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    • 32. 发明公开
    • SWITCHING RECTIFIER CIRCUIT AND BATTERY CHARGER USING SAME
    • 电池充电器
    • EP2642654A1
    • 2013-09-25
    • EP11841625.4
    • 2011-11-11
    • Rohm Co., Ltd.
    • TAKAHAGI TsutomuNIIYAMA Kenichi
    • H02M7/219H02M7/21
    • H02M7/219H02J7/022H02M2007/2195
    • A switching rectifier circuit according to the present invention includes: a switch (M1) coupled between a first alternating-current voltage (VAC1) and a direct-current voltage (VDC); a switch (M2) coupled between a second alternating-current voltage (VAC2) and the direct-current voltage (VDC); a switch (M3) coupled between the first alternating-current voltage (VAC1) and a reference voltage (VSS); a switch (M4) coupled between the second alternating-current voltage (VAC2) and the reference voltage (VSS); a first comparator circuit (121) that generates each of a first power-on detection signal (DET1a) and a first power-off detection signal (DET1b) from the first alternating-current voltage (VAC1) and the direct-current voltage (VDC); a second comparator circuit (122) that generates each of a second power-on detection signal (DET2a) and a second power-off detection signal (DET2b) from the second alternating-current voltage (VAC2) and the direct-current voltage (VDC); and a timing generator (13) that controls the switches (M1 to M4) to be turned on/off on the basis of outputs of at least the comparator circuits (121, 122).
    • 根据本发明的开关整流电路包括:耦合在第一交流电压(VAC1)和直流电压(VDC)之间的开关(M1); 耦合在第二交流电压(VAC2)和直流电压(VDC)之间的开关(M2); 耦合在所述第一交流电压(VAC1)和参考电压(VSS)之间的开关(M3); 耦合在第二交流电压(VAC2)和参考电压(VSS)之间的开关(M4); 从第一交流电压(VAC1)和直流电压(VDC)中产生第一开机检测信号(DET1a)和第一断电检测信号(DET1b)中的每一个的第一比较器电路(121) ); 第二比较器电路(122),其从第二交流电压(VAC2)和直流电压(VDC)产生第二通电检测信号(DET2a)和第二断电检测信号(DET2b)中的每一个 ); 以及基于至少比较器电路(121,122)的输出来控制开关(M1〜M4)导通/截止的定时发生器(13)。
    • 38. 发明公开
    • Inverter controlled generator apparatus
    • 变频器控制的发电机设备
    • EP1432114A1
    • 2004-06-23
    • EP03029210.6
    • 2003-12-18
    • HONDA MOTOR CO., Ltd.
    • H02P9/08
    • H02M1/36H02M3/3385H02M2001/0006H02M2001/009H02M2007/2195H02P9/08Y02B70/1408
    • Aplurality of control power sources of voltage specifications different from one another are constructed. A generator output converted by a converter (2) into a DC current is converted by an inverter (3) into an AC current of a predetermined frequency. The generation output is rectified by second rectifier circuits (27, 28, 29) and a capacitor (30) and is then input to an RCC (31). The RCC (31) constitutes a self-excited oscillation circuit, energy is stored into a transformer (32) in an ON time of a transistor (Q1) corresponding to an oscillation frequency thereof, and the energy is transferred to a secondary side in an OFF time. In the secondary side of the RCC (31), windings are formed corresponding to the number of required power sources. One group of windings (NS1, NS2) forms both positive and negative power sources of a control power source (17), and another group of windings (NS3, NS4, NS5) forms a power source for an FET driver (13).
    • 构建了多种彼此不同的电压规格的控制电源。 由变换器(2)变换为直流电流的发电机输出由逆变器(3)变换为规定频率的交流电流。 发电输出由第二整流器电路(27,28,29)和电容器(30)整流,然后输入到RCC(31)。 RCC(31)构成自激振荡电路,在与其振荡频率相对应的晶体管(Q1)的导通时间内,能量被存储到变压器(32)中,并且该能量被传输到次级侧 关闭时间。 在RCC(31)的二次侧,根据所需电源的数量形成绕组。 一组绕组(NS1,NS2)形成控制电源(17)的正电源和负电源,另一组绕组(NS3,NS4,NS5)形成用于FET驱动器(13)的电源。
    • 39. 发明公开
    • Mosgate device driver for synchronous rectification of a 3 phase sinusoidal source
    • Mosctvorrichtung-TreiberschaltungfürSynchrongleichrichtung einer Drehstrom-sinusquelle
    • EP1347564A2
    • 2003-09-24
    • EP03004566.0
    • 2003-02-28
    • INTERNATIONAL RECTIFIER CORPORATION
    • Vaysse, Bertrand
    • H02M7/219
    • H02M7/219H02M2007/2195Y02B70/1408
    • A rectifying circuit and method to produce a DC output by rectifying a sinusoidal source having a plurality of output phase voltages and a plurality of phase-to-phase voltages, the rectifying circuit including a bridge circuit coupled to the output phasc voltages, the bridge circuit having a plurality of switches; and a control circuit coupled to the output phase voltages and to the bridge circuit, the control circuit being configured to control the switches in accordance with respective absolute values of the phase-to-phase voltages; wherein the output phase voltages are rectified to produce the DC output. When the sinusoidal source is inductive, switch turn-off may be timed to provide synchronous rectification related to estimates of source periodicity.
    • 一种整流电路和方法,用于通过整流具有多个输出相电压和多个相间电压的正弦源来产生DC输出,所述整流电路包括耦合到输出phasc电压的桥式电路,桥式电路 具有多个开关; 以及耦合到所述输出相电压的控制电路和所述桥式电路,所述控制电路被配置为根据所述相间电压的相应绝对值来控制所述开关; 其中输出相电压被整流以产生直流输出。 当正弦波源为感性时,开关关断可能被定时,以提供与源周期估计相关的同步整流。
    • 40. 发明公开
    • Control system adapted to control operation of an AC/DC converter
    • Steuerschaltung zur Betriebssteuerung eines Gleichstromrichters
    • EP1128538A2
    • 2001-08-29
    • EP01301295.0
    • 2001-02-13
    • Alstom
    • Ainsworth, John Desmond
    • H02M7/162H02J3/36
    • H02M1/12H02J3/36H02M7/1623H02M2007/2195Y02B70/1408Y02E60/60
    • A control system to control at least one of the thyristor converters (1) or (2) of an ac system (7,8) or (9,10) connected by busbars (5,6) and transformers (3,4) to the converters (1,2) which have their dc sides connected by a dc link, for example inductor (11). Each thyristor converter receives firing pulses from a firing control (12) or (13), including a firing angle control (18) and a summing junction (16) receiving a control current signal input (17) and a current signal (14) which is a function of converter operation. An electrical power measurement is made of one of the ac systems, for example the ac system (7,8,5) and in accordance with that power measurement a signal which is a function thereof is produced as an output (19) from an integral two-axis ac servo control having demodulator, integrator and modulator means receiving the power measurement signal as input. Signal (19) is a function of the cross-modulation noise component caused by interaction of electrical noise from the two converters. This signal (19) is input to at least the firing control (12) to vary the firing of thyristor converter (1) so as to remove from at least the ac system (7,8,5) said cross-modulation noise. Signal (19) may also be input to firing control (13).
    • 一种控制系统,用于控制通过母线(5,6)和变压器(3,4)连接的交流系统(7,8)或(9,10)的可控硅转换器(1)或(2)中的至少一个至 其直流侧通过直流链路连接的转换器(1,2),例如电感器(11)。 每个晶闸管转换器接收来自点火控制(12)或(13)的点火脉冲,包括触发角控制(18)和接收控制电流信号输入(17)和电流信号(14)的求和结(16) 是转换器操作的功能。 电力测量由交流系统(例如交流系统)(7,8,5)中的一个进行,并且根据该功率测量,作为其功能的信号从积分产生为输出(19) 具有解调器,积分器和调制器的两轴交流伺服控制装置,用于接收功率测量信号作为输入。 信号(19)是由来自两个转换器的电噪声的相互作用引起的交叉调制噪声分量的函数。 该信号(19)至少输入到点火控制(12)以改变晶闸管转换器(1)的点火,以便从至少交流系统(7,8,5)去除所述交叉调制噪声。 信号(19)也可以被输入到点火控制(13)。