National Research Council of Canada, Ottawa, Ontario, Canada.
Med Phys. 2012 Feb;39(2):984. doi: 10.1118/1.3679011.
To eliminate variation in electrometer calibration results caused by high humidity and suboptimal connectors on the standard capacitors and to implement hardware that prevents overloading of the input stage of electrometers during calibration.
A humidity-controlled cabinet was installed to provide a low-humidity environment for the standard capacitors. All of the coaxial BNC connections were replaced with Triax (TRB) connectors with the exception of the output from the voltage source. A three-stage RC filter with cascaded RC low-pass sections was designed and tested.
The installation of the humidity cabinet resulted in a major improvement in the stability and reproducibility of the electrometer calibration system. For the three years since this upgrade, the Ionizing Radiation Standards (IRS) electrometer calibration results have been consistent regardless of the ambient relative humidity in the lab. The connector replacements improved grounding in the calibration circuit. The three-stage filter allows the voltage at the output to rise in an S-shaped waveform, resulting in a smooth rise of the current through the isolation resistor from zero and back again, with no abrupt transition. For the filter design chosen, 99.99% of the charge is delivered within 6 s.
A three-way improvement to the calibration measurement system was successful in eliminating the observed variations, resulting in an electrometer calibration measurement system that is unaffected by humidity and allowing reliable year-round calibrations of any electrometer encountered since the implementation of these changes.
消除标准电容器上高湿度和不理想的连接器对静电计校准结果的影响,并实施硬件,以防止在校准期间静电计输入级过载。
安装了一个控湿机柜,为标准电容器提供低湿度环境。除了电压源的输出外,所有的同轴 BNC 连接都被 Triax (TRB) 连接器取代。设计并测试了一个具有级联 RC 低通部分的三级 RC 滤波器。
安装湿度机柜后,静电计校准系统的稳定性和可重复性得到了显著改善。自升级以来的三年中,无论实验室环境的相对湿度如何,电离辐射标准 (IRS) 静电计校准结果一直保持一致。连接器更换改善了校准电路的接地。三级滤波器允许输出电压呈 S 形波形上升,从而使隔离电阻中的电流平稳上升至零并再次返回,没有突然的过渡。对于所选的滤波器设计,99.99%的电荷在 6 秒内输送完毕。
校准测量系统的三方面改进成功消除了观察到的变化,从而产生了不受湿度影响的静电计校准测量系统,并允许自实施这些变化以来,对遇到的任何静电计进行可靠的全年校准。