...
首页> 外文期刊>Industrial Electronics, IEEE Transactions on >An Accurate BJT-Based CMOS Temperature Sensor With Duty-Cycle-Modulated Output
【24h】

An Accurate BJT-Based CMOS Temperature Sensor With Duty-Cycle-Modulated Output

机译:具有占空比调制输出的基于BJT的精确CMOS温度传感器

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

This paper describes the design of a precision bipolar junction transistor based temperature sensor implemented in standard 0.7-μm CMOS technology. It employs substrate p-n-ps as sensing elements, which makes it insensitive to the effects of mechanical (packaging) stress and facilitates the use of low-cost packaging technologies. The sensor outputs a duty-cycle-modulated signal, which can easily be interfaced to the digital world and, after low-pass filtering, to the analog world. In order to eliminate the errors caused by the component mismatch, chopping and dynamic element matching (DEM) techniques have been applied. The required component shuffling was done concurrently rather than sequentially, resulting in a fast DEM scheme that saves energy without degrading accuracy. After a single-temperature trim, the sensor's inaccuracy is ±0.1 °C (-20 to 60 °C) and ±0.3 °C (-45 to 130 °C), respectively. Measurements of sensors in different packages show that the package-induced shift is less than 0.1 °C. Measurements of eight sensors over 367 days show that their output drift is less than 6 mK. While dissipating only 200 μW, the sensor achieves a resolution of 3 mK (rms) in a 1.8-ms measurement time, and a state-of-the-art resolution figure of merit of 3.2 pJK2. This combination of high accuracy, high resolution, high speed, and low-energy consumption makes this sensor suited for commercial and industrial applications.
机译:本文介绍了采用标准的0.7μmCMOS技术实现的基于精密双极结型晶体管的温度传感器的设计。它采用基板p-n-ps作为传感元件,这使其对机械(封装)应力的影响不敏感,并促进了低成本封装技术的使用。传感器输出一个占空比调制信号,该信号可以轻松连接到数字世界,经过低通滤波后,可以连接到模拟世界。为了消除由组件不匹配引起的错误,已经应用了斩波和动态元素匹配(DEM)技术。所需的组件改组是同时进行的,而不是顺序进行的,从而形成了一种快速的DEM方案,可以在不降低精度的情况下节省能量。经过单温度调整后,传感器的精度分别为±0.1°C(-20至60°C)和±0.3°C(-45至130°C)。在不同包装中的传感器测量结果表明,包装引起的偏移小于0.1°C。在367天的时间内对八个传感器进行的测量表明,它们的输出漂移小于6 mK。该传感器仅耗散200μW的功率,在1.8 ms的测量时间内实现了3 mK(rms)的分辨率,而最新的分辨率品质因数为3.2 pJK2。高精度,高分辨率,高速和低能耗的结合使该传感器适用于商业和工业应用。

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