Case Studies

Case Studies

Hyperspan Case Studies

Real projects. Real outcomes.

Explore how Hyperspan extended-reach cabling is being positioned across live environments including retail, stadiums and campus CCTV deployments — helping reduce infrastructure, simplify topology and avoid unnecessary supporting hardware.

Featured deployments

These case studies show how Hyperspan can be applied in different environments where standard structured cabling distances can create cost, complexity or unnecessary supporting hardware.

Hyperspan Shopping Centre case study
Retail / Shopping Centre

Shopping Centre Connectivity Case Study

A retail environment using Hyperspan to support multiple service types including Wi-Fi access points, CCTV, tills and PDQ machines across the same live trading space.

  • Wi-Fi access point connectivity
  • CCTV infrastructure support
  • Tills and PDQ integration
  • Reduced complexity across retail estate
Hyperspan Stadium VAR case study
Stadium / VAR / Broadcast

Football Stadium VAR Case Study

Hyperspan used around the upper perimeter for VAR camera positions and pitchside data runs without needing additional racks, switches or extenders.

  • Long perimeter data runs
  • Pitchside connectivity support
  • No extra rack deployment
  • Simplified network topology
Hyperspan Campus CCTV case study
Education / CCTV

Campus CCTV Deployment Case Study

Extended CCTV coverage across a multi-building campus environment without adding unnecessary cabinets or powered mid-span infrastructure.

  • Longer challenged cabling routes
  • Cleaner point-to-point design
  • Reduced dependency on extenders
  • Simplified support and maintenance
These examples are intended to demonstrate how Hyperspan can simplify long-distance copper deployments across real environments where infrastructure, reach and supporting hardware need to be carefully managed.
Why Hyperspan

See how Hyperspan improves the network design

Explore the benefits interactively and show customers how extended-reach cabling reduces hardware, simplifies topology, and improves deployment efficiency.

Extended Reach

Go beyond the standard 100m approach

Hyperspan helps extend serviceable distance for edge devices without depending on additional active equipment mid-run. This makes it easier to support long CCTV, Wi-Fi, ANPR and smart building links from a central location.

  • Support longer copper runs for edge deployments
  • Reduce the need for intermediate cabinets or switches
  • Improve flexibility for difficult real-world layouts
View technical specs
Typical design issue 100m limit creates extra hardware decisions
With Hyperspan Longer reach with a cleaner deployment path
Ideal for CCTV, Wi-Fi, access control, smart buildings
Lower Hardware Count

Design with fewer active components

By reducing dependency on extenders, repeaters, and additional switching points, Hyperspan can help simplify installation strategy and lower overall infrastructure complexity.

  • Fewer mid-span switches and extenders
  • Less rack space and fewer power requirements
  • Lower maintenance burden over time
Discuss your project
Before More cabinets, more active points, more cost
After Fewer devices across the route
Result Simpler installs and fewer failure points
Cleaner Topology

Keep the network layout easier to understand and manage

A cleaner topology makes projects easier to install, document, maintain, and troubleshoot. Hyperspan supports a more direct route from switch to device, especially in large or awkward environments.

  • Fewer break points in the route
  • Simpler documentation and handover
  • Improved clarity for future maintenance teams
See use cases
Topology benefit More direct cabling paths
Operational benefit Faster fault tracing and cleaner design logic
Best fit Campuses, warehouses, retail, stadiums
Reduced Power Demand

Cut dependence on extra powered infrastructure

Reducing additional active devices across the link can help lower the supporting power burden of the overall deployment while keeping the design more streamlined.

  • Less dependency on extra powered network hardware
  • More efficient overall infrastructure layout
  • Supports greener project planning goals
Explore smart building applications
Infrastructure effect Fewer powered touchpoints across the route
Business effect Potentially lower total operating burden
Messaging angle Cleaner, leaner, more sustainable network design