Accès libre

A Fast-Multi-Channel Sub-Millikelvin Precision Resistance Thermometer Readout Based on the Round-Robin Structure

À propos de cet article

Citez

[1] Frohlich, T., Fehling, T., Heydenbluth, D. (2009). Mass dissemination using a robot system. tm - Technisches Messen, 76 (7-8), 382-387.10.1524/teme.2009.0976Search in Google Scholar

[2] Schweiger, H.G., Multerer, M., Gores, H.J. (2007). Fast multichannel precision thermometer. IEEE Transactions on Instrumentation and Measurement, 56 (5), 2002-2009.10.1109/TIM.2007.904480Search in Google Scholar

[3] Eke, R., Kavasoglu, A.S., Kavasoglu, N. (2012). Design and implementation of a low-cost multi-channel temperature measurement system for photovoltaic modules. Measurement, 45, 1499-1509.10.1016/j.measurement.2012.02.029Search in Google Scholar

[4] Pearce, J.V., Gray, J., Veltcheva, R.I. (2016). Characterisation of a selection of AC and DC resistance bridges for platinum resistance thermometry. International Journal of Thermophysics, 37, 109.10.1007/s10765-016-2113-6Search in Google Scholar

[5] Smorgon, D., Fernicola, V.C., Coslovi, I. (2011). Lowcost ratiometric front-end for industrial PRT applications. International Journal of Thermophysics, 32, 2317-2324.10.1007/s10765-011-1093-9Search in Google Scholar

[6] Ambrosetti, R., Matteoli, E., Ricci, D. (2012). Note: A versatile, stable, high-resolution readout system for RTD and thermistor sensors. Review of Scientific Instruments, 83, 096101.10.1063/1.475014223020429Search in Google Scholar

[7] Taylor, H.R., Navarro, H.A. (1983). A microcomputerbased instrument for applications in platinum resistance thermometry. Journal of Physics E: Scientific Instruments, 16, 1100-1104.10.1088/0022-3735/16/11/027Search in Google Scholar

[8] Bramley, P., Pickering, J.R. (2006). Better accuracy in temperature calibration and measurement through a new type analog-to-digital converter. Cal Lab Magazine, 10/11, 21-26.Search in Google Scholar

[9] Walker, R., Willgress, N. (2003). Achieving 0.25 mK uncertainty with an integrated-circuit resistance thermometer readout. In XVII IMEKO World Congress, Dubrovnik, Croatia, 1594-1597.Search in Google Scholar

[10] White, D.R., Williams, J.M., Ramsey I.E. (1997). A simple resistance network for the calibration of resistance bridges. IEEE Transactions on Instrumentation and Measurement, 42 (5), 1068-1074.10.1109/19.676712Search in Google Scholar

[11] White, D.R., Clarkson, M.T., Saunders, P., Yoon, H. (2008). A general technique for calibrating indicating instruments. Metrologia, 45, 199-210.10.1088/0026-1394/45/2/009Search in Google Scholar

[12] Analog Devices, Inc. (2015-2016). 32-bit, 10 kSPS, Sigma-Delta ADC with 100 μs settling and true rail-torail buffers. Data Sheet AD7177-2. http://www.analog.com/media/en/technical-documentation/datasheets/AD7177-2.pdf.Search in Google Scholar

[13] Vishay Precision Group. (2014). Hermetically sealed miniature ultra high precision Z-foil technology resistors with TCR of 0.05 ppm/°C, tolerance of ± 0.001% and load life stability of ± 0.005 %, unaffected by humidity. VHP203 (Z-Foil). http://www.vishaypg.com/docs/63146/vhp203.pdf.Search in Google Scholar

[14] Analog Devices, Inc. (2013-2015). High performance, low power, rail-to-rail precision instrumentation amplifier. Data Sheet AD8422. http://www.analog.com/media/en/technical-documentation/datasheets/AD8422.pdf.Search in Google Scholar

[15] Analog Devices, Inc. (2005-2017). 0.4Ω CMOS, dual DPDT switch in WLCSP/LFCSP/TSSOP. Data Sheet ADG888. http://www.analog.com/media/en/technicaldocumentation/data-sheets/ADG888.pdf.Search in Google Scholar

[16] Nicholas, J.V., White, D.R. (2001). Traceable Temperatures: An Introduction to Temperature Measurement and Calibration. John Wiley & Sons.10.1002/0470846151Search in Google Scholar

[17] Walker, R. (2010). Recent advances in resistance thermometry readouts. In NCSL International Workshop and Symposium.Search in Google Scholar

[18] Palencar, R., Sopkuliak, P., Palencar, J., Duris, S., Suroviak, E., Halaj, M. (2017). Application of Monte Carlo method for evaluation of uncertainties of ITS-90 by standard platinum resistance thermometer. Measurement Science Review, 17 (3), 108-116.10.1515/msr-2017-0014Search in Google Scholar

[19] Duris, S., Palencar, R., Ranostaj, J. (2008). Contribution of the SPRT calibration to uncertainty of temperature T-90 measured by the calibrated SPRT. Measurement Science Review, 8 (1), 5-10.Search in Google Scholar

[20] Walker, R. (2011). Automatic linearity calibration in a resistance thermometry bridge. International Journal of Thermophysics, 32 (1-2), 215-223.10.1007/s10765-011-0927-9Search in Google Scholar

eISSN:
1335-8871
Langue:
Anglais
Périodicité:
6 fois par an
Sujets de la revue:
Engineering, Electrical Engineering, Control Engineering, Metrology and Testing