A 1.2 V supply 0.58 ppm/°C CMOS bandgap voltage reference
Jinlong Hu, Huachao Xu, Yuanzhi Zhang, Jie Sun, Tao Du, Chao Lü, Guofeng Li
Abstract
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Jinlong Hu, Huachao Xu, Yuanzhi Zhang, Jie Sun, Tao Du, Chao Lü, Guofeng Li
Abstract
Open-access reader
A precision curvature-compensated bandgap reference (BGR) is proposed and implemented using a standard 0.18-µm CMOS process. With a new and precise circuit configuration, the thermal nonlinearity of emitter-base voltages can be fully compensated, achieving an ultra-low temperature coefficient (TC) of 0.58 ppm/°C from −40 °C to 110 °C. The minimum required supply voltage is 1.2 V and the current consumption at 27 °C is 48 µA. At 27 °C, the line regulation performance is 0.015%/V with a supply voltage range of 1.2 V to 1.8 V.
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A precision curvature-compensated bandgap reference (BGR) is proposed and implemented using a standard 0.18-µm CMOS process. With a new and precise circuit configuration, the thermal nonlinearity of emitter-base voltages can be fully compensated, achieving an ultra-low temperature coefficient (TC) of 0.58 ppm/°C from −40 °C to 110 °C. The minimum required supply voltage is 1.2 V and the current consumption at 27 °C is 48 µA. At 27 °C, the line regulation performance is 0.015%/V with a supply voltage range of 1.2 V to 1.8 V.
Key concepts: Bandgap voltage reference, CMOS, Voltage reference, Optoelectronics, Voltage, Materials science, Band gap, Electrical engineering