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Electro-thermal Feedback Effects on the Signal in a Pulse Voltage Biased μ-bolometer Focal Plane Array

마이크로 볼로미터 초점면 배열에서 전기-열적 피드백 현상이 신호에 미치는 영향

  • 박승만 (호서대학교 국방과학기술학과) ;
  • 한승오 (호서대학교 융합기술연구소)
  • Received : 2012.10.10
  • Accepted : 2012.11.16
  • Published : 2012.12.01

Abstract

In this paper, the analytical models for the electrothermal feedback of a ${\mu}$-bolometer focal plane array(FPA) are proposed and applied to the conceptually designed FPA to investigate the electrothermal feedback effect on bolometer FPA signal. The temperature and resistance change of the ${\mu}$-bolometer by the electrothermal feedback(ETF) model are increased upto 20 and 35.7 % of those of no feedback case, respectively, while those by the effective thermal conductance(ETC) model increased 8.5 and 15.1 %. The integration current and output voltage of a CTIA used as an column amplifier of FPA are also increased upto 41.6 and 32.4 % by the ETF model, while increased upto 17.2 and 13.5 % by the ETC model. The proposed models give more accurate temperature change, accordingly larger signal than no feedback considering case. Electrothermal feedback effect should be considered to design a high performance and high density ${\mu}$-bolometer FPA. The proposed models are very useful to investigate the transient thermal analysis, also considered to be useful to predict the responsivity and dynamic range of ${\mu}$-bolometer FPAs.

Keywords

References

  1. Chuan Li, C. J. Han, and G. Skidmore, "Overview of DRS uncooled VOx infrared detector development", Optical engineering 50(6), 061017 2011. https://doi.org/10.1117/1.3593155
  2. J.L. Tissot, S. Tinnes, A. Durand, C. Minassian, P. Robert, M. Vilainm and J.J. Yon, "High performance uncooled amorphous silicone video graphics array and extended graphics array infrared forcal plane arrays with 17-um pixel pitch", Optical engineering 50(6), 061006 2011. https://doi.org/10.1117/1.3572155
  3. R. Breiter, T. Ihle, J.C. Wendler, H. Lutz, S. Rutzinger, T. Schallenberg, K. C. Hofmann and J. Ziegler, "Size weight, and power reduction of mercury cadmium telluride infrared detector modules", Optical engineering 50(6), 061010 2011. https://doi.org/10.1117/1.3578405
  4. C. Li, G. Skidmore, and C. Han, "Uncooled VOx Infrared sensor development and application", Proc. of SPIE 8012, pp 80121N-1-8, 2011.
  5. D. Murphy, M. Ray, J. Wyles, C. Hewitt, R. Wyles, E. Gordon, K. Almada, T. Sessler, S. Baur, D. Van Lue and S. Black, "640 ${\times}$ 512 17 ${\mu}m$ Microbolometer FPA and Sensor Development", Proc. of SPIE 6542, pp. 65421Z-1-10, 2007.
  6. P. Ericsson, A.C. Fisher, F. Fosberg, N. Roxhed, B. Samel, S. Savage, G. Stemme, S. Wissmar, O. Oeberg, F. Niklaus, "Towards 17 ${\mu}m$ pitch heterogeneously integrated Si/Ge quantum well bolometer FPAs", Proc. of SPIE 8012, pp 801212-1-9, 2011.
  7. F. Niklaus, C. Jansson, A. Decharat, J. Kallhammer, H. Pettersson and G. Stemme, "Uncooled Infrared Bolometer Arrays Operating in a Low to Medium Vacuum Atmosphere: Performance Model and Tradeoffs", Proc. of SPIE 6542, pp. 65421M-1-12, 2007.
  8. M. Tepegoz, F. Civitchi, and T. Akin, "An optimum reference detector design for uncooled microbolometer FPAs", Proc. of SPIE 6940, pp 694028-1-8, 2008.
  9. A. Oguz, M. Tepegoz and T. Akin, "A Bias Heating Cancellation Method for Resistive Uncooled Microbolometer Detectors", Proc. of SPIE 7298, pp 7298G-1-8, 2009.
  10. W. Parrish, J. Woolaway, "Improvements in uncooled systems using bias equalization", Proc. of SPIE 3698, pp 748-755, 1999.
  11. E. L. Dereniak and G. D. Boreman, Infrared Detectors and Systems, Wiley, New York, pp. 395-414, 1996.
  12. D. Murphy, W. Radford, M. Ray, S. Propst, A Kennedy, J. Kojiro, J. Woolaway, K. Soch, R. Coda, G. Lung, E. Moody, D. Gleichman, and S. Baur, "320${\times}$240 silicon microbolometer uncooled IRFPAs with on-chip offset correction", Proc. of SPIE Vol. 2746, pp. 82-92, 1996.
  13. S.M. Park, "Analyses of temperature change of a $\mu$-bolometer in Focal Plane Array with CTIA bias cancellation circuit", Trans. KIEE. Vol. 60, No. 12, pp. 2311-2317, 2011.
  14. C.H. Hwang, D.H. Woo, Y.S. Lee, and H.C. Lee, "Readout integrated circuit for microbolometer with an analog non-uniformity correction", Proc. of SPIE 5987, pp 59870P-1-8, 2005.
  15. D. Jakonis, C. Svensson, C. Jansson "Readout architectures for uncooled IR detector arrays" Sensors and Actuators 84, pp. 220-229, 2000. https://doi.org/10.1016/S0924-4247(00)00313-7
  16. C. Minassian, J.L. Tissot, M. Vilainm, O. Legras, S. Tinnes, B. Fieque, J.M. Chiappa and P. Robert, "Uncooled amophous silicon TEC-less 1/4 VGA IRFPA with 25 um pixel-pitch for high volume applications", Proc. of SPIE 6940, pp 6940P-1-8, 2008.
  17. Latika Becker, "Influence of IR sensor technology on the military and civil defense", Proc. SPIE 6127, 61270S 2006; doi:10.1117/12.640529.