Design of stripline resonators for measuring the Ԑr and tgδ of sheet dielectric materials in the microwave range

DOI: 10.21293/1818-0442-2023-26-1-41-47

Download article in PDF format

JATS xml

Abstract: The development of stripline resonators in the problems of measuring the relative permittivity and the dielectric loss tangent of sheet dielectric materials in the microwave range is described. The results of measurements of the characteristics of the developed strip resonators are presented. The disadvantages and advantages of measuring equipment used in similar measurement methods are described.

Keywords: relative permittivity, dielectric loss tangent, measurement methods, measurement technique, microwave range, sheet dielectrics, stripline resonators

For citation:
Minenko D. E., Sheerman F. I. Design of stripline resonators for measuring the Ԑr and tgδ of sheet dielectric materials in the microwave range. Doklady Tomskogo gosudarstvennogo universiteta sistem upravleniya i radioelektroniki, 2023, vol. 26, no. 1, pp. 41–47. DOI: 10.21293/1818-0442-2023-26-1-41-47

Authors and copyright holders:

  • Minenko D. E. , Tomsk State University of Control Systems and Radioelectronics (Tomsk, Russia)
  • Sheerman F. I. , Research Institute «Microelectronic Systems» (Tomsk, Russia)

  • 1. GOST R 8.623–2015 [Relative dielectric permittivity and the loss tangent of solid dielectrics. Procedure of measurements at microwave frequencies: national standard of Russian Federation]. Entry date 2016-10-01, Federal Technical Regulation Agency. Moscow, Standartinform, 2019, 30 p. (in Russ.)
  • 2. Measuring Dielectric Properties Using Keysight’s Materials Measurement Solutions. Keysight Technologies. Available at: https://www.axiomtest.com/documents/models/Keysight%2016453A%20Data%20Sheet.pdf, free (Accessed: February 24, 2023).
  • 3. Standart IPC-TM-650 2.5.5.5 Rukovodstvo po metodam ispytanij (IPC-TM-650 2.5.5.5 Test Methods Manual «Stripline Test for Permittivity and Loss Tangent (Die-lectric Constant and Dissipation Factor) at X-Band»). Available at: https://www.ipc.org/sites/default/fi-les/test_methods_ docs/2-5_2-5-5-11.pdf, free (Accessed: February 24, 2023).
  • 4. RO4000 Series High Frequency Circuit Materials. Available at: https://www.rezonit.ru/upload/spetsifikatsii/Rogers_RO4000.pdf, free (Accessed: February 25, 2023).
  • 5. RA300. Air/Ship Microwave Material with High Performance. Available at: http://www.relong-hitech.com/en/ upload/2020/09/28/16012644751779bkpo7.pdf, free (Accessed: February 25, 2023).
  • 6. Horn A.F., LaFrance P.A. Reynolds J.W. The influence of test method, conductor profile and substrate anisotropy on the permittivity values required for accurate modeling of high frequency planar circuits. Circuit World, 2012, vol. 38, no. 4, pp. 219–231.
  • 7. Suzuki H. Microwave measurement of complex permittivity by placing a microstripline resonator on the material under test. European Microwave Conference, 2006, 4 p. DOI: 10.1109/EUMC.2006.281357.
  • 8. Suzuki H., Hotchi T. Microwave measurement of complex permittivity of a sheet material under test sandwiched between sheet metal and a calibrated stripline resonator. IEEE Instrumentation and Measurement Technology Conference, 2008, 5 p. DOI: 10.1109/IMTC.2008.45471.
  • 9. Suzuki H., Hotchi T. A New Measurement System for the Perpendicular Complex Permittivity to DUT Sheet by Stripline Simulation. IEEE Transactions on Instrumentation and Measurement, 2012, 7 p., DOI: 10.1109/TIM.2012.21923 34.
  • 10. RT/duroid 5870 / 5880 High Frequency Laminates. Available at: https://saifontech.ru/uploads/manufacturer-/ attachment/209/Rogers%20_RT_duroid%205870_5880_%20- HF%20CCL.%20PTFE%20Dk2.33-2.3.pdf, free (Accessed: February 20, 2023).
  • 11. Baharev S.I. Spravochnik po raschetu i konstruirovaniyu SVCh poloskovyh ustrojstv [Handbook on the calculation and design of microwave strip devices], Ed. V.I. Volman. Moscow, Radio and Communications, 1982. 328 p.
  • 12. Feldshtejn A.L., Yavich L.R., Smirnov V.P. Spravochnik po elementam volnovodnoj tekhniki [Handbook of waveguide technology elements]. Moscow, Sov. radio, 1963. 652 p.
  • 13. Toshihide Kitazawa Metallization Thickness Effect of Striplines with Anisotropic Media: Qua-si-Static and Hybrid- Mode Analysis. IEEE Transactions on Microwave Theory and Techniques, 1989, vol. 37, no. 4, рр. 769–775.
  • 14. Gupta K.С., Garg R., Chadha R. Mashinnoe proektirovanie SVCH ustrojstv [Computer aided design of microwave circuits], Ed. V.G. Shejnkman. Moscow, Radio and Communications, 1987. 423 p.
  • 15. Metodika izmerenij otnositelnoj dielektricheskoj pronicaemosti i tangensa ugla dielektricheskih poter' listovyh dielektri-cheskih materialov v SVCh diapazone pri pomoshchi polosko-vyh rezonansnyh struktur». Available at: https://fgis.gost.ru/fundmetrology/regist-ry/16/items/1386797, free (Accessed: February 27, 2023) (in Russ.)
Editorial office address

Executive Secretary of the Editor’s Office

 Editor’s Office: 40 Lenina Prospect, Tomsk, 634050, Russia

  Phone / Fax: + 7 (3822) 701-582

  journal@tusur.ru

 

Executive Secretary of the Editor’s Office

 Editor’s Office: 40 Lenina Prospect, Tomsk, 634050, Russia

  Phone / Fax: + 7 (3822) 51-21-21 / 51-43-02

Subscription for updates