This paper describes hardware and software improvements of the INRIM coaxial microcalorimeter together with their outcome on the primary power standard realization in the frequency band 0.05 – 40 GHz. A better temperature and power stabilization turned out to provide an improved signal/noise ratio and a drift reduction in every working condition of the microcalorimeter. The INRIM correction model is also compared to a traditional, but faster, one in terms of measurement uncertainty. Outcomes are presented in form of a 2.92 mm thermoelectric power sensor calibration together with results that show the improved stability and repeatability of the measurement system.
Improvements on INRIM Coaxial Microcalorimeter and Outcome of a Model Comparison / Brunetti, Luciano; Oberto, Luca; Sellone, Marco; N., Shoaib; E., Vremera. - In: IEEE TRANSACTIONS ON INSTRUMENTATION AND MEASUREMENT. - ISSN 0018-9456. - 64:6(2015), pp. 1742-1746. [10.1109/TIM.2015.2406052]
Improvements on INRIM Coaxial Microcalorimeter and Outcome of a Model Comparison
BRUNETTI, LUCIANO;OBERTO, LUCA
;SELLONE, MARCO;
2015
Abstract
This paper describes hardware and software improvements of the INRIM coaxial microcalorimeter together with their outcome on the primary power standard realization in the frequency band 0.05 – 40 GHz. A better temperature and power stabilization turned out to provide an improved signal/noise ratio and a drift reduction in every working condition of the microcalorimeter. The INRIM correction model is also compared to a traditional, but faster, one in terms of measurement uncertainty. Outcomes are presented in form of a 2.92 mm thermoelectric power sensor calibration together with results that show the improved stability and repeatability of the measurement system.File | Dimensione | Formato | |
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