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  2. Gain (antenna) - Wikipedia

    en.wikipedia.org/wiki/Gain_(antenna)

    When considering an antenna's directional pattern, gain with respect to a dipole does not imply a comparison of that antenna's gain in each direction to a dipole's gain in that direction. Rather, it is a comparison between the antenna's gain in each direction to the peak gain of the dipole (1.64). In any direction, therefore, such numbers are 2 ...

  3. Antenna measurement - Wikipedia

    en.wikipedia.org/wiki/Antenna_measurement

    An antenna designer must take into account the application for the antenna when determining the gain. High-gain antennas have the advantage of longer range and better signal quality, but must be aimed carefully in a particular direction. Low-gain antennas have shorter range, but the orientation of the antenna is inconsequential.

  4. Antenna gain-to-noise-temperature - Wikipedia

    en.wikipedia.org/wiki/Antenna_gain-to-noise...

    Antenna gain-to-noise-temperature (G/T) is a figure of merit in the characterization of antenna performance, where G is the antenna gain in decibels at the receive frequency, and T is the equivalent noise temperature of the receiving system in kelvins.

  5. Radiation pattern - Wikipedia

    en.wikipedia.org/wiki/Radiation_pattern

    Here, the gain and effective area of antenna 2 are fixed, because the orientation of this antenna is fixed with respect to the first. Now for a given disposition of the antennas, the reciprocity theorem requires that the power transfer is equally effective in each direction, i.e.

  6. Effective radiated power - Wikipedia

    en.wikipedia.org/wiki/Effective_radiated_power

    Since it is constructed from dipoles, often its antenna gain is expressed in dB d, but listed only as dB. This ambiguity is undesirable with respect to engineering specifications. A Yagi–Uda antenna's maximum directivity is 8.77 dB d = 10.92 dB i. Its gain necessarily must be less than this by the factor η, which must be negative in units of dB.

  7. J-pole antenna - Wikipedia

    en.wikipedia.org/wiki/J-pole_antenna

    The collinear J antenna improves the Super-J by separating the two radiating half-wave sections to optimize gain using a phasing coil. [29] The resulting gain is closer to the optimum 3 dB over a conventional J-pole or halfwave antenna. [29] The approximate gain in the H-plane of the Collinear J antenna is from 4.6 to 5.2 dBi (2.4 dBd to 3.1 dBd).

  8. Omnidirectional antenna - Wikipedia

    en.wikipedia.org/wiki/Omnidirectional_antenna

    Antenna gain (G) is defined as antenna efficiency (e) multiplied by antenna directivity (D) which is expressed mathematically as: =. A useful relationship between omnidirectional radiation pattern directivity (D) in decibels and half-power beamwidth (HPBW) based on the assumption of a sin ⁡ ( b θ ) / b θ {\displaystyle \sin(b\theta )/{b ...

  9. Television antenna - Wikipedia

    en.wikipedia.org/wiki/Television_antenna

    Outdoor antennas provide up to a 15 dB gain in signal strength and 15-20 dB greater rejection of ghost signals in analog TV. [6] Combined with a signal increase of 14 dB due to height and 11 dB due to lack of attenuating building walls, an outdoor antenna can result in a signal strength increase of up to 40 dB at the TV receiver.

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