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Lossless average inductor current sensor for CMOS integrated DC-DC converters operating at high frequencies

机译:用于在高频下运行的CMOS集成DC-DC转换器的无损平均电感器电流传感器

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摘要

A novel average inductor current sensing circuit integrable in CMOS technologies is presented. It is designed for DC-DC converters using buck, boost, or buck-boost topologies and operating in continuous conduction mode at high switching frequencies. The average inductor current value is used by the DC-DC controllers to increase the light load power conversion efficiency (e.g., selection of the modulation mode, selection of the dynamic width of the transistors). It can also be used to perform the constant current charging phase when charging lithium-ion batteries, or to simply detect overcurrent faults. The proposed average inductor current sensing method is based on the lossless sensing MOSFET principle widely used in monolithic CMOS integrated DC-DC converters for measuring the current flowing through the power switches. It consists of taking a sample of the current flowing through the power switches at a specific point in time during each energizing and de-energizing cycle of the inductor. By controlling precisely the point in time at which this sample is taken, the average inductor current value can be sensed directly. The circuit simulations were done with the Cadence Spectre simulator. The improvements compared to the basic sensing MOSFET principle are a lower power consumption because no high bandwidth amplifier is required, and less noise emission because the sensing MOSFET is no more switched. Additionally, the novel average inductor current sensing circuit overcomes the low bandwidth limitation previously associated with the sensing MOSFET principle, thus enabling it to be used in DC-DC converters operating at switching frequencies up to 10 MHz and above.
机译:提出了一种可集成在CMOS技术中的新型平均电感电流检测电路。它专为使用降压,升压或降压-升压拓扑结构且在高开关频率下以连续导通模式工作的DC-DC转换器而设计。 DC-DC控制器使用平均电感器电流值来提高轻载功率转换效率(例如,选择调制模式,选择晶体管的动态宽度)。当为锂离子电池充电时,它还可用于执行恒流充电阶段,或仅用于检测过电流故障。提出的平均电感器电流感测方法基于无损感测MOSFET原理,该原理广泛用于单片CMOS集成DC-DC转换器中,用于测量流经电源开关的电流。它包括在电感器的每个通电和断电周期中的特定时间点,对流经电源开关的电流进行采样。通过精确控制采样时间,可以直接感应平均电感电流值。电路仿真是使用Cadence Spectre模拟器完成的。与基本感应MOSFET原理相比,改进之处在于功耗更低,因为不需要高带宽放大器,而噪声发射则更少,因为感应MOSFET不再开关。此外,新颖的平均电感器电流感测电路克服了先前与感测MOSFET原理相关的低带宽限制,因此使其可用于工作在高达10 MHz或更高的开关频率的DC-DC转换器中。

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