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A sub-micron CMOS programmable charge pump for implantable pacemaker

机译:用于植入式起搏器的亚微米CMOS可编程电荷泵

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摘要

In pacemaker design the main concerns are reliability, functionality, operating life and miniaturization. A fundamental role in miniaturization is due to the increased circuit integration; hence low power circuit solutions that can be integrated in sub-micron CMOS technology are highly desirable. This work proposes a voltage multiplier suitable for pulse output generation in an implantable pacemaker, implemented in a standard, low-cost CMOS 0.8 μm technology. The circuit can operate within a supply voltage range of 2.8 V to 2 V, corresponding to the voltage capability provided by the single lithium iodine cell, ubiquitously used in pacemaker. Fine programmability of the output has been achieved, thus allowing the choice of the optimum tradeoff between stimulation efficacy and battery longevity. Moreover the proposed solution takes care of minimizing the parasitic coupling and disturbances between the charge pump and other blocks in the system. Finally the measured steady state current consumption is smaller than 2 μA @ V{sub}(dd) = 2.8 V.
机译:在起搏器设计中,主要考虑的问题是可靠性,功能性,使用寿命和小型化。微型化的基本作用是由于增加了电路集成度。因此,非常需要能够集成在亚微米CMOS技术中的低功耗电路解决方案。这项工作提出了一种电压倍增器,该电压倍增器适用于可植入式起搏器中的脉冲输出,采用标准的低成本CMOS 0.8μm技术实现。该电路可以在2.8 V至2 V的电源电压范围内工作,这与起搏器中普遍使用的单个锂碘电池提供的电压容量相对应。已经实现了输出的精细可编程性,因此可以在刺激效果和电池寿命之间选择最佳折衷方案。此外,所提出的解决方案要注意使电荷泵与系统中其他模块之间的寄生耦合和干扰最小化。最后,在V {sub}(dd)= 2.8 V时,测得的稳态电流消耗小于2μA。

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