期刊文献+

集成于无源UHF RFID标签的新结构CMOS温度传感器 被引量:7

A New CMOS Temperature Sensor Iintegrated in the Passive UHF RFID Tag*
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摘要 设计了一种集成于无源UHF RFID标签芯片的新结构温度传感器。利用高PSRR共源共栅结构的电流镜偏置电路产生两路温度系数相反的电流,实现了偏置电流对电源电压和温度补偿。与温度相关的脉冲信号由类似差分的结构产生,有效的克服了工艺偏差导致的误差。计数时钟信号由标签内部振荡器提供,振荡器频率受偏置电流控制近似与电源电压和温度无关。采用SMIC 0.18μm 2P4M CMOS工艺,仿真结果表明:电源电压为1.8V,温度在-10℃~100℃变化时,偏置电流为112 nA,标签提供的时钟信号频率为2 MHz,温度传感器有效分辨率为0.5℃/LSB,工作电流为774 nA。 A new temperature sensor integrated in the passive UHF RFID tag is designed.Two currents with the opposite temperature coefficient are generated by making use of a cascode current mirror with high PSRR,to realize the supply voltage and temperature compensation.The pulse signal related to the temperature is generated by a similar differential architecture,it effectively overcomes the errors caused by process variation.The counting clock signal is provided by the local oscillator of the tag.And the oscillator frequency controlled by the bias current is approximately independent of the supply voltage and temperature.It is implemented in SMIC 0.18μm 2P4M CMOS process,as shown in the simulation results,when the supply voltage is 1.8V and temperature ranges from-10 ℃ to 100 ℃,the bias current is 112nA,the oscillator frequency of the tag is 2MHz,and the temperature sensor achieves an effective resolution of 0.5 ℃/LSB,the working currents are 774nA.
出处 《传感技术学报》 CAS CSCD 北大核心 2011年第11期1526-1531,共6页 Chinese Journal of Sensors and Actuators
基金 国家自然科学基金项目(61072010) 国家高技术研究发展计划(863计划)(2008AA04A102)
关键词 无源RFID 温度传感器 CMOS 有效分辨率 passive RFID temperature sensor CMOS effective resolution
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参考文献12

  • 1Zhou Shenghua,Wu Nanjian.A Novel Ultra Low Power Temperature Sensor for UHF RFID Tag Chip[C]//IEEE Asian Solid-State Circuits Conference.Jeju:ASSCC,2007.464-467.
  • 2Hongwei Shen,Lilan Li,Yumei Zhou.Fully Integrated Passive UHF RFID Tag with Temperature Sensor for Environment Monitoring[C]//ASICON'07.71h International Conference.Guilin:ASIC.2007.360-363.
  • 3Kamran Souri,Kofi Makinwa.A 0.12 mm2 7.4 μW Micropower Temperature Sensor with an Inaccuracy of ±0.2 ℃ (3σ) from-30℃ to 125 ℃[C]//2010 Proceedings of ESSCIRC.Sevilla:ESSCIRC.2010.282-285.
  • 4Arbat A,Dieguez A,Samitier J.An Ultra Low Power Successive Approximation ADC with Selectable Resolution in 0.13 Mm CMOS Technology[C]//13th IEEE International Conference on Electronics,Circuits and Systems.Nice:ICECS.2006.415-418.
  • 5Poki Chen,Chun-Chi Chen,Chin-Chung Tsai,et al.A Time-toDigital-Converter-Based CMOS Smart Temperature Sensor[J].IEEE Journal of Solid-State Circuits.2005,40 (8):1642-1647.
  • 6李蕾,谢生,黄晓综.应用于无源RFID标签的CMOS温度传感器[J].传感技术学报,2010,23(8):1098-1101. 被引量:18
  • 7曹新亮,余宁梅,卫秦啸.集成CMOS温度传感器设计、实现和测试[J].传感技术学报,2010,23(1):38-42. 被引量:7
  • 8Namjun Cho,Seong-Jun Song,Sunyoung Kim,et al.A 8-μW,0.3-mm2 RF-Powered Trasponder with Temperature Sensor for Wireless Enviromental Monitoring[C]//IEEE International,Symposium on Circuits and Systems.Kobe:ISCAS,2005.47634766.
  • 9徐琮辉,高佩君,车文毅,谈熙,闫娜,闵昊.An ultra-low-power CMOS temperature sensor for RFID applications[J].Journal of Semiconductors,2009,30(4):82-85. 被引量:5
  • 10李波,吕坚,蒋亚东.一种基于0.5μmCMOS工艺的补偿型电流控制振荡器设计[J].电子器件,2009,32(1):49-52. 被引量:4

二级参考文献35

  • 1刘帘曦,杨银堂,朱樟明,雷晗.一种新型高精度RC振荡器电路设计[J].电路与系统学报,2005,10(1):147-150. 被引量:16
  • 2张洵,王鹏,靳东明.一种新型的CMOS温度传感器[J].Journal of Semiconductors,2005,26(11):2202-2207. 被引量:7
  • 3袁涛,王华,方健,李肇基.一种CMOS电流控制振荡器的分析与设计[J].微电子学,2005,35(6):662-664. 被引量:14
  • 4林赛华,杨华中.新型全CMOS片上温度传感器设计[J].Journal of Semiconductors,2006,27(3):551-555. 被引量:9
  • 5R Jacob Baker Harry WLi David E. Boyce.. CMOS Circuit Design Layout and Simulations CMOS电路设计.布局与仿真[M].机械工业出版社,2006,1:362-370.
  • 6艾伦,冯军,李志群译.CMOS模拟集成电路设计[M].北京:机械工业出版社,2005.3:367-377.
  • 7Saechi E,Bietti I,Gatta F,et al. A 2 dB NF,Fully Differential, Variable Gain, 900 MHz CMOS LNA[C]//2000 Symposium on VLSI Circuits Digest of Technical Paper. 2000: 94-97.
  • 8Krishnakumar Sundarensan. A Process and Temperature Compensation in 7-MHz CMOS Clock Oscillator[J]. IEEE JSSC 2006 141(2) : 433-442.
  • 9Olmos A A. Temperature. Compensatedfully-Trimmable on- Chip. IC. Oscillator, Proc. SBCCI2003, Sep. 2003 :181-186.
  • 10Soto M A, Sahu P K, Rueck C, et al. Distributed temperature sensor system based on Raman scattering using correlationcodes. Electron Lett, 2007, 43(16): 862.

共引文献28

同被引文献47

  • 1BAKKER J,HUIJSING H.CMOS smart temperature sensor an overview[C].Proceedings of IEEE Sensors,2002(2):1423-1427.
  • 2Yin Jun,Yi Jun,LAW M K,et al.A system-on-chip EPC Gen-2 passive UHF RFID tag with embedded temperature sensor[J]. IEEE J. Solid -State Circuits, 2010,45 ( 11 ) : 2404- 2420.
  • 3Zhou Shenghua,Wu Nanjian.A novel ultra low power tern-perature sensor for UHF RFID tag chip[C].IEEE Asian Solid-State Circuits Conference, Jeju, korea, 2007 : 464-467.
  • 4TSIVIDS Y P.Accurate analysis of temperature effects in IC-V BE characteristics with application to bandgap reference sources[J].IEEE J.Solid-State Circuits, 1980,15(6): 1076-1083.
  • 5Ferri M, Pinna D, Dallago E, et al. A 0. 35 pm CM-OS Solar Enevergy Scavenger with Power Storage Management System [ C ]// Proceedings of 5th International Conference on Ph.D. Research in Microelectronics and Electronics,2009:88-91.
  • 6Ferri M, Pinna D, Dallago E, et al. Integrated Micro-Solar CellStructures for Harvesting Supplied Micro Systems in 0. 35 m CMOS Technology [ C ]//Proceedings of the Eighth IEEE Sensors Conference 2009,2009:542-545.
  • 7Guilar N, Chert A, Kleehurg T, et al. Intagxated Solar Energy Harvesting and Storage[ C ]//Proceedings of the 2006 International Symposium on Low Power Electronics and Design,2006:20-24.
  • 8Perlaky G, Mezosi G, Zolomy I. Sensor Powering with Integrated MOS Compatible Solar Cell Array [ J ]. Proceedings of the 2006 IEEE Workshop on Design and Diagnostics of Electronic Circuits and Systems ,2006:251-253.
  • 9Arima Y ,Ehara M. On-Chip Solar Battery Structure for CMOS LSI [ J ]. IEICE Electron Express, 2006,13 ( 3 ) :287-291.
  • 10Ferri M, Pinna D, Grassi M, et al. Model of Integrated Micro Photovohaic Cell Structures for Harvesting Supplied Microsystems in O. 35 tm CMOS Technology [ C 1//IEEE Sensors 2010 Conference, 2010 232-235.

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