±4A高侧电流传感器,输入CM范围为25V,增益误差为0.9%,范围为−40°C至85°C,采用模拟温度补偿技术

Long Xu, J. Huijsing, K. Makinwa
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引用次数: 9

摘要

本文介绍了一种完全集成的±4A电流传感器,该传感器支持25V输入共模电压范围(CMVR),同时从单个1.5V电源工作。它由片上金属分流器、轨外ADC[1]和温度相关电压基准组成。超轨ADC无需外部电阻分压器或电平转换器即可实现高侧电流传感,从而降低功耗和系统复杂性。为了补偿分流器的温度依赖性,ADC采用比例绝对温度(PTAT)参考电压。与数字温度补偿方案相比[2,3],该模拟方案不需要温度传感器、带隙基准电压和校准逻辑。因此,电流传感器的功耗仅为10.9μA,比[2]节能10倍。在±4A范围内,经过一点微调后,传感器在- 40°C至85°C范围内的增益误差为0.9%(最大),在室温下的增益误差为0.05%。前者可与其他全集成电流传感器相媲美[2-4],而后者则代表了最先进的技术。
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A ±4A high-side current sensor with 25V input CM range and 0.9% gain error from −40°C to 85°C using an analog temperature compensation technique
This paper presents a fully integrated ±4A current sensor that supports a 25V input common-mode voltage range (CMVR) while operating from a single 1.5V supply. It consists of an on-chip metal shunt, a beyond-the-rails ADC [1] and a temperature-dependent voltage reference. The beyond-the-rails ADC facilitates high-side current sensing without the need for external resistive dividers or level shifters, thus reducing power consumption and system complexity. To compensate for the shunt's temperature dependence, the ADC employs a proportional-to-absolute-temperature (PTAT) reference voltage. Compared to digital temperature compensation schemes [2,3], this analog scheme eliminates the need for a temperature sensor, a band-gap voltage reference and calibration logic. As a result, the current sensor draws only 10.9μA and is 10x more energy efficient than [2]. Over a ±4A range, and after a one-point trim, the sensor exhibits a 0.9% (max) gain error from −40°C to 85°C and a 0.05% gain error at room temperature. The former is comparable with that of other fully-integrated current sensors [2-4], while the latter represents the state-of-the-art.
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