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Antennas and feed lines: size, pattern, match

Environ 6 min

Les questions restent dans la langue dans laquelle elles ont été publiées.

This section asks what an antenna does rather than what it is made of, and what the cable between radio and sky costs you. Three things settle almost every question: size in wavelengths, shape of the pattern, and match.

Wavelengths, patterns and matches

An antenna is measured in wavelengths, not in inches: wavelength in metres is about 300 divided by frequency in MHz, and a metre is roughly 39 inches. Two lengths set the scale, a half-wave element fed in the middle and a quarter-wave whip against a ground plane, so trimming an element moves its resonance up the band and adding length, real or electrical, moves it down. Loading buys resonance, not size: the coil holds energy the shortened element never radiates.

Gain is not extra power. An antenna radiates what the transmitter gives it, and gain says how much of that is pushed into one chosen direction, measured against a reference antenna fed the same power, which is why the ideal reference, favouring no direction, has none to offer. Concentration is bought with structure, and the more elements that work together the tighter the lobe: elements set in front of and behind a driven one take from every other direction to pay for a single forward lobe. A plain element radiates least along its own axis, and its polarization is the plane of the electric field, set by the element's own orientation.

The feed line always takes a share. Coax is standard because it carries its own shield and can be run through walls, strapped to a mast and coiled behind the desk without upsetting anything: convenience, not superiority, since open-wire line loses less and rigid air-spaced line less still. Loss climbs with frequency, as current crowds into the surface of the conductors, and falls as a cable grows fatter with more air in its insulation. Above a few hundred megahertz a connector must hold a steady impedance right through its own body, and outdoors it must keep water out.

SWR reports one relationship only: how completely the far end absorbs what the line brings it. A perfect match reflects nothing and reads 1:1; whatever is reflected travels back down the cable to be spent there. A reading that jumps about on its own points at something mechanical, a loose or corroding joint moving in and out of contact. A tuner ahead of the radio changes what the radio sees, presenting the impedance the transceiver is built to expect; past it the antenna behaves exactly as before.

Where the answers are lost

Try it yourself

Question 358

Why is a 19-inch-long vertical antenna often used on 2 meters?

  1. It has high gain
  2. It is a resonant half-wave
  3. It is a resonant quarter-wave
  4. It has low RF radiation exposure
Question 359

What is an advantage of a 5/8-wavelength whip antenna for VHF or UHF mobile service compared to a 1/4-wave antenna?

  1. It has more gain
  2. It radiates at a higher angle
  3. It has lower SWR
  4. It has lower impedance
Question 367

Which of the following connector types is most suitable as an RF connector for frequencies above 400 MHz?

  1. PL-259
  2. Type N
  3. RS-213
  4. DB-25
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Antennas and feed lines: size, pattern, match · Questena