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基于新型单片机控制的SPWM的IGBT正弦波逆变中频电源的研究
引用本文:高美霞,柏建普.基于新型单片机控制的SPWM的IGBT正弦波逆变中频电源的研究[J].电源技术应用,2008(2):1-5.
作者姓名:高美霞  柏建普
作者单位:内蒙古科技大学信息工程学院 内蒙古包头014010
摘    要:针对IGBT中频电源中逆变电路这一核心,提出了一种基于87C196MC单片机中频电源控制电路。用87C196MC单片机通过汇编语言程序设计,可方便地形成3对互补具有死区时间相位互差120°的SPWM波形,产生的脉冲信号(SPWM)控制功率器件IGBT的开关时间,实现对中频电源的控制。分析和实验结果表明,此系统效率高,噪声小,体积小,使用方便,工作可靠。基于以上的优点,单片机控制的IGBT的中频电源的应用范围更加广泛,成为用于加热淬火的首选设备。

关 键 词:单片机87C196MC  功率器件IGBT  中频逆变电源  正弦波脉宽调制SPWM波形

Inverter Intermediate Frequency Induction Heating Power which Controlled by the Single-chip Computer
GAO Mei-xia BAI Jian-pu.Inverter Intermediate Frequency Induction Heating Power which Controlled by the Single-chip Computer[J].Power Supply Technologles and Applications,2008(2):1-5.
Authors:GAO Mei-xia BAI Jian-pu
Affiliation:(Information Engineering Institute Inner Mongolia University of Science and Technology, Baotou Inner Mongolia 014010, China)
Abstract:In view of the inversion circuit,the core of the IGBT intermediate frequency power,a controlling circuit of intermediate frequency power which controlled by the single-chip computer-87C196MC is proposed.Through assembly language programming,the single-chip computer(87C196MC)can conveniently forms three pairs supplementary SPWM wave which have the dead time and mutually miss a form of with each other.The pulse signal,SPWM wave,controls the switch time of the IGBT,and controls the intermediate frequency induction heating power.The analysis and the experimental result indicated that the efficiency of the system is high,the noise is small,the volume is small and the operation is reliable.Base on the above merits,the application scope of the IGBT intermediate frequency induction heating power which controlled by the single-chip computer is more widespread,and the IGBT intermediate frequency induction heating power becomes the first choice in the field of heating.
Keywords:single-chip computer-87C196MC  insulated-gate bipolar transistor(IGBT)  inversion intermediate frequency induction heating power  sine wave sinusoidal pulse width modulation(SPWM)
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