

Calculators / Dipole Antenna
Calculate the optimal length of a half-wave dipole antenna based on frequency, conductor diameter, and velocity factor. Professional RF engineering tool for precise antenna dimensions.
Affects length via thick-dipole correction
Wave speed ratio conductor vs free space (0.95 = bare copper)
Affects loss resistance & efficiency
End capacitance shortening (0.95–0.98 typical)
Scales conductor resistivity
Modifies feedpoint impedance
SWR: —
A half-wave dipole consists of two identical conductive elements arranged symmetrically. Total length ≈ λ/2 at the operating frequency.
Core Formula
L = (143 × k × e) / f
L in metres, f in MHz, k = velocity factor, e = end-effect. Diameter adds thick-dipole shortening.
Conductor diameter affects length via the thick-dipole shortening factor. Material resistivity determines loss resistance and radiation efficiency.
Half-wave dipole free-space pattern: classic figure-8. Max gain ≈ 2.15 dBi broadside, deep nulls along antenna axis.
Most popular HF/VHF antenna due to simplicity and performance.
Base element for vertical FM transmission arrays in broadcast stations.
Reference antenna for testing signal strength and gain of arrays.
Standard model for teaching electromagnetics and antenna theory.
