These days, we rely on our phones for just about everything. Whether we’re watching the morning news on our daily commute or working remotely from a coffee shop, we don’t just want fast, reliable Internet. We demand it.
But as more people use more devices with data-heavy tasks, mobile broadband providers are under pressure to meet their demands. Their job isn’t to just keep users connected, but make sure that connection is consistent.
That means having no lags during company meetings, no buffering when watching shows on Netflix and no dropped calls. But how do they manage to do this and stay ahead of increasing connectivity demands?
Our Experts
- Ali Mumtaz: CTO of 46 Labs.
- David Idle: Chief Product Officer at Bigleaf Networks.
- Shawn Carpenter: Programme Director at Ansys.
- Alan Jones: Head of Marketing D-Link.
Ali Mumtaz, CTO of 46 Labs

As the demand for high-speed, low-latency connectivity surges—driven by applications like VR, autonomous systems, and real-time collaboration—mobile broadband providers are racing to stay ahead. Leading the charge is millimetre wave (mmWave) 5G, which offers ultra-fast speeds and minimal latency in dense urban areas. Unlike fixed wireless or even fiber and cable, mmWave 5G doesn’t require expensive trenching or last-mile construction, enabling rapid deployment and dynamic scalability.
While fiber delivers high throughput, it’s limited by physical infrastructure and time-consuming rollouts. Fixed wireless, though quicker to deploy, often struggles with consistency and interference. Cellular mmWave, however, leverages advanced beamforming and massive MIMO to deliver gigabit speeds directly to mobile users, even in high-traffic zones like stadiums or city centres.
Mobile operators are innovating to ensure capacity and responsiveness for evolving use cases. As we move into an era of ubiquitous real-time connectivity, cellular networks are uniquely positioned to meet the challenge with flexibility and speed. It is important to recognise that with all forms of broadband (mobile, fixed wireless, and wired access), there is a need for a wired backbone for data transport, and thus a need for network operators that may not be directly involved or responsible for wireless/mobile access.
David Idle, Chief Product Officer at Bigleaf Networks

Mobile broadband has become a lot more critical than it was just a few years ago. For businesses and even for households, it’s no longer optional. People expect it to work consistently. And when it doesn’t — when throughput drops or the connection fails — the impact is felt immediately. We’re seeing more providers deploy intelligent traffic management to help with that.
Tools that can prioritise latency-sensitive applications and balance load across circuits when the network is congested. It doesn’t solve every problem, but it keeps core services online when demand peaks. 5G has helped as well, though not just because of higher speeds. Lower latency and higher device density make a noticeable difference in overall stability and user experience. We’re also seeing more hybrid access designs, combining wired and wireless circuits with automatic failover.
A few years ago, that level of redundancy was only common in certain industries. Now it’s becoming standard. At this point, just adding bandwidth isn’t enough. Networks have to adapt dynamically as conditions change, and customers want clear assurances about service reliability. That’s what builds confidence in the provider.
Shawn Carpenter, Programme Director at Ansys

Alan Jones, Head of Marketing D-Link





