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Design Optimization of MEMS based LLC Tunable Resonant Converter for Power Supplies on Chip

机译:基于MEMS的LLC可调谐谐振片上电源设计优化

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摘要

In this paper, a novel MEMS based LLC converter is proposed for on chip power supplies. The design is optimized based on commercially available Metal MUMPs process for fabrication. The resonant frequency is optimized at 20MHz and MEMS based variable capacitor is fabricated on the chip to tune the peak resonance frequency of circuit which varies due to the load variations. The Design is simulated in FEM based numerical software COMSOL and Intellisuite. According to analysis the magnetizing inductance of 42nH and leakage inductance of 40nH has been achieved from 16 mm2 rectangular coil transformer. The total capacitance of 1500pF has been achieved from parallel plate capacitors and variation of 3pF has been achieved from variable capacitor.
机译:在本文中,提出了一种新颖的基于MEMS的LLC转换器用于片上电源。该设计基于可商购的Metal MUMPs制造工艺进行了优化。谐振频率在20MHz时进行了优化,并且在芯片上制造了基于MEMS的可变电容器,以调节电路的峰值谐振频率,该峰值谐振频率会因负载变化而变化。在基于FEM的数值软件COMSOL和Intellisuite中对设计进行了仿真。根据分析,使用16 mm2矩形线圈变压器可获得42nH的励磁电感和40nH的漏感。并联平板电容器的总电容为1500pF,可变电容器的总电容为3pF。

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