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  2. Moving target indication - Wikipedia

    en.wikipedia.org/wiki/Moving_target_indication

    The probability of detecting a given target at a given range any time the radar beam scans across it, Pd is determined by factors that include the size of the antenna and the amount of power it radiates. A large antenna radiating at high power provides the best performance. For high quality information on moving targets the Pd must be very high.

  3. Type 965 radar - Wikipedia

    en.wikipedia.org/wiki/Type_965_radar

    The receiver of the Type 965Q and 965R used "a coherent oscillator (COHO) to provide the coherence in phase between transmission and reception. The COHO is phase locked to the transmitter pulse." [3] With the Type 965Q and 965R, the pulse repetition frequency (PRF) had a number of different settings. [3]

  4. AN/FPS-16 Instrumentation Radar - Wikipedia

    en.wikipedia.org/.../AN/FPS-16_Instrumentation_Radar

    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.

  5. Plessey AR-320 - Wikipedia

    en.wikipedia.org/wiki/Plessey_AR-320

    The AR-320 is a 3D early warning radar developed by the UK's Plessey in partnership with US-based ITT-Gilfillan.The system combined the receiver electronics, computer systems and displays of the earlier Plessey AR-3D with a Gilfillan-developed transmitter and planar array antenna from their S320 series.

  6. Blue Joker - Wikipedia

    en.wikipedia.org/wiki/Blue_Joker

    The radar was a fairly conventional model for the era, using a cavity magnetron as the transmitter source and a reflex klystron as a local oscillator in the superheterodyne receiver. [1] The radar system was housed in a large spherical radome made of Terylene (Dacron) fabric and made rigid by inflating it to 980 pascals (0.142 psi) with a fan ...

  7. Continuous-wave radar - Wikipedia

    en.wikipedia.org/wiki/Continuous-wave_radar

    Continuous-wave radar (CW radar) is a type of radar system where a known stable frequency continuous wave radio energy is transmitted and then received from any reflecting objects. [1] Individual objects can be detected using the Doppler effect , which causes the received signal to have a different frequency from the transmitted signal ...

  8. Xtrinsic Radar Transmitter from Freescale Improves ... - AOL

    www.aol.com/news/2012-11-13-xtrinsic-radar...

    Xtrinsic Radar Transmitter from Freescale Improves Performance, Cost and Complexity of Automotive Active Safety Systems Industry's first 77 GHz VCO+Tx built on SiGe BiCMOS technology for ...

  9. AN/FPQ-6 - Wikipedia

    en.wikipedia.org/wiki/AN/FPQ-6

    The AN-FPQ 6 radar was built by RCA and was, effectively, a development of the AN-FPS 16. The Q6, as it was known by those who worked on it, was an amplitude comparison monopulse C-band radar, with a 2.8 MW peak klystron transmitter tunable from 5.4 to 5.8 GHz, which had a 9-meter parabolic antenna, having 52 dB gain, a 0.6 degree beam width, utilizing a Cassegrainian feed with a five horn ...