This paper recommends a new type of IGBT driving protection circuit, which is fast, safe and reliable in performing its function.
介绍一种新型的性能较完善的IGBT驱动保护电路。实验结果表明,该电路能快速、安全、可靠地实现保护功能。
In part of hardware design, voltage and current sampling circuit, IGBT driving circuit communication and man-machine interface circuit are designed.
在硬件设计中对电压、电流采样电路,IGBT驱动电路以及通讯和人机接口电路进行了设计。
The overall hardware design scheme is performed, such as DSP 3. 3V power, voltage and current sampling module, IGBT driving circuit, I/O signal processor, fault detection module and COM circuit etc.
对系统硬件设计的DSP 3.3V电源的获取、电压电流采样模块、IGBT驱动、一般I/O信号的处理、故障监测和串口通信电路进行了研究分析。
The main circuit and driving circuit of X-ray detection machine controller are designed by use of IGBT inverter and related technology.
本文运用IGBT逆变及相关技术设计并实现了X射线探伤机控制器的主电路、驱动电路和控制电路。
A new drive circuit for IGBT is designed. It features high switching frequency, high driving power, simple-structure and reverse-turn-off.
论文中还设计了一种新型的IGBT驱动电路,它具有开关频率高、驱动功率大、结构简单且具有负压关断的特点。
This paper deals with the designing of driving voltage and current for IGBT, points out the problems that should be paid attention to in the protection of IGBT.
本文论述了IGBT的栅驱动电压和栅电流的设计,指出了对IGBT施加保护时要注意的问题。
An assistant 380V AC-input and multi-output switching power supply is introduced which is used in thick-film driving circuits for large-power IGBT(Insulated Gate Bipolar Transistor).
介绍了一种用于大功率IGBT厚膜驱动电路的380V系统输入、多路输出辅助开关电源。
This paper introduces the application of IGBT, EXB841 and LEM models in high power PWM DC servo driving system, and the EMCD of driving system.
本文介绍IGBT、EXB841和LEM模块在大功率PW M直流伺服驱动系统中的应用和系统抗干扰设计。
IGBT single tube driving circuit's function is relatively simple, only a soft shutdown and over-current protection.
单管IGBT驱动电路的功能比较简单,只具有软关断和过流保护功能。
This paper introduces the basic requisition, grid driving power, grid resistance and driving circuit modality of the IGBT. Furthermore, introduces the driving module M57962L of the driving circuit.
介绍了构成IGBT驱动电路的基本要求、栅极驱动功率、栅极电阻和驱动电路形式、常用的驱动模块M 57962l等。
The practical prove that a set of good driving circuit can shorten switch time, reduce switch wastage and it makes IGBT work in ideal state;
实践证明,采用一套性能良好的驱动电路可缩短开关时间,减小开关损耗,使IGBT工作在较理想的开关状态下;
The high speed built-in HVIC provides optocoupler-less IGBT gate driving capability that further reduce the overall size of the inverter system design.
高速内置HVIC提供光耦合器的IGBT栅极驱动能力,进一步降低了逆变器系统设计的总体尺寸。
The high speed built-in HVIC provides optocoupler-less IGBT gate driving capability that further reduce the overall size of the inverter system design.
高速内置HVIC提供光耦合器的IGBT栅极驱动能力,进一步降低了逆变器系统设计的总体尺寸。
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