Antenna Calculations
This page collects the arithmetic needed to size antennas and reason about signal levels in SimTX. All formulas are standard radio engineering practice.
Wavelength[edit | edit source]
Wavelength in meters:
- λ = 300 / f, with f in MHz.
Examples: 4.625 MHz → 64.9 m; 7.1 MHz → 42.3 m; 14.2 MHz → 21.1 m.
Resonant lengths[edit | edit source]
Practical wire antennas are slightly shorter than the free-space length because of end effects and wire thickness. Useful sizing rules (f in MHz, results in meters):
| Antenna | Formula | Example at 7.1 MHz |
|---|---|---|
| Half-wave dipole (total) | 143 / f | 20.1 m |
| Quarter-wave vertical | 71.5 / f | 10.1 m |
| Full-wave loop (circumference) | 300 / f | 42 m |
| End-fed half-wave (wire) | 143 to 150 / f | 20 to 21 m |
| Longwire, Beverage (guideline) | 2 × λ or more | 84 m or more |
In SimTX a wire length of 0 asks for the resonant length automatically; the formulas are mainly useful for setting explicit lengths and for understanding harmonic operation (a 40 m dipole for 3.6 MHz is also resonant near 10.8 MHz, three times the frequency).
Decibels[edit | edit source]
- Power ratio in dB: 10 · log10(P2 / P1). Doubling power is +3 dB; ten times power is +10 dB.
- Absolute power: dBm = 10 · log10(P in W) + 30. Examples: 5 W = 37 dBm, 100 W = 50 dBm.
- One S-unit on a receiver corresponds to 6 dB, or a factor of 4 in power. Going from 100 W to 25 W costs one S-unit; from 100 W to 5 W costs about 13 dB, two S-units.
Antenna gain[edit | edit source]
- Gain in this wiki and in the application is in dBi, decibels relative to an isotropic radiator.
- Gain relative to a dipole (dBd) is dBi minus 2.15.
- Effective radiated power combines transmitter power, feedline loss and antenna gain. Example: 100 W (50 dBm) into 1 dB of feedline and a 7.5 dBi Yagi radiates the equivalent of 56.5 dBm, about 450 W, toward the main lobe.
SWR, reflection and mismatch loss[edit | edit source]
Given a standing wave ratio S:
- Reflection coefficient: Γ = (S − 1) / (S + 1)
- Reflected power fraction: Γ²
- Mismatch loss: −10 · log10(1 − Γ²) dB
| SWR | Reflected power | Mismatch loss |
|---|---|---|
| 1.0 | 0 % | 0 dB |
| 1.5 | 4 % | 0.18 dB |
| 2.0 | 11 % | 0.51 dB |
| 3.0 | 25 % | 1.25 dB |
| 5.0 | 44 % | 2.55 dB |
| 10.0 | 67 % | 4.81 dB |
Mismatch loss alone is mild, but the transmitter's protection foldback adds further reduction above SWR 2.5, see SWR and Transmitter Protection.
Height in wavelengths[edit | edit source]
Convert antenna height to electrical height: h / λ. A dipole at 10 m is 0.24 λ high at 7.1 MHz (high-angle radiator, regional coverage) but 0.47 λ at 14.2 MHz (good low-angle lobe, long distance). This single number explains most of the difference in where a horizontal antenna performs well.
Path budget in one line[edit | edit source]
Received signal = TX power (dBm) + TX antenna gain (dBi) − TX losses (feedline, mismatch, foldback) − path loss + RX antenna gain − RX losses. The signal is usable when it clears the receiver's noise floor by the margin the modulation mode needs, see Propagation Basics.