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An 1.4 ppm/°C Bandgap Voltage Reference with Automatic Curvature-Compensation Technique

机译:1.4 PPM /°C带隙电压参考,具有自动曲率补偿技术

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A high-precision Bandgap voltage reference (BGR) with a novel curvature-compensation scheme is proposed in this paper. The temperature coefficient (TC) can be automatically optimized with a built-in adaptive curvature-compensation technique, which is realized in a digitization control way. Firstly, an exponential curvature compensation method is adopted to reduce the TC in a certain degree, especially in low temperature range. Then, the temperature drift of BGR in higher temperature range can be further minimized by dynamic zero-temperature-coefficient point tracking with temperature changes. With the help of proposed adaptive signal processing, the output voltage of BGR can approximately maintain zero TC in a wider temperature range. Experiment results of the BGR proposed in this paper, which is implemented in 0.35-μm BCD process, illustrate that the TC of 1.4ppm/°C is realized under the power supply voltage of 3.6V and the power supply rejection of the proposed circuit is -67dB.
机译:本文提出了一种具有新颖曲率补偿方案的高精度带隙电压参考(BGR)。温度系数(TC)可以通过内置自适应曲率补偿技术自动优化,该补偿技术以数字化控制方式实现。首先,采用指数曲率补偿方法以在一定程度上减少TC,特别是在低温范围内。然后,通过使用温度变化的动态零温度系数点跟踪,可以进一步最小化BGR在较高温度范围内的温度漂移。借助提出的自适应信号处理,BGR的输出电压可以在更宽的温度范围内大致维持零Tc。本文提出的BGR的实验结果,其在0.35微米的BCD工艺中实现,说明了1.4ppm /°C的Tc在3.6V的电源电压下实现,并且所提出的电路的电源抑制是-67db。

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