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20.3 A feedforward controlled on-chip switched-capacitor voltage regulator delivering 10W in 32nm SOI CMOS

机译:20.3一个前馈控制的片上开关电容器稳压器,可在32nm SOI CMOS中提供10W功率

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On-chip (or fully integrated) switched-capacitor (SC) voltage regulators (SCVR) have recently received a lot of attention due to their ease of monolithic integration. The use of deep trench capacitors can lead to SCVR implementations that simultaneously achieve high efficiency, high power density, and fast response time. For the application of granular power distribution of many-core microprocessor systems, the on-chip SCVR must maintain an output voltage above a certain minimum level U in order for the microprocessor core to meet setup time requirements. Following a transient load change, the output voltage typically exhibits a droop due to parasitic inductances and resistances in the power distribution network. Therefore, the steady-state output voltage is kept high enough to ensure V >V at all times, thereby introducing an output voltage overhead that leads to increased system power consumption. The output voltage droop can be reduced by implementing fast regulation and a sufficient amount of on-chip decoupling capacitance. However, a large amount of on-chip decoupling capacitance is needed to significantly reduce the droop, and it becomes impractical to implement owing to the large chip area overhead required. This paper presents a feedforward control scheme that significantly reduces the output voltage droop in the presence of a large input voltage droop following a transient event. This in turn reduces the required output voltage overhead and may lead to significant overall system power savings.
机译:片上(或完全集成)开关电容器(SCVR)稳压器(SCVR)由于易于单片集成而最近受到了广泛的关注。深沟槽电容器的使用可以导致SCVR实现,同时实现高效率,高功率密度和快速响应时间。对于多核微处理器系统的粒度配电应用,片上SCVR必须将输出电压维持在一定的最低水平U以上,以使微处理器内核满足设置时间要求。在瞬态负载变化之后,由于配电网络中的寄生电感和电阻,输出电压通常会出现下降。因此,稳态输出电压保持足够高,以确保始终保持V> V,从而引入输出电压开销,从而导致系统功耗增加。通过实现快速调节和足够的片上去耦电容,可以减少输出电压下降。然而,需要大量的芯片上去耦电容以显着减小下降,并且由于所需的大芯片面积开销而使得实现变得不切实际。本文提出了一种前馈控制方案,该方案可在瞬态事件后大输入电压下降的情况下显着降低输出电压下降。这继而减少了所需的输出电压开销,并可能导致显着的整体系统功耗节省。

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