交流电压计量用高精度电阻分压器和缓冲放大器的特性

Q3 Engineering
B. Karlsen, K. Lind, H. Malmbekk, P. Ohlckers
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引用次数: 4

摘要

高精度电压缓冲器和10:1电阻分压器已被构造用于交流电压和电力计量。缓冲器直流响应的长期稳定性已通过间隔20天进行的两次直流扫描得到证明,最佳拟合线性化增益变化小于1 μV/V。使用高精度数字万用表测量交流绝对增益10 Hz和1 kHz,结果与直流在5以内一致 μV/V。该值与使用来自不同生产商的热转换器的交流-直流差异的特征一致,该热转换器具有从1到1的各种电压下的各种电阻 V至5 V.交流-直流差异的进一步表征优于40 μV/V,适用于高达100的相同电压 kHz且优于100 μV/V用于3 1时的V MHz。从10开始,还测量了分压器和缓冲器组合的绝对交流增益和交流-直流差 V至50 V、 具有最多1个类似协议 kHz。10的交流-直流差 Hz至100 这种组合的kHz显示出在30以内的一致性 μV/V,总响应不超过125 μV/V。这使得分压器和缓冲器组合适合于对宽范围电压的电功率进行采样。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characterization of high-precision resistive voltage divider and buffer amplifier for ac voltage metrology
A high-precision voltage buffer and a 10:1 resistive voltage divider have been constructed for use in ac voltage and electrical power metrology. Long-term stability of the buffer's dc response has been demonstrated by two dc sweeps performed 20 days apart, with best-fit linearized gain varying less than 1 μV/V. The absolute ac gain has been measured using a high-precision digital multimeter for 10 Hz and 1 kHz with results consistent with dc within 5 μV/V. This value agrees with the characterization of ac–dc difference using thermal converters from different producers with a variety of resistance for various voltages from 1 V to 5 V. The ac–dc difference was further characterized better than 40 μV/V for the same voltages up to 100 kHz and better than 100 μV/V for 3 V at 1 MHz. Absolute ac gain and ac–dc difference has also been measured for the voltage divider and buffer combination from 10 V to 50 V, with similar agreement up to 1 kHz. The ac–dc difference from 10 Hz to 100 kHz of this combination shows an agreement well within 30 μV/V in this entire voltage span with a total response not exceeding 125 μV/V. This make the voltage divider and buffer combination suitable for sampling electrical powers for a wide range of voltages.
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来源期刊
International Journal of Metrology and Quality Engineering
International Journal of Metrology and Quality Engineering Engineering-Safety, Risk, Reliability and Quality
CiteScore
1.70
自引率
0.00%
发文量
8
审稿时长
8 weeks
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