Model No.:Poles uhf mast 8dbi fiberglass antenna
Frequency Range(MHz):868Mhz 915Mhz
V.S.W.R: ≤2.0
Gain: 8 dBi
Center frequency characteristic impedance (Ω):50
Connector Type:N
Frequency Range(MHz) | 868MHz 915Mhz |
Impedance(Ω) | 50 |
Gain | 8 |
V.S.W.R | ≤ 2.0 |
Connector Type | N Connector |
Max. Power | 100 W |
product introduction for Poles uhf mast 8dbi fiberglass antenna
Our UHF 8dBi Fiberglass Antenna with Pole Mast offers powerful, omnidirectional coverage, ideal for extended range and reliable signal strength. Built with durable fiberglass construction, this fiberglass CB antenna ensures excellent performance in various environments. Mounted on a fiberglass antenna mast, it provides a stable and weather-resistant setup suited for demanding outdoor applications.
This 8dBi gain enhances signal quality, making it ideal for UHF base station setups and communication networks. This antenna’s sturdy design and high gain make it perfect for users requiring a dependable, high-quality omnidirectional antenna for both indoor and outdoor installation.
our Poles uhf mast 8dbi fiberglass antenna various uses
1. Enhancing LoRaWAN Network Coverage
The LoRa fiberglass antenna with an 8dBi gain is perfect for expanding and improving coverage in LoRaWAN networks. When installed on a fiberglass antenna tower or military fiberglass antenna mast, it provides long-range connectivity for IoT devices, such as smart sensors, gateways, and Helium hotspots. This setup ensures reliable, high-performance communication in rural and remote areas where other network solutions may not reach.
Whether you're installing a fiberglass CB antenna for use in a mobile communications setup or a military fiberglass antenna mast for tactical purposes, this 8dBi omnidirectional antenna is ideal for ensuring consistent, long-range communication. The omnidirectional Wi-Fi antenna mile design delivers 360-degree coverage, making it a great choice for outdoor installations that require stable communication over large distances, such as in construction sites, farms, or hiking trails.
Designed for high durability and reliability, the fiberglass antenna mast and its 8dBi gain make this antenna well-suited for military or tactical communication applications. Whether you're establishing a temporary communications network or setting up LoRa WAN antennas for field operations, this antenna provides secure, long-distance connectivity even in rugged or remote areas. The military fiberglass antenna mast ensures that the antenna stays stable and secure in extreme conditions while offering reliable, omnidirectional coverage.
Purchase and Contact Information
Dongguan RenFeng Electronic Technology Co.,Ltd
Email: bellasu@rflink.net.cn
Mobile Phone: +86 1379-4978-989
Address: No.1 Sankeng Qinghutou Tangxia Dongguan Guangdong China
The 8dBi gain in the Poles UHF Mast fiberglass antenna provides an increased range and signal strength compared to lower-gain antennas. A higher dBi gain means the antenna can focus its signal in a narrower, more directed pattern, allowing for long-range communication. This is particularly beneficial for LoRaWAN networks, military communications, and outdoor setups, where extending coverage over large distances is essential.
Yes, this fiberglass CB antenna and LoRa fiberglass antenna are designed to work efficiently across a range of UHF frequencies, including those used by LoRaWAN networks. The 8dBi gain makes it suitable for both LoRa WAN antennas in IoT applications and traditional UHF communication systems, ensuring reliable, long-distance connectivity in both rural and urban environments.
Absolutely! The fiberglass antenna mast is specifically engineered for outdoor use, with a rugged, weather-resistant design that can withstand harsh environmental conditions, such as wind, rain, and extreme temperatures. Whether you’re mounting it on a fiberglass antenna tower for omnidirectional coverage or using it in a tactical scenario with a military fiberglass antenna mast, this antenna is built for durability and reliable performance in any outdoor environment.