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High-temperature characterisation and analysis of leakage-current-compensated, low-power bandgap temperature sensors

机译:漏电流补偿,低功率带隙温度传感器的高温特性分析

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摘要

This paper analyses leakage current compensation techniques for low-power, bandgap temperature sensors. Experiments are conducted for circuits that compensate for collector-substrate, collector-base, body-drain and source-body leakage currents in a Brokaw bandgap sensor. The sensors are characterised and their failure modes are analysed at temperatures from 60 to 230∘C">230 ∘ C 230∘C . It is found that the most appropriate compensation circuit depends on the accuracy requirements of the application and on whether a stable reference voltage is required by other parts of the circuit. Experiments show that the power consumption is dominated by leakage current at high temperatures. One type of sensor was seen to consume 260 nW at 60∘C">60 ∘ C 60∘C , 2.1μW">2.1μW 2.1μW at 200∘C">200 ∘ C 200∘C and 14μW">14μW 14μW at 230∘C">230 ∘ C 230∘C . This work is motivated by the need to accurately monitor the temperature of power semiconductors in order to predict emerging faults in power semiconductor modules, a task for which cheap, single-chip, low-power, high-temperature, wireless bandgap temperature sensors are appropriate.
机译:本文分析了低功耗带隙温度传感器的泄漏电流补偿技术。针对补偿Brokaw带隙传感器中的集电极-衬底,集电极-基极,体漏和源-体泄漏电流的电路进行了实验。对传感器进行了表征,并在60至230°C 230°C 230°C的温度下分析了它们的故障模式。发现最合适的补偿电路取决于应用的精度要求以及是否满足要求。电路的其他部分需要稳定的参考电压,实验表明功耗主要由高温下的泄漏电流决定,一种传感器在60°C 60°C 60°C功耗为260 nW。 C,2.1μ W“>2.1μW在200∘ C> 200μC200°C和14μ W”>14μW14μW在230∘ C“> 230°C 230 ∘C。这项工作的动机是需要精确监控功率半导体的温度,以预测功率半导体模块中正在出现的故障,对于这一任务,廉价,单芯片,低功耗,高温,无线带隙温度传感器是合适的。

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