Fiberglass omnidirectional antenna

Fiberglass Omnidirectional Antennas

Fiberglass Omnidirectional Antennas — 300 MHz to 5 GHz

Weatherproof outdoor fiberglass omnidirectional antennas for LoRaWAN gateways, telemetry, 4G/5G infrastructure and point-to-multipoint links. Model-specific DC-grounded designs provide a 360° horizontal pattern.

Application Overview

Why Fiberglass Omnidirectional Antennas

Fiberglass omnidirectional antennas provide a 360° horizontal pattern for outdoor base stations, repeaters and LoRaWAN gateways; the vertical beamwidth and gain determine how coverage is distributed by model. A sealed fiberglass radome helps protect the radiator from weather, UV and corrosion for rooftop and mast installations.

The range spans 300 MHz to 5 GHz, covering 433 MHz ISM and telemetry, 470 MHz radio, 4G/5G cellular and selected 4.9 GHz applications. DC grounding is an antenna-level feature and should be paired with the site's mast, cable and surge-protection design. Check each model's datasheet for its wind and operating-temperature ratings.

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

    An antenna-level grounding feature; complete site protection requires a coordinated mast, cable and surge design.

  • Connector

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

  • Wind Rating

    Verify the model-specific survival rating before specifying an exposed rooftop or mast installation.

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.