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机构地区:[1]华南理工大学机械与汽车工程学院,广东广州510640
出 处:《电子设计工程》2017年第23期130-134,138,共6页Electronic Design Engineering
摘 要:针对传统的晶体管焊接电源主电路存在的一些不足,设计了一种基于晶体管式的数字化微电弧焊接电源主电路,将前级逆变式与后级晶体管组结合,即前级采用逆变式结构为后级晶体管组供电,通过电压电流协调反馈调节前级输出电压,后级晶体管组通过电流负反馈调节输出所需的焊接电流和外特性,这充分发挥了两者的优势。设计了由脉冲变压器隔离的前级逆变驱动电路和由高速光耦6N137与高速驱动芯片IXDN604构成的后级晶体管高频驱动电路。驱动信号测试结果显示,驱动电路能实现对功率管的高速驱动,从而实现主电路的运行。For the shortcomings of the traditional main circuit of the transistor welding power,a main circuit of the transistor-type micro-arc welding power based on the transistor,combining the first-stage inverter with the latter-stage transistor,is designed. The former stage adopts the inverter structure to supply power for the later-stage transistor group,and it adjusts the output voltage via the coordinated control of the voltage and current. The post-stage transistor group regulates the welding current and external characteristics by the negative current feedback. This circuit makes good use of the advantages of them.The front-stage inverter drive circuit which is isolated by a pulse transformer is designed and a high-frequency drive circuit of the post-stage transistor is designed with high-speed optocoupler 6 N137 and driver chip IXDN604.The result of the drive signal shows that drive circuit can achieve high-speed transistor drive to achieve the main circuit operation.
分 类 号:TN86[电子电信—信息与通信工程]
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