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Design methodology of a non-invasive sensor to measure the current of the output capacitor for a very fast non-linear control

机译:一种非侵入式传感器的设计方法,用于测量输出电容器的电流,从而实现非常快速的非线性控制

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摘要

The combination of non-linear control and linear control proposed in [1] has a very fast transient response (voltage step from 1 V to 1.5 V in 2 mus). In order to achieve this fast transient response the non-linear scheme is based on measuring the current of the output capacitor of a Buck converter. The design of this current sensor is complex due to parasitic effects such as component tolerances (bandwidth and dc gain of the Op-Amp), aging, temperature variation, etc. A design methodology for this current sensor is proposed regarding all these effects. The sensing circuit is designed to mirror the actual capacitor current with a trans-impedance amplifier by matching phase and scaling impedances of the RLC network (C, ESR and ESL of the output capacitor). The proposed methodology has been validated by means of a buck converter switching at 5 MHz. Experimental results validate that the current sensor behaves appropriately under voltage and load steps
机译:文献[1]中提出的非线性控制和线性控制的组合具有非常快的瞬态响应(电压在2 mus内从1 V升至1.5 V)。为了实现这种快速的瞬态响应,非线性方案基于测量Buck转换器的输出电容器的电流。由于诸如组件容差(运算放大器的带宽和dc增益),老化,温度变化等寄生效应,该电流传感器的设计很复杂。针对所有这些效应,提出了该电流传感器的设计方法。通过匹配RLC网络的相位和定标阻抗(输出电容器的C,ESR和ESL),传感电路被设计为通过跨阻放大器反映实际的电容器电流。所提出的方法已经通过降压转换器以5 MHz的开关进行了验证。实验结果验证了电流传感器在电压和负载阶跃下的行为是否适当

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