An induction furnace employing a 100kHz mosfet full-bridge current-source load-resonant inverter

被引:0
|
作者
Khan, I [1 ]
Tapson, J [1 ]
de Vries, I [1 ]
机构
[1] Cape Technikon, Sch Elect Engn, ZA-8000 Cape Town, South Africa
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中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
An induction furnace using a current-source, full-bridge load-resonant MOSFET inverter suitable for melting small amounts of precious metal (gold and platinum) is presented. Melting times of 25 seconds were achieved at a power level of approximately 900 watts. A parallel resonant topology was employed to resonate at 100kHz. The full-bridge or H-bridge output stage was used to provide power input to the load in two quadrants. Two important reasons for utilising the current-fed, full-bridge topology in this application is: (1) it has an inherent short-circuit protection capability and, (2) it has a simple design structure, using few components, which has been proved to be advantageous over the other inverter topologies, The induction-heating load is driven at its resonant frequency, by the inverter. This ensures maximum efficiency and power transfer, with zero voltage switching, A simple but effective gate drive and control timing circuit was applied. The compact layout of the inverter suppressed ringing between parasitic lead-inductance connections and the drain-source capacitance of the MOSFETs. The induction furnace operates effectively in open loop throughout the heating cycle. The performance was tested on a 100Khz prototype, rated at approximately 1kW, An analysis and experimental results are presented.
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页码:530 / 534
页数:5
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