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A 10 W On-Chip Switched Capacitor Voltage Regulator With Feedforward Regulation Capability for Granular Microprocessor Power Delivery

机译:具有前馈调节能力的10 W片上开关电容器稳压器,用于颗粒微处理器的功率输出

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Granular power delivery with per-core regulation for microprocessor power delivery has the potential to significantly improve the energy efficiency of future data centers. On-chip switched capacitor converters can enable such granular power delivery with per-core regulation given a high efficiency, high power density, fast response time, and high output power converter design. This paper details the implementation of an on-chip switched capacitor voltage regulator in a 32 nm SOI CMOS technology with deep trench capacitors. A novel feedforward control for reconfigurable switched capacitor converters is presented. The feedforward control reduces the output voltage droop following a transient load step. This leads to a reduced minimum microprocessor supply voltage, thereby reducing the overall power consumption of the microprocessor. The implemented on-chip switched capacitor voltage regulator provides a 0.7-1.1 V output voltage from 1.8 V input. It achieves a 85.1% maximum efficiency at 3.2 W/mm2 power density, a subnanosecond response time with improved minimum supply voltage capability, and a maximum output power of 10 W. For an output voltage of 850 mV, the feedforward control reduces the required voltage overhead by 60 mV for a transient load step from 10% to 100% of the nominal load. This can reduce the overall power consumption of the microprocessor by 7%.
机译:具有用于微处理器电源传输的每核调节的颗粒状电源传输有可能显着提高未来数据中心的能源效率。鉴于高效率,高功率密度,快速响应时间和高输出功率转换器设计,片上开关电容器转换器可以通过每核调节来实现这种精细的功率传输。本文详细介绍了采用深沟槽电容器的32 nm SOI CMOS技术中片上开关电容器稳压器的实现。提出了一种可重构开关电容转换器的新型前馈控制。前馈控制降低了瞬态负载阶跃后的输出电压下降。这导致减小的最小微处理器电源电压,从而减少了微处理器的总功耗。已实现的片上开关电容器稳压器从1.8 V输入提供0.7-1.1 V输出电压。在3.2 W / mm2的功率密度下,它实现了85.1%的最大效率,亚纳秒级的响应时间,改善了最小电源电压能力,最大输出功率为10W。对于850 mV的输出电压,前馈控制降低了所需的电压对于从额定负载的10%到100%的瞬态负载阶跃,最大开销为60 mV。这样可以将微处理器的总功耗降低7%。

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