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自校正型CMOS数字温度传感器
引用本文:姜慧强,陈旭斌,莫炯炯,王志宇,刘家瑞,陈华,郁发新.自校正型CMOS数字温度传感器[J].电子学报,2017,45(4):944-949.
作者姓名:姜慧强  陈旭斌  莫炯炯  王志宇  刘家瑞  陈华  郁发新
作者单位:浙江大学航空航天学院, 浙江杭州 310027
基金项目:国家自然科学基金,中央高校基本科研业务费专项资助课题
摘    要:介绍了一种CMOS数字温度传感器的设计方法,并针对因工艺偏差所导致一致性差、成品率低的问题提出一种新型自校正技术.利用自校正技术可以有效抑制温度传感器核心模块的基准电压随工艺波动而变化,改善芯片之间的一致性.文中设置不同的工艺角对基准电压源进行仿真,通过对比开启与关闭自校正模块状态下基准电压的最大偏差,验证了自校正技术的有效性.本设计采用CSMCB5212 0.5 μm CMOS工艺实现,提供SPI数字接口,输出10-bit温度值.实际测试结果表明该温度传感器在-35℃~105℃温度范围内温度精度±1℃,整体功耗小于0.6mW.

关 键 词:温度传感器  自校正  一致性  
收稿时间:2015-12-25

CMOS Digital Temperature Sensor with Self-Correcting Technique
JIANG Hui-qiang,CHEN Xu-bin,MO Jiong-jiong,WANG Zhi-yu,LIU Jia-rui,CHEN Hua,YU Fa-xin.CMOS Digital Temperature Sensor with Self-Correcting Technique[J].Acta Electronica Sinica,2017,45(4):944-949.
Authors:JIANG Hui-qiang  CHEN Xu-bin  MO Jiong-jiong  WANG Zhi-yu  LIU Jia-rui  CHEN Hua  YU Fa-xin
Affiliation:School of Aeronautics and Astronautics, Zhejiang University, Hangzhou Zhejiang 310027, China
Abstract:A CMOS temperature sensor with digital output is presented,and a new self-correcting technique is proposed to solve the problem of poor consistency and low yield caused by process variations.By applying the self-correcting technique,the change of the reference voltage in the temperature sensor kernel module is effectively suppressed and the consistency among chips is obviously improved.In this paper,the reference voltage module is simulated with different process corners.By comparing the maximum deviation of the reference voltages in the open and close states of the self-correcting module,the effectiveness of self-correcting technique is validated.The complete design is fabricated in the CSMCB5212 0.5 μm CMOS process,providing an SPI digital interface with 10-bit output data.In the temperature range from-35℃ to 105℃,the inaccuracy of experiment results is merely ±1℃,and the overall power consumption is less than 0.6mW.
Keywords:temperature sensor  self-correcting  consistency
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