首页> 外文会议>Solid-State Circuits Conference - Digest of Technical Papers, 2009. ISSCC 2009 >A precision relaxation oscillator with a self-clocked offset-cancellation scheme for implantable biomedical SoCs
【24h】

A precision relaxation oscillator with a self-clocked offset-cancellation scheme for implantable biomedical SoCs

机译:具有可植入生物医学SoC的自时钟偏移取消方案的精密弛张振荡器

获取原文

摘要

Recently, there has been an increasing demand for SoCs in the biomedical field. In implantable applications, SoCs are designed under very stringent power and area constraints. The analog and mixed-signal circuits as well as digital circuits in those SoCs require a clock source, because clock-based signal-processing techniques, such as sampling and chopper stabilization, are often used. The primary clock source for such SoCs needs to provide good accuracy and long-term stability of the oscillation frequency foscto minimize variations and drifts of the system characteristics. A fairly pure clock signal is required to avoid signal distortion when sampling or chopping techniques are applied. Considering such a source is typically a free-running oscillator, and biomedical signals of typical interest reside at low frequencies, the close-in phase noise is important. For implantable biomedical sensor SoCs, due to high power consumption of quartz crystal oscillators and their bulky size, monolithic oscillators are preferred as a primary clock source. Relaxation oscillators can operate with low power and set their oscillation period Tosc in well-defined manner while consuming small silicon area. However, their performance is limited by process variations, noisy current sources, and noise and offset voltages of the comparators. Geraedts et al. presented an idea of subtracting a fixed charge packet and filtering out the comparator noise to improve the phase noise particularly at large offset frequencies. In this work, a self-clocked offset-cancellation scheme is presented for comparators in the relaxation oscillator, resulting in smaller frequency drifts and lower close-in phase fluctuations, which are more relevant parameters for primary clock sources in implantable biomedical SoCs.
机译:最近,在生物医学领域中对SoC的需求不断增长。在可植入应用中,SoC是在非常严格的功率和面积约束下设计的。这些SoC中的模拟和混合信号电路以及数字电路都需要时钟源,因为经常使用基于时钟的信号处理技术,例如采样和斩波器稳定化。此类SoC的主要时钟源需要提供良好的精度和振荡频率fosc的长期稳定性,以最大程度地减小系统特性的变化和漂移。当采用采样或斩波技术时,需要一个相当纯净的时钟信号来避免信号失真。考虑到这种源通常是自由运行的振荡器,并且通常感兴趣的生物医学信号位于低频,因此近相位噪声很重要。对于可植入生物医学传感器SoC,由于石英晶体振荡器的高功耗及其体积庞大,因此首选单片振荡器作为主要时钟源。张弛振荡器可以以低功耗工作,并以明确的方式设置其振荡周期Tosc,同时占用较小的硅面积。但是,它们的性能受到制程变化,噪声电流源以及比较器的噪声和失调电压的限制。 Geraedts等。提出了一种减去固定电荷包并滤除比较器噪声以改善相位噪声的想法,尤其是在大偏移频率下。在这项工作中,为张弛振荡器中的比较器提出了一种自时钟偏移消除方案,从而导致较小的频率漂移和较小的近相波动,这是可植入生物医学SoC中主要时钟源的更重要参数。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号