基于第二代电流输送装置的有源片上稳压器

E. Ashenafi, M. Chowdhury
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引用次数: 1

摘要

电压调节器用于为微处理器提供稳定的电源。传统的片外开关稳压器由无源浮动电感组成,由于功耗过大和寄生效应,难以在芯片内实现。此外,电感占用非常大的芯片面积,阻碍了缩小过程。这些限制使得基于无源电感的片上稳压器对于片上系统(SOC)和多核/多核环境非常没有吸引力。为了实现稳压器的完全片上集成,本文提出了一种有源电路技术来取代无源电感并模拟降压变换器所需的电感行为。该方案在单个有源电路中结合了一个线性电压调节器和一个开关电压调节器。两个调节器的合并将避免使用物理电感器的需要,而是利用基于第二代电流输送的有源滤波器以及逆变器开关和电压跟随器电流源。在Cadence Virtuoso工具上使用0.5μm技术演示了电路的设计。仿真结果和MATLAB图验证了所提出的设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Active on-chip voltage regulator based on second generation current conveyor
Voltage regulators are used to provide a stable power supply to the microprocessor. The conventional off-chip switching voltage regulator comprises of a passive floating inductor, which is difficult to be implemented inside the chip due to excessive power dissipation and parasitic effects. Additionally, the inductor takes very large chip area hampering the scaling down process. These limitations make passive inductor based on-chip regulator very unattractive for system-on-a-chip (SOC) and multi-/many-core environments. To facilitate complete on-chip integration of a voltage regulator this paper presents an active circuit technique to replace the passive inductor and emulate the inductive behavior required in a buck convertor. The proposed scheme combines a linear and a switching voltage regulator together in single active circuit. The amalgamation of the two regulators will obviate the need to use a physical inductor, instead utilize a second-generation current conveyor based active filter along with an inverter switch and a voltage follower current source. Design of the circuit is demonstrated using 0.5μm technology on Cadence Virtuoso tools. Simulation results and MATLAB plots are provided to verify the proposed design.
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