Infrastructure

Infrastructure Solutions

Discover the new age of connectivity with 10x efficiency

Revolutionize Your Infrastructure with Wi-Fi HaLow

Welcome to the future of advanced wireless infrastructure connectivity! Wi-Fi HaLow, developed by Morse Micro, is revolutionizing the field with its unparalleled capabilities, specifically designed to enhance various infrastructure applications. Its unique technology surpasses the limits of traditional Wi-Fi, offering superior performance even in challenging environments.

Morse Micro’s Wi-Fi CERTIFIED HaLow system-on-chip (SoC) solution excels in its wireless capabilities. It operates on narrow frequency bands, allowing it to overcome obstacles and maintain robust performance in densely populated device environments. These features collectively deliver 10 times the range, 100 times the coverage area, and 1000 times the volume compared to conventional Wi-Fi technologies.

Experience the Wi-Fi HaLow Difference

Wi-Fi HaLow presents a suite of capabilities uniquely suited for infrastructure applications, outperforming other wireless technologies.

Long-range connectivity

Wi-Fi range extending over 1.5 miles, using lower frequencies to better penetrate walls and obstacles.

Optimized for energy efficiency

Ultra-low power consumption enabling IoT devices to run on batteries for years.

Connect over 8,000 stations per AP

No need for complex mesh networks as a single access point supports over 8,000 unique IoT devices.

Robust layered security

Running the latest Wi-Fi WPA3 security. Wi-Fi EasyConnect, and Wi-Fi EnhancedOpen, with capacity for added encryption. 

Use Case/Application

Wi-Fi HaLow is revolutionizing infrastructure with its advanced capabilities, catering to a variety of key use cases.

Network extension

Enhance network extensions by improving wireless connectivity in hard-to-reach areas, expanding coverage and reliability in communications infrastructure without requiring costly additional infrastructure development.

Mesh APs

Leverage Wi-Fi HaLow as a control plane for mesh access points dedicated to low-throughput, small-packet network traffic while the 2.4GHz/5GHz backhaul handles high-bandwidth, low-latency applications, improving channel utilization and network efficiency.

Backhaul

Establish wireless backhaul network connections supporting thousands of IoT devices, hubs and routers, capable of serving more than 8,000 devices from a single access point, with backhaul networks scaling to more than 100,000 devices.

Rural networks

Enable reliable, extended wireless connectivity in remote rural areas, enabling internet access, IoT applications, and various cell services, bridging the digital divide and enhancing communication infrastructures for these communities.

Resources

News

Long-Range Wi-Fi HaLow Connectivity: The Missing Link in AI-Based IP Cameras

Read more

News

Connectivity and Distance: How Wi-Fi HaLow Delivers a New Picture for Security Cameras

Read more

News

Harnessing the Transformative Power of Wi-Fi HaLow Connectivity Across Industries

Read more

News

Wi-Fi HaLow Reduces Cost & Complexity of Long-Range Coverage for IoT and Backhaul

Read more

News

Connectivity That Goes the Distance: Mesh Networking

Read more

News

Connectivity trends: All roads lead to Wi-Fi for 2023 and beyond, says Wi-Fi Alliance

Read more

News

Wi-Fi HaLow Delivers on The Promise of IoT Connectivity

Read more

Blogs

Wi-Fi HaLow Takes Aim at Long-Range IoT Connectivity

Read more

News

Why Industrial IoT Needs Wi-Fi HaLow for Wireless Connectivity

Read more

News

Building Sustainable and Smart Energy Infrastructures with Wi-Fi HaLow Technology

Read more

Talk to Sales
We’d love to talk about how we can work together.

Subscribe to Our Newsletter

Sign up to learn more about Morse Micro and Wi-Fi HaLow.

Name(Required)
This field is for validation purposes and should be left unchanged.

Subscribe to Our Newsletter

Stay up to date with the latest in Wi-Fi HaLow news and events

Name(Required)
This field is for validation purposes and should be left unchanged.