振回路中,其中电阻器与第二电容器串联连接并插入 在直流母线之间。
    • 4. 发明授权
    • Switching power supply device
    • 开关电源装置
    • US08737104B2
    • 2014-05-27
    • US13988917
    • 2011-01-17
    • Hiroshi KurushimaMasato MatsubaraHitoshi KidokoroAkihiro Suzuki
    • Hiroshi KurushimaMasato MatsubaraHitoshi KidokoroAkihiro Suzuki
    • H02M7/5387
    • H02M7/537H02M7/48H02M2001/007
    • A switching power supply device includes: a chopper circuit that adjusts a DC voltage input through a reactor to a desired DC voltage by performing an on/off operation of a switching element; an inverter circuit that converts an output of the chopper circuit into a desired AC voltage; a first capacitor that is provided on a side of the inverter circuit relative to the switching element; a second capacitor that is provided on a side of the inverter circuit relative to the switching element; and a resistor that is in a resonant loop formed by three constituent elements that are the first capacitor, the second capacitor, and a wiring inductance between the chopper circuit and the inverter circuit, where the resistor is connected in series to the second capacitor and inserted between the DC bus-bars.
    • 开关电源装置包括:斩波电路,其通过执行开关元件的导通/截止操作来将通过电抗器输入的直流电压调节到期望的直流电压; 将所述斩波电路的输出转换为期望的交流电压的逆变器电路; 第一电容器,设置在逆变器电路的相对于开关元件的一侧; 第二电容器,其设置在逆变器电路相对于开关元件的一侧; 以及电阻器,其在由扼流器电路和逆变器电路之间的第一电容器,第二电容器和布线电感的三个构成元件构成的谐振回路中,其中电阻器与第二电容器串联连接并插入 在直流母线之间。
    • 5. 发明申请
    • POWER SUPPLY APPARATUS
    • 电源设备
    • US20120257431A1
    • 2012-10-11
    • US13518350
    • 2011-09-07
    • Akihiro SuzukiHitoshi KidokoroToshiki KoshimaeHiroshi KurushimaMasato MatsubaraNaoki Nishikawa
    • Akihiro SuzukiHitoshi KidokoroToshiki KoshimaeHiroshi KurushimaMasato MatsubaraNaoki Nishikawa
    • H02M7/5387
    • H02M7/003
    • A power supply apparatus includes an inverter having output terminals; a first transformer that transforms alternating-current output from the output terminals; a second transformer that is connected to the output terminals in parallel to the first transformer, arranged on an opposite side of the first transformer with respect to a straight line passing through a center of the output terminals and extending perpendicularly to a plane including the output terminals, and transforms alternating-current power output from the output terminals; first conductive lines that connect the output terminals to both ends of the first transformer; and second conductive lines that connect the output terminals to both ends of the second transformer. An area of a first loop formed by the inverter, the first conductive lines, and the first transformer is equal to an area of a second loop formed by the inverter, the second conductive lines, and the second transformer.
    • 电源装置包括具有输出端子的逆变器; 变换来自输出端子的交流输出的第一变压器; 第二变压器,其连接到与第一变压器并联的输出端子,相对于穿过输出端子的中心的直线布置在第一变压器的相对侧上,并且垂直于包括输出端子的平面延伸 并且从输出端子转换输出的交流电力; 将输出端子连接到第一变压器的两端的第一导线; 以及将输出端子连接到第二变压器的两端的第二导线。 由逆变器,第一导线和第一变压器形成的第一回路的区域等于由逆变器,第二导线和第二变压器形成的第二回路的面积。
    • 6. 发明授权
    • Power supply apparatus
    • 电源设备
    • US08902622B2
    • 2014-12-02
    • US13518350
    • 2011-09-07
    • Akihiro SuzukiHitoshi KidokoroToshiki KoshimaeHiroshi KurushimaMasato MatsubaraNaoki Nishikawa
    • Akihiro SuzukiHitoshi KidokoroToshiki KoshimaeHiroshi KurushimaMasato MatsubaraNaoki Nishikawa
    • H02M7/5387H02M7/00H02M7/217
    • H02M7/003
    • A power supply apparatus includes an inverter having output terminals; a first transformer that transforms AC output from the output terminals; a second transformer that is connected to the output terminals in parallel to the first transformer, arranged on an opposite side of the first transformer with respect to a straight line passing through a center of the output terminals and extending perpendicularly to a plane including the output terminals, and transforms AC power output from the output terminals; first conductive lines that connect the output terminals to both ends of the first transformer; and second conductive lines that connect the output terminals to both ends of the second transformer. An area of a first loop formed by the inverter, the first conductive lines, and the first transformer is equal to an area of a second loop formed by the inverter, the second conductive lines, and the second transformer.
    • 电源装置包括具有输出端子的逆变器; 第一变压器,用于转换输出端的交流输出; 第二变压器,其连接到与第一变压器并联的输出端子,相对于穿过输出端子的中心的直线布置在第一变压器的相对侧上,并且垂直于包括输出端子的平面延伸 并从输出端子转换输出的交流电力; 将输出端子连接到第一变压器的两端的第一导线; 以及将输出端子连接到第二变压器的两端的第二导线。 由逆变器,第一导线和第一变压器形成的第一回路的区域等于由逆变器,第二导线和第二变压器形成的第二回路的面积。
    • 7. 发明授权
    • Gas laser oscillator and gas laser beam machine
    • 气体激光振荡器和气体激光束机
    • US07664154B2
    • 2010-02-16
    • US11587304
    • 2004-04-21
    • Hiroshi KurushimaHitoshi KidokoroMasato Matsubara
    • Hiroshi KurushimaHitoshi KidokoroMasato Matsubara
    • H01S3/22H01S3/223
    • H01S3/134H01S3/036
    • A pressure of a laser gas in an enclosure (7) is detected by a gas pressure sensor (12), and a pressure comparison circuit (13) determines whether the thus-detected pressure is normal or anomalous. An electric current output from an inverter (10) that drives a blower (5) to cause a laser gas to flow back, is detected by a current detection circuit (9). A current comparison circuit (11) determines whether or not the output current is normal or anomalous. A result of a pressure comparison circuit (13) and a result of the current comparison circuit (11) are sent to an AND circuit (15) and performed AND processing. A result of the AND circuit (15), a result of the current detection circuit (9), and a result of the gas pressure sensor (12) are sent to a comparison operation section (17) in a controller (14). A determination is made as to whether or not the blower is anomalous. When the blower is determined to be anomalous, a signal is output to an oscillator and a machine control section (18), to thus stop the oscillator and the machine. Thereby, an anomaly in the blower (5) can be detected regardless of fluctuations in the pressure of the laser gas.
    • 气体压力传感器(12)检测外壳(7)中的激光气体的压力,压力比较电路(13)确定检测到的压力是正常还是异常。 由电流检测电路(9)检测从驱动鼓风机(5)使激光气体回流的逆变器(10)的电流。 电流比较电路(11)确定输出电流是正常还是异常。 压力比较电路(13)的结果和电流比较电路(11)的结果被发送到AND电路(15)并执行AND处理。 AND电路(15)的结果,电流检测电路(9)的结果和气体压力传感器(12)的结果被发送到控制器(14)中的比较运算部(17)。 确定鼓风机是否是异常的。 当鼓风机被确定为异常时,信号被输出到振荡器和机器控制部分(18),从而停止振荡器和机器。 因此,无论激光气体的压力的波动如何,都可以检测到鼓风机(5)中的异常。
    • 8. 发明申请
    • Gas Laser Oscillator and Gas Laser Beam Machine
    • 气体激光振荡器和气体激光束机
    • US20070297478A1
    • 2007-12-27
    • US11587304
    • 2004-04-21
    • Hiroshi KurushimaHitoshi KidokoroMasato Matsubara
    • Hiroshi KurushimaHitoshi KidokoroMasato Matsubara
    • H01S3/036
    • H01S3/134H01S3/036
    • A pressure of a laser gas in an enclosure (7) is detected by a gas pressure sensor (12), and a pressure comparison circuit (13) determines whether the thus-detected pressure is normal or anomalous. An electric current output from an inverter (10) that drives a blower (5) to cause a laser gas to flow back, is detected by a current detection circuit (9). A current comparison circuit (11) determines whether or not the output current is normal or anomalous. A result of a pressure comparison circuit (13) and a result of the current comparison circuit (11) are sent to an AND circuit (15) and performed AND processing. A result of the AND circuit (15), a result of the current detection circuit (9), and a result of the gas pressure sensor (12) are sent to a comparison operation section (17) in a controller (14). A determination is made as to whether or not the blower is anomalous. When the blower is determined to be anomalous, a signal is output to an oscillator and a machine control section (18), to thus stop the oscillator and the machine. Thereby, an anomaly in the blower (5) can be detected regardless of fluctuations in the pressure of the laser gas.
    • 气体压力传感器(12)检测外壳(7)中的激光气体的压力,压力比较电路(13)确定检测到的压力是正常还是异常。 由电流检测电路(9)检测从驱动鼓风机(5)使激光气体回流的逆变器(10)的电流。 电流比较电路(11)确定输出电流是正常还是异常。 压力比较电路(13)的结果和电流比较电路(11)的结果被发送到AND电路(15)并执行AND处理。 AND电路(15)的结果,电流检测电路(9)的结果和气体压力传感器(12)的结果被发送到控制器(14)中的比较运算部(17)。 确定鼓风机是否是异常的。 当鼓风机被确定为异常时,信号被输出到振荡器和机器控制部分(18),从而停止振荡器和机器。 因此,无论激光气体的压力的波动如何,都可以检测到鼓风机(5)中的异常。
    • 9. 发明申请
    • POWER CONVERSION APPARATUS
    • 功率转换装置
    • US20130170265A1
    • 2013-07-04
    • US13821253
    • 2011-09-26
    • Hiroyasu IwabukiHiroshi Kurushima
    • Hiroyasu IwabukiHiroshi Kurushima
    • H02M7/06
    • H02M7/06H02M1/4216H02M1/4225H02M7/2176H02M2001/0003Y02B70/126
    • A three-phase rectification circuit rectifies output voltage of a three-phase AC power supply, a step-up converter circuit steps up the output voltage, and a smoothing device smoothes the stepped-up output voltage. A voltage detection circuit detects output voltage VoL of the smoothing device, and an AC current component detection circuit extracts AC component included in output current of the three-phase rectification circuit and outputs a detection signal ViL corresponding to the AC component. A control circuit calculates a deviation ΔVdc1 (=Vs−VoL−ViL) among an output voltage instruction Vs for output voltage of the step-up converter circuit and detection signals VoL and ViL obtained by the detection circuits, and generates a pulse signal for suppressing the deviation ΔVdc1 to zero, thereby performing PWM control for a switching device of the step-up converter circuit.
    • 三相整流电路对三相交流电源的输出电压进行整流,升压转换电路升压输出电压,平滑装置平滑升压输出电压。 电压检测电路检测平滑装置的输出电压VoL,并且AC电流分量检测电路提取包括在三相整流电路的输出电流中的AC分量,并输出对应于AC分量的检测信号ViL。 控制电路计算升压转换电路的输出电压的输出电压指令Vs和由检测电路得到的检测信号VoL,ViL之间的偏差DeltaVdc1(= Vs-VoL-ViL),生成用于抑制 偏差DeltaVdc1为零,从而对升压转换器电路的开关装置进行PWM控制。
    • 10. 发明授权
    • Power conversion apparatus
    • 电力转换装置
    • US08836296B2
    • 2014-09-16
    • US13821253
    • 2011-09-26
    • Hiroyasu IwabukiHiroshi Kurushima
    • Hiroyasu IwabukiHiroshi Kurushima
    • G05F1/00H02M1/42H02M7/06H02M7/217H02M1/00
    • H02M7/06H02M1/4216H02M1/4225H02M7/2176H02M2001/0003Y02B70/126
    • A three-phase rectification circuit rectifies output voltage of a three-phase AC power supply, a step-up converter circuit steps up the output voltage, and a smoothing device smoothes the stepped-up output voltage. A voltage detection circuit detects output voltage VoL of the smoothing device, and an AC current component detection circuit extracts AC component included in output current of the three-phase rectification circuit and outputs a detection signal ViL corresponding to the AC component. A control circuit calculates a deviation ΔVdc1 (=Vs−VoL−ViL) among an output voltage instruction Vs for output voltage of the step-up converter circuit and detection signals VoL and ViL obtained by the detection circuits, and generates a pulse signal for suppressing the deviation ΔVdc1 to zero, thereby performing PWM control for a switching device of the step-up converter circuit.
    • 三相整流电路对三相交流电源的输出电压进行整流,升压转换电路升压输出电压,平滑装置平滑升压输出电压。 电压检测电路检测平滑装置的输出电压VoL,并且AC电流分量检测电路提取包括在三相整流电路的输出电流中的AC分量,并输出对应于AC分量的检测信号ViL。 控制电路计算升压转换电路的输出电压的输出电压指令Vs和由检测电路得到的检测信号VoL,ViL之间的偏差& Vdc1(= Vs-VoL-ViL),生成脉冲信号 用于将偏差Vdc1抑制为零,从而对升压转换器电路的开关器件执行PWM控制。