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A Piecewise-Linear Compensated Bandgap Reference 被引量:5
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作者 王红义 来新泉 +1 位作者 李玉山 李先锐 《Journal of Semiconductors》 EI CAS CSCD 北大核心 2004年第7期771-777,共7页
A bandgap voltage reference is presented with a piecewise linear compensating circuit in order to reduce the temperature coefficient.The basic principle is to divide the whole operating temperature range into some su... A bandgap voltage reference is presented with a piecewise linear compensating circuit in order to reduce the temperature coefficient.The basic principle is to divide the whole operating temperature range into some sub ranges.At different temperature sub ranges the bandgap reference can be compensated by different linear functions.Since the temperature sub range is much narrower than the whole range,the compensation error can be reduced significantly.Theoretically,the precision can be improved unlimitedly if the sub ranges are narrow enough.In the given example,with only three temperature sub ranges,the temperature coefficient of a conventional bandgap reference drops from 1 5×10 -5 /℃ to 2×10 -6 /℃ over the -40℃ to 120℃ temperature range. 展开更多
关键词 bandgap voltage reference piecewise linearly compensated curvature corrected temperature coefficient reference circuits
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A 2.2-V 2.9-ppm/℃BiCMOS bandgap voltage reference with full temperature-range curvature-compensation 被引量:1
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作者 周泽坤 马颖乾 +2 位作者 明鑫 张波 李肇基 《Journal of Semiconductors》 EI CAS CSCD 北大核心 2010年第7期91-95,共5页
A high precision high-order curvature-compensated bandgap reference compatible with the standard Bi-CMOS process,which uses a simple structure to realize a novel exponential curvature compensation in lower temperature... A high precision high-order curvature-compensated bandgap reference compatible with the standard Bi-CMOS process,which uses a simple structure to realize a novel exponential curvature compensation in lower temperature ranges,and a piecewise curvature correction in higher temperature ranges,is presented.Experiment results of the proposed bandgap reference implemented with a 0.6-μm BCD process demonstrate that a temperature coefficient of 2.9 ppm/℃is realized at a 3.6-V power supply,a power supply rejection ratio of 85 dB is achieved,and the line regulation is better than 0.318 mV/V for 2.2-5 V supply voltage dissipating a maximum supply current of 45μA.The active area of the presented bandgap reference is 260×240μm;. 展开更多
关键词 high-order curvature compensation exponential curvature compensation piecewise curvature compensation BiCMOS bandgap reference temperature coefficient PSRR
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