A High-Precision Current-Mode Bandgap Reference with Nonlinear Temperature Compensation

Author:

Chen Zhizhi12,Wang Qian1,Li Xi1,Song Sannian1,Chen Houpeng1,Song Zhitang1

Affiliation:

1. State Key Laboratory of Materials for Integrated Circuits, Shanghai Institute of Microsystem and Information Technology, Chinese Academy of Sciences, 865 Changning Road, Shanghai 200050, China

2. Schools of Microelectronics, University of Chinese Academy of Sciences, Beijing 100049, China

Abstract

A high-precision current-mode bandgap reference (BGR) circuit with a high-order temperature compensation is presented in this paper. In order to achieve a high-precision BGR circuit, the equation of the nonlinear current has been modified and the high-order term of the current flowing into the nonlinear compensation bipolar junction transistor (NLCBJT) is compensated further. According to the modified equation, two solutions are designed to improve the output accuracy of BGR circuits. The first solution is to divide the NLCBJT branch into two branches to reduce the coefficient of the nonlinear temperature compensation current. The second solution is to inject the nonlinear current into the two branches based on the first one to further eliminate the temperature coefficient (TC) of the current flowing into the NLCBJT. The proposed BGR circuit has been designed using the Semiconductor Manufacturing International Corporation (SMIC) 55 nm CMOS process. The simulation results show that the variations in currents flowing into NLCBJTs improved from 148.41 nA to 69.35 nA and 7.4 nA, respectively, the TC of the output reference current of the proposed circuit is approximately 3.78 ppm/°C at a temperature range of −50 °C to 120 °C with a supply voltage of 3.3 V, the quiescent current consumption of the entire BGR circuit is 42.13 μA, and the size of the BGR layout is 0.044 mm2, leading to the development of a high-precision BGR circuit.

Funder

National Natural Science Foundation of China

Strategic Priority Research of the Chinese Academy of Sciences

Science and Technology Council of Shanghai

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Mechanical Engineering,Control and Systems Engineering

Reference15 articles.

1. A 1.1-V Current-Mode and Piecewise-Linear Curvature-Corrected Bandgap Reference;Allen;IEEE J. Solid-State Circuits,1998

2. A 2-V 23-ΜA 5.3-ppm/°C Curvature-Compensated CMOS Bandgap Voltage Reference;Leung;IEEE J. Solid-State Circuits,2003

3. New Curvature-Compensation Technique for CMOS Bandgap Reference with Sub-1-V Operation;Ker;IEEE Trans. Circuits Syst. II,2006

4. Exponential Curvature-Compensated BiCMOS Bandgap References;Lee;IEEE J. Solid-State Circuits,1994

5. Song, B.-S., and Gray, P. (1983, January 23–25). A Precision Curvature-Compensated CMOS Bandgap Reference. Proceedings of the 1983 IEEE International Solid-State Circuits Conference, New York, NY, USA.

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