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APSTAR 7 Satellite

Sector: Aerospace & Defense • Location: Thailand

Source: Aerospace Technology

Project
Closed

APSTAR 7 is a commercial geostationary communication satellite owned and operated by APT Satellite. Image courtesy of APT Satellite Company Limited. The APSTAR 7 satellite used the Spacebus 4000 C2 Platform, developed by Thales Alenia Space France. Image courtesy of APT Satellite Company Limited. APSTAR 7 was launched using the powerful and advanced Long March 3B/E vehicle. APSTAR 7 is a geostati

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The project “APSTAR 7 Satellite” is an infrastructure initiative in the Aerospace & Defense sector, located in Thailand. Taiyo aggregates data on it from Aerospace Technology.

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Description

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APSTAR 7 is a commercial geostationary communication satellite owned and operated by APT Satellite. Image courtesy of APT Satellite Company Limited. The APSTAR 7 satellite used the Spacebus 4000 C2 Platform, developed by Thales Alenia Space France. Image courtesy of APT Satellite Company Limited. APSTAR 7 was launched using the powerful and advanced Long March 3B/E vehicle. APSTAR 7 is a geostationary communication satellite built for commercial purposes. It was successfully placed into the geostationary Earth orbit from Xichang Satellite Launch Center (XSLC) in March 2012. It is owned and operated by APT Satellite Company, and developed by Thales Alenia Space France (TASF). The satellite is positioned at 76.5° east longitude and has a life span of 15 years. Its coverage areas include Asia, Australia, Middle East, Eastern Africa and Eastern Europe. In June 2010, APT Satellite Company, a subsidiary of APT Satellite Holdings Limited (APT), entered into a long term lease agreement with HBO Asia. As part of the agreement APSTAR 2R, which launched in 1997, was replaced by APSTAR 7 in March 2012. Thales Alenia Space France (TASF) was awarded a €128.5m ($156.44m) contract in September 2009 to design, build and deliver the APSTAR 7. The contractual scope included providing campaigns, training, launch and early operational phase in-orbit tests along with onsite support. China Great Wall Industry Corp was awarded with a $68m contract by APT for launching the APSTAR 7 satellite. The APSTAR 7 satellite used Spacebus 4000 C2 Platform developed by TASF. The satellite bus is 4.5m tall and can accommodate a large range of payloads such as Ku, C, Ka, X, S, and L bands to satisfy customer needs. It has the launch mass capability ranging from 3000kg to 5900 kg, and solar array power up to 15.8kW. The payload power of the satellite is up to 11.6kW. APSTAR 7 satellite has 56 operational transponders, which include 28 C-band and 28 Ku-band transponders. Its C-band global beam covers Asia, Africa, Australia and part of Europe. The multiple Ku-band of the satellite covers China beam, Africa beam, Middle East, and a steerable spot beam. The satellite also provides telecommunication services, including in-beam and cross-beam broadcast. APSTAR 7 lifted off using the powerful and advanced Long March 3B/E vehicle, which was developed by the China Academy of Launch Vehicle Technology (CALT). The satellite was launched from Launch Area 2 in Xichang Satellite Launch Centre in Sichuan, China. Long March 3B/E is the enhanced version developed from LM-3B launch vehicle. It is equipped with enlarged core stage and boosters, and GTO capacity up to 5,500kg. The rocket has a length of 54.84m and a core diameter of 3.35m. It has the capability to launch an 11,200kg satellite into orbit. The operations of APSTAR 7 are controlled and monitored from the APT Satellite control centre located at Tai Po Industrial Estate in Hong Kong. The 84,981ft2 facility was completed in two phases. The first phase was finished in 1994, with the second finalised in 2002. In October 1995, Hughes Space and Communications, now Boeing Satellite Systems, announced a new satellite series, called the Hughes 702. The control station provides telemetry, tracking and control (TT&C) services, customer technical support services, as well as communication traffic monitoring services for all APSTAR fleet of satellites. The facilities at the centre include an onsite computer control system, an array of antennas, radio frequency (RF) and intermediate frequency (IF) equipment. In addition, the ground station also has a satellite TV broadcasting centre, which provides service facilities in transmission, playout and broadcast. The broadcasting centre opened in 2004 and has the capability to accommodate up to six playout channels simultaneously for global transmission. Its key features include digitalisation of any analogue sources to digital MPEG format, automation with full redundancy to ensure reliable performance of play back, digital video archival storage and backup up to 1,000 hours.

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