TERAGO Launches Canada’s First Private 5G MMwave Network at McMaster University’s Research Institute

TERAGO has established Canada's premier 5G MMwave private network for Industry 4.0 research at McMaster University's new Manufacturing Research Institute (MMRI) in Hamilton, Ontario. Over the next three years, this network will enable researchers to test and develop advanced manufacturing technologies utilizing 5G MMwave capabilities.

TERAGO has established Canada’s premier 5G MMwave private network for Industry 4.0 research at McMaster University’s new Manufacturing Research Institute (MMRI) in Hamilton, Ontario.


Over the next three years, this network will enable researchers to test and develop advanced manufacturing technologies utilizing 5G MMwave capabilities. Offering high bandwidth, ultra-low latency, and support for thousands of devices, 5G millimeter wave networks can help industries reduce costs, enhance efficiency, and improve worker safety through augmented reality, high-speed vision systems, extensive industrial IoT deployments, and autonomous vehicles.

John Preston, Associate Dean of Research, Innovation, and External Relations at the Faculty of Engineering, expressed enthusiasm for the official launch of the 5G millimeter wave network in collaboration with TERAGO and the innovative advancements this partnership will bring to Canada’s industrial sector.

Stephen Veldhuis, MMRI Director and Braley-Orlick Chair in Advanced Manufacturing Engineering, highlighted McMaster University’s pioneering role in adopting a private 5G millimeter wave network for Industry 4.0 research. He shared excitement for the next stage of their partnership with TERAGO and the network’s operational status.

In November 2021, TERAGO and McMaster announced their collaboration, and since then, they have worked closely to develop use cases explored by researchers in McMaster’s new 21,000-square-foot advanced manufacturing facility, supported by TERAGO’s 5G MMwave private network.

Matthew Gerber, TERAGO’s CEO, expressed excitement about the launch of Canada’s first 5G millimeter private network at MMRI. He emphasized that their joint teams will demonstrate the benefits of a low-latency, high-speed millimeter private network for Canadian manufacturers seeking to boost capabilities, enhance efficiencies, and reduce costs.


Recent Content

Valenciaport’s private 5G network connects 25,000 devices across six square miles, optimizing cargo traffic, enhancing security, and enabling innovative solutions like AI-powered remote maintenance and digital twinning. Learn how Europe’s second-busiest port is driving digital transformation.
Nokia declares 7,000 patent families essential to 5G, driving innovation in connectivity, IoT, and smart technologies, with a focus on 6G advancements.
Edge computing is transforming telecom by enabling efficient 5G networks. By processing data closer to its source, it minimizes latency, reduces network congestion, and supports real-time applications like IoT, AR, and remote healthcare. Learn how this transformative technology tackles challenges like infrastructure costs and security while opening new revenue streams and enhancing customer experience.
Explore the evolution of industrial revolutions from Industry 4.0 to Industry 5.0. Learn how smart factories and predictive maintenance redefine manufacturing in Industry 4.0, while Industry 5.0 emphasizes human-centric collaboration and sustainable practices. Discover their key differences, benefits, and implications for the future of manufacturing.
India’s telecom industry is advancing rapidly, driven by 5G expansion, AI-powered innovations, and the ambitious Bharat 6G Vision. With 460,592 5G BTS sites deployed and 125 million users already connected, the sector is set to lead global telecom innovation. However, challenges like regulatory disparities and spectrum allocation need urgent attention to sustain this growth and realize its full potential.
ESA, Telesat, and Amarisoft have successfully demonstrated the world’s first 5G Non-Terrestrial Network (NTN) link over a Low Earth Orbit (LEO) satellite. Using 3GPP Release 17 standards, the collaboration marks a major step in integrating terrestrial and satellite systems for seamless global connectivity. This milestone paves the way for direct-to-device communication, bridging digital divides and enabling innovative applications across industries.

Currently, no free downloads are available for related categories. Search similar content to download:

  • Reset

It seems we can't find what you're looking for.

Download Magazine

With Subscription

Subscribe To Our Newsletter

Scroll to Top