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A 5.43-μW 0.8-V subthreshold current-sensing ΣΔ modulator for low-noise sensor interfaces

机译:用于低噪声传感器接口的5.43-μW0.8V亚阈值电流传感ΣΔ调制器

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A micro-watt power subthreshold current modulator suitable for low-power and low-noise sensor interfaces is presented. The prototype design is based on Subthreshold Source Coupled Logic (STSCL) cells and implemented in a 0.18 μπι standard CMOS technology. The modulator operates with the supply voltage of 0.8 V which is significantly lower than the nominal supply of the technology node (1.8 V). It consumes 5.43 μW of power at the maximum bandwidth of 20 kHz. The obtainable current-sensing resolution ranges from ENOB=7.1 bits at a 5 kHz bandwidth to ENOB=6.5 bits at a 20 kHz bandwidth. The obtained power-efficiency of 1.5 pJ per conversion outperforms any existing current-mode analog-to-digital converter (ADC) design and is comparable to conventional voltage-mode Continuous-Time (CT) ΣΔ modulators. The modulator generates very low levels of switching noise thanks to the continuous-time operation and subthreshold current-mode circuits that draw a constant subthreshold current from the voltage supply. The modulator is used as an interface for sensors with current-mode output in ultra low-power conditions and can also be used for power monitoring circuits.
机译:适用于低功耗和低噪声传感器接口的微瓦功率亚阈值电流调制器呈现。原型设计是基于亚阈值源极耦合逻辑(STSCL)细胞,并在0.18μπι标准CMOS技术来实现。调制器与0.8V,其比技术节点(1.8 V)的标称电源显著较低的电源电压操作。它消耗5.43μW功率在20千赫的最大带宽。从ENOB = 7.1比特所得到的电流检测的分辨率的范围在5千赫带宽ENOB = 6.5比特以20千赫的带宽。 1.5 PJ的每次转换所获得的功率效率优于任何现有的电流模式模拟数字转换器(ADC)设计并与常规电压模式连续时间(CT)ΣΔ调制器。该调制器产生的开关噪声由于连续时间操作,并且绘制从所述电压供给的恒定亚阈值电流的亚阈值电流模式电路非常低的水平。该调制器被用作用于在超低功率条件电流模式输出传感器的接口,并且还可以用于功率监视电路。

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