Ubiquiti AMO-5G13 | airMAX Omni Antenna 5 GHz
A 13 dBi 5 GHz omnidirectional antenna for airMAX base stations that need to serve clients in all directions from a single elevated mounting point.
Why this one
- At 13 dBi, this antenna delivers more gain than the AMO-5G10, which translates to a tighter 7° elevation beamwidth — concentrating signal horizontally rather than wasting it skyward or groundward.
- Dual-linear polarisation with 25 dB minimum cross-pol isolation supports 2x2 MIMO, so a compatible airMAX radio can use both spatial streams across the full 360° coverage pattern.
- Rated to survive 200 km/h winds with a tested load of 84.52 N, so it stays aligned on exposed rooftop or tower mounts where lighter antennas flex or shift.
- The 2° built-in downtilt angles the beam toward ground-level clients from an elevated mount, without you having to adjust the physical mounting hardware.
Good fit if you're building or expanding an airMAX 5 GHz point-to-multipoint base station that needs to cover clients spread across all compass bearings, and your mounting height gives you a clear line of sight over the surrounding area.
Worth considering something else if your clients are clustered in one direction — a sector antenna will concentrate gain where you need it — or if you only need moderate gain, the AMO-5G10 sits in a lower price band and suits shorter-range deployments.
What you'll also need
A compatible airMAX 5 GHz radio (such as the R5AC-LITE or PS-5AC) with the appropriate RF connector, plus mounting hardware — all brackets and accessories are included in the box.
Technical specifications
Mechanical
| Dimensions | 799 x 90 x 65 mm (31.5 x 3.5 x 2.6") |
| Weight | 820 g (1.8 lb) |
| Wind Survivability | 200 km/h (125 mph) |
| Wind Loading | 84.52 N at 200 km/h (19 lbf at 125 mph) |
| Downtilt | 2° |
Hardware
| Frequency Range | 5.45—5.85 GHz |
| Antenna Gain | 13 dBi |
| Elevation Beamwidth | 7° |
| Max. VSWR | 1.5:1 |
| Polarization | Dual-Linear |
| Cross-Pol Isolation | 25 dB Min. |
| ETSI Specification | EN 302 326 DN2 |