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A2.1-ppm/°C current-mode CMOS bandgap reference with piecewise curvature compensation
13
Citations
7
References
2017
Year
Unknown Venue
Bandgap ReferenceElectrical EngineeringEngineeringAnalog-to-digital ConverterData ConverterBias Temperature InstabilityAnalog DesignMixed-signal Integrated CircuitLow Temperature CoefficientMicroelectronicsCmos Bandgap ReferencePiecewise Curvature Compensation
This paper presents a high-precision, low temperature coefficient (TC) CMOS bandgap reference for high-performance multi-channel ADC working under wide temperature range. A piecewise curvature compensation technique is proposed to extend its operating temperature range and keep its low temperature coefficient. A ß-compensation technique is used to cancel the PTAT and non-PTAT spread of the output due to variation of β in the BJTs. Moreover, the trimming resistors are implemented to calibrate the 1st-order temperature coefficient and absolute value of the output voltage. The bandgap reference designed in 0.18μm CMOS process has a super low temperature coefficient of 2.1ppm/°C over a wide temperature of −55 ° C to 140 ° C, making it appropriate to provide reference voltage for a high-precision ADC.
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