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一种高精度低温漂带隙基准源的设计
引用本文:程知群,徐延延.一种高精度低温漂带隙基准源的设计[J].杭州电子科技大学学报,2013(1):1-4.
作者姓名:程知群  徐延延
作者单位:杭州电子科技大学射频电路与系统教育部重点实验室,浙江杭州310018
摘    要:该文参考了带隙基准电压源领域的现阶段技术,结合自偏置共源共栅电流镜以及适当的启动电路、补偿电路,设计了一种高精度、低温漂的多输出带隙基准电路。首先简述了传统带隙电压基准的基本原理,然后详细阐述了具体的各电路设计过程。该基准电压源可广泛应用于电源管理芯片等对能耗要求极高的芯片中。

关 键 词:基准电压源  自偏置  曲率补偿  温度系数

Design of a Low Temperature Floats Bandgap Reference with High Precision
CHENG Zhi-qun,XU Yan-yan.Design of a Low Temperature Floats Bandgap Reference with High Precision[J].Journal of Hangzhou Dianzi University,2013(1):1-4.
Authors:CHENG Zhi-qun  XU Yan-yan
Affiliation:(Key Lab. of RF Circuit and System, Education Ministry, Hangzhou Dianzi University, Hangzhou Zhejiang 310018, China)
Abstract:This paper takes the presently band-gap reference technique as foundation, a high precision and low temperature floats bandgap reference with multi-output is designed, the voltage reference is acquired to- gether with the self-biased cascode current mirror structure and setup circuit and curvature compensation cir- cuit. Firstly, the paper describes the characteristics of traditional band-gap reference ; Then the design process of each part circuit are described. According to the simulation results, over the temperature range of -30- 110℃ the temperature coefficient is 2.36 × 10 ^-6V/℃ and the PSRR is - 85.6dB at low frequency. The de- signed voltage reference can be widely used in power management chip and so on.
Keywords:voltage reference  self-biased  curvature compensation  temperature coefficient
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