使用闭环双比较器的弛豫振荡器用于生物医学应用

Theodora Valerie, D. Garinto, Prapto Nugroho, A. Syahriar, Eka Samsul Ma'arif
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引用次数: 0

摘要

人们对健康的日益关注推动了对高性能生物医学设备和电路的研究,例如传感器和芯片上的植入式系统。对于这些生物医学设备来说,在相同的低频下工作对于治疗某些器官和疾病是很重要的。因此,时钟发生器需要能够提供最小尺寸和高可靠性的低频时钟脉冲。这些限制将电路设计中的功耗和生产成本提升到关键参数。一个有希望的候选者是弛豫振荡器,它具有良好的片上兼容性和优越的频率稳定性。本文提出了一种采用闭环双比较器的新型弛豫振荡器。在所有可能的组合中替换电阻器和电容器的值,可以产生50Hz至2.5kHz频段的频率。仿真和实验结果表明,基于闭环双比较器的弛豫振荡器具有低频率、低成本和更简单的特点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Relaxation Oscillator Using Closed-loop Dual Comparator for Biomedical Applications
People's rising concerns about health have fueled research into high-performance biomedical devices and circuits, such as sensors and implantable systems on a chip. It is important for these biomedical devices to operate at the same low frequency to treat certain organs and diseases. Thus, the clock generator needs to be able to provide low frequency clock pulses with minimal size and high reliability. These constraints elevate power consumption and production cost within the circuit design to key parameters. One promising candidate is relaxation oscillator which has good on-chip compatibility, and superior frequency stability. This paper proposes a novel relaxation oscillator using closed-loop dual comparator. A frequency in the band of 50Hz to 2.5kHz can be generated by replacing the value of resistors and capacitor in all possible combinations. The simulation and experimental result confirm that closed-loop dual comparator-based relaxation oscillator provides low frequency with lower cost and more simplicity due to fewer components.
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