School of Mechanical, Electronic and Control Engineering, Beijing Jiaotong University, Beijing 100044, China.
Rev Sci Instrum. 2023 May 1;94(5). doi: 10.1063/5.0138918.
Resistive voltage dividers (RVDs) are commonly used as AC attenuation networks in measurement circuits; however, their high-frequency gain is always disturbed by nasty parasitic elements and deviates significantly from the desired design value. This paper proposes a closed-loop adjustment technique for adjusting the frequency response flatness of wideband RVDs (WRVDs). In the proposed adjustment scheme, the frequency response flatness of the WRVD is determined by a voltage-controlled compensation capacitor, whereas the corresponding control voltage is provided by a digital potentiometer. The settling time and the adjustment error of the loop are analyzed to evaluate the adjustment performance. To verify the concept, the adjustment loop is incorporated into a 100:1 WRVD for demonstration. Final experiments show that the proposed technique improves gain flatness by 81 times compared with uncompensated flatness, with 1.15% up to 2 MHz, and that the compensated voltage divider has an excellent linearity of 36 ppm up to 100 V.
电阻分压器(RVD)通常用作测量电路中的交流衰减网络;然而,其高频增益总是受到讨厌的寄生元件的干扰,并且与所需的设计值有很大的偏差。本文提出了一种用于调整宽带 RVD(WRVD)频率响应平坦度的闭环调整技术。在提出的调整方案中,WRVD 的频率响应平坦度由电压控制补偿电容器决定,而相应的控制电压由数字电位器提供。分析了环路的稳定时间和调整误差,以评估调整性能。为了验证该概念,将调整环路集成到 100:1 的 WRVD 中进行演示。最终实验表明,与未补偿的平坦度相比,所提出的技术将增益平坦度提高了 81 倍,在 1.15MHz 至 2MHz 范围内提高了 1.15%,补偿后的分压器在 100V 时具有出色的 36ppm 线性度。