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Ubiquiti airFiber X 5 GHz 30 dBi Slant 45 Dish Antenna
KSh 20,920(KSh 24,267 Incl VAT)
- 30 dBi high-gain dish optimized for long-range PtP backhaul
- Precise 5.8° beamwidth minimizes interference and improves link quality
- Rugged outdoor design: 200 km/h wind rating, corrosion protection, cable shroud
- Dual-linear 45° polarization for MIMO performance
- Easy, snap-in mounting system with alignment aids
- Built for airFiber X radios, enabling gigabit-plus throughput
SKU: AF-5G30-S45Category: Networking Infrastructure
Ubiquiti airFiber X 5 GHz 30 dBi Slant 45 Dish Antenna (AF-5G30-S45) is a high-performance directional dish designed for long-range point-to-point wireless links. With a 30 dBi gain, dual-slant polarization, and optimized 5.8° beamwidth, it ensures maximum signal strength, reduced interference, and seamless integration with airFiber X radios. Its rugged, weather-resistant design makes it ideal for high-capacity backhaul in challenging environments.
Here’s a very detailed overview of the Ubiquiti airFiber X 5 GHz 30 dBi Slant 45 Dish Antenna (AF‑5G30‑S45):
🛠 Mechanical & Physical Specs
- Dish Diameter: 650 mm; Depth: 386 mm
- Weight: 7.4 kg (with mount)
- Mount: Pole mounting kit; includes built-in bubble level and adjustment bracket for +/- alignment accuracy
- Wind Survivability: Rated up to 200 km/h
- Wind Loading: ~790 N at 200 km/h
- Material: Rugged UV-resistant components with powder-coated galvanized steel hardware, corrosion-resistant fasteners, and protective shroud for cables
📡AirFiber X 5 GHz 30 dBi Slant 45 RF Characteristics
- Frequency Range: 4.9–5.9 GHz
- Gain: 30 dBi (± at 5 GHz)
- Beamwidth: 5.8° (3 dB) both horizontal and vertical
- Front-to-Back Ratio: 30 dB
- VSWR: < 1.6:1
- Polarization: Dual-linear, 45° slant
- Cross-Polar Isolation: ≥ 35 dB
⚙ Design & Compatibility
- Integration: Designed for seamless integration with airFiber X and airFiber 5XHD radios via built-in radio mount
- Direct Mounting: Radio snaps into place within the feedhorn; no external cables, ensuring minimal loss and RF integrity








