Optical interconnects for satellite payloads: Sizing up the state of the art

Michael Vervaeke, Christof Debaes, Jürgen Van Erps, Hugo Thienpont, Mikko Karppinen, Antti Tanskanen, Timo Aalto, Mikko Harjanne

Research output: Contribution to journalOther journal contributionProfessional

Abstract

New optical interconnects have the potential to perform in harsh environments like outer space, where future digital satellite systems will require high data-communication speeds and low power consumption.
Original languageEnglish
JournalSPIE Newsroom: Electronic Imaging & Signal Processing
DOIs
Publication statusPublished - 30 Apr 2010
MoE publication typeD1 Article in a trade journal

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Optical interconnects
Electric power utilization
Satellites
Communication

Cite this

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title = "Optical interconnects for satellite payloads: Sizing up the state of the art",
abstract = "New optical interconnects have the potential to perform in harsh environments like outer space, where future digital satellite systems will require high data-communication speeds and low power consumption.",
author = "Michael Vervaeke and Christof Debaes and {Van Erps}, J{\"u}rgen and Hugo Thienpont and Mikko Karppinen and Antti Tanskanen and Timo Aalto and Mikko Harjanne",
year = "2010",
month = "4",
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doi = "10.1117/2.1201003.002685",
language = "English",
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Optical interconnects for satellite payloads : Sizing up the state of the art. / Vervaeke, Michael; Debaes, Christof; Van Erps, Jürgen; Thienpont, Hugo; Karppinen, Mikko; Tanskanen, Antti; Aalto, Timo; Harjanne, Mikko.

In: SPIE Newsroom: Electronic Imaging & Signal Processing, 30.04.2010.

Research output: Contribution to journalOther journal contributionProfessional

TY - JOUR

T1 - Optical interconnects for satellite payloads

T2 - Sizing up the state of the art

AU - Vervaeke, Michael

AU - Debaes, Christof

AU - Van Erps, Jürgen

AU - Thienpont, Hugo

AU - Karppinen, Mikko

AU - Tanskanen, Antti

AU - Aalto, Timo

AU - Harjanne, Mikko

PY - 2010/4/30

Y1 - 2010/4/30

N2 - New optical interconnects have the potential to perform in harsh environments like outer space, where future digital satellite systems will require high data-communication speeds and low power consumption.

AB - New optical interconnects have the potential to perform in harsh environments like outer space, where future digital satellite systems will require high data-communication speeds and low power consumption.

U2 - 10.1117/2.1201003.002685

DO - 10.1117/2.1201003.002685

M3 - Other journal contribution

JO - SPIE Newsroom: Electronic Imaging & Signal Processing

JF - SPIE Newsroom: Electronic Imaging & Signal Processing

ER -