本文介绍了一种基于开关电容的带隙基准芯片电路.本文巧妙地利用电容和开关的模拟电阻,实现了静态电流小,温度系数好的开关型基准电压.同时运用自动调零技术,克服了线性基准的失调缺陷,消除了运放的失调电压,提高了输出电压的失调精度....本文介绍了一种基于开关电容的带隙基准芯片电路.本文巧妙地利用电容和开关的模拟电阻,实现了静态电流小,温度系数好的开关型基准电压.同时运用自动调零技术,克服了线性基准的失调缺陷,消除了运放的失调电压,提高了输出电压的失调精度.电路在0.5μm VIS CMOS工艺下实现,温度系数29×10-6V/℃,20mV输入失调电压下的电压漂移仅为0.4mV.展开更多
A bandgap voltage reference is presented with a piecewise linear compensating circuit in order to reduce the temperature coefficient.The basic principle is to divide the whole operating temperature range into some su...A bandgap voltage reference is presented with a piecewise linear compensating circuit in order to reduce the temperature coefficient.The basic principle is to divide the whole operating temperature range into some sub ranges.At different temperature sub ranges the bandgap reference can be compensated by different linear functions.Since the temperature sub range is much narrower than the whole range,the compensation error can be reduced significantly.Theoretically,the precision can be improved unlimitedly if the sub ranges are narrow enough.In the given example,with only three temperature sub ranges,the temperature coefficient of a conventional bandgap reference drops from 1 5×10 -5 /℃ to 2×10 -6 /℃ over the -40℃ to 120℃ temperature range.展开更多
文摘本文介绍了一种基于开关电容的带隙基准芯片电路.本文巧妙地利用电容和开关的模拟电阻,实现了静态电流小,温度系数好的开关型基准电压.同时运用自动调零技术,克服了线性基准的失调缺陷,消除了运放的失调电压,提高了输出电压的失调精度.电路在0.5μm VIS CMOS工艺下实现,温度系数29×10-6V/℃,20mV输入失调电压下的电压漂移仅为0.4mV.
文摘A bandgap voltage reference is presented with a piecewise linear compensating circuit in order to reduce the temperature coefficient.The basic principle is to divide the whole operating temperature range into some sub ranges.At different temperature sub ranges the bandgap reference can be compensated by different linear functions.Since the temperature sub range is much narrower than the whole range,the compensation error can be reduced significantly.Theoretically,the precision can be improved unlimitedly if the sub ranges are narrow enough.In the given example,with only three temperature sub ranges,the temperature coefficient of a conventional bandgap reference drops from 1 5×10 -5 /℃ to 2×10 -6 /℃ over the -40℃ to 120℃ temperature range.