• Acta Photonica Sinica
  • Vol. 43, Issue 4, 406003 (2014)
WANG Yang*, LI Ming-wei, and WANG Dong-shan
Author Affiliations
  • [in Chinese]
  • show less
    DOI: 10.3788/gzxb20144304.0406003 Cite this Article
    WANG Yang, LI Ming-wei, WANG Dong-shan. Investigation of Ethernet Passive Optical Network-Optical Network Unit Using Flexible Printed Circust-Bidirectional Optical Sub-Assembly[J]. Acta Photonica Sinica, 2014, 43(4): 406003 Copy Citation Text show less
    References

    [1] KRAMER G, PESAVENTO G. Ethernet passive optical network (EPON): Building a next-generation optical access network[J]. IEEE Communications Magazine, 2002, 40(2): 66-73.

    [2] PARK S, LEE C, JEONG K, et al. Fiber-to-the-home services based on wavelength-division-multiplexing passive optical network [J]. Journal of Lightwave Technology, 2004, 22(11): 2582-2591.

    [3] AMITABHA B, YOUNGIL P, FREDERICK C, et al. Wavelength-division-multiplexed passive optical network (WDM-PON) technologies for broadband access: a review[J]. Journal of Optical Communications and Networking, 2005, 4(11): 737-758.

    [4] HARSTEAD E, SHARPE R. et al. Future fiber-to-the-home bandwidth demands favor time division multiplexing passive optical networks[J]. Communications Magazine, 2012, 50(11): 218-223.

    [5] SEGARRA J, SALES V, PRAT J. et al. Planning and designing FTTH networks: Elements, tools and practical issues[C]. International Conference on Transparent Optical Networks, Coventry, UK, 2012.

    [6] MASUKO K, ORI T, TANKA T. et al. A low cost PON transceiver using single TO-CAN type micro-BOSA[C]. Proceedings of the 56th Electronic Components and Technology Conference, San Diego, USA, 2006.

    [7] YAMADA Y, SUZUKI S, MORIWAKI K, et al. Application of planar lightwave circuit platform to hybrid integrated optical WDM transmitter/receiver module[J]. Electronics Letters, 1995, 31(16): 1366-1367.

    [8] NARGARAJAN R, KATO M, PLEUMEEKER J, et al. InP photonic integrated circuits[J]. Journal of Selected Topics in Quantum Electronics, 2010, 16(5): 1113-1125.

    [9] NAKANO H, SASAKI S, MAEDA M, et al. Dual-in-line laser diode module for fiber-optic transmission up to 4 Gbit/s[J]. Journal of Lightwave Technology, 1987, 5(10): 1403-1411.

    [10] WU A, WANG L, ERIC J, et al. Modular integration of electronics and microfluidic systems using flexible printed circuit boards[J]. Lab on a Chip, 2010, 10(4): 519-521.

    [11] LEONG W, ABDULLAH M, KHOR C. Application of flexible printed circuit board (FPCB) in personal computer motherboards: Focusing on mechanical performance[J]. Microelectronics Reliability, 2012, 52(4): 744-756.

    [12] JAN V, MARIO G, FREDERICK B, et al. Printed circuit board technology inspired stretchable circuits[J]. MRS Bulletin, 2012, 37(3): 254-260.

    [13] ALPER B, AMIT L, et al. Low-cost flexible printed circuit technology based microelectrode array for extracellular stimulation of the invertebrate locomotory system[J]. Sensors and Actuators A: Physical, 2011, 169(1): 89-97.

    [14] YAGISAWA T, SHIRAISHI T, KUWATA N, et al. 30-Gb/s VCSEL transmitter fabricated on flexible printed circuit substrate[C]. Proceeding of European Conference on Optical Communication, 2010, ECOC′10, 36th, 2010: 1-3.

    [15] XU C, LU K, LIU W, et al. Complete small signal equivalent circuit model of 10Gb/s TOSA package EML module[C]. Proceeding of Electronic Packaging Technology and High Density Packaging, 2011, ICEPT-HDP, 12th, 2011:1-3.

    WANG Yang, LI Ming-wei, WANG Dong-shan. Investigation of Ethernet Passive Optical Network-Optical Network Unit Using Flexible Printed Circust-Bidirectional Optical Sub-Assembly[J]. Acta Photonica Sinica, 2014, 43(4): 406003
    Download Citation