A Fully-Differential Delay-Line Based Control for Resonant Switched-Capacitor Converter

Alessandra Farina, Alessandro Nicolosi, E. Bonizzoni
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Abstract

This paper presents a new control method to regulate the output current of a resonant switched-capacitor converter (ReSCC). Starting from a fixed switching frequency operation, the phase-shift required to regulate the average output current is modulated through a fully-differential control scheme composed by a fully-differential OTA, a differential compensation network and two identical voltage-controlled delay lines. The proposed method eliminates any restriction on the minimum achievable phase-shift, is suitable for integration in a scaled technology and for high-frequency operation. Moreover, it allows a seamless control between output current sourcing and sinking capabilities, extending the load current range, and improving the response to load transients. A circuit design has been performed on a 110-nm BCD technology, with 3.7 V to 1.8 V voltage conversion, 60 mA of output current and 10 MHz operation. Simulations demonstrate the effectiveness of the proposed method.
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基于全差分延迟线的谐振开关电容变换器控制
提出了一种调节谐振开关电容变换器输出电流的新方法。从固定的开关频率工作开始,通过由全差分OTA、差分补偿网络和两条相同的压控延迟线组成的全差分控制方案调制调节平均输出电流所需的相移。该方法消除了对最小可实现相移的任何限制,适合于按比例集成技术和高频操作。此外,它可以无缝控制输出电流源和接收能力,扩展负载电流范围,并改善对负载瞬态的响应。在110nm BCD技术上进行了电路设计,电压转换为3.7 V至1.8 V,输出电流为60 mA,工作频率为10 MHz。仿真结果表明了该方法的有效性。
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