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  • ...ate the position, direction, and speed of the object. In systematic terms, radar is a simple concept which consists of a transmitter and receiver, but it ha
    621 bytes (99 words) - 15:36, 3 April 2024
  • 185 bytes (27 words) - 15:42, 3 April 2024
  • 81 bytes (10 words) - 10:10, 15 April 2011
  • ...tical sensors, in UV, visual, or infrared spectra, will outperform imaging radar<ref name=LynxMTI>{{cite web | title = MTI & CCD Synthetic Aperture Radar Imagery
    11 KB (1,590 words) - 09:03, 19 April 2024
  • ...curate than the [[barometer|barometric altimeters]] previously used, but a radar altimeter is not a perfect instrument. For example, the receiver, on a movi ...r frequency in use, it may not be possible to get an adequate measurement. Radar altimeters also can become confused by wave motion, when flying over rough
    718 bytes (113 words) - 18:55, 2 February 2009
  • #Redirect [[Imaging radar]]
    27 bytes (3 words) - 14:52, 25 May 2008
  • ...ided shell; usually for [[terminal guidance]]; contrast with [[semi-active radar homing]]
    234 bytes (34 words) - 10:10, 15 April 2011
  • Radar, usually carried on aircraft, which forms images of the terrain.
    107 bytes (14 words) - 04:53, 4 September 2009
  • 212 bytes (33 words) - 12:11, 11 September 2009
  • 102 bytes (10 words) - 15:44, 3 April 2024
  • ...-37 by its designers. It is with a [[radar#moving target indicator|search radar with moving target indicator]], intended to be at points requiring maximum ...ically supplemented by a [[SIDE NET radar]] E-band nodding height finding radar. <ref name=KoppDS1 />
    2 KB (295 words) - 02:27, 15 February 2010
  • 20 bytes (2 words) - 20:06, 20 January 2009
  • ...ore the radar can get a significant lock on the target (i.e., carrying the radar warning receiver). ...ened by pulse doppler search and midcourse guidance radars; active missile radar is also apt to be pulse doppler.
    2 KB (249 words) - 07:34, 18 March 2024
  • 12 bytes (1 word) - 23:36, 13 August 2009
  • 81 bytes (10 words) - 19:22, 12 August 2010
  • 81 bytes (10 words) - 01:02, 17 February 2011
  • ..., a [[guided missile|missile guidance]] mode where the missile has its own radar transmitter and receiver allowing it to act autonomously
    260 bytes (38 words) - 19:45, 2 August 2008
  • A Soviet-designed early warning and search radar, equipped with [[Moving Target Indicator]], intended to be at points requir
    281 bytes (39 words) - 22:24, 11 September 2009
  • {{r|Radar}}
    117 bytes (13 words) - 11:13, 25 May 2008
  • 34 bytes (4 words) - 21:58, 31 October 2008
  • detects and categorizes an impinging signal to the level needed for radar identification and selecting countermeasures.
    155 bytes (19 words) - 00:14, 12 May 2008
  • 81 bytes (10 words) - 19:20, 12 August 2010
  • .../APS-149''', is a active electronically scanned array (AESA) surveillance radar, currently used on several [[P-3 Orion]] aircraft, originally [[maritime pa | title = Not-Quite-Secret Radar
    4 KB (627 words) - 09:01, 19 April 2024
  • ...hich three-dimensional images of fixed objects can be formed from multiple radar scans taken from different positions of the antenna
    204 bytes (29 words) - 19:22, 12 August 2010
  • Soviet [[EU-NATO-US frequency bands|D or E-band]] nodding height finding radar used with the [[S-75 Dvina|S-75 Dvina]] and [[SA-5 missile|SA-5 GAMMON]] [[
    215 bytes (29 words) - 06:56, 4 April 2024
  • ...r guidance receiver, and expects to have an external source keep an active radar transmitter pointed at the target. ...nse ship, but the final target illumination is done by an SPG-62|AN/SPG-62 radar. The latter only need to point at the target for the final seconds before d
    1 KB (228 words) - 16:24, 30 March 2024
  • ...an enemy radar to be attacked, typically for [[anti-radiation missile|anti-radar]] applications but sometimes home-on-jam against [[electronic warfare]]
    281 bytes (35 words) - 01:02, 17 February 2011
  • Soviet [[EU-NATO-US frequency bands|E-band]] early warning radar, used with [[SA-5 GAMMON]] [[surface-to-air missile]]
    154 bytes (17 words) - 19:34, 2 August 2008
  • Soviet midcourse guidance radar for the [[SA-5 GAMMON]] [[surface-to-air missile]], operating in the [[EU-N
    174 bytes (20 words) - 19:42, 2 August 2008
  • Auto-populated based on [[Special:WhatLinksHere/Radar altimeter]]. Needs checking by a human.
    536 bytes (67 words) - 19:53, 11 January 2010
  • ...ly, homing on the reflections, from the target, of a separate illuminating radar
    278 bytes (39 words) - 19:53, 2 August 2008
  • An [[active electronically scanned array]] (AESA) surveillance radar, currently used on [[maritime patrol aircraft]] also used in [[littoral (m
    370 bytes (44 words) - 20:46, 11 September 2009
  • ...are constructed from combining multiple radar scans; in practice, both the radar and the target may be moving
    279 bytes (42 words) - 19:20, 12 August 2010
  • 101 bytes (15 words) - 22:50, 2 July 2008
  • {{r|Radar}} {{r|BIG BACK radar}}
    360 bytes (49 words) - 19:46, 2 August 2008
  • {{r|Radar}}
    413 bytes (58 words) - 04:56, 14 March 2024
  • {{r|Radar}}
    188 bytes (23 words) - 23:53, 13 August 2009
  • Auto-populated based on [[Special:WhatLinksHere/Littoral Surveillance Radar System]]. Needs checking by a human.
    605 bytes (82 words) - 09:02, 19 April 2024
  • {{r|Radar}}
    258 bytes (33 words) - 20:18, 28 February 2011

Page text matches

  • {{r|Radar}} {{r|BIG BACK radar}}
    353 bytes (47 words) - 19:15, 27 October 2008
  • {{r|Radar}} {{r|BIG BACK radar}}
    360 bytes (49 words) - 19:46, 2 August 2008
  • ...are constructed from combining multiple radar scans; in practice, both the radar and the target may be moving
    279 bytes (42 words) - 19:20, 12 August 2010
  • #REDIRECT Radar MASINT#Counterartillery radar
    77 bytes (9 words) - 16:23, 30 March 2024
  • ...e, short-range [[counterbattery]]/[[counter-rocket, artillery and mortar]] radar
    182 bytes (18 words) - 21:34, 31 October 2008
  • ...eview.com/article/790/1 Radar love: the tortured history of American space radar programs]
    196 bytes (26 words) - 20:09, 28 February 2011
  • An early [[radar|imaging radar]] used, by the [[Royal Air Force]], for the night bombing of Germany
    135 bytes (20 words) - 16:32, 27 September 2008
  • ..., a [[guided missile|missile guidance]] mode where the missile has its own radar transmitter and receiver allowing it to act autonomously
    260 bytes (38 words) - 19:45, 2 August 2008
  • ...ly, homing on the reflections, from the target, of a separate illuminating radar
    278 bytes (39 words) - 19:53, 2 August 2008
  • ...hich three-dimensional images of fixed objects can be formed from multiple radar scans taken from different positions of the antenna
    204 bytes (29 words) - 19:22, 12 August 2010
  • ...for the cancelled Safeguard ballistic missile defense, now a fixed ground radar with a space surveillance mission
    211 bytes (27 words) - 16:55, 30 August 2009
  • ...the MIM-104 Patriot missile are the responsibility of the '''AN/MPQ-53''' radar. The Patriot is primarily an anti-ballistic missile (ABM), also capable of ...data link to the ground station, with the ground-based MPQ-53 phased array radar.
    800 bytes (125 words) - 18:08, 1 April 2024
  • ...curate than the [[barometer|barometric altimeters]] previously used, but a radar altimeter is not a perfect instrument. For example, the receiver, on a movi ...r frequency in use, it may not be possible to get an adequate measurement. Radar altimeters also can become confused by wave motion, when flying over rough
    718 bytes (113 words) - 18:55, 2 February 2009
  • ...ided shell; usually for [[terminal guidance]]; contrast with [[semi-active radar homing]]
    234 bytes (34 words) - 10:10, 15 April 2011
  • ...ore the radar can get a significant lock on the target (i.e., carrying the radar warning receiver). ...ened by pulse doppler search and midcourse guidance radars; active missile radar is also apt to be pulse doppler.
    2 KB (249 words) - 07:34, 18 March 2024
  • ...h matches the profile seen by a radar altimeter/narrowbeam ground-pointing radar with a predefined digital map of the terrain
    269 bytes (37 words) - 16:50, 19 March 2011
  • {{r|Radar, BAR LOCK}} {{r|Radar, FLAT FACE}}
    450 bytes (71 words) - 06:56, 4 April 2024
  • ...an enemy radar to be attacked, typically for [[anti-radiation missile|anti-radar]] applications but sometimes home-on-jam against [[electronic warfare]]
    281 bytes (35 words) - 01:02, 17 February 2011
  • A '''multistatic''' electronic sensing system (e.g., radar or sonar) has at least one transmitting and at least one receiving antenna, ...se of multistatic radar, where the transmitter function is not part of the radar system, but of another high-power radio wave transmitter, such as a televis
    2 KB (255 words) - 16:21, 30 March 2024
  • ...ate the position, direction, and speed of the object. In systematic terms, radar is a simple concept which consists of a transmitter and receiver, but it ha
    621 bytes (99 words) - 15:36, 3 April 2024
  • #Redirect [[Imaging radar]]
    27 bytes (3 words) - 14:52, 25 May 2008
  • ...ange but omnidirectional AN-|AN/TPQ-46 (formerly Lightweight Countermortar Radar and the long-range AN-|AN/TPQ-37 (also a Firefinder).
    349 bytes (49 words) - 16:23, 30 March 2024
  • #REDIRECT [[semi-active radar homing]]
    38 bytes (4 words) - 12:53, 21 May 2008
  • #REDIRECT [[Littoral Surveillance Radar System]]
    48 bytes (5 words) - 19:20, 14 February 2011
  • {{r|Radar}} {{r|Radar MASINT}}
    194 bytes (23 words) - 10:22, 20 May 2008
  • ...estone in the development of SAMs, as the first SAM to have its own active radar homing for terminal guidance. <ref name=GS-S-200-main>{{citation | title = S-200 }}</ref> Astronautix.com, however, states it had semi-active radar homing<ref name=Astronautix-S-200>{{citation
    3 KB (417 words) - 16:23, 30 March 2024
  • ...nformation calculated from the time of arrival, and relative angle to, the radar receiving antenna. *Terminal (radar) approach control (TRACON)
    2 KB (248 words) - 02:18, 7 April 2024
  • {{r|Radar warning receiver}} {{r|Radar intercept receiver}}
    338 bytes (44 words) - 17:29, 12 September 2009
  • ...of the basic SPY-1|AN/SPY-1 main AEGIS radar. It is the engagement control radar for the RIM-161 Standard SM-3 missile. | title = SPY-2 High-Power Discriminator (HPD) radar
    1 KB (203 words) - 16:24, 30 March 2024
  • U.S. [[reconnaissance satellite]] using [[imaging radar]], also designated LACROS and LACROSSE
    130 bytes (15 words) - 22:11, 28 February 2011
  • British reconnaissance aircraft with [[signals intelligence]] and [[imaging radar]] capabilities
    132 bytes (13 words) - 18:07, 22 March 2011
  • Radar, usually carried on aircraft, which forms images of the terrain.
    107 bytes (14 words) - 04:53, 4 September 2009
  • A [[transportable]] [[air defense artillery]] tactical [[radar]] that emphasizes portability over performance
    145 bytes (15 words) - 20:54, 11 September 2009
  • An early series of Soviet and Russian radar warning receivers
    97 bytes (13 words) - 23:40, 18 November 2008
  • {{r|Radar}} {{r|Radar warning receiver}}
    805 bytes (92 words) - 04:58, 14 March 2024
  • {{r|Active radar homing}} {{r|Semi-active radar homing}}
    301 bytes (39 words) - 23:40, 13 August 2009
  • Aircraft landing guidance based on using radar images in adverse weather conditions.
    121 bytes (15 words) - 23:16, 11 September 2009
  • [[Transportable]] ground radar for the [[MIM-104 Patriot]] air defense missile
    114 bytes (13 words) - 20:22, 23 July 2010
  • Pulse-doppler mechanically scanned [[radar]] for the [[F-18 Hornet]] aircraft
    113 bytes (12 words) - 19:07, 2 November 2008
  • ...still would be likely to switch to a terminal guidance mode, using active radar, SARH, or infrared, when it nears the target. ...depend on that active radar for terminal guidance, or might supplement the radar with infrared for its final approach.
    2 KB (337 words) - 09:10, 19 April 2024
  • {{r|Anti-aircraft artillery}} for aspects of radar fire control {{r|radar}}
    457 bytes (59 words) - 09:08, 21 June 2008
  • ...r guidance receiver, and expects to have an external source keep an active radar transmitter pointed at the target. ...nse ship, but the final target illumination is done by an SPG-62|AN/SPG-62 radar. The latter only need to point at the target for the final seconds before d
    1 KB (228 words) - 16:24, 30 March 2024
  • ...ld not be radar controlled. Range is 4km with visual guidance and 6km with radar guidance.
    1 KB (163 words) - 18:47, 3 April 2024
  • {{r|Radar}} {{r|Radar altimeter}}
    503 bytes (63 words) - 06:26, 12 February 2009
  • ...lier warning than the three-dimensional SPY-1|AN/SPY-1 main radar. The two radar systems feed into the AEGIS battle management system computers. The sensor ...of the center mast, below the radome of the SPS-64|AN-SPS-64 navigational radar. It operates in the IEEE frequency bands|IEEE L-band/NATO C-band, and is mo
    1 KB (193 words) - 16:23, 30 March 2024
  • ...[[telecommunications]], sound recording, [[stereo]], [[television]] and [[radar]].
    182 bytes (17 words) - 12:59, 6 December 2008
  • {{r|radar intercept receiver}} {{r|radar warning receiver}}
    330 bytes (37 words) - 20:02, 11 September 2009
  • {{r|Active radar homing}} {{r|Irbis (radar)}}
    493 bytes (66 words) - 23:41, 13 August 2009
  • ...jor systems in use, its categories are too coarsely grained for describing radar uses. It is, however, a good set of terms for frequencies used in communica ...TO-US frequency bands]] for a nomenclature that works well in fine-grained radar band discussion.
    2 KB (232 words) - 10:54, 19 September 2009
  • ...missile]] system. Neither the missile, nor the due-to-be-replaced Type 965 radar, were designed against sea-skimming threats, but against high-flying aircra ...more importantly, the task force had no [[airborne early warning]], so the radar horizon was limited to mast height.
    1 KB (197 words) - 11:04, 8 April 2024
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