张宗航, 赵毅强, 耿俊峰. 一种二阶曲率补偿带隙基准电压源[J]. 微电子学与计算机, 2012, 29(5): 15-19.
引用本文: 张宗航, 赵毅强, 耿俊峰. 一种二阶曲率补偿带隙基准电压源[J]. 微电子学与计算机, 2012, 29(5): 15-19.
ZHANG Zong-hang, ZHAO Yi-qiang, GENG Jun-feng. A Second-Order Curvature-Compensated Band-Gap Voltage Reference[J]. Microelectronics & Computer, 2012, 29(5): 15-19.
Citation: ZHANG Zong-hang, ZHAO Yi-qiang, GENG Jun-feng. A Second-Order Curvature-Compensated Band-Gap Voltage Reference[J]. Microelectronics & Computer, 2012, 29(5): 15-19.

一种二阶曲率补偿带隙基准电压源

A Second-Order Curvature-Compensated Band-Gap Voltage Reference

  • 摘要: 利用CMOS工艺中Poly电阻和N-well电阻温度系数的不同, 设计了一种输出可调的二阶曲率补偿带隙基准电压源.采用Chartered 0.35μm CMOS工艺模型, 使用Cadence工具对电路进行了仿真, 结果表明电路在电源电压为1.8V时可正常工作, 当其在1.8~3V范围内变化时, 基准电压变化仅有3.8mV;工作电压为2V时, 输出基准电压在-40 ℃到80 ℃的温度范围内温度系数为1.6ppm/℃, 工作电流为24μA, 低频下的电源抑制比为-47dB.该带隙基准电压源的设计可以满足低温漂、高稳定性、低电源电压以及低功耗的要求.

     

    Abstract: A second-order curvature-compensated bandgap voltage reference with adjustable output voltage is presented, which employs the different temperature coefficients between poly resistor and N-well resistor in the CMOS process.The circuit was simulated by Cadence tool with Chartered 0.35 μm CMOS model.The results show that the circuit can operate down to a 1.8V supply, the variation of the output voltage is only 3.8 mV.The temperature coefficient of the output voltage reference is 1.6 ppm/℃ from-40 ℃ to 80 ℃ and the current is 24 μA at supply voltage of 2 V, and the power supply rejection ratio (PSRR) is-47 dB at low-frequency.The bandgap voltage reference meets the need of low temperature coefficient, high stability, low supply voltage and low power consumption.

     

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