An area efficient temperature sensor with software calibration for mobile application

W. Hwang, Seoungjae Yoo, Hyungjong Ko, ByeongHa Park
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引用次数: 7

Abstract

This paper presents an area-efficient temperature sensor with 1°C resolution based on a successive approximation algorithm. SoC requires several die temperature sensors to be integrated in a chip to manage the performance because die temperature directly affects leakage current level and performance of clock-based digital circuits. However, the size of temperatures sensor restricts the use of sensor in several places in a chip. The proposed area efficient temperature sensor uses only 0.13mm2 in Samsung 45nm CMOS process to obtain 1°C resolution in the range from −15°C to 125°C. For accurate temperature sensing, SAR type algorithm and software-based 2-point calibration method are adopted. After the 2-point calibration, the temperature sensor achieves 1°C resolution with ±2°C accuracy and the power consumption is 360uW in 1.8V.
一种适用于移动应用的具有软件校准功能的区域高效温度传感器
本文提出了一种基于逐次逼近算法的1°C分辨率的面积高效温度传感器。SoC需要在芯片中集成多个芯片温度传感器来管理性能,因为芯片温度直接影响基于时钟的数字电路的泄漏电流水平和性能。然而,温度传感器的尺寸限制了传感器在芯片中多个位置的使用。提出的面积高效温度传感器在三星45nm CMOS工艺中仅使用0.13mm2,在- 15°C至125°C范围内获得1°C分辨率。为了实现精确的温度感知,采用了SAR型算法和基于软件的两点定标方法。2点校准后,温度传感器分辨率为1℃,精度为±2℃,1.8V下功耗为360uW。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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