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== Launch ==
== Launch ==
Launch originally planned on [[Ariane (rocket family)|Ariane]] but it couldn't wait till a launch orbital position was available. AMOS-2 was originally supposed to be launched by the French launcher Ariane, as AMOS-1 was. However, the [[France]] sold the launch orbital position to another customer, due to what it claimed were delays in the satellite's production. After IAI threatened a lawsuit, [[Arianespace]] arranged the alternative launch on the Soyuz-FG Fregat, which is made by a company jointly owned by Arianespace.<ref name="Gunter"/> It was therefore transferred on [[Soyuz (rocket family)|Soyuz-Fregat]]. AMOS-2 was launched on 27 December 2003, at 21:30:00 [[Coordinated Universal Time|UTC]] from [[Baikonur Cosmodrome]], [[Kazakhstan]] and it serves clients in three service regions: [[Middle East]] (including Israel), [[Europe]] and [[Eastern United States|eastern coast]] of [[United States]]. After its launch into [[geostationary transfer orbit]] (GTO) by [[Soyuz-FG]] [[launch vehicle]], AMOS-2 was taken to its final geostationary orbit by firing the apogee boost motor in phases. After it reached the geostationary orbit, its antenna and [[Solar panels on spacecraft|solar panels]] were deployed and the satellite was finally placed in its allocated orbital position of 4° West longitude. '''AMOS-2''' and '''AMOS-3''' are placed in proximity to create common location, which enables to satellite users to increase user abilities without additional [[Antenna (radio)|antennas]].
Launch was originally planned on an [[Ariane (rocket family)|Ariane]] but it could not wait until a launch orbital position was available. France sold the launch orbital position to another customer, due to what it claimed were delays in the satellite's production. After IAI threatened a lawsuit, [[Arianespace]] arranged the alternative launch on the Soyuz-FG Fregat, which is made by a company jointly owned by Arianespace.<ref name="Gunter"/> It was therefore transferred on [[Soyuz (rocket family)|Soyuz-Fregat]]. AMOS-2 was launched on 27 December 2003, at 21:30:00 [[Coordinated Universal Time|UTC]] from [[Baikonur Cosmodrome]], [[Kazakhstan]] and it serves clients in three service regions: [[Middle East]] (including Israel), Europe and [[Eastern United States|eastern coast]] of United States. After its launch into [[geostationary transfer orbit]] (GTO) by [[Soyuz-FG]] [[launch vehicle]], AMOS-2 was taken to its final geostationary orbit by firing the apogee boost motor in phases. After it reached the geostationary orbit, its antenna and [[Solar panels on spacecraft|solar panels]] were deployed and the satellite was finally placed in its allocated orbital position of 4° West longitude. '''AMOS-2''' and '''AMOS-3''' are placed in proximity to create common location, which enables to satellite users to increase user abilities without additional [[Antenna (radio)|antennas]].


== Mission ==
== Mission ==

Revision as of 16:15, 20 August 2022

AMOS-2
NamesAffordable Modular Optimized Satellite-2
Mission typeCommunications
OperatorSpacecom Satellite Communications
COSPAR ID2003-059A Edit this at Wikidata
SATCAT no.28132
Websitehttps://www.amos-spacecom.com/
Mission duration12 years (planned)
13 years (achieved)
Spacecraft properties
SpacecraftAMOS-2
Spacecraft typeAMOS
BusAMOS Bus
ManufacturerIsrael Aerospace Industries (bus)
Alenia Spazio (payload)
Launch mass1,370 kg (3,020 lb)
Dry mass646 kg (1,424 lb)
Dimensions2.7 m × 2.06 m × 2.38 m (8 ft 10 in × 6 ft 9 in × 7 ft 10 in)
Span: 11.03 m (36.2 ft) on orbit
Power1900 watts
Start of mission
Launch date27 December 2003,
21:30:00 UTC[1]
RocketSoyuz-FG / Fregat
(s/n D15000-008)
Launch siteBaikonur, Site 31/6
ContractorProgress Rocket Space Centre
Entered serviceJanuary 2004
End of mission
DisposalGraveyard orbit
Deactivated2 April 2017 [2]
Orbital parameters
Reference systemGeocentric orbit[3]
RegimeGeostationary orbit
Longitude4° West
Transponders
Band22 (+ 6 spares) Ku-band
Bandwidth72 MHz
Coverage areaCentral Europe, Israel, Middle East
← AMOS-1
AMOS-3 →

AMOS-2 is an Israeli commercial second generation communication satellite, part of the AMOS series of satellites. The satellite was positioned at 4° West longitude in the geostationary orbit. Transmission and communication services given by this satellite include: direct distribution of television and radio translations to communication centers, distribution of internet services, data transmissions to communication networks. The new satellite, like its predecessor, will be positioned 36,000 kilometers above the Earth, and it will lie close to AMOS-1, so that the two can share a single space antenna.[4]

Satellite description

AMOS-2 carries 28 Ku-band transponders; twenty-two active with six as backups.[4] With a mass of 1370 kg at launch, AMOS-2 incorporated a 400 newtons liquid apogee boost motor and fourteen 10 newtons reaction control thrusters for raising the satellite's orbit from geostationary transfer orbit (GTO) to its final geostationary orbit as well as for its attitude control. It carried 450 kg of propellant (Monomethylhydrazine and MON-1). AMOS-2 measures 11.03 m in length in its final in-orbit configuration. It is 3-axis body stabilised using Sun and Earth sensors, momentum and reaction wheels. Its solar array generates 1900 watts power, backed up by 24 A·h nickel–cadmium batteries.

Launch

Launch was originally planned on an Ariane but it could not wait until a launch orbital position was available. France sold the launch orbital position to another customer, due to what it claimed were delays in the satellite's production. After IAI threatened a lawsuit, Arianespace arranged the alternative launch on the Soyuz-FG Fregat, which is made by a company jointly owned by Arianespace.[4] It was therefore transferred on Soyuz-Fregat. AMOS-2 was launched on 27 December 2003, at 21:30:00 UTC from Baikonur Cosmodrome, Kazakhstan and it serves clients in three service regions: Middle East (including Israel), Europe and eastern coast of United States. After its launch into geostationary transfer orbit (GTO) by Soyuz-FG launch vehicle, AMOS-2 was taken to its final geostationary orbit by firing the apogee boost motor in phases. After it reached the geostationary orbit, its antenna and solar panels were deployed and the satellite was finally placed in its allocated orbital position of 4° West longitude. AMOS-2 and AMOS-3 are placed in proximity to create common location, which enables to satellite users to increase user abilities without additional antennas.

Mission

In April 2017, Amos Spacecom announced that AMOS-2 has reached the end of its commercial life, and is being cleared from the geostationary orbit to the graveyard orbit.[2]

See also

References

  1. ^ McDowell, Jonathan (14 March 2021). "Launch Log". Jonathan's Space Report. Retrieved 6 May 2021.
  2. ^ a b "Amos Spacecom: After 13 years, AMOS-2 satellite has reached the end of its commercial life (Hebrew)". Sponsor, based on official notification from spacecom. 2 April 2017.
  3. ^ "AMOS 2". N2YO.com. Retrieved 6 May 2021.
  4. ^ a b c "AMOS-2". Gunter's Space Page. 11 December 2017. Retrieved 6 May 2021.