How Powered Fiber Empowers Your Family’s Education

If you have a son or daughter in college, you can probably relate to this. From class size to online reviews and rankings, we pay close attention to researching how to choose the right university for them, but decisions are often based on instinctive feelings when visiting. I am. You haven’t left the car before they announce “Wow, this is it.”

Connect with your child

They say they know as soon as they step into the campus. The first impressions created primarily by the aesthetics of the campus and the general atmosphere are important. As they settle down, those same variables can affect everything from attitude to academic performance. It leads to the discussion of “form follows function” and how good campus technology design can make a big difference.

The concept of connected (smart) campuses has grown significantly over the last few years. It has evolved far beyond connecting individual buildings and ensuring high-speed wired or wireless connections in the dormitory. Today, the Connected Campus has a ubiquitous hybrid network that covers the campus. Connect students and staff both internally and externally to resources, applications and systems for life, work and learning.

Beyond Wi-Fi

However, campus networks extend beyond traditional IT networks and do more than just provide Wi-Fi. It enhances outdoor lighting, campus security, Wi-Fi, cell-based broadband for collaborative learning everywhere, and access control of facilities to protect people on campus.

This type of functionality is considered a basic expectation from future students, their families, and university staff. At the same time, environmental aesthetics play a major role in integrating technology into the campus. Throughout Europe and the United States, many schools are considered historic buildings and internal or external design changes must comply with strict guidelines to protect aesthetic and / or cultural integrity. .. Whether you’re talking about IT infrastructure or a new dining facility, forms are just as important as features.

Face invisible challenges

For some IT applications, demanding performance requirements that leverage a virtually invisible infrastructure create unique challenges. Campus-wide surveillance cameras, Wi-Fi hotspots, and networks of outdoor safety lighting are good examples of maintaining student and staff connectivity and protection.

These systems require a low voltage power supply in addition to reliable high speed data connections. Indoors, this can easily be achieved using a Power-over-Ethernet (PoE) network that combines power and data transmission into a single cable. However, the PoE distance is limited to 100 meters. In an outdoor environment, the distance from the power source to the farthest node can be more than a mile. Covering hundreds of acres with traditional PoE infrastructure, the campus is littered with access boxes mounted on hundreds of poles that house the PoE extenders needed to travel long distances.

Still, given enough time, the form will always find a way to follow the function. In this case, long-range power / data network solutions take the form of powered fibers that can reliably power and connect to devices up to 2.6 km (1.56 miles) away.

To understand how powered fiber systems are used to meet on-campus form and functional requirements Check out this interactive case study from the University of Tennessee at Knoxville..

Solutions that feel right

If you’re faced with some of these challenges, you’re definitely already looking at a variety of solutions, including PoE and other methods. However, the experience of Knoxville and many other institutions suggests that powered fiber will become an increasingly popular option, not to mention the situation at many airports, hospitality facilities and other decentralized campus types. .. When you see how well it works, you might say to yourself: “Wow, this is it.”

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How Powered Fiber Empowers Your Family’s Education

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