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Docs Radio & RF Design dBm Explained

dBm Explained

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What dBm means, the powers the beacon uses, and how to think about -9 to +22 dBm.

dBm Explained

dBm is the unit of RF power used everywhere in this project. It looks intimidating and is actually simple.

The definition

dBm is power relative to 1 milliwatt, on a logarithmic scale:

  • 0 dBm = 1 mW
  • +10 dBm = 10 mW
  • +20 dBm = 100 mW
  • +30 dBm = 1 W
  • -10 dBm = 0.1 mW

Every +10 dB is a 10x power increase. Every +3 dB is a 2x increase.

The beacon’s numbers

SettingPowerUse
-9 dBm~0.13 mWMinimum (test, short range)
+17 dBm~50 mWBEACON default
+22 dBm~160 mWEMERGENCY, and RadioLib’s SX1262 max
+30 dBm1 WE22 PA output (module capability, not used by the beacon’s settings)

Why logarithms

Radio links involve huge dynamic ranges: a receiver might hear -50 dBm from a nearby beacon and -120 dBm from a distant one. That’s a factor of 10 billion, which is unmanageable in linear units. dBm compresses it to a 70-number scale.

RSSI vs power

RSSI (received signal strength indicator) is also in dBm but describes what the receiver sees, which depends on distance, antenna, and obstacles. A beacon transmitting at +17 dBm can produce RSSI anywhere from -40 dBm (a few meters) to -120 dBm (beyond range).

Rules of thumb

  • 3 dB is barely noticeable to a listener; 10 dB is clearly louder.
  • Doubling the distance costs roughly 6 dB on flat ground (inverse square for the path).
  • To double range in free space, you need 4x power (+6 dB).

In the dashboard

The TX power slider ranges -9 to +22 dBm. The firmware caps it at +22 dBm regardless of what the E22’s PA could do, because RadioLib’s SX1262 driver is the limit and because legal power limits are usually far lower.