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control and driver circuit
相关语句
  控制与驱动电路
     The Design of Static Synchronous Series Generator (SSSG) Control and Driver Circuit
     静止同步串联补偿电源的控制与驱动电路的设计
短句来源
  控制和驱动电路
     Electromagnetic interference to the control and driver circuit caused by power circuit is a very important problem inside hybrid integrated power electronic module (IPEM). In this paper, simulation and experiments show that the high frequency current oscillations caused by the stray inductance of DC link and parasitic capacitor of power device at the moment of switch on or off are one of the main reason that leads to EMI inside IPEM.
     混合封装电力电子集成模块 (IPEM)内功率电路对控制和驱动电路的电磁干扰是非常重要的问题 ,本文通过仿真和实验发现直流母线的寄生电感与功率器件的寄生电容在开关瞬态的高频寄生振荡是引起IPEM内EMI的主要原因之一。
短句来源
  “control and driver circuit”译为未确定词的双语例句
     The paper introduces a new series power compensator (SSSG), and the design about the control and driver circuit of SSSG. This design, based on 80C196MC, can generate the voltage needed accurately and flexibly, and compensate some other system parameters as well as the capacitive and inductive reactive power,lastly the system of SSSG is builtup to experimentize and test.
     介绍了一种新型的串联补偿电源 ( SSSG) ,提出了基于 80 C1 96MC的波形发生器来设计SSSG的控制器与驱动电路 ,能够准确、灵活地产生所需电压 ,连续、平滑地补偿容性、感性无功功率等系统参数 ,并设计组成单相 SSSG系统 ,进行实验系统试验与调试达到了预期的目的
短句来源
  相似匹配句对
     Control Circuit of Headlight
     前照灯的控制电路
短句来源
     Control Driver Circuit for Big Power Step Motor
     大功率步进电动机的控制驱动电路
短句来源
     The Application of CPLD in Ultrasonic Transducer’s Driver Control Circuit
     CPLD在超声波传感器驱动控制电路中的应用
短句来源
     The control circuit and it's Power MOSFET driver circuit aregiven.
     文中给出了控制系统的框图和Power-MOSFET的驱动电路。
短句来源
     Design of Display Control Circuit for STN LCD Driver and Controller
     基于STNLCD驱动控制芯片的显示控制电路设计
短句来源
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Electromagnetic interference to the control and driver circuit caused by power circuit is a very important problem inside hybrid integrated power electronic module (IPEM). In this paper, simulation and experiments show that the high frequency current oscillations caused by the stray inductance of DC link and parasitic capacitor of power device at the moment of switch on or off are one of the main reason that leads to EMI inside IPEM. Research also shows that this current flows only between DC link...

Electromagnetic interference to the control and driver circuit caused by power circuit is a very important problem inside hybrid integrated power electronic module (IPEM). In this paper, simulation and experiments show that the high frequency current oscillations caused by the stray inductance of DC link and parasitic capacitor of power device at the moment of switch on or off are one of the main reason that leads to EMI inside IPEM. Research also shows that this current flows only between DC link and power devices like a circulating current, and does not flow through the load path. This high frequency circulating current brings disadvantageous effect to the control and driver circuit in the module.

混合封装电力电子集成模块 (IPEM)内功率电路对控制和驱动电路的电磁干扰是非常重要的问题 ,本文通过仿真和实验发现直流母线的寄生电感与功率器件的寄生电容在开关瞬态的高频寄生振荡是引起IPEM内EMI的主要原因之一。研究表明这个寄生振荡电流不经过负载而直接在正负直流母线和开关器件之间流动 ,形成一个高频的环流 ,从而对模块内的控制和驱动电路造成不利的影响。

This paper deals with the electromagnetic interference problem based on mutual inductance model between the power circuit and control and driver circuit in hybrid Integrated Power Electronic Module (IPEM).It shows that the high frequency components of the circulating current of power circuit have important influence on control and driver circuit.An IPEM prototype is built up to evaluate the EMI of the circulating current.And an effective modeling and calculation method based on Partial Element...

This paper deals with the electromagnetic interference problem based on mutual inductance model between the power circuit and control and driver circuit in hybrid Integrated Power Electronic Module (IPEM).It shows that the high frequency components of the circulating current of power circuit have important influence on control and driver circuit.An IPEM prototype is built up to evaluate the EMI of the circulating current.And an effective modeling and calculation method based on Partial Element Equivalent Circuit (PEEC) is used to calculate mutual inductance between the power circuit and control and driver circuit.

研究了大电流混合封装电力电子集成模块 (IPEM)内功率电路对控制驱动电路的电磁干扰问题研究表明 ,功率电路的内部环流通过互感耦合的方式会对IPEM内部的控制和驱动电路产生重要影响 ,特别是环流的高频分量为了对环流的EMI进行评估 ,建立了IPEM的内部环流实验模型另外 ,一种简化的基于局部元等效电路 (PEEC)原理的建模和计算方法被用于计算环流回路与控制和驱动回路之间的互感 ,实验证明结果是比较准确的 .

The paper introduces a new series power compensator (SSSG), and the design about the control and driver circuit of SSSG. This design, based on 80C196MC, can generate the voltage needed accurately and flexibly, and compensate some other system parameters as well as the capacitive and inductive reactive power,lastly the system of SSSG is builtup to experimentize and test.

介绍了一种新型的串联补偿电源 ( SSSG) ,提出了基于 80 C1 96MC的波形发生器来设计SSSG的控制器与驱动电路 ,能够准确、灵活地产生所需电压 ,连续、平滑地补偿容性、感性无功功率等系统参数 ,并设计组成单相 SSSG系统 ,进行实验系统试验与调试达到了预期的目的

 
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