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A Current-Mode-Hysteretic Buck Converter With Constant-Frequency-Controlled and New Active-Current-Sensing Techniques

机译:具有恒定频率控制和新型电流传感技术的电流模式滞回降压转换器

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This article presents a hysteretic-current-controlled buck converter with constant-frequency-controlled and active-current-sensing (ACS) techniques. This converter used phase–frequency-locked techniques to achieve constant switching frequency. Even if the input voltage or output load current changes, the switching frequency will be as stable as possible at 1 MHz. The proposed ACS circuit will not generate sparks, so the current feedback loop does not need a sample-and-hold circuit, and that will reduce the transient response time. The proposed buck converter has been fabricated with TSMC 0.35 μm CMOS 2P4M technology; the total area of the chip is 1.5 mm × 1.5 mm. The measurement results of this buck converter show that the maximum power efficiency is 90% when the output voltage is 2.5 V and the load current is 300 mA. The output voltage range is 2.5–1 V, and the maximum load current is 600 mA. When the load current varies between 100 and 500 mA, the load transient response is 2.6 μs/2.2 μs and undershoot/overshoot is 20 mV/30 mV. The switching frequency of this buck converter is locked at 1 MHz and the voltage error is within 1%.
机译:本文介绍了一种滞后电流控制的降压转换器,具有恒定频率控制和有功电流传感(ACS)技术。该转换器使用相位频率锁定的技术来实现恒定的开关频率。即使输入电压或输出负载电流发生变化,开关频率也会在1 MHz处尽可能稳定。所提出的ACS电路不会产生火花,因此电流反馈回路不需要采样和保持电路,这将减少瞬态响应时间。建议的降压转换器已由TSMC 0.35制造<斜体XMLNS:MML =“http://www.w3.org/1998/math/mathml”xmlns:xlink =“http://www.w3.org/1999/xlink”>μM CMOS 2P4M技术;芯片的总面积为1.5mm×1.5毫米。该降压转换器的测量结果表明,当输出电压为2.5 V时,最大功率效率为90%,负载电流为300 mA。输出电压范围为2.5-1V,最大负载电流为600 mA。当负载电流在100到500 mA之间变化时,负载瞬态响应为2.6<斜体XMLNS:MML =“http://www.w3.org/1998/math/mathml”xmlns:xlink =“http://www.w3.org/1999/xlink”>μS / 2.2<斜体XMLNS:MML =“http://www.w3.org/1998/math/mathml”xmlns:xlink =“http://www.w3.org/1999/xlink”>μs和下冲/过冲是20 mV / 30 mV。该降压转换器的开关频率锁定在1 MHz,电压误差在1%范围内。

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