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AN/MPQ-49 Forward Area Alerting Radar; AN/MPQ-64 Sentinel; AN/MPS-14; AN/SPG-60; AN/SPG-62; AN/SPN-35; AN/SPN-46(V)1; AN/SPQ-9; AN/SPQ-11; AN/SPS-2; AN/SPS-6; AN/SPS-8; AN/SPS-10; AN/SPS-29; AN/SPS-39; AN/SPS-40; AN/SPS-49; AN/SPY-1; AN/SPY-3; AN/SPY-6; AN/TPQ-36 Firefinder radar; AN/TPQ-37 Firefinder radar; AN/TPQ-53 Quick Reaction Capability ...
The system has been tested and approved by the US Army. TPQ-53 radar systems will replace the aging TPQ-36 and TPQ-37 medium-range radars now in the Army's inventory. In addition to its counter-fire and counter-drone missions, [2] Prior to September 2011 This system was known as EQ-36 Counterfire Target Acquisition Radar. [3]
Modern counter-battery radar can locate hostile batteries up to about 50 kilometres (31 mi; 27 nmi) away depending on the radar's capabilities and the terrain and weather. Some counter-battery radars can also be used to track the fire of friendly artillery and calculate corrections to adjust its fire onto a particular place, but this is usually ...
The AN/TPQ-43 radar was mounted on a boom that extended upward from the rear of the Gama Goat's trailer. It is a pulse doppler radar that operates in the D band and has a range of about 20 km. Data from the radar was generally not used at the radar site itself, but broadcast over FM radio to the "Target Alerting Data Display Set" (TADDS), a ...
AN/TPQ-36 Firefinder radar; AN/TPS-80 Ground/Air Task Oriented Radar; AN/ZPY-1; E. Boeing E-3 Sentry; Northrop Grumman E-8 Joint STARS; M.
The drawback is that once the radar is set to tracking a single target, the operator loses information about any other targets. This is the problem that track while scan is meant to address. In traditional radar systems, the display is purely electrical; signals from the radar dish are amplified and sent directly to an oscilloscope for display ...
AN/TPQ-36 Firefinder radar. Hughes AN/TPQ-36 Firefinder weapon locating system is a mobile radar system developed in the mid-late 1970s by Hughes Aircraft Company and manufactured by Northrop Grumman and ThalesRaytheonSystems, achieving initial operational capability in May 1982.
The C-Band Radar Transponder (Model SST-135C) is intended to increase the range and accuracy of the radar ground stations equipped with AN/FPS-16, and AN/FPQ-6 Radar Systems. C-band radar stations at the Kennedy Space Center, along the Atlantic Missile Range, and at many other locations around the world, provide global tracking capabilities.