Two-dimensional 8 x 8 photoreceiver array and VCSEL drivers for high-throughput optical data links

Two custom GaAs integrated circuits (ICs) have been developed for enabling vertical cavity surface emitting laser (VCSEL) arrays to be used for high throughput spatial division multiplexed (SDM) optical data links. A 16-channel driver IC was developed to drive the VCSEL array and an 8 x 8 monolithic...

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Veröffentlicht in:IEEE journal of solid-state circuits 2001-09, Vol.36 (9), p.1297-1302
Hauptverfasser: Hietala, V M, Chun, C, Laskar, J, Choquette, K D, Geib, K M, Allerman, A A, Hindi, J J
Format: Artikel
Sprache:eng
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Zusammenfassung:Two custom GaAs integrated circuits (ICs) have been developed for enabling vertical cavity surface emitting laser (VCSEL) arrays to be used for high throughput spatial division multiplexed (SDM) optical data links. A 16-channel driver IC was developed to drive the VCSEL array and an 8 x 8 monolithic photoreceiver, which spatially matches the VCSEL array, was developed for receive. Both of these circuits were fabricated in a standard commercial GaAs MESFET process with parasitic photodetectors used for the photoreceivers. Power dissipation and circuit size were primary design challenges for both circuits. The present 8 x 8 array size along with an estimated usable channel speed of 1 Gb/s allows for an aggregate throughput of 64 Gb/s.
ISSN:0018-9200
DOI:10.1109/4.944654