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基于曲率补偿的电流基准源的设计
引用本文:应建华,罗鸣,张姣阳. 基于曲率补偿的电流基准源的设计[J]. 电子技术应用, 2007, 33(9): 158-160
作者姓名:应建华  罗鸣  张姣阳
作者单位:华中科技大学,电子科学与技术系,湖北,武汉,430074;华中科技大学,电子科学与技术系,湖北,武汉,430074;华中科技大学,电子科学与技术系,湖北,武汉,430074
摘    要:提出了一种利用分支电流的正负温度系数进行温度补偿的新型设计方法。在传统的电流温度补偿的基础上,通过增加一条分支电流对温度特性进行曲率补偿(二阶温度补偿),并且详细地分析了补偿原理。使用XFAB公司的0.6μm CMOS工艺模型进行仿真模拟,得到了较好的仿真结果:在-40℃~135℃温度范围内,其温度系数达到39.8ppm/℃。

关 键 词:电流基准源  曲率补偿  温度补偿

Design of a current reference with curvature temperature compensation
YING Jian Hua,LUO Ming,ZHANG Jiao Yang. Design of a current reference with curvature temperature compensation[J]. Application of Electronic Technique, 2007, 33(9): 158-160
Authors:YING Jian Hua  LUO Ming  ZHANG Jiao Yang
Abstract:A super performance CMOS current reference circuit with temperature compensation is presented, which uses curvature temperature compensation with three branch currents having positive and negative temperature for fine adjustment. Comparing to the typical temperature compensation, the third branch current can be added to optimize the temperature features by curvature compensation. The principle of compensation is detailedly produced and 0.6μm CMOS process are used for simulation. The results are shown that the temperature coefficient of the current reference can reach 39.8 ppm/℃ with in temperature range from-40℃ to 135℃.
Keywords:current reference   curvature compensation   temperature compensation
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