5 GHz 24dBi Grid – Replacement Feed

R657,80

Restore maximum performance to your long-range wireless links with this high-gain 5 GHz 24dBi replacement feed. Engineered for precise signal focusing and superior environmental durability, it guarantees low signal loss and rock-solid throughput for your critical deployments.

26 in stock

SKU: KB-5824-GRIDRF

Description

Revitalize your existing wireless infrastructure with the Acconet 5 GHz 24dBi Grid Replacement Feed. Specifically engineered to seamlessly replace worn or damaged feeds on compatible 24dBi grid antennas, this unit restores peak RF efficiency and ensures your long-range point-to-point links operate at maximum capacity. Whether you are expanding a WISP backhaul or upgrading a high-capacity wireless bridge, this feed delivers the precision and reliability required for demanding outdoor environments.

  • Operating Frequency: 5 GHz band for less congested, high-speed wireless traffic
  • Antenna Compatibility: Designed specifically for 24dBi grid reflector dishes
  • Deployment Type: Ideal for long-range point-to-point (PtP) and WISP backhaul applications
  • Construction: Weather-resistant outdoor housing to withstand harsh environmental conditions
  • Performance: Minimizes signal loss while maximizing directional gain and link stability

Frequently Asked Questions (FAQ)

Is this replacement feed compatible with any 24dBi grid antenna?
This feed is precision-engineered to work seamlessly with standard 24dBi grid reflector dishes that match its specific mounting and focal length dimensions, ensuring optimal RF performance upon installation.

Does this feed include the complete grid dish or just the replacement element?
This product includes the replacement feed horn only and is designed for users who already have the grid reflector dish and need to replace a damaged or degraded feed.

How does this feed help improve long-range wireless links?
By restoring the precise focal point and signal radiation pattern of your antenna, it minimizes side lobes and signal attenuation, resulting in higher gain, stronger link margins, and improved overall throughput.