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2×2 vs 4×4 MIMO Wi-Fi 6 Modules for Industrial Systems

2×2 vs 4×4 MIMO Wi-Fi 6 Modules: How to Choose for Industrial Wireless Systems When engineers compare 2×2 and 4×4 MIMO Wi-Fi 6 modules, the first difference is obvious: one has two transmit and receive chains, while the other has four. The engineering decision is less...

4.9–5.9 GHz 4×4 Wi-Fi 6 Module for Airborne Platforms

4.9–5.9 GHz 4×4 Wi-Fi 6 Modules for Mission-Critical Airborne and Space Communication Platforms Selecting a wireless module for an advanced airborne platform is very different from choosing Wi-Fi hardware for a normal industrial network. The radio may have to operate...

4.9 GHz Wi-Fi 6 Module for UAV Communication | Vizmonet

4.9–5.9 GHz Wi-Fi 6 Modules for High-Bandwidth UAV and Airborne Communication Systems A UAV carrying a flight controller and basic telemetry does not create a particularly difficult data problem. Add two cameras, thermal imaging, LiDAR, payload telemetry, onboard...

4.9–5.9 GHz Mini PCIe Wi-Fi Module for Mining | Vizmonet

4.9–5.9 GHz Mini PCIe Wi-Fi Module for Mining | Vizmonet

4.9–5.9 GHz Mini PCIe Wi-Fi Modules for Mining Equipment and Autonomous Robotics A mining vehicle does not become autonomous simply because you add sensors, cameras and an onboard computer. Those systems still need a dependable way to move information between the...

What Is MANET Networking? UAV & UGV Communication

What Is MANET Networking? UAV & UGV Communication

What Is MANET Networking? How Mobile Ad Hoc Networks Enable UAV & UGV Communication A conventional wireless network usually assumes that something stays put. A Wi-Fi access point remains fixed. A base station provides coverage over a defined area. A UAV talks...

Choosing a 4.9 GHz Wi-Fi 6 Module for First Responder Systems

Choosing a 4.9 GHz Wi-Fi 6 Module for First Responder Systems

4.9 GHz Wi-Fi 6 Modules for First Responder and Public Safety Networks When you are designing wireless equipment for first responders, choosing the radio module is not a minor component decision. It can affect how well the finished system handles interference, whether...

RF Link Planning: 15 Common Mistakes to Avoid

RF Link Planning: 15 Common Mistakes to Avoid

Common RF Link Planning Mistakes and How to Avoid Them Reliable wireless communication starts long before an antenna is installed or a radio is switched on. RF link planning helps engineers understand whether a wireless connection can deliver the required range,...