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Sub-1-V Fast-Response Hysteresis-Controlled CMOS Buck Converter Using Adaptive Ramp Techniques

机译:采用自适应斜坡技术的Sub-1-V快速响应迟滞控制CMOS Buck转换器

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This paper presents a sub-1-V fast-response hysteresis-controlled buck converter using adaptive ramp techniques. The proposed buck converter can be operated at a lower supply voltage and adopts the inverter-based low-voltage error amplifier, which is better than conventional two-stage amplifiers in the low-voltage applications. Using hysteresis-controlled and fixed-voltage band techniques, the proposed buck converter can improve the transient response. Moreover, the sub-1-V structure allows the proposed converter to consume low power dissipation. The proposed chip has been implemented with TSMC 0.18-$mu{rm m}$ 1P6M CMOS processes. The operating frequency of the proposed converter is from 0.5 to 1.25 MHz, with an inductor of 4.7 $mu{rm H}$ and a capacitor of 47 $mu{rm F}$. Experimental results show that the proposed converter achieves fast transient response under 11 $mu{rm s}$ and can be directly powered with 1-V supply voltage. In addition, the output voltage is 0.5 V, the load current is 300 mA, and the power efficiency can be up to 91.5%.
机译:本文提出了一种采用自适应斜坡技术的低于1V的快速响应滞环控制的降压转换器。提出的降压转换器可以在较低的电源电压下运行,并采用基于逆变器的低压误差放大器,在低压应用中优于传统的两级放大器。利用磁滞控制和固定电压带技术,提出的降压转换器可以改善瞬态响应。此外,低于1 V的结构允许所建议的转换器消耗低功耗。拟议中的芯片已采用TSMC 0.18- $ mu {rm m} $ 1P6M CMOS工艺实现。拟议的转换器的工作频率为0.5到1.25 MHz,电感为4.7 $ mu {rm H} $ 和47个 $ mu {rm F} $ 的电容器。实验结果表明,所提出的转换器在11 $ mu {rm s} $ 下可以实现快速瞬态响应,并且可以直接使用1V电源电压。另外,输出电压为0.5 V,负载电流为300 mA,功率效率最高可达91.5%。

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