• Infrared and Laser Engineering
  • Vol. 52, Issue 9, 20230179 (2023)
Weihong Zhu1,2,3, Yang Wang2,4, Lihao Wang2,3, Yichen Liu2,3, and Zhenyu Wu1,2,3,4,*
Author Affiliations
  • 1School of Microelectronics, Shanghai University, Shanghai 200444, China
  • 2State Key Laboratory of Transducer Technology, Shanghai Institute of Microsystem and Information Technology, Chinese Academy of Sciences, Shanghai 200050, China
  • 3Shanghai Industrial Technology Research Institute, Shanghai 201800, China
  • 4University of Chinese Academy of Sciences, Beijing 100049, China
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    DOI: 10.3788/IRLA20230179 Cite this Article
    Weihong Zhu, Yang Wang, Lihao Wang, Yichen Liu, Zhenyu Wu. Research progress of reliability of MEMS fast steering mirror for satellite laser communication[J]. Infrared and Laser Engineering, 2023, 52(9): 20230179 Copy Citation Text show less
    References

    [1] L M Germann, J Braccio. Fine-steering mirror technology supports 10 nanoradian systems. Optical Engineering, 29, 1351-1359(1990).

    [2] Wassom S R. Lowcost largeangle steering mirr development[C]Advances in Optomechanics, SPIE, 2009, 7424: 153164.

    [3] E Csencsics, J Schlarp, T Schopf, et al. Compact high performance hybrid reluctance actuated fast steering mirror system. Mechatronics, 62, 102251(2019).

    [4] Douglass M R. Lifetime estimates unique failure mechanisms of the digital micromirr device (DMD)[C]1998 IEEE International Reliability Physics Symposium Proceedings, 36th Annual (Cat. No. 98CH36173), IEEE, 1998: 916.

    [5] U Hofmann, J Janes, H J Quenzer. High-Q MEMS resonators for laser beam scanning displays. Micromachines, 3, 509-528(2012).

    [6] Jacobs S J, Miller S A, Malone J J, et al. Hermeticity stiction in MEMS packaging[C]2002 IEEE International Reliability Physics Symposium. Proceedings, 40th Annual (Cat. No. 02CH37320), IEEE, 2002: 136139.

    [7] C L Muhlstein, E A Stach, R O Ritchie. Mechanism of fatigue in micron-scale films of polycrystalline silicon for microelectromechanical systems. Applied Physics Letters, 80, 1532-1534(2002).

    [8] C L Muhlstein, S B Brown, R O Ritchie. High-cycle fatigue of single-crystal silicon thin films. Journal of Microelectromechanical Systems, 10, 593-600(2001).

    [9] Shea H R. Reliability of MEMS f space applications[C]Reliability, Packaging, Testing, acterization of MEMSMOEMS V, SPIE, 2006, 6111: 8493.

    [10] Gasparyan A, Shea H, Arney S, et al. Driftfree, 1 000 g mechanical shock tolerant singlecrystal silicon twoaxis MEMS tilting mirrs in a 1 000×1 000pt optical crossconnect[C]Optical Fiber Communication Conference. Optica Publishing Group, 2003: PD36.

    [11] Peixia Wang, Yuqin Jia. Comparative research on linear oscillator in the critical damping and over damping states. Physics and Engineering, 21, 11-14(2011).

    [12] Wallash A J, Levit L. Electrical breakdown ESD phenomena f devices with nanometertomicron gaps[C]Reliability, Testing, acterization of MEMSMOEMS II, SPIE, 2003, 4980: 8796.

    [13] H R Shea, A Gasparyan, H B Chan, et al. Effects of electrical leakage currents on MEMS reliability and performance. IEEE Transactions on Device and Materials Reliability, 4, 198-207(2004).

    [14] Miner A, Milanovic V. High temperature operation of gimballess two axis micromirrs[C]2007 IEEELEOS International Conference on Optical MEMS Nanophotonics, IEEE, 2007: 9192.

    [15] Yu Siyuan. Satellite Light Communication Aiming Capture Tracking Technology [M]. Beijing: Science Press, 2016. (in Chinese)

    [16] Y Toegemann. Steering toward the future: the use of piezo technology for optical intersatellite communication. IEEE Aerospace and Electronic Systems Magazine, 37, 54-57(2022).

    [17] Zhen Wang, Xuemin Cheng. Research progress and development trend of fast steering mirror. Journal of Applied Optics, 40, 373-379(2019).

    [18] Shiliang Lv, Jinguo Liu, Huaide Zhou, . Design of control system for fast steering mirror of infrared detector based on satellite. Infrared and Laser Engineering, 46, 0904005(2017).

    [19] Xu X, Wang B, Han X. Faststeering mirr with selfaligning ball bearing suppting structure[C]6th International Symposium on Advanced Optical Manufacturing Testing Technologies: Design, Manufacturing, Testing of Smart Structures, Micro NanoOptical Devices, Systems. SPIE, 2012, 8418: 109116.

    [20] Dawei Zhang, Xiaomei Feng. The technical principle of voice-coil actuator. Journal of North University of China(Natural Science Edition), 27, 224-228(2006).

    [21] Lei Zhao, Ming Ji, Jia Wang, . Design and simulation of fast steering mirrors connected by universal flexure hinges. Infrared and Laser Engineering, 48, 0218002(2019).

    [22] Dong Meixiang. Research on operating life acteristics of fast steering mirr in satellite optical communication[D]. Harbin: Harbin Institute of Technology, 2016. (in Chinese)

    [23] D C Shin, T G Kim, D W Kim. Influence of cyclical electric load on crack growth in piezoelectric ceramics under a constant mechanical load. Journal of Mechanical Science and Technology, 34, 1623-1628(2020).

    [24] S Sherrit, X Bao, C M Jones, et al. Piezoelectric multilayer actuator life test. IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control, 58, 820-828(2011).

    [25] R C Wiens, S Maurice, S H Robinson, et al. The SuperCam instrument suite on the NASA Mars 2020 rover: Body unit and combined system tests. Space Science Reviews, 217, 1-87(2021).

    [26] R B Anderson, O Forni, A Cousin, et al. Post-landing major element quantification using SuperCam laser induced breakdown spectroscopy. Spectrochimica Acta Part B: Atomic Spectroscopy, 188, 106347(2022).

    [27] Xiaoyi Gui, Weipeng Li, Xintao Zhen, . Composite control of fast steering mirror based on MEMS accelerometer. Aerospace Control, 36, 30-36(2018).

    [28] K Gall, M L Dunn, Y Zhang, et al. Thermal cycling response of layered gold/polysilicon MEMS structures. Mechanics of Materials, 36, 45-55(2004).

    [29] Jiakai Liu, Xinglin Qi, Bo Wang. Influence law of thermal stress on the delamination of MEMS components. Electronic Components And Materials, 32, 84-87(2013).

    [32] Miner A, Milanovic V. High temperature operation of gimballess two axis micromirrs[C]2007 IEEELEOS International Conference on Optical MEMS Nanophotonics. IEEE, 2007: 9192.

    [33] Dayong Qiao, Longfei Shi, Yanyu Cao, . Temperature reliability test of MEMS scanning mirror. Transducer and Microsystem Technologies, 33, 146-148(2014).

    [34] Cao Lanyu. The reliability failure study of MEMS scanning mirr[D]. Xi''an: Nthwestern Polytechnical University, 2016. (in Chinese)

    [35] Lani S, Marozau Y, Dadras M. Reliability evaluation of a MEMS scanner[C]MOEMS Miniaturized Systems XVI, SPIE, 2017, 10116: 3343.

    [36] Bevilacqua M F, Casuscelli V, Costantini S, et al. High temperature operating lifetime test on piezoMEMS devices[C]2021 IEEE 6th International Fum on Research Technology f Society Industry (RTSI), IEEE, 2021: 452456.

    [37] Zihao Yu, Lihao Wang, Yang Wang, . Research progress of fast steering mirror for satellite laser communication. Laser & Optoelectronics Progress, 60, 1500003(2023).

    [38] Tianzi Xu, Hongwei Xin, Xin He. Random vibration fatigue analysis for mirror compnent of space camera. Optical Technique, 549-552(2013).

    [39] Fang X Y, Li X Y, Hu K M, et al. Destructive reliability analysis of electromagic MEMS micromirr under vibration environment[J]. IEEE Journal of ed Topics in Quantum Electronics, 2021, 28(5): 18.

    [40] X Y Fang, K M Hu, G Yan, et al. Shock destructive reliability analysis of electromagnetic mems micromirror for automotive LiDAR. Journal of Microelectromechanical Systems, 31, 134-142(2021).

    [41] Stark B. MEMS reliability assurance guidelines f space applications[R]. Califnia, United States: NASA Pasadena Jet Propulsion Labaty, 1999.

    [42] Chunhua Zhang, Xisen Wen, Xun Chen. Accelerated life testing: an introductory review. Acta Armamentarii, 25, 485-490(2004).

    [43] Zhao Yu, Yang Jun, Ma Xiaobing. Reliability Data Analysis Tutial[M]. Beijing: Beijing University of Aeronautics Astronautics Press, 2009: 171172. (in Chinese)

    [44] Hartzell A L, da Silva M G, Shea H R. MEMS Leliability[M]. En Yunfei, Jia Yubin, Huang Qinwen, translated. Beijing: Electronic Industry Press, 2012: 14 15. (in Chinese)

    [45] Mao Shisong, Wang Lingling. Accelerated Life Test [M]. Beijing: Science Press, 1997: 1114. (in Chinese)

    [46] Hugi S, Maillard T, Baillus A, et al. Fine steering mirr based on piezo actuats: a point ahead mechanism (PAM30) f deep space optical communication module of the psyche mission[C]International Conference on Space Optics—ICSO 2020, SPIE, 2021, 11852: 23292343.

    [47] Tan H, Moyal E, Yap H H, et al. A controlled, mechanical method f MEMS decapsulation[C]2017 IEEE 24th International Symposium on the Physical Failure Analysis of Integrated Circuits (IPFA), IEEE, 2017: 14.

    [48] Application example: Physical failure analysis in a MEMS motion sens: 1 mmwide crosssection perfmed with the TESCAN S8000 X[EBOL]. (20221215)[20230330]. https:www.tescan.comredefininglargeareafibcrosssectioningwiththenewtescans8000 xplasmafibsem.

    [49] Milanovic V, Kasturi A, Yang J. Novel fluidic packaging of gimballess MEMS mirrs f increased optical resolution overall perfmance[C]Micro Nanotechnology Senss, Systems, Applications VIII. SPIE, 2016, 9836: 560571.

    [50] Merz P, Quenzer H J, Bernt H, et al. A novel micromachining technology f structuring bosilicate glass substrates[C]Transducers''03 12th International Conference on SolidState Senss, Actuats Microsystems, Digest of Technical Papers (Cat. No. 03 TH8664), IEEE, 2003, 1: 258261.

    [51] GuStoppel S, Senger F, Wen L, et al. A design manufacturing platfm f AlScN based highly linear quasistatic MEMS mirrs with large optical apertures[C]MOEMS Miniaturized Systems XX, SPIE, 2021, 11697: 106115.

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    Weihong Zhu, Yang Wang, Lihao Wang, Yichen Liu, Zhenyu Wu. Research progress of reliability of MEMS fast steering mirror for satellite laser communication[J]. Infrared and Laser Engineering, 2023, 52(9): 20230179
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