Fiberglass omnidirectional antenna

Fiberglass Omnidirectional Antennas

Fiberglass Omnidirectional Antennas — 300 MHz to 5 GHz

Weatherproof outdoor fiberglass omnidirectional antennas for base stations, LoRaWAN gateways and long-range point-to-multipoint links. DC-grounded designs with a full 360° horizontal pattern.

Application Overview

Why Fiberglass Omnidirectional Antennas

Fiberglass omnidirectional antennas deliver uniform 360° coverage for outdoor base stations, repeaters and LoRaWAN gateways. The sealed fiberglass radome protects the collinear radiator from weather, UV and corrosion, making them the dependable choice for rooftop and mast installations that must run unattended for years.

This range spans 300 MHz to 5 GHz, covering 433 MHz ISM and telemetry, 470 MHz two-way radio, 4G cellular and 4.9 GHz bands. DC grounding provides lightning protection, and every model is rated for 60 m/s wind and a -40 °C to +80 °C operating range.

Key Specifications to Consider

  • Frequency Band

    From 301 MHz UHF through 5 GHz unlicensed bands.

  • Gain & Beamwidth

    Higher gain narrows the vertical beam for longer reach.

  • DC Grounding

    Built-in lightning protection for outdoor masts.

  • Connector

    N Male standard; select models offer SMA or optional types.

  • Wind Rating

    60 m/s survival rating for exposed rooftop mounts.

Product Catalog

Fiberglass Omnidirectional Antenna Models

7 models in this category. Click Request Quote on any row to pre-fill the inquiry form.

LGW-3.3G-BLG02

3.3 GHz Fiberglass Omni

LGW-3.3G-BLG02
Frequencies
3300–3400 MHz
Key Specs
5 dBi · VSWR ≤1.5 · 100 W · N Male
Form Factor
Φ16 × 300 mm · 70 g · N Male

LGW-1.4-1.8-3-L

Dual-Band Fiberglass Omni

LGW-1.4-1.8-3-L
Frequencies
1447–1467 MHz · 1785–1805 MHz
Key Specs
3 dBi · VSWR ≤1.5 · 100 W · SMA Male
Form Factor
Φ20 × 342 mm · 200 g · SMA Male

LGW-1785-1805-BLG02

1.8 GHz High-Gain Fiberglass Omni

LGW-1785-1805-BLG02
Frequencies
1785–1805 MHz
Key Specs
10 dBi · VSWR ≤1.5 · 100 W · N-type
Form Factor
Φ20 × 1200 mm · 1.5 kg

LGW-301-340-BLG01

300 MHz Fiberglass Omni

LGW-301-340-BLG01
Frequencies
301–340 MHz
Key Specs
3 dBi · VSWR ≤2.0 · 100 W · N Male
Form Factor
Φ20 × 300 mm · 108 g

LGW-4.9G-BLG02

4.9 GHz Fiberglass Omni

LGW-4.9G-BLG02
Frequencies
4800–5000 MHz
Key Specs
7 dBi · VSWR ≤1.5 · 100 W · N Male
Form Factor
Φ16 × 250 mm · 62 g

LGW-703-2690-BLG02

4G Wideband Fiberglass Omni

LGW-703-2690-BLG02
Frequencies
703–960 MHz · 1710–2690 MHz
Key Specs
3 dBi · VSWR ≤2.5 · 100 W · N Male
Form Factor
Φ20 × 300 mm · 128 g

LGW-MO470N1

470 MHz Fiberglass Omni

LGW-MO470N1
Frequencies
470–510 MHz
Key Specs
5 dBi · VSWR ≤2.5 · 20 W · N Male
Form Factor
Φ30 × 1168 mm · Fiberglass
LGW-MO470N1 470 MHz fiberglass omnidirectional antenna

Flagship Product

LGW-MO470N1 — Outdoor Fiberglass Omnidirectional Antenna

The LGW-MO470N1 is a 470–510 MHz outdoor fiberglass omnidirectional antenna for long-range point-to-multipoint and telemetry. Its sealed radome and DC-grounded collinear design deliver a full 360° horizontal pattern with 5° electrical downtilt, rated for 60 m/s wind and -40 °C to +85 °C operation.

Frequency range
470–510 MHz
Gain
5 dBi
VSWR
≤2.5
Horizontal beamwidth
360°
Electrical downtilt
Impedance
50 Ω
Connector
N-Male
Dimensions
Φ30 × 1168 mm
Operating temperature
-40 °C to +85 °C

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FAQ

Fiberglass Omnidirectional Antenna FAQs

Common questions about outdoor mounting, grounding and coverage.

Do fiberglass omnidirectional antennas need a ground plane?

No. Fiberglass collinear antennas are ground-plane independent and can be mounted directly on a pole or mast without a metallic counterpoise.

Are these antennas protected against lightning?

All fiberglass omni models are DC grounded, providing a direct path to ground for static and lightning-induced energy. For exposed rooftop or mast installations, we still recommend adding a separate coaxial lightning arrestor.

How do I choose between higher and lower gain models?

Higher gain (for example 10 dBi) concentrates energy into a narrower vertical beam for longer point-to-multipoint reach; lower gain (3–5 dBi) provides a wider vertical beam better suited to varied terrain and shorter links.