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1.6 Gbit/s optical receiver at 1.3 μm with SAW timing retrieval circuit

1.6 Gbit/s optical receiver at 1.3 μm with SAW timing retrieval circuit

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The performance of a 1.6 Gbit/s optical receiver employing a s.a.w. filter as a timing tank is reported. The error-rate characteristics in a p.c.m. transmission system using a 1.3 μm In-GaAsP laser and single-mode fibres were studied. The average received optical power at a 10−9 error rate was −28 dBm. In a 15 km transmission experiment, the receiving level was degraded by 2 dB owing to fibre dispersion. Timing phase margin of 75 degrees after 12 km transmission was confined with the self-timed receiver.

References

    1. 1)
      • J. Yamada , S. Machida , T. Kimura , H. Takata . Dispersion-free single-mode fibre transmission experiments up to 1.6 Gbit/s. Electron. Lett. , 278 - 279
    2. 2)
      • T. Kimura , K. Daikoku . A proposal on optical fiber transmission systems in a low-loss 1.0–1.4 μm wavelength region. Opt. & Quantum Electron. , 33 - 42
    3. 3)
      • J. Yamada , M. Saruwatari , K. Asatani , H. Tsuchiya , A. Kawana , K. Sugiyama , T. Kimura . High-speed optical pulse transmission at 1.29 μm wavelength using low-loss single-mode fibers. IEEE J. Quantum Electron. , 791 - 800
    4. 4)
      • H. Ando , H. Kanbe , T. Kimura , T. Yamaoka , T. Kaneda . Characteristics of germanium avalanche photodiodes in wavelength region 1–1.6 μm. IEEE J. Quantum Electron. , 804 - 810
    5. 5)
      • K. Oe , S. Ando , K. Sugiyama . 1.3 μm cw operation of GaInAsP/InP DH diode lasers at room temperature. Japan J. Appl. Phys. , 1273 - 1274
    6. 6)
      • J. Temmyo , S. Yoshikawa . SAW band-pass filter design for 1.6 GHz PCM timing tank applications. IEEE Trans. Microwave Theory & Tech.
    7. 7)
      • T. Izawa , N. Shibata , A. Takeda . Optical attenuation in pure doped fused silica in the i.r. wavelength. Appl. Phys. Lett. , 33 - 35
    8. 8)
      • M. Kawachi , A. Kawana , T. Miyashita . Low-loss single-mode fiber at the material-dispersion-free wavelength of 1.27 μm. Electron. Lett. , 442 - 443
    9. 9)
      • H. Tsuchiya , N. Imoto . Dispersion-free single-mode fibre in 1.5 μm wavelength region. Electron. Lett. , 476 - 478
    10. 10)
      • S. Machida , J. Yamada , T. Mukal , Y. Horikoshi , H. Tsuchiya , T. Miya . 1.5 μm optical transmission experiments using very low-loss single-mode fibres. Electron. Lett. , 219 - 221
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