• Infrared Technology
  • Vol. 45, Issue 2, 195 (2023)
Wenli ZHAO, Haolan LI, Hao SUN*, Wei HUANG, Renzhi LI, Jian HUAN, Jun CHEN, Yingxu ZHANG, and Ruiju XU
Author Affiliations
  • [in Chinese]
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    DOI: Cite this Article
    ZHAO Wenli, LI Haolan, SUN Hao, HUANG Wei, LI Renzhi, HUAN Jian, CHEN Jun, ZHANG Yingxu, XU Ruiju. Overview of Micro-Rotary Stirling Cryocoolers for HOT IR detectors[J]. Infrared Technology, 2023, 45(2): 195 Copy Citation Text show less
    References

    [1] CHEN Xiaoping, SUN Hao, NIE Xiliang, et al. Overview of microminiature stirling cryocoolers for high temperature applications[C]//International Cryocooler Conference (ICC19), 2016: 115-120.

    [6] Riabzev S V, Radchenko D, Raf D, et al. Ricor's new development of HOT cryocoolers: compact cost-effective linear model[C] //Proc of SPIE on Infrared Technology and Applications XLV, 2019: 11002: DOI:10.1117/12. 2520842.

    [7] Nussberger M, Zehner S, Withopf A, et al. Update on AIM HOT cooler developments[C]//Proc. SPIE on Infrared Technology and Applications XLV, 2019: 11002: DOI:10.1117/12.2520488.

    [9] Filis A, Bar haim Z, Havatzelet T, et al. Ricor's rotary cryocoolers development and optimization for HOT IR detectors [C] //Proc. Of SPIE Infrared Technology and Applications XXXVIII, 2012: 8353: DOI: 10.1117/12. 923835.

    [10] Amiram katz Victor-Segal, Avishai-Filis. RICOR's cryocoolers development and optimization for HOT IR detectors[C]// Proc. of SPIE on Infrared Technology and Applications XL, 2014, 9070: DOI:10.1117/12. 2050317.

    [11] David O B, Carmiel M, Segal V, et al. Ricor's advanced rotary cryocooler for HOT IR detectors[C]//Proc. Of SPIE on Infrared Technology and Applications XLV, 2019, 11002: DOI: 10.1117/12.2517715

    [12] Nachman I, Riabzev S, Filis A, et al. Advanced Ricor cryocoolers for high-end IR missile warning systems and ruggedized platforms[C] // Proc. of SPIE on Infrared Technology and Applications XLI., 2015, 9451: DOI: 10.1117/12.2176019.

    [13] Jean Yves Martin, Jean Marc Cauquil, Tonny Benschop, et al. Thales cryogenics rotary cryocoolers for HOT applications[C] //Proc. of SPIE on Infrared Technology and Applications XXXVIII, 2012, 8353: DOI:10.1117/12.918587.

    [14] Pundak N, Porat Z, Barak M, et al. Field reliability of Ricor microcoolers [C]// Proc. Of SPIE on Infrared Technology and Applications XXXV, 2009, 7298: DOI:10.1117/12.816262.

    [15] Zvi Porat, A Sne-Or, Nachman Pundak, et al. Reliability assessment procedure of cryocoolers[C]// Proc of SPIE on Infrared Technology and Applications XXIV, 1998, 3436: DOI: 10.1117/12.328031.

    [16] Groep W, Weijden H, Leeuwen R V, et al. Update on MTTF figures for linear and rotary coolers of Thales cryogenics[C] //Proc. SPIE on Infrared Technology and Applications XXXVIII, 2012, 8353: DOI: 10.1117/12.918245.

    [17] Katz A, Bar Haim Z, Riabzev S, et al. Development and optimization progress with RICOR cryocoolers for HOT IR detectors[C] //Proc. of SPIE on Infrared Technology and Applications XLI, 2015: 9451: DOI: 10.1117/ 12.2176016.

    [18] Levin E, Katz A, Haim Z B, et al. RICOR cryocoolers for HOT IR detectors from development to optimization for industrialized production[C] //Proc. of SPIE on Tri-Technology Device Refrigeration (TTDR) II. 2017, 10180: DOI: 10.1117/12. 2262334.

    ZHAO Wenli, LI Haolan, SUN Hao, HUANG Wei, LI Renzhi, HUAN Jian, CHEN Jun, ZHANG Yingxu, XU Ruiju. Overview of Micro-Rotary Stirling Cryocoolers for HOT IR detectors[J]. Infrared Technology, 2023, 45(2): 195
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