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        {
            "id": 11170,
            "url": "https://svs.gsfc.nasa.gov/11170/",
            "result_type": "Produced Video",
            "release_date": "2014-01-09T00:00:00-05:00",
            "title": "TDRS Communicating Critical Data",
            "description": "As a vital information pipeline for space-based research and exploration ambitions, the TDRS constellation fulfills NASA's broadest communication demands. Now into it's fourth operational decade, the TDRS legacy continue's to be communications excellence. The addition of the third generation of spacecraft will replenish the constellation and ensure that the critical lifeline of space-to-ground communication support will be available for many years to come. || ",
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            "id": 11178,
            "url": "https://svs.gsfc.nasa.gov/11178/",
            "result_type": "Produced Video",
            "release_date": "2014-01-09T00:00:00-05:00",
            "title": "TDRS: Continuing The Fleet",
            "description": "NASA is preparing to launch the next generation of Tracking and Data Relay Satellites, known as TDRS. This latest addition to the fleet of seven will augment a space communications network that provides the critical path for high data-rate communication to the International Space Station, Hubble Space Telescope, past shuttle missions and a host of other spacecraft. || ",
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            "url": "https://svs.gsfc.nasa.gov/11345/",
            "result_type": "Produced Video",
            "release_date": "2013-08-28T13:00:00-04:00",
            "title": "NASA Downloads the Future",
            "description": "LLCD will be NASA's first-step in creating a high performance space-based laser communications system. The LLCD mission consists of space-based and ground-based components. The Lunar Laser Space Terminal (LLST) is an optical communications test payload to fly aboard the LADEE Spacecraft and it will demonstrate laser communications from lunar orbit.The ground segment consists of three ground terminals that will perform high-rate communication with the LLST aboard LADEE. The primary ground terminal, the Lunar Laser Ground Terminal (LLGT) is located in White Sands, NM and was developed by MIT/Lincoln Laboratory and NASA. The ground segment also includes two secondary terminals located at NASA/JPL's Table Mountain Facility in California and the European Space Agency's El Teide Observatory in Tenerife, Spain. The main goal of LLCD is proving fundamental concepts of laser communications and transferring data at a rate of 622 megabits per second (Mbps), which is about five times the current state-of-the-art from lunar distances. Engineers expect future space missions to benefit greatly from the use of laser communications technology. To learn more about laser communications and the LLCD mission please click here. || ",
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            "id": 11181,
            "url": "https://svs.gsfc.nasa.gov/11181/",
            "result_type": "Produced Video",
            "release_date": "2013-01-28T12:41:00-05:00",
            "title": "TDRS-K: Continuing The Fleet",
            "description": "NASA is preparing to launch the first in a series of three third generation advanced Tracking and Data Relay Satellites, known as TDRS-K. This latest addition to the fleet of seven will augment a space communications network that provides the critical path for high data-rate communication to the International Space Station, Hubble Space Telescope, past shuttle missions and a host of other spacecraft. || ",
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            "url": "https://svs.gsfc.nasa.gov/11164/",
            "result_type": "Produced Video",
            "release_date": "2012-12-26T01:00:00-05:00",
            "title": "TDRS-K Communicating Critical Data",
            "description": "As a vital information pipeline for space-based research and exploration ambitions, the TDRS constellation fulfills NASA's broadest communication demands. Now into it's fourth operational decade, the TDRS legacy continue's to be communications excellence. The addition of the third generation of spacecraft will replenish the constellation and ensure that the critical lifeline of space-to-ground communication support will be available for many years to come. || ",
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