Chang Shu-Sing
Institute for Materials Research, National Bureau of Standards, Washington, D.C. 20234.
J Res Natl Bur Stand A Phys Chem. 1976 Jul-Aug;80A(4):669-675. doi: 10.6028/jres.080A.067. Epub 1976 Aug 1.
The principle of a self-balancing potentiometric system is described. The principle is applied to the modification of an existing manually operated thermo-free, low voltage potentiometer consisting of Diesselhorst ring elements. The modification involves the addition of reed relays which enable the potentiometer voltage to be set by digital signals. By incorporating a digital voltmeter, or an analog-to-digital converter, and a nanovolt amplifier with the modified potentiometer, self-balancing of the potentiometer may be achieved through either hardware logic implementation or direct digital control from a minicomputer. The resolution of this self-balancing potentiometric system for a full scale input of 100 mV is about one to 10 parts in 10. With real-time digital processing of the data, resolution of about 1 nV or better has been achieved for slowly changing input signals. The overall accuracy of the system is better than 10 ppm for voltage measurements and about 1 ppm for voltage ratio or resistance measurements.
描述了一种自平衡电位系统的原理。该原理应用于对现有的由迪塞尔霍斯特环形元件组成的手动操作无热、低电压电位计的改进。改进包括添加簧片继电器,其能使电位计电压由数字信号设置。通过将数字电压表、或模数转换器以及纳伏放大器与改进后的电位计相结合,可通过硬件逻辑实现或由小型计算机进行直接数字控制来实现电位计的自平衡。对于100 mV的满量程输入,该自平衡电位系统的分辨率约为万分之一至万分之十。通过对数据进行实时数字处理,对于缓慢变化的输入信号,已实现约1 nV或更好的分辨率。该系统在电压测量方面的总体精度优于10 ppm,在电压比或电阻测量方面约为1 ppm。