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Gate Current Cancellation Using a Replica PMOS and Digital Feedback for Temperature-coefficient Reduction on an Ultra-low Power Voltage Reference

机译:栅极电流取消使用副本PMOS和数字反馈进行超低功率电压参考的温度 - 减小

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A method to cancel the gate current loading at the output of ultra-low power voltage references using a replica PMOS and digital feedback is proposed, reducing the achieved temperature coefficient (TC). A time-based ultra-low power gate current-to-digital circuit, which takes advantage of an inherently infinite current-controlled oscillator (CCO)-based integrator gain to sense picoamperes of gate current, and an intrinsically low-bandwidth sensed gate current, is implemented. In addition, the practical and the fundamental limitation on the maximum achievable resolution of the gate current sensor is derived. Furthermore, a new figure of merit (FOM) for ultra-low power voltage references is proposed, which considers not only their power consumption and TC, but also the value of its load current.
机译:提出了一种使用复制PMOS和数字反馈在超低功率电压参考的输出处取消栅极电流加载的方法,降低了实现的温度系数(TC)。 基于时间的超低功率栅极电流电路,其利用固有的无限电流控制的振荡器(CCO)基于积分器增益,以感测栅极电流的微微振动器,以及本质上低带宽感测的栅极电流 ,是实施的。 此外,导出了对最大栅极电流传感器的最大可实现分辨率的实际和基本限制。 此外,提出了一种用于超低功率电压参考的新的优点(FOM)的数字(FOM),这不仅考虑了它们的功耗和TC,还考虑了其负载电流的值。

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