DocumentCode :
1526449
Title :
A compact 3R-receiver module for short-haul SDH STM-16 systems
Author :
Centurelli, Francesco ; Magliocco, Massimo ; Pallotta, Andrea ; Tommasino, Pasquale ; Trifiletti, Alessandro
Author_Institution :
Dipartimento di Ingegneria Elettronica, Rome Univ., Italy
Volume :
19
Issue :
9
fYear :
2001
fDate :
9/1/2001 12:00:00 AM
Firstpage :
1307
Lastpage :
1315
Abstract :
This paper describes a complete 3R optical receiver module for synchronous digital hierarchy (SDH) STM-16 short-haul systems, housed in a 20-pin dual-in-line (DIL) ceramic package. The module includes an InGaAs p-i-n photodiode, a commercial GaAs transimpedance amplifier, and a custom-made silicon bipolar frequency- and phase-locked loop (FPLL)-based clock and data recovery (CDR) circuit. The fiber pigtail is actively aligned to the photodiode by using a proprietary technology that uses a silicon-based optical submount assembly (OSA). The use of a clock recovery circuit based on an FPLL allows avoiding an external low-frequency reference clock and achieving a root-mean square (rms) jitter of 0.075 UI. The module requires two supply voltages of 5 V and -4.5 V, for a total power dissipation of 930 mW, and has a total volume below 0.75 cm3 (24.7×9.9×3 mm3). Measurements have shown full compatibility with SDH standards
Keywords :
SONET; ceramic packaging; modules; optical fibre communication; optical receivers; synchronisation; synchronous digital hierarchy; 20-pin dual-in-line ceramic package; 4.5 V; 5 V; 930 mW; DIL ceramic package; FPLL; GaAs; InGaAs; InGaAs p-i-n photodiode; Si bipolar frequency-locked loop-based clock; Si bipolar phase-locked loop-based clock; based optical submount assembly; clock recovery circuit; commercial GaAs transimpedance amplifier; compact 3R-receiver module; data recovery circuit; fiber pigtail; optical receiver module; short-haul SDH STM-16 systems; supply voltage; synchronous digital hierarchy; synchronous transfer mode; total power dissipation; total volume; Ceramics; Circuits; Clocks; Electronics packaging; Gallium arsenide; Indium gallium arsenide; Optical amplifiers; Optical receivers; PIN photodiodes; Synchronous digital hierarchy;
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/50.948278
Filename :
948278
Link To Document :
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