基于平面无芯变压器的SiC MOSFET栅极隔离驱动电路优化设计与实现
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作者单位:

1.桂林理工大学;2.桂林电子科技大学;3.桂林星云电子科技有限公司

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中央引导地方科技发展资金项目(桂科ZY24212003)


Optimized Design and Implementation of a SiC MOSFET Gate-Isolated Drive Circuit Based on Planar Coreless Transformer
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Affiliation:

1.GuiLin University of Technology;2.Guilin University of Electronic Science and Technology;3.Guilin Xingyun Electronic Technology Co.Ltd

Fund Project:

The Central Guidance for Local Scientific and Technological Development Fund Project (Guike ZY24212003)

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    摘要:

    本文提出了一种基于平面无芯变压器的SiC MOSFET栅极隔离驱动电路优化设计方法。首先根据高压固态功率控制器(SSPC)需求确定电路拓扑,其次基于PCB工艺约束确定线圈宽度、直径等关键参数,建立近场耦合模型并进行联合仿真,再次根据理论和仿真分析的结果对电路参数进行了优化,最后研制了样品并进行实验及分析。实验结果表明,优化设计的栅极隔离驱动电路中平面无芯变压器直径减小至8mm,传输效率提升至大于83%,驱动SiC MOSFET开通时间不大于56μs,关断时间不大于100μs,同时实现了对场效应管开关状态的实时检测,抗干扰性显著优于传统方案。

    Abstract:

    This paper proposes an optimized design method for a gate-isolated drive circuit of SiC MOSFETs based on planar coreless transformer technology. The circuit topology was first determined according to the requirements of high-voltage solid-state power controllers (SSPCs). Following this, key parameters such as trace width and coil diameter were defined under PCB fabrication constraints, and a near-field coupling model was established for co-simulation with peripheral circuits. Subsequently, circuit parameters were optimized through theoretical and simulation analysis, culminating in the fabrication and experimental evaluation of prototype samples. Experimental results demonstrated that the optimized design achieves a planar coreless transformer diameter reduction to 8 mm, transmission efficiency exceeding 83%, and SiC MOSFET switching times of ≤56 μs (turn-on) and ≤100 μs (turn-off). Additionally, the proposed circuit enables real-time switching state detection while exhibiting significantly enhanced noise immunity compared to conventional solutions, addressing critical challenges in miniaturization and high-performance power device control.

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  • 收稿日期:2025-05-13
  • 最后修改日期:2025-11-25
  • 录用日期:2025-12-04
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