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Low-voltage low-power superior-order curvature-corrected voltage reference

机译:低压低功率高阶曲率校正电压基准

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摘要

A new superior-order curvature-corrected voltage reference will be presented. In order to improve the temperature behavior of the circuit, a double differential structure will be used, implementing the linear and the superior-order curvature corrections. An original ComplemenTary with Absolute Temperature voltage generator will be proposed, using exclusively MOS transistors biased in weak inversion for a low power operation of the voltage reference, having two great advantages: an important reducing of the circuit silicon area and an improved accuracy (matched resistors being replaced by matched MOS active devices). The superior-order curvature-correction will be implemented by taking the difference between two gate-source voltages of subthreshold-operated MOS transistors, biased at drain currents having different temperature dependencies: PTAT (ProporTional with Absolute Temperature) and square PTAT. In order to obtain a low-voltage operation of the circuit, the classical MOS transistor, which implements the elementary voltage reference, could be replaced by a Dynamic Threshold MOS transistor. The SPICE simulations confirm the theoretical estimated results, showing a temperature coefficient under 6 ppm/K for an extended input range 223 K < T < 333 K and for a supply voltage of 1.8 V and a current consumption of about 1 μA.
机译:将提出一种新的上级曲率校正电压参考。为了改善电路的温度特性,将使用双微分结构,以实现线性和高阶曲率校正。将提出一种具有绝对温度的原始电压发生器,该器件将仅使用弱反相偏置的MOS晶体管来实现低基准电压源的低功耗工作,这具有两个主要优点:显着减少电路硅面积并提高精度(匹配电阻)被匹配的MOS有源器件代替)。高阶曲率校正将通过考虑亚阈值操作的MOS晶体管的两个栅极-源极电压之间的差来实现,该差值在具有不同温度依赖性的漏极电流下偏置:PTAT(绝对温度比例)和平方PTAT。为了获得电路的低压运行,可以使用动态阈值MOS晶体管代替实现基本参考电压的经典MOS晶体管。 SPICE仿真证实了理论上的估计结果,显示出对于扩展的输入范围223 K

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