Design of a thermoelectric cooling module for an X-ray detector

Authors

  • A.V. Prybyla 1. Institute of Thermoelectricity of the NAS and MES of Ukraine, 1 Nauky str., Chernivtsi, 58029, Ukraine. 2. Yuriy Fedkovych Chernivtsi National University 2 Kotsiubynskyi str., Chernivtsi, 58012, Ukraine

Keywords:

computer design, thermoelectric cooling, X-ray detector

Abstract

The paper presents the results of designing a thermoelectric multistage thermoelectric cooling module for
X-ray detectors. The structure of a thermoelectric cooler as part of an X-ray detector is developed and the possibilities of its practical use are analyzed. Bibl. 12, Fig. 2.

References

1. Buhay O.M., Drozdenko M.O., Storizhko V.Yu. (2014). Microanalytical X-ray facility in IAP NASU. Nanotechnology and Nanomaterials. Book of Abstracts. Lviv.

2. Woldseth R. (1973). X-Ray energy spectrometry. Kevex: Scotts Valley, CA.

3. Stone R.E., Barkley V.A. and Fleming J.A. (1986). Performance of a Gamma-ray and X-ray spectrometer using Germanium and Si (Li) detectors cooled by a closed-cycle cryogenic mechanical refrigerator. IEEE Trans. Nucl. Sci. NS-33, 1, 299.

4. Broerman E.C., Keyser R.M., Twomey T.R., Upp D.L. A new cooler for HPGe detector systems, ORTEC. PerkinElmer Instruments: Inc Oak Ridge TN 37831-0895 USA.

5. Schlesinger TE, James RB. (1995). Semiconductors and semimetals. Vol. 43. Semiconductors for room temperature nuclear detector applications. New York: Academic Press.

6. Semiconductors for room-temperature detectors. Applications II. (1998). Materials Research Society Symposium Proceedings, Vol. 487. Materials Research Society: Warrendale, PA.

7. Sokolov, A., Loupilov, A., Gostilo, V. (2004). Semiconductor Peltier-cooled detectors for x-ray fluorescence analysis. X-Ray Spectrometry, 33(6), 462–465. doi:10.1002/xrs.744.

8. http://www.rmtltd.ru/applications/photodetectors/xray.php.

9. http://www.amptek.com/wp-content/uploads/2014/04/XR-100T-CdTe-X-ray-and-Gamma-Ray-Detector-Specifications.pdf.

10. Anatychuk L.I., Vikhor L.N. (2013). The limits of thermoelectric cooling for photodetectors. J. of Thermoelectricity, 5, 54-58.

11. COMSOL Multiphysics User’s Guide (2010). COMSOLAB, 804 p.

12. Anatychuk L.I., Semeniuk V.A. (1992). Optimalnoie upravleniie svoistvami termoelektricheskikh materialov i priborov [Optimal control over the properties of thermoelectric materials and instruments]. Chernivtsi: Prut [in Russian].

How to Cite

Prybyla, A. (2024). Design of a thermoelectric cooling module for an X-ray detector. Journal of Thermoelectricity, (2), 83–88. Retrieved from http://jte.ite.cv.ua/index.php/jt/article/view/100

Issue

Section

Thermoelectric products

Most read articles by the same author(s)

Similar Articles

<< < 1 2 3 4 > >> 

You may also start an advanced similarity search for this article.