MONOLITHIC SILICON PHOTODETECTOR/AMPLIFIER IC FOR FIBER AND INTEGRATED OPTICS APPLICATION.

被引:0
|
作者
Hartman, Davis H. [1 ]
Grace, Martin K. [1 ]
Ryan, Carl R. [1 ]
机构
[1] Motorola Government Electronics, Group, Scottsdale, AZ, USA, Motorola Government Electronics Group, Scottsdale, AZ, USA
关键词
DIGITAL COMMUNICATION SYSTEMS - FIBER OPTICS - LIGHT - Amplifiers - OPTICAL COMMUNICATION - SEMICONDUCTOR DIODES; PHOTODIODE;
D O I
暂无
中图分类号
学科分类号
摘要
The primary design considerations, fabrication techniques, and measured performance bounds on a monolithic silicon photodetector/amplifier integrated circuit are presented. The IC was designed for utilization in short-to-medium-haul fiber-optic data links, performing signal processing and isolation functions at data rates up to 500 Mb/s. Consisting of a p-i-n photodiode integrated monolithically with a multistage amplifier/limiter circuit, the device was fabricated with the planar high-frequency bipolar transistors commonly used for emitter coupled logic circuits. Circuit features include dc coupling, wideband operation, and capability of driving 50 OMEGA at the output to 0. 5 V (peak-peak).
引用
收藏
页码:729 / 738
相关论文
共 43 条
  • [21] A HIGH-EFFICIENCY LASER-PHOTODETECTOR COMBINATION IN A MONOLITHIC INTEGRATED-OPTICS MODULE UTILIZING COUPLED WAVE-GUIDES
    ZARGARYANTS, MN
    GRUDIN, OM
    GALKINA, NB
    GORELOVA, EL
    KVANTOVAYA ELEKTRONIKA, 1985, 12 (10): : 2036 - 2041
  • [22] Nanoresonator Integrated Fiber Optics Sensor for Pressure Immune Temperature Sensing Application
    Guan, Zizhong
    Jia, Xiangjie
    Li, Min
    Li, Mingyu
    Wen, Xiaoyan
    Deng, Shuo
    Liu, Sisi
    Ho, Ho-Pui
    Lu, Haifei
    IEEE SENSORS JOURNAL, 2023, 23 (07) : 6880 - 6885
  • [23] Monolithic Full-Stokes Near-Infrared Polarimetry with Chiral Plasmonic Metasurface Integrated Graphene-Silicon Photodetector
    Li, Lingfei
    Wang, Junzhuan
    Kang, Lei
    Liu, Wei
    Yu, Li
    Zheng, Binjie
    Brongersma, Mark L.
    Werner, Douglas H.
    Lan, Shoufeng
    Shi, Yi
    Xu, Yang
    Wang, Xiaomu
    ACS NANO, 2020, 14 (12) : 16634 - 16642
  • [24] A silicon photonics multi-functional integrated optical circuit for interferometric fiber optics gyroscope
    Kuo, Tzu-Jung
    Lu, Sin-Yun
    Chen, Wei-Xuan
    Wang, Yen-Chieh
    Hung, Yung-Jr
    2023 IEEE SILICON PHOTONICS CONFERENCE, SIPHOTONICS, 2023,
  • [25] Integrated optics erbium-ytterbium amplifier system in 10-Gb/s fiber transmission experiment
    Lucent Technologies, Breinigsville, United States
    IEEE Photonics Technol Lett, 2 (247-249):
  • [26] Integrated optics erbium-ytterbium amplifier system in 10-Gb/s fiber transmission experiment
    Delavaux, JMP
    Granlund, S
    Mizuhara, O
    Tzeng, LD
    Barbier, D
    Rattay, M
    SaintAndre, F
    Kevorkian, A
    IEEE PHOTONICS TECHNOLOGY LETTERS, 1997, 9 (02) : 247 - 249
  • [27] Plasma enhanced chemical vapor deposition silicon oxynitride optimized for application in integrated optics
    Wörhoff, K
    Driessen, A
    Lambeck, PV
    Hilderink, LTH
    Linders, PWC
    Popma, TJA
    SENSORS AND ACTUATORS A-PHYSICAL, 1999, 74 (1-3) : 9 - 12
  • [28] Integrated optics erbium ytterbium amplifier system in 10Gb/s fiber transmission experiment.
    Delavaux, JMP
    Granlund, S
    Mizuhara, O
    Tzeng, LD
    Barbier, D
    Rattay, M
    SaintAndre, F
    Kevorkian, A
    22ND EUROPEAN CONFERENCE ON OPTICAL COMMUNICATIONS, PROCEEDINGS, VOLS 1-6: CO-LOCATED WITH: 2ND EUROPEAN EXHIBITION ON OPTICAL COMMUNICATION - EEOC '96, 1996, : A123 - A126
  • [29] Plasma enhanced chemical vapor deposition silicon oxynitride optimized for application in integrated optics
    Wörhoff, K.
    Driessen, A.
    Lambeck, P.V.
    Hilderink, L.T.H.
    Linders, P.W.C.
    Popma, Th.J.A.
    Sensors and Actuators, A: Physical, 1999, 74 (01): : 9 - 12
  • [30] ELECTRON-HOLE PAIR GENERATION RATE OF A MONOLITHIC INTEGRATED WAVE-GUIDE PHOTODETECTOR - APPLICATION TO THE MODELING OF MONOLITHIC INTEGRATED WAVE-GUIDE P-I-N PHOTODIODES
    VINCHANT, JF
    VILCOT, JP
    DECOSTER, D
    JOURNAL OF LIGHTWAVE TECHNOLOGY, 1990, 8 (12) : 1920 - 1931