At National Institute of Metrological Research (INRIM) a Hamon guarded 10×100 Gohm network was developed to improve the traceability levels of dc resistance at 1 G level. Utilizing and revisiting this project, a Hamon 10×10 G network has been developed to extend the capabilities of the Hamon scaling technique up to 100 G. The novelty of the 10×10 G network is its improved guard system and the improvement for INRIM is the extension of the range of the Hamon scaling method up to 100 G A description of this technique at INRIM, accurate construction details of the network and of its particular suitability for the modified Wheatstone bridge for high resistors calibration measurement method are given. The 1:100 transfer reliability test of the network gave satisfactory results. An uncertainty budget from 10 k to 100 G has been worked out. Some measurement results on the network, both in parallel and in series configuration are shown.

10×10 Gohm Guarded Hamon Network for the Modified Wheatstone Bridge for High Value Resistors Calibration / Galliana, Flavio; Capra, PIER PAOLO; Gasparotto, E.. - In: IEEE TRANSACTIONS ON INSTRUMENTATION AND MEASUREMENT. - ISSN 0018-9456. - 62:6(2013), pp. 1729-1735. [http://dx.doi.org/10.1109/TIM.2013.2253971]

10×10 Gohm Guarded Hamon Network for the Modified Wheatstone Bridge for High Value Resistors Calibration

GALLIANA, FLAVIO;CAPRA, PIER PAOLO;Gasparotto E.
2013

Abstract

At National Institute of Metrological Research (INRIM) a Hamon guarded 10×100 Gohm network was developed to improve the traceability levels of dc resistance at 1 G level. Utilizing and revisiting this project, a Hamon 10×10 G network has been developed to extend the capabilities of the Hamon scaling technique up to 100 G. The novelty of the 10×10 G network is its improved guard system and the improvement for INRIM is the extension of the range of the Hamon scaling method up to 100 G A description of this technique at INRIM, accurate construction details of the network and of its particular suitability for the modified Wheatstone bridge for high resistors calibration measurement method are given. The 1:100 transfer reliability test of the network gave satisfactory results. An uncertainty budget from 10 k to 100 G has been worked out. Some measurement results on the network, both in parallel and in series configuration are shown.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11696/31259
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