首页> 外文会议>Multiple-Valued Logic, 2009. ISMVL '09 >Robust Multiple-Valued Current-Mode Circuit Components Based on Adaptive Reference-Voltage Control
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Robust Multiple-Valued Current-Mode Circuit Components Based on Adaptive Reference-Voltage Control

机译:基于自适应参考电压控制的稳健多值电流模式电路元件

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Power-supply/temperature-variation-aware circuit components, such as a current source and a comparator, based on adaptive reference-voltage control are proposed for robust multiple-valued current-mode (MVCM) circuits.Since the reference-voltage level generated by the proposed reference-voltage generator is changed in proportion to the power supply, the gate-source voltage VGS of PMOS transistor at the current source becomes almost constant against the power-supply variation, which results in realization of the power-supply-tolerant current source. The use of programming the gate size at the proposed reference-voltage generator makes the logical threshold voltage at the comparator changed in accordance with the input-voltage variation due to the power-supply/temperature variation, which results in correctly recognition of the multi-level current signal. As a design example of the MVCM circuits, a seven-level current-signal detector including the current source is demonstrated under a 90 nm CMOS technology. As a result, the proposed circuit is correctly operated in the operation range 1.0 V to 1.4 V of the power supply under 25degC plusmn 50degC variation of the temperature.
机译:基于鲁棒的多值电流模式(MVCM)电路,提出了基于自适应参考电压控制的电源/温度变化感知电路组件,例如电流源和比较器。通过所提出的参考电压发生器与电源成比例地变化,电流源处的PMOS晶体管的栅极-源极电压V GS 随电源变化而变得几乎恒定,这导致耐电源电流源的实现。在所建议的参考电压发生器上使用门控尺寸进行编程,使得比较器上的逻辑阈值电压根据电源/温度变化引起的输入电压变化而变化,从而可以正确识别多路电压。电平电流信号。作为MVCM电路的设计示例,在90 nm CMOS技术下演示了包括电流源的七电平电流信号检测器。结果,所提出的电路在25°C加上50°C的温度变化下在电源的1.0 V至1.4 V的工作范围内正确工作。

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