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A fast-transient-response buck converter with Split-Type III compensation and charge-pump circuit technique

机译:具有Split-Type III补偿和电荷泵电路技术的快速瞬态响应降压转换器

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摘要

In order to achieve fast transient response and high efficiency on a CMOS DC-DC buck converter, Split-Type III (ST3) compensation technique and a charge-pump circuit would be proposed and presented in this paper. The proposed buck converter has been fabricated with a TSMC 0.35-µm CMOS 2P4M process. This compensation design tries to add a charge pump circuit into the compensator for improving its transient response time. The operating frequency of the proposed buck converter is 1MHz for input voltage 3.3V and output voltage range 1.0V–2.5V applications. The proposed structure using charge pump circuit technique can achieve fast transient response when load current changes between light load and heavy load, and vice versa. Compared with conventional Type III compensator, ST3 can reduce unnecessary area and power consumption of passive components. Measured result shows that the settling time of the converter output is less than 2 µs for a load current step of 200 mA. Peak power efficiency of 90.8% is obtained at 100 mA load current. The whole chip area is 1.49 mm×1.46 mm(include PADs).
机译:为了在CMOS DC-DC降压转换器上实现快速的瞬态响应和高效率,本文提出并提出了Split-Type III(ST3)补偿技术和电荷泵电路。拟议的降压转换器是采用TSMC 0.35 µm CMOS 2P4M工艺制造的。这种补偿设计试图在补偿器中增加电荷泵电路,以改善其瞬态响应时间。对于输入电压3.3V和输出电压范围1.0V–2.5V的应用,建议的降压转换器的工作频率为1MHz。当负载电流在轻负载和重负载之间变化时,使用电荷泵电路技术的结构可以实现快速的瞬态响应,反之亦然。与传统的III型补偿器相比,ST3可以减少无源元件的不必要面积和功耗。测量结果表明,对于200 mA的负载电流阶跃,转换器输出的建立时间小于2 µs。在100 mA负载电流下,峰值功率效率为90.8%。整个芯片面积为1.49 mm×1.46 mm(包括PAD)。

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