• 同时大大延长开关管使用寿命。

    At the same time also greatly extend the service life of switch.

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  • 开关管电压应力均输入电压的一半

    The voltage stress of each main switch is only half of the input voltage.

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  • 过流保护电路检测电流转化为控制开关

    Over-current protection circuits convert the detecting current into the gate voltage which controls the switch FET.

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  • 采用自举模拟开关提高开关管过驱动电压

    The bootstrapped switch is used to improve the gate overdrive voltage.

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  • 同时采用启动电路防止浪电流保护功率开关管

    To protect power switches, soft-starting circuit was designed to overcome the surge current.

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  • 晶体开关集电极与发射极间电压取决于电网电压。

    The collector voltage of the switching transistor is determined by the voltage of the power network.

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  • 解决方法打开电源更换开关滤波电容直接电源。

    Solution: turn on the power to replace the switch tube, filter capacitor, or directly for power.

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  • 由于次级开关是对电压脉冲进行开关自然实现开关

    Because the main switches of the secondary only conduct voltage pulses, the soft switching of them can naturally be realized.

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  • 某一电磁脉冲检查对应电子开关是否漏电击穿

    If a electromagnetic pulse valve is always magnetized, it must be checked if the corresponding electronic switch tube is in electric leakage or broken-down.

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  • 触发器检测开关击穿检测器性能,确保不误检、漏检高压击穿。

    The trigger inspected the performance of the switch tube and breakdown detector, for avoiding miss detection.

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  • 使用单端反激变换器电路用PWM信号控制开关管MOSFET

    Single flyback converter circuit, as well as the PWM signal, is used to control the MOSFET.

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  • 辅助电路辅助开关管耦合电感(反激变压器)反馈二极构成

    The auxiliary circuit is composed of an auxiliary switch, a coupled inductor (flyback transformer) and a feedback diode.

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  • 通过电容器充电回路开关进行控制实现交流输入端的功率因数

    High power factor at ac input can be achieved by controlling the switch of capacitor charge circuit.

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  • 研究功率MOSFET开关串联谐振逆变器的频率跟踪问题。

    The paper analyzes the phase-lock technique of serial resonant inverter with power MOSFET as switching device.

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  • 提出了一种电流开关结构开关三相升压功率因数校正整流器

    Zero current transition (ZCT) topology of the single switch three phase boost power factor correction (PFC) rectifier is proposed.

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  • 着重分析开关辅助开关管零电流开通和关断过程实现条件

    The analysis of this paper is concentrated on the procedure of ZCS by the main switch and auxiliary switch including the precondition to realize the ZCS.

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  • 通过控制方式,利用开关管电容实现滞后电压开关

    With the use of phase-shifted control mode and the junction capacitor of the switches, the lagging switches can realize ZVS under any load.

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  • 移相控制全变换器能够实现开关电压开关滞后桥臂难度很大。

    Phase - shifted converter realizes zero - voltage - switching with the use of leakage inductor of the main transformer, however, the realization of ZVS for lagging bridge leg is difficult.

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  • 移相控制全变换器能够实现开关电压开关滞后桥臂难度很大。

    Phase shifted converter realizes zero voltage switching (ZVS) with the use of leakage inductance of the main transformer, however, the realization of ZVS for lagging bridge leg is difficult.

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  • 开关管输出整流二极均实现了ZVS和ZCS,提高能量传输效率

    The main switch and rectifier diode both work under ZVS and ZCS condition to improve the power transmission efficiency.

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  • 二极式三电平逆变器应用于三相并联有源滤波器降低开关管应力

    The diode neutral point clamped three-level inverter for three-phase shunt active power filter is applied to reduce the switch stress.

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  • 实验结果证明电路实现三相逆变器开关管开关改善输出波形质量

    The experimental results verify that the circuit mentioned above can realize the soft-switching, improve the quality of output wave.

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  • 推导电荷损耗效率模型,为电路设计中确定电荷泵开关尺寸奠定基础

    It is the basis of computing the size of switch transistors to derive the model of the power dissipation and efficiency of charge pump.

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  • 开关电源采用新颖串联模式解决高电压输入条件开关选用难题

    In this switching power supply, the novel mode of serial two-transistor is adopted to solve the difficulty of choosing switch transistor under the condition of high-voltage input.

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  • 这种高频电源较好地实现开关电压ZVS)软化,得到了较宽的调范围

    The high frequency inverter used here can achieve zero voltage soft switching (ZVS) and wide power regulation range.

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  • 开关技术能够有效改善功率开关工作环境降低开关损耗提高变换器效率

    Soft switching technique could improve the circumstance of the power switch, reduce the losses and increase the efficiency of the converter.

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  • 本文比较了不同采样开关管源随器组合方式下,电路的输出摆幅线性范围的变化。

    The output swing and linearity range of the ROIC were compared, using different combinations of the CDS switch and SF structure.

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  • 该变换器中的开关实现了电压下关断,而且其中两个开关管电流零电压下开通。

    All switches are turned off with zero voltage switching, and the two switches of them are turned on with zero current and zero voltage switching.

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  • 逆变电路克服了传统逆变器的直通问题,功率开关管功率二极可以分别得到最优设计

    This topology overcomes the shootthrough problem in traditional inverter. The switch and diode can be designed separately.

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  • 介绍了利用高频开关IGBT构成模块化充电电源电路控制电路保护电路的结构原理

    The structure and theory of main circuit, control circuit and protection circuit of modularized charge power supply composed by IGBT high frequency switch tubes are introduced in this paper.

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