5G Advances in Bradley University’s Education with T-Mobile

"5G Advances in Bradley University's Education" encapsulates a educational initiative as Bradley University partners with T-Mobile to introduce 5G Advanced Network Solutions. This step aims to enhance digital equity, boost student outcomes, increase operational efficiency, and foster innovative, connected learning experiences, thus preparing students for a digital-forward future.
5G Advances in Bradley University Education with T-Mobile
Image Credit: T-Mobile

Bradley University, located in Peoria, Illinois, is set to pioneer a transformative education experience by being the first university in the U.S. to implement T-Mobile’s 5G Advanced Network Solutions (ANS). The university’s partnership with T-Mobile is aimed at improving digital equity for its students, bolstering student success outcomes, increasing operational efficiencies, and enriching innovative learning experiences throughout the campus.


The significance of this partnership lies in equipping students with access to connectivity technologies, a crucial aspect of preparing contemporary learners for the workforce and ensuring equitable opportunities. The target audience for this technological advancement includes educational institutions striving to bridge the digital divide and provide advanced connected experiences for students.

In a bid to offer students, faculty, and staff an immersive 5G experience, Bradley University has signed an agreement with T-Mobile, which will see the university utilize T-Mobileโ€™s 5G Hybrid Mobile Network. This partnership aligns perfectly with the universityโ€™s mission to provide innovative learning experiences for students and improve operational efficiencies under its Digitally Connected Campus initiative. In addition, iPad devices (10th generation) with 5G connectivity will be provided to students, faculty, and certain student-facing staff.

Recognizing the issue of unreliable connectivity faced by over half of the college students nationwide, the university plans to distribute iPads, equipped with a keyboard case and an unlimited data plan inclusive of 5G connectivity during the fall 2023 semester. This initiative allows even virtual or off-campus students to benefit from the advanced features of the iPad and access lectures, materials, and app-based learning opportunities from virtually anywhere on the nationโ€™s largest 5G network.

Christopher Jones, PhD, Vice President for Strategy and Innovation at Bradley University, highlighted the significance of this partnership by saying, “Partnering with T-Mobile enables us to provide our students with the ability to learn in the same mobile-first environment that is increasingly prevalent in the professional world. Introducing 5G to our students and campus allows us to advance a digitally equitable learning environment and a holistically connected campus.โ€

The university’s president, Steve Standifird, expressed excitement over the transformative partnership with T-Mobile, stating that it brings cutting-edge technology to Bradley University, revolutionizing the way students learn, collaborate, and thrive in the digital age.

The implementation of the 5G Hybrid Network on campus facilitates more immersive classroom experiences. With its fast speeds, low latency, and reliable connectivity, 5G technology can enhance learning experiences such as virtualizing complex machinery for instructional purposes, training medical students on telehealth technologies, employing AI-powered note-taking and other digital learning tools, and adopting powerful video game development software for the universityโ€™s acclaimed game design program.

Beyond enhancing educational experiences, the 5G Hybrid Network could also improve operational efficiencies on-campus. For instance, Bradley University could leverage sensor-based data analysis to receive automated updates on various issues, including water quality, leak detection, or refrigeration malfunctions, allowing them to address any issues proactively.

Callie Field, President, T-Mobile Business Group, applauded Bradley University’s innovative approach, mentioning that Bradley University had already identified over 20 unique use cases that could enhance students’ learning experiences and the university’s operations in the future.

As part of Bradley’s Digitally Connected Campus initiative, the iPad rollout will begin during the 2023-2024 academic year, starting with full-time Bradley faculty and “discovery cohorts” of students representing roughly 25% of the student body. The full launch, slated for Fall 2024, will include students, full-time faculty, and many student-facing staff members.


Recent Content

NVIDIA has launched a major U.S. manufacturing expansion for its next-gen AI infrastructure. Blackwell chips will now be produced at TSMCโ€™s Arizona facilities, with AI supercomputers assembled in Texas by Foxconn and Wistron. Backed by partners like Amkor and SPIL, NVIDIA is localizing its AI supply chain from silicon to system integrationโ€”laying the foundation for โ€œAI factoriesโ€ powered by robotics, Omniverse digital twins, and real-time automation. By 2029, NVIDIA aims to manufacture up to $500B in AI infrastructure domestically.
Samsung has launched two new rugged devicesโ€”the Galaxy XCover7 Pro smartphone and the Tab Active5 Pro tabletโ€”designed for high-intensity fieldwork in sectors like logistics, healthcare, and manufacturing. These devices offer military-grade durability, advanced 5G connectivity, and enterprise-ready security with Samsung Knox Vault. Features like hot-swappable batteries, gloved-touch sensitivity, and AI-powered tools enhance productivity and reliability in harsh environments.
Nokia, Digita, and CoreGo have partnered to roll out private 5G networks and edge computing solutions at high-traffic event venues. Using Nokia’s Digital Automation Cloud (DAC) and CoreGoโ€™s payment and access tech, the trio delivers real-time data flow, reliable connectivity, and enhanced guest experience across Finland and international locationsโ€”serving over 2 million attendees to date.
OpenAI is developing a prototype social platform featuring an AI-powered content feed, potentially placing it in direct competition with Elon Musk’s X and Metaโ€™s AI initiatives. Spearheaded by Sam Altman, the project aims to harness user-generated content and real-time interaction to train advanced AI systemsโ€”an approach already used by rivals like Grok and Llama.
AI Pulse: Telecomโ€™s Next Frontier is a definitive guide to how AI is reshaping the telecom landscape โ€” strategically, structurally, and commercially. Spanning over 130 pages, this MWC 2025 special edition explores AIโ€™s growing maturity in telecom, offering a comprehensive look at the technologies and trends driving transformation.

Explore strategic AI pillarsโ€”from AI Ops and Edge AI to LLMs, AI-as-a-Service, and governanceโ€”and learn how telcos are building AI-native architectures and monetization models. Discover insights from 30+ global CxOs, unpacking shifts in leadership thinking around purpose, innovation, and competitive advantage.

The edition also examines connected industries at the intersection of Private 5G, AI, and Satelliteโ€”fueling transformation in smart manufacturing, mobility, fintech, ports, sports, and more. From fan engagement to digital finance, from smart cities to the industrial metaverse, this is the roadmap to telecomโ€™s next eraโ€”where intelligence is the new infrastructure, and telcos become the enablers of everything connected.
In AI in Telecom: Strategic Themes, Maturity, and the Road Ahead, we explore how AI has shifted from buzzword to backbone for global telecom leaders. From AI-native networks and edge inferencing, to domain-specific LLMs and behavioral cybersecurity, this article maps out the strategic pillars, real-world use cases, and monetization models driving the AI-powered telecom era. Featuring CxO insights from Telefรณnica, KDDI, MTN, Telstra, and Orange, it captures the voice of a sector transforming infrastructure into intelligence.

Download Magazine

With Subscription
Whitepaper
Telecom networks are facing unprecedented complexity with 5G, IoT, and cloud services. Traditional service assurance methods are becoming obsolete, making AI-driven, real-time analytics essential for competitive advantage. This independent industry whitepaper explores how DPUs, GPUs, and Generative AI (GenAI) are enabling predictive automation, reducing operational costs, and improving service quality....
Whitepaper
Explore the collaboration between Purdue Research Foundation, Purdue University, Ericsson, and Saab at the Aviation Innovation Hub. Discover how private 5G networks, real-time analytics, and sustainable innovations are shaping the "Airport of the Future" for a smarter, safer, and greener aviation industry....
Article & Insights
This article explores the deployment of 5G NR Transparent Non-Terrestrial Networks (NTNs), detailing the architecture's advantages and challenges. It highlights how this "bent-pipe" NTN approach integrates ground-based gNodeB components with NGSO satellite constellations to expand global connectivity. Key challenges like moving beam management, interference mitigation, and latency are discussed, underscoring...

Subscribe To Our Newsletter

Scroll to Top