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Docs Radio & RF Design RF Interference and Noise

RF Interference and Noise

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Sources of noise at 433 MHz, how they affect SEARCH mode, and what to do about them

RF Interference and Noise

Overview

433 MHz is a shared ISM band. The SEARCH scanner measures RSSI, so it cannot tell a real beacon from a strong interferer - it only reports signal strength. Knowing the local noise floor keeps false hits from wasting a search.

Common Noise Sources

SourceSignal shapeHow to tell
Car key fobsBursts on button pressShort, repeatable when you press your own key
Wireless weather stationsPeriodic short packetsRegular cadence every minute
Tire pressure sensorsShort bursts as cars passMoves with traffic
Smart plugs / LED driversBroadband hashPersistent, wide on the waterfall
Other LoRa/ISM devicesVariableCheck what neighbors use

Using SEARCH Threshold

The detection threshold (rssi, default -90 dBm) is your noise gate:

  • Raise it (e.g., to -80 dBm) in noisy urban areas.
  • Lower it toward -100 dBm only in quiet backcountry.
  • Watch the RSSI baseline on a quiet channel first.

Checking the Noise Floor

  1. Enter SEARCH mode on an unused frequency.
  2. Note the idle RSSI over 30 seconds.
  3. Compare against a known-quiet channel (e.g., one no one uses).
  4. Set the threshold a few dB above the quiet baseline.

Real Beacon vs Interferer

A real Aegis-Beacon in SEARCH mode shows:

  • A carrier keying in Morse (SOS pattern) at a stable frequency.
  • RSSI that rises as you approach.
  • The same frequency every TX cycle.

An interferer shows none of those patterns. If in doubt, look for the Morse signature before acting on a hit.