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A Time-Domain-Controlled Current-Mode Buck Converter With Wide Output Voltage Range

机译:具有宽输出电压范围的时域控制电流模式降压转换器

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The controller of a current-mode buck converter is realized by only time-domain circuits such as voltage-controlled oscillator (VCO), voltage-controlled delay line (VCDL), and phase detector (PD). The inductor current is sensed by a VCO, which helps improving power efficiency and eliminates the need for the slope compensation preventing the sub-harmonic oscillation. The type-II frequency compensation network is realized by a combination of VCO and VCDL without an error amplifier (EA) and RC network which may consume large power and occupy large silicon area. Instead of voltage comparator, a PD detects the error of the output voltage, which allows the switching duty cycle and thus the output voltage to be controlled in a wide range. With the proposed time-domain current-mode controller, a buck converter has been implemented in a 65-nm CMOS process. The output voltage can be regulated from 0.15 to 1.69 V from a 1.8-V input and the maximum load current is 0.6 A. The peak power efficiency is 94.9% when the output is 1.5 V and the load current is 250 mA. The load transient speed is better than 3.5 mu s for both the step-up and step-down changes of the load current by 480 mA in 0.1 mu s.
机译:电流模式降压转换器的控制器仅由时域电路实现,例如压控振荡器(VCO),压控延迟线(VCDL)和鉴相器(PD)。 VCO感测电感器电流,这有助于提高功率效率并消除了防止次谐波振荡的斜率补偿需求。 II型频率补偿网络是通过VCO和VCDL的组合实现的,而没有误差放大器(EA)和RC网络,后者可能消耗大量功率并占用较大的硅面积。 PD代替电压比较器,而是检测输出电压的误差,从而允许在宽范围内控制开关占空比,从而控制输出电压。利用所建议的时域电流模式控制器,已经在65nm CMOS工艺中实现了降压转换器。可以通过1.8V输入将输出电压调节为0.15至1.69V,最大负载电流为0.6A。当输出为1.5V且负载电流为250mA时,峰值功率效率为94.9%。对于负载电流的升压和降压变化,在0.1 µs内480 mA的负载瞬变速度均优于3.5 µs。

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