Documentation
Onboarding
Getting Started
Power & Battery
Hardware & Components
Build & Assembly
Radio & RF Design
Frequencies & Regulations
Firmware & Software
USB & Connectivity
GPS & Navigation
Morse & Communication
Modes & Operation
Field Operations & Rescue
Building Effectively
Build Variants
Project & Reference
Docs Radio & RF Design Propagation and Range

Propagation and Range

Edit on GitHub

What 433 MHz does in the real world: line of sight, snow loss, terrain and honest range expectations

Propagation and Range

Overview

433 MHz sits between VHF and the crowded 2.4 GHz ISM band. It behaves close to line of sight: it bends a little around terrain, penetrates snow far better than 2.4 GHz, and is absorbed by wet vegetation far less than microwave bands.

CODE
Range = f(transmit power, antenna gain, receiver sensitivity) - losses

For the Aegis-Beacon the important numbers are:

ParameterValue
TX power+17 dBm default, +30 dBm E22 PA max
Antenna~0-2 dBi
Receiver sensitivity (RSSI floor)~-120 dBm
Snow penetration~3 dB/m in wet snow

Realistic Range Expectations

ScenarioTypical range
Open line of sight, +17 dBm, whip both ends1-5 km
Open line of sight, +30 dBm PA5-15 km
Valley with ridge in between100-500 m
Dense wet forest500 m-2 km
Beacon buried 1 m in snowReduced by ~3-9 dB

These are order-of-magnitude figures. The only reliable way to know your link is a field test - see Outdoor Testing.

Terrain Effects

ObstacleEffect at 433 MHz
Ridge of rockHard shadow behind it
Snow~3 dB/m wet snow attenuation
Wet leavesA few dB per 10 m of dense foliage
Metal (cars, foil, structures)Total blockage

Why EMERGENCY Mode Uses Max Power

A buried beacon fights both the snow loss and the reduced height of its antenna. EMERGENCY mode transmits continuously at maximum power and repeats the payload 3x per frequency, buying back several dB of the burial loss.