Understanding antennas

An antenna converts radio-frequency current into electromagnetic waves during transmission. During reception, it performs the reverse operation. Its operation depends on geometry, electrical length, feed system, surroundings and ground.

G

Gain

Gain describes the concentration of radiated energy in selected directions. It is generally expressed in dBi or dBd.

Ω

Impedance

Feed-point impedance must be matched to the feed line and transmitter, usually designed for 50 Ω.

SWR

Standing wave ratio indicates the quality of the match between antenna, feed line and transmitter.

Polarization

Polarization may be horizontal, vertical, circular or elliptical depending on element orientation.

Radiation pattern

The radiation pattern represents the distribution of energy in space and identifies lobes and nulls.

Ground influence

Height, ground conductivity and nearby obstacles strongly affect take-off angle and real performance.

Antenna families

Each family offers a different compromise between gain, directivity, size, efficiency, cost and construction difficulty.

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Half-wave dipole

The reference balanced antenna, simple to build and highly efficient when installed sufficiently high.

HF 1/2 λ ≈ 73 Ω Open article →

EFHW

End-fed half-wave antenna, often multiband, matched to coax through an impedance transformer.

HF 49:1 Multibande Open article →

Vertical antennas

Quarter-wave, half-wave or 5/8 λ. Omnidirectional and effective for DX when the ground system is efficient.

HF VHF UHF Open article →

Loops and Delta loops

Full-wave loops, often quieter on receive and usable with several polarizations.

HF 1 λ Boucle fermée

Yagi-Uda

Directional antenna using a driven element, a reflector and one or more parasitic directors.

Directive Gain DX Open article →

Quad, Moxon and Hexbeam

Compact directional antennas providing a good compromise between gain, size and multiband performance.

HF Directive Compacte

Magnetic loop

Compact high-Q antenna, highly selective and demanding in terms of capacitor design and safety.

HF Compacte Q élevé
Y

J-Pole, Slim Jim and collinear

Popular VHF and UHF vertical antennas for local operation, repeaters and portable installations.

VHF UHF Verticale

Delta Loop

The Delta Loop is a triangular full-wave loop. It may provide horizontal or vertical polarization depending on the feed-point position.

HF 1 λ Boucle fermée Open article →

Magnetic loop

A magnetic loop is a compact antenna tuned by a variable capacitor. Its small size is achieved at the cost of narrow bandwidth and very high circulating current.

HF Compacte Q élevé Open article →
J

J-Pole antenna

The J-Pole is a vertical half-wave radiator fed through a parallel quarter-wave matching section.

VHF UHF ½ λ Open article →

Slim Jim antenna

The Slim Jim is a folded vertical antenna derived from the J-Pole. It is especially popular for portable VHF and UHF use.

VHF UHF Portable Open article →

Moxon rectangle

The Moxon is a compact two-element directional antenna with folded ends. It provides good front-to-back performance in less space than a conventional two-element Yagi.

HF VHF Directive compacte Open article →

G5RV antenna

The G5RV is a multiband antenna consisting of a doublet and a balanced-line section used as an impedance transformer.

HF Multibande Ligne bifilaire Open article →
Z

ZS6BKW antenna

The ZS6BKW is a multiband doublet with a balanced-line section optimized to present more favorable impedances on several amateur bands.

HF Multibande Optimisée Open article →

Windom and OCF dipole

An OCF dipole is fed away from its centre to obtain usable impedance on several bands. Modern versions generally use a transformer and coaxial cable.

HF OCF Multibande Open article →

Hexbeam

The Hexbeam is a compact directional wire antenna using folded elements supported by six spreaders.

HF Directive Multibande Open article →

Cubical Quad

The Cubical Quad uses one or more full-wave loops, usually square or diamond shaped, to form a directional antenna.

HF VHF Directive Open article →

Discone antenna

The Discone combines an upper disc and lower cone. It is especially valued for wideband VHF/UHF reception.

VHF UHF Large bande Open article →

Log-periodic antenna

A log-periodic antenna is a wideband directional array whose element lengths and spacing follow a geometric progression.

HF VHF Large bande directive Open article →

Folded dipole

A folded dipole uses two parallel conductors connected at both ends. It presents higher impedance than a simple dipole.

HF VHF Boucle repliée Open article →

Multiband doublet

A multiband doublet is a dipole that is not necessarily resonant, fed with low-loss balanced line and an antenna tuner.

HF Multibande Ligne bifilaire Open article →

Double Zepp

The Double Zepp is a long wire antenna generally made of two legs near five eighths wavelength each.

HF Double Zepp Gain filaire Open article →

Long Wire

A Long Wire is a conductor generally longer than one wavelength at the operating frequency.

HF Fil long Directive selon longueur Open article →
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Random Wire

A Random Wire is an end-fed wire whose length is selected to avoid difficult impedances on the intended bands.

HF Portable Accord nécessaire Open article →

Inverted-V dipole

An Inverted-V is a dipole with a high centre and both legs sloping toward the ground.

HF Dipôle Un seul support Open article →

Sloper antenna

A Sloper is a dipole or resonant wire installed at an angle between a high and low support.

HF Incliné Polarisation mixte Open article →

T2FD

The T2FD is a tilted folded dipole terminated with a non-inductive resistor. It favours bandwidth over maximum efficiency.

HF Large bande Résistance terminale Open article →

5/8-wave vertical

A 5/8-wave vertical uses a radiator longer than a quarter-wave to flatten the vertical pattern and increase low-angle radiation.

VHF UHF 5/8 λ Open article →

Collinear antenna

A collinear stacks several vertical radiating sections fed in phase to concentrate energy toward the horizon.

VHF UHF Gain vertical Open article →

Coaxial collinear

A coaxial collinear uses alternating coaxial sections to create several phased radiating elements.

VHF UHF Coaxial Open article →

Sleeve Dipole

A Sleeve Dipole is a vertical dipole whose lower half is formed by a conductive sleeve surrounding the coaxial feed line.

VHF UHF Sans radians Open article →

Beverage antenna

The Beverage is a very long, low receiving antenna designed for directivity and signal-to-noise ratio rather than absolute signal strength.

HF Réception Directive Open article →

K9AY loop

The K9AY is a compact resistively loaded receiving loop, usually switchable between several directions.

HF Réception Commutable Open article →

Pennant antenna

The Pennant is a small resistively terminated triangular loop designed for directional reception.

HF Réception Boucle terminée Open article →

Flag antenna

The Flag is a resistively terminated rectangular receiving loop designed to provide a strong null in one direction.

HF Réception Cardioïde Open article →

EWE antenna

The EWE is a receiving antenna made of two vertical sections joined by a horizontal wire and terminated toward ground.

HF Réception Faible hauteur Open article →

Turnstile antenna

The Turnstile combines two perpendicular dipoles fed 90 degrees out of phase.

VHF Satellites Polarisation circulaire Open article →

Eggbeater antenna

The Eggbeater uses two perpendicular vertical loops fed in quadrature for satellite reception and transmission.

VHF UHF Satellites Open article →

Lindenblad antenna

The Lindenblad uses four tilted dipoles around a vertical axis to produce circular polarization and broad coverage.

VHF UHF Satellites Open article →

Cross-Yagi

A Cross-Yagi combines two identical Yagi antennas mounted at right angles on the same boom.

VHF UHF Satellites Open article →

Helical antenna

An axial-mode helix is a directional circularly polarized antenna widely used for UHF, satellites and microwave work.

UHF SHF Polarisation circulaire Open article →

Patch antenna

A patch antenna is a flat metallic element above a ground plane and separated by a dielectric substrate.

UHF SHF Plane Open article →

BiQuad antenna

The BiQuad uses two square loops formed from one conductor and positioned in front of a reflector.

UHF SHF Directive Open article →

Cobra antenna

The Cobra is a multiband wire antenna whose two legs are made from three-conductor line connected in a specific configuration.

HF Multibande Ligne trois conducteurs Open article →

W3DZZ antenna

The W3DZZ is a multiband dipole using two resonant trap circuits installed symmetrically in the legs.

HF Multibande Pièges LC Open article →

Carolina Windom

The Carolina Windom is an off-centre-fed dipole variant that intentionally uses part of the feed line as a vertical radiator.

HF OCF Rayonnement vertical ajouté Open article →

G5RV Junior

The G5RV Junior applies the G5RV principle at approximately half the full-size length.

HF Multibande Version réduite Open article →

Extended Double Zepp

The Extended Double Zepp, or EDZ, is an approximately 1.25-wavelength wire antenna providing bidirectional gain.

HF EDZ Gain filaire Open article →

Half-Square

The Half-Square consists of two quarter-wave vertical elements joined by a half-wave horizontal section.

HF DX Polarisation verticale Open article →
Ш

Bobtail Curtain

The Bobtail Curtain uses three quarter-wave vertical elements joined by two half-wave horizontal sections.

HF DX Réseau vertical Open article →
H

Lazy H

The Lazy H combines two parallel horizontal dipoles mounted one above the other and connected by a phasing line.

HF Directive Deux dipôles phasés Open article →

Sterba Curtain

The Sterba Curtain is a large wire array made of rectangular phased cells designed for high gain.

HF Réseau Grand gain Open article →

Rhombic antenna

The Rhombic is a very large diamond-shaped antenna, normally resistively terminated for long-distance HF communication.

HF Directive Onde progressive Open article →
V

V-Beam antenna

A V-Beam consists of two long wires forming an open V toward the desired radiation direction.

HF Directive Longs fils Open article →

Hentenna

The Hentenna is a rectangular open or folded antenna mainly used on VHF and UHF.

VHF UHF Boucle rectangulaire Open article →

General comparison

These figures are indicative. Actual performance depends on height, ground, losses, frequency and construction quality.

Antenna Typical gain Directivity Bandwidth Required space Difficulty Recommended use
Dipôle demi-onde 2,15 dBi Low Medium Medium Easy HF local et DX
EFHW ≈ 2 dBi Low Narrow High Moderate Portable et multibande
Verticale 1/4 λ ≈ 2 dBi Low Wide Low Moderate DX et omnidirectionnel
Delta Loop 2 à 4 dBi Medium Medium High Moderate HF et réception silencieuse
Yagi 3 éléments 6 à 8 dBi High Medium Medium Advanced DX et réduction des brouillages
Hexbeam 5 à 7 dBi High Medium Medium Advanced DX multibande
Boucle magnétique -5 à 0 dBi Medium Narrow Low Advanced Espaces réduits
J-Pole 2 à 3 dBi Low Medium Low Easy VHF/UHF local et portable

Dimension calculator

The calculation provides a starting length. The antenna must then be measured in its final position using a NanoVNA or antenna analyzer.

Half-wave dipole — total length
Dipole — length of each leg
Quarter wavelength
Theoretical half wavelength
Full wavelength
EFHW — starting length

Antenna history

Amateur radio antennas result from more than a century of scientific, military, industrial and amateur experimentation.

1886–1888

Heinrich Hertz demonstrates radio waves

Hertz’s experiments confirmed James Clerk Maxwell’s theoretical work. His dipoles and resonators were direct ancestors of modern antennas.

1926

Birth of the Yagi-Uda antenna

Shintaro Uda developed the parasitic-element antenna. Hidetsugu Yagi later contributed to its international recognition.

1929

The Windom antenna

Loren G. Windom, W8GZ, popularized an off-center-fed antenna that inspired many modern multiband variants.

1946

Louis Varney introduces the G5RV

Louis Varney, G5RV, designed a multiband antenna using a balanced-line section as an impedance transformer.

1946–1947

Development of the Cubical Quad

Clarence C. Moore, W9LZX, developed the Quad to solve high-voltage problems in tropical broadcast antennas.

Construction and installation

A correctly calculated antenna may perform poorly if construction or installation is inadequate.

1 Start with a slightly longer wire and shorten it progressively.
2 Perform measurements at the final height and in the final configuration.
3 Keep the radiator away from walls, gutters, cables and metal structures.
4 Use a balun or common-mode choke when required by the antenna.
5 Weatherproof connectors without permanently trapping condensation.
6 Provide proper mechanical protection against wind, tension and vibration.

Essential safety

An antenna, mast or guy wire must never be able to touch a power line, even if it falls. Disconnect and ground the installation during thunderstorms.

Encyclopedia development

This page is the portal to the future F1SYH antenna knowledge base. Each antenna will progressively receive a complete article with plans, measurements, simulations and practical feedback.