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Hesaplanabilir AC Direnç Standardının 5 MHz'e Kadar Modellenmesi ve Üretilmesi / Modelling and Development of Calculable AC Resistor Standard Up To 5 MHz

Year 2011, Volume: 1 Issue: 2, 75 - 82, 01.12.2011

Abstract

Özet

Bu çalısmada, AC direnç kalibrasyonları için Uluslar arası alanda birincil seviye standart olarak kullanılan 1000 W bifilar tip hesaplanabilir AC direnç standardının üretilmesi amaçlanmıstır. 1000 W bifilar tip hesaplanabilir AC direnç standardının matematiksel modellemesi Matlab® programı kullanılarak 5 MHz'e kadar yapılmıstır. Matematiksel modelleme kullanılarak 1000 W bifilar tip hesaplanabilir AC direncin geometrik boyutları belirlenlenmis ve hesaplanabilir AC direncin üretimi gerçeklestirilmistir. Hesaplanabilir AC dirence DC akım uygulanarak direncin kararlılıgına etki eden hataların belirlenmesi için deneysel çalısmalar yapılmıstır. 1000 W bifilar tip hesaplanabilir AC direnç standardının DC akım uygulanarak yapılan ölçümleri, TÜBTAK UME'de kurulu Quantum-Hall sistemine izlenebilir olarak gerçeklestirilmistir. Tasarımı gerçeklestirilen hesaplanabilir AC dirence, DC akım

uygulanarak yapılan ölçümler sonucunda 1 ppm/gün kararlılık degeri elde edilmistir.

Abstract

In this study, it is aimed to fabricate 1000 W bifilar type AC calculable resistance standard used as primary level reference AC resistance standard internationally. Mathematical modeling of 1000 W bifilar type AC calculable resistance standard is performed in Matlab® program up to 5 MHz. Geometrical dimensions of 1000 W bifilar type AC calculable resistance standard is determined using the mathematical modeling and fabricated according to the geometrical dimensions defined in the mathematical modelling. Experimental studies are performed to define the parameters affecting the stability of the resistance standard by applying a DC current onto the resistance standard. DC resistance measurements of 1000 W bifilar type AC calculable resistance standard are traceable to the Quantum-Hall resistance installed in TÜBTAK UME (National Metrology Institute of Turkey). It is found that the

stability of 1000 W bifilar type AC resistance standard is 1 ppm/day as a result of DC measurements.

References

  • .Gibbings D.L., ''A design for resistors of calculable AC/DC resistance ratio'', IEEE Trans. Instrum.Meas., Vol.110, No.2, s.335-347, (1963).
  • .Haddad, R.J., ”A Resistor Calculable from DC to 105 rad/s.”, Msc. Thesis, School of Engineering and Applied Science, George Washington University, (1969).
  • .Graetsh V., ''Praezisionswiderstaende für Gelich und Wechselstrom'', PTB-Mitteilungen, 90 26-30, (1980).
  • .Koller H., ''Prazisionswiderstaende mit berechenbarem Frequenzeinfluss'', Elektrie 29, s.612-615, (1975).
  • .PTB-Report, ''Widerstaende mit berechenbarem Frequenzeinfluss'', (1974).
  • .Schurr J, Wood B. M., Overney F, ”Lineer frequency dependence in AC resistance measurement”, IEEE Trans. Instrum. Meas., 54 512-5, (2005).
  • .Elmquist R.E., ''Calculable coaxial resistors for precision measurements'', IEEE Trans. Instrum. Meas., 49 210-5, (2000).
  • .Kucera J, Vollmer E, Schurr J., Bohacek J, “Calculable resistors of coaxial design” Meas.Sc.Technol., 095104, (2009).
  • .Isabellenhütte company, ''Isaohm Technical information''.
  • .Semyenov Y.P., ''Bifilar AC-DC Resistor Using a Microwire'', IEEE Trans. Instrum. Meas., Vol.46, No.2, (1997).
  • .Ku Y.S., Hsu C.M., Pang H.L., Hsiao J., Nakanishi ''DC & AC resistance measurements center for measurements standarts'', XVII. IMEKO World Congress, Dubrovnik, Croatia, 54 533-7, (2005).
  • .Gülmez Y., Gülmez G., Turhan E., Özkan T., Çınar M., Sözen L., ”New Design of Calculable Resistor”, Precision Electromagnetic Measurements. Conference, Page 348-349, (2002).
  • .Kim H.J., Lee R.D., Semenov Y.P., ”Resistor with calculable dependencies up to 1 MHz”, IEEE Trans. Instrum. Meas., Vol.56, No.2, (2007).
  • .Yasuhiro N., Hiroyuki F., ''An analysis on the uncertainty of calculating the time constant of the quadrifilar reversed resisitor'', AIST Bulletin of Metrology, Vol.3, No.3, (2004).
  • .Bohacek J., ”References resistors for calibration of wireband LCR meters”, XVIII Imeko Word Congress, Brazil, (2006).
  • .Arnold A.H.M., Ph.D. D.Eng. Associate Member.,''Nickel-Chromium-Aluminium-Copper Resistance Wire" National Physical Laboratory, Paper No.2084M, (1956).
  • .Çınar M., Dolma A., Gülmez Y.,”Bifilar Tip Hesaplanabilir AC Direncin Modellenmesi ve Gelistirilmesi”, International Union of Radio Science, KKTC, (2010).
  • .Delahaye F., ”DC and AC Techniques for Resistance and Impedance Measurements”, Metrologia, 29 81, (1992).
  • .Baytaroglu, S., Kesikoglu, H., Özbay H.Ö., “Metrolojide Kullanılan Temel ve Genel Terimler Sözlügü”, Ulusal Metroloji Enstitüsü, (1994).
Year 2011, Volume: 1 Issue: 2, 75 - 82, 01.12.2011

Abstract

References

  • .Gibbings D.L., ''A design for resistors of calculable AC/DC resistance ratio'', IEEE Trans. Instrum.Meas., Vol.110, No.2, s.335-347, (1963).
  • .Haddad, R.J., ”A Resistor Calculable from DC to 105 rad/s.”, Msc. Thesis, School of Engineering and Applied Science, George Washington University, (1969).
  • .Graetsh V., ''Praezisionswiderstaende für Gelich und Wechselstrom'', PTB-Mitteilungen, 90 26-30, (1980).
  • .Koller H., ''Prazisionswiderstaende mit berechenbarem Frequenzeinfluss'', Elektrie 29, s.612-615, (1975).
  • .PTB-Report, ''Widerstaende mit berechenbarem Frequenzeinfluss'', (1974).
  • .Schurr J, Wood B. M., Overney F, ”Lineer frequency dependence in AC resistance measurement”, IEEE Trans. Instrum. Meas., 54 512-5, (2005).
  • .Elmquist R.E., ''Calculable coaxial resistors for precision measurements'', IEEE Trans. Instrum. Meas., 49 210-5, (2000).
  • .Kucera J, Vollmer E, Schurr J., Bohacek J, “Calculable resistors of coaxial design” Meas.Sc.Technol., 095104, (2009).
  • .Isabellenhütte company, ''Isaohm Technical information''.
  • .Semyenov Y.P., ''Bifilar AC-DC Resistor Using a Microwire'', IEEE Trans. Instrum. Meas., Vol.46, No.2, (1997).
  • .Ku Y.S., Hsu C.M., Pang H.L., Hsiao J., Nakanishi ''DC & AC resistance measurements center for measurements standarts'', XVII. IMEKO World Congress, Dubrovnik, Croatia, 54 533-7, (2005).
  • .Gülmez Y., Gülmez G., Turhan E., Özkan T., Çınar M., Sözen L., ”New Design of Calculable Resistor”, Precision Electromagnetic Measurements. Conference, Page 348-349, (2002).
  • .Kim H.J., Lee R.D., Semenov Y.P., ”Resistor with calculable dependencies up to 1 MHz”, IEEE Trans. Instrum. Meas., Vol.56, No.2, (2007).
  • .Yasuhiro N., Hiroyuki F., ''An analysis on the uncertainty of calculating the time constant of the quadrifilar reversed resisitor'', AIST Bulletin of Metrology, Vol.3, No.3, (2004).
  • .Bohacek J., ”References resistors for calibration of wireband LCR meters”, XVIII Imeko Word Congress, Brazil, (2006).
  • .Arnold A.H.M., Ph.D. D.Eng. Associate Member.,''Nickel-Chromium-Aluminium-Copper Resistance Wire" National Physical Laboratory, Paper No.2084M, (1956).
  • .Çınar M., Dolma A., Gülmez Y.,”Bifilar Tip Hesaplanabilir AC Direncin Modellenmesi ve Gelistirilmesi”, International Union of Radio Science, KKTC, (2010).
  • .Delahaye F., ”DC and AC Techniques for Resistance and Impedance Measurements”, Metrologia, 29 81, (1992).
  • .Baytaroglu, S., Kesikoglu, H., Özbay H.Ö., “Metrolojide Kullanılan Temel ve Genel Terimler Sözlügü”, Ulusal Metroloji Enstitüsü, (1994).
There are 19 citations in total.

Details

Primary Language Turkish
Journal Section Akademik ve/veya teknolojik bilimsel makale
Authors

Mehmet Çınar

Arif Dolma

Yakup Gülmez This is me

Handan Sakarya This is me

Ömer Erkan This is me

Murat Celep This is me

Publication Date December 1, 2011
Submission Date October 9, 2012
Published in Issue Year 2011 Volume: 1 Issue: 2

Cite

APA Çınar, M., Dolma, A., Gülmez, Y., Sakarya, H., et al. (2011). Hesaplanabilir AC Direnç Standardının 5 MHz’e Kadar Modellenmesi ve Üretilmesi / Modelling and Development of Calculable AC Resistor Standard Up To 5 MHz. EMO Bilimsel Dergi, 1(2), 75-82.
AMA Çınar M, Dolma A, Gülmez Y, Sakarya H, Erkan Ö, Celep M. Hesaplanabilir AC Direnç Standardının 5 MHz’e Kadar Modellenmesi ve Üretilmesi / Modelling and Development of Calculable AC Resistor Standard Up To 5 MHz. EMO Bilimsel Dergi. December 2011;1(2):75-82.
Chicago Çınar, Mehmet, Arif Dolma, Yakup Gülmez, Handan Sakarya, Ömer Erkan, and Murat Celep. “Hesaplanabilir AC Direnç Standardının 5 MHz’e Kadar Modellenmesi Ve Üretilmesi / Modelling and Development of Calculable AC Resistor Standard Up To 5 MHz”. EMO Bilimsel Dergi 1, no. 2 (December 2011): 75-82.
EndNote Çınar M, Dolma A, Gülmez Y, Sakarya H, Erkan Ö, Celep M (December 1, 2011) Hesaplanabilir AC Direnç Standardının 5 MHz’e Kadar Modellenmesi ve Üretilmesi / Modelling and Development of Calculable AC Resistor Standard Up To 5 MHz. EMO Bilimsel Dergi 1 2 75–82.
IEEE M. Çınar, A. Dolma, Y. Gülmez, H. Sakarya, Ö. Erkan, and M. Celep, “Hesaplanabilir AC Direnç Standardının 5 MHz’e Kadar Modellenmesi ve Üretilmesi / Modelling and Development of Calculable AC Resistor Standard Up To 5 MHz”, EMO Bilimsel Dergi, vol. 1, no. 2, pp. 75–82, 2011.
ISNAD Çınar, Mehmet et al. “Hesaplanabilir AC Direnç Standardının 5 MHz’e Kadar Modellenmesi Ve Üretilmesi / Modelling and Development of Calculable AC Resistor Standard Up To 5 MHz”. EMO Bilimsel Dergi 1/2 (December 2011), 75-82.
JAMA Çınar M, Dolma A, Gülmez Y, Sakarya H, Erkan Ö, Celep M. Hesaplanabilir AC Direnç Standardının 5 MHz’e Kadar Modellenmesi ve Üretilmesi / Modelling and Development of Calculable AC Resistor Standard Up To 5 MHz. EMO Bilimsel Dergi. 2011;1:75–82.
MLA Çınar, Mehmet et al. “Hesaplanabilir AC Direnç Standardının 5 MHz’e Kadar Modellenmesi Ve Üretilmesi / Modelling and Development of Calculable AC Resistor Standard Up To 5 MHz”. EMO Bilimsel Dergi, vol. 1, no. 2, 2011, pp. 75-82.
Vancouver Çınar M, Dolma A, Gülmez Y, Sakarya H, Erkan Ö, Celep M. Hesaplanabilir AC Direnç Standardının 5 MHz’e Kadar Modellenmesi ve Üretilmesi / Modelling and Development of Calculable AC Resistor Standard Up To 5 MHz. EMO Bilimsel Dergi. 2011;1(2):75-82.

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