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Silicon Carbide fully differential amplifier characterized up to 500 °C

机译:碳化硅全差动放大器,特性高达500°C

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摘要

This paper presents a monolithic fully differential amplifier implemented in a low-voltage 4H-silicon carbide bipolar junction transistor technology. The circuit has been designed, considering the variation of device parameters over a large temperature range. A base-current compensation technique has been applied to overcome the low input resistance of the amplifier. The bare chip of the amplifier has been measured from 27 °C to 500 °C using a hot-chuck probe station. Its openloop gain is 58 dB at 27 °C, and monotonically decreases to 37 dB at 500 °C. Its closed-loop gain reduction is ∼5 dB over the investigated temperature range. The gain-bandwidth product drops from 2.8 MHz at 27 °C to 1.3 MHz at 500 °C with 470 pF off-chip compensation capacitors. A low total-harmonicdistortion of −58.4 dB at 27 °C and −46.9 dB at 500 °C is achieved due to the fully differential implementation. A low input offset voltage of 0.5 mV at 27 °C and 6.9 mV at 500 °C is achieved without calibration. The relative high linearity and the low offset demonstrate the potential of this technology to be further investigated for the front-end sensor circuits in high-temperature applications.
机译:本文介绍了采用低压4H-碳化硅双极结晶体管技术实现的单片全差分放大器。设计电路时,考虑了在较大温度范围内器件参数的变化。已应用基本电流补偿技术来克服放大器的低输入电阻。放大器的裸芯片已使用热吸盘探针台在27°C至500°C的温度范围内进行了测量。它的开环增益在27°C时为58 dB,在500°C时单调降至37 dB。在所研究的温度范围内,其闭环增益降低约为〜5 dB。使用470 pF片外补偿电容器,增益带宽乘积从27°C时的2.8 MHz降至500°C时的1.3 MHz。由于采用了完全差分设计,因此在27°C时的总谐波失真较低,在500°C时为-48.4 dB,而总谐波失真较低。在不进行校准的情况下,可实现在27°C下为0.5 mV的低输入失调电压,在500°C下为6.9 mV的低输入失调电压。较高的线性度和较低的失调证明了该技术在高温应用中的前端传感器电路上有待进一步研究。

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