具有快速自适应死区控制的峰值效率为94.6%的DCM降压变换器

S. Manohar, P. Balsara
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引用次数: 19

摘要

本文提出了一种基于动态逻辑的自适应死区控制电路(DADTC),用于快速、自适应地控制工作在断续导通模式(DCM)下的降压稳压器,以最小化体二极管的导通损耗和死区时间。死区时间是提高低压变流器效率的重要指标。与现有技术相比,DADTC提供基于负载的即时传感和反馈,可显着减少死区时间,并实现更高的转换器整体功率效率。此外,该降压变换器具有固有的脉冲跳变模式,可降低轻载时的开关频率,进一步提高轻载效率。buck稳压器采用0.35 μm CMOS工艺,输入电压范围为1.8V-3V,负载电流范围为1mA-200mA。测量结果表明,当负载电流大于5mA时,该设计可实现94.6%的峰值功率效率和> ~89%的高总功率效率,且在VIN = 1.8V时,传感延迟仅为~5ns。
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94.6% peak efficiency DCM buck converter with fast adaptive dead-time control
This paper presents a dynamic logic based adaptive dead-time control circuit (DADTC) for fast and adaptive control to minimize body diode conduction losses and dead-time of the buck regulator operating in discontinuous conduction mode (DCM). Dead-time is an important metric for improving efficiency of low voltage converters. DADTC provides instant sensing and feedback based on the load to minimize dead-time significantly compared to prior art and enables higher overall power efficiency of the converter. Further, the presented buck converter has inherent pulse skipping mode to lower the switching frequency at light loads further enhancing light load efficiency. The buck regulator was fabricated in 0.35 μm CMOS process with an input voltage range of 1.8V-3V and load current range of 1mA-200mA. Measurement results show that the proposed design achieves peak power efficiency of 94.6% and a high overall power efficiency ( > ~89%) for load currents greater than 5mA with a sensing delay of only ~5ns for VIN = 1.8V.
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