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An evaluation of MOS interface-trap charge pump as an ultralow constant-current generator

机译:MOS接口阱电荷泵作为超低恒流发生器的评估

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Explores the MOS interface-trap charge-pump as an ultralow constant-current generator for analog CMOS applications. Charge pumping techniques in general are more suitable than conventional continuous-time techniques for ultralow current generation because the linear controllability of current by frequency is maintained regardless of the level of current. An interface-trap pump has the same property but the minimum charge it puts out per cycle is at least two orders of magnitude smaller than that of a switched-capacitor charge pump. This helps generate the same current more accurately at a much higher frequency with a much smaller filter capacitance. The paper presents a simplified model of the terminal characteristics of the interface-trap pump and an evaluation of its performance as a stand-alone current generator. Cascoding and complementary pumping are introduced as measures of performance improvement. Temperature sensitivity, pulse feedthrough, controllability, matching, reliability, and trimming issues are addressed. Transconductor circuits built with the charge pump are presented and experimentally evaluated.
机译:探索MOS接口陷阱电荷泵,将其用作用于模拟CMOS应用的超低恒定电流发生器。通常,电荷泵技术比传统的连续时间技术更适合于超低电流产生,因为无论电流水平如何,都可以保持频率对电流的线性可控制性。接口陷阱泵具有相同的属性,但每个周期释放的最小电荷至少比开关电容器电荷泵小两个数量级。这有助于以更高的频率更准确地产生相同的电流,而滤波器的电容要小得多。本文介绍了界面捕集泵终端特性的简化模型,并对其作为独立电流发生器的性能进行了评估。引入了级联和互补泵浦作为性能改进的措施。解决了温度敏感性,脉冲馈通,可控制性,匹配,可靠性和微调问题。介绍了电荷泵内置的跨导电路并进行了实验评估。

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