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Design of adaptive supply voltage for sub-threshold logic based on sub-1 V bandgap reference circuit

机译:基于低于1 V的带隙基准电路的亚阈值逻辑的自适应电源电压设计

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This paper presents the design methodology to produce an adaptive supply voltage, which is used to drive digital sub-threshold logic system. Design guidelines to maintain constant speed and power via adaptive V_(DD) regulation are presented first. Then the paper discusses modification of sub-1 V bandgap reference (BGR) circuits using dynamic threshold MOSFET technique to provide the necessary adaptive reference voltage. Another well-known sub-1 V BGR circuit using current mode technique is also fabricated and compared. Both circuits are implemented in CMOS 0.18 μm technology. Empirical data from SPICE simulation and first order approximation techniques are used to derive analytical design models used inside BGR circuit. Measurement results of both the fabricated circuits show reference voltage output of 500 mV range; which are in good match of SPICE simulation.
机译:本文提出了产生自适应电源电压的设计方法,该电压用于驱动数字亚阈值逻辑系统。首先介绍了通过自适应V_(DD)调节来保持恒定速度和功率的设计指南。然后,本文讨论了使用动态阈值MOSFET技术对亚1 V带隙基准(BGR)电路进行的修改,以提供必要的自适应基准电压。还制作并比较了另一种使用电流模式技术的众所周知的低于1 V BGR电路。两种电路均采用CMOS 0.18μm技术实现。来自SPICE仿真和一阶逼近技术的经验数据可用于推导BGR电路内部使用的分析设计模型。两种电路的测量结果均显示500 mV范围内的参考电压输出。与SPICE仿真非常匹配。

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