DocumentCode :
51775
Title :
A CMOS Temperature Sensor With a Voltage-Calibrated Inaccuracy of \\pm 0.15  ^{\\circ} C (3
Author :
Souri, K. ; Youngcheol Chae ; Makinwa, Kofi A. A.
Author_Institution :
DIMES, TU-Delft, Delft, Netherlands
Volume :
48
Issue :
1
fYear :
2013
fDate :
Jan. 2013
Firstpage :
292
Lastpage :
301
Abstract :
This paper describes the design of a low power, energy-efficient CMOS smart temperature sensor intended for RFID temperature sensing. The BJT-based sensor employs an energy- efficient 2nd-order zoom ADC, which combines a coarse 5-bit SAR conversion with a fine 10-bit ΔΣ conversion. Moreover, a new integration scheme is proposed that halves the conversion time, while requiring no extra supply current. To meet the stringent cost constraints on RFID tags, a fast voltage calibration technique is used, which can be carried out in only 200 msec. After batch calibration and an individual room-temperature calibration, the sensor achieves an inaccuracy of ±0.15°C (3σ) from -55°C to 125°C . Over the same range, devices from a second lot achieved an inaccuracy of ±0.25°C (3σ) in both ceramic and plastic packages. The sensor occupies 0.08 mm2 in a 0.16 μm CMOS process, draws 3.4 μA from a 1.5 V to 2 V supply, and achieves a resolution of 20 mK in a conversion time of 5.3 msec. This corresponds to a minimum energy dissipation of 27 nJ per conversion.
Keywords :
CMOS integrated circuits; bipolar transistors; intelligent sensors; radiofrequency identification; sigma-delta modulation; temperature sensors; wireless sensor networks; ΔΣ conversion; BJT-based sensor; CMOS process; RFID tags; RFID temperature sensing; batch calibration; ceramic packages; coarse SAR conversion; current 3.4 muA; energy 27 nJ; energy- efficient 2nd-order zoom ADC; energy-efficient CMOS smart temperature sensor; individual room-temperature calibration; integration scheme; plastic packages; size 0.16 mum; temperature -55 degC to 125 degC; time 200 ms; time 5.3 ms; voltage 1.5 V to 2 V; voltage-calibrated inaccuracy; word length 10 bit; word length 5 bit; Accuracy; Calibration; Capacitors; Clocks; RFID tags; Temperature measurement; Temperature sensors; Calibration; SAR; sigma-delta modulation; smart sensors; temperature sensor; trimming;
fLanguage :
English
Journal_Title :
Solid-State Circuits, IEEE Journal of
Publisher :
ieee
ISSN :
0018-9200
Type :
jour
DOI :
10.1109/JSSC.2012.2214831
Filename :
6323049
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