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Adaptive subthreshold timing-error detection 8 bit microcontroller in 65 nm CMOS

机译:自适应亚阈值定时 - 错误检测8位微控制器在65 nm cmos中

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Subthreshold voltage operation enables digital systems to operate at ultra-low energy levels. However, as the voltage is reduced into subthreshold, the required safety margins become unrealistically large due to exponential dependencies. These margins can be addressed in a system by sensors, replica-path circuits, or timing error detection (TED). Each of these methods require additional energy overhead. TED is the only method that accounts for both global and local variations. This paper presents the first TED 8 bit microcontroller that is able to operate in subthreshold. The microcontroller uses adaptable EDS circuits to adjust to system-level constraints. It is built in 65 nm CMOS, uses 10.42 pJ/instruction, occupies an area of 50,200 µm2, and operates down to 300 mV.
机译:亚阈值电压操作使数字系统能够以超低能量水平运行。然而,由于电压减少到亚阈值中,由于指数依赖性,所需的安全边距变得不切实际。这些边值可以通过传感器,副本路径电路或定时错误检测(TED)在系统中解决。这些方法中的每一种都需要额外的能量开销。 TED是唯一占全球和本地变体的方法。本文介绍了能够在亚阈值中运行的第一个8位微控制器。微控制器使用可适应的EDS电路来调整到系统级约束。它内置于65 nm CMOS,使用10.42 PJ /指令,占据50,200μm 2 的面积,操作降至300 mV。

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