Virgin Media O2 has made groundbreaking progress by deploying 5G standalone small cells in Birmingham. This state-of-the-art VoIP-ready technology promises enhanced mobile connectivity, achieving internet speeds up to 300Mbps.
Visitors, residents, businesses, and students in Reading town centre will soon enjoy enhanced mobile experiences and faster speeds thanks to Virgin Media O2’s deployment of small cells. This VoIP advancement aims to boost mobile capacity in Reading’s busy areas like Reading Station and the Oracle Shopping Centre, improving network efficiency.
EE’s rapid 5G small cell deployment, with over 1,000 active installations, marks a significant advancement in the UK’s mobile infrastructure. These small cells, strategically deployed in high-demand areas like London, enhance mobile capacity and performance. Leveraging advanced network analytics and collaboration with partners like Nokia and Ericsson, EE optimizes network efficiency, ensuring top-notch connectivity.
Freshwave, in collaboration with CommScope, has unveiled a revolutionary small cell solution that merges 4G from all four UK mobile network operators into one system. Using CommScope’s ONECELL technology, the Omni Network by Freshwave ensures indoor LTE and 5G connectivity.
Manchester city centre and its surrounding areas are set to experience improved mobile connectivity thanks to a new partnership between Freshwave and Manchester City Council. This collaboration will see Freshwave deploying over 20 outdoor small cells on behalf of Virgin Media O2 in high-traffic locations, such as the Arndale Shopping Centre, Manchester Piccadilly Station, and Piccadilly Gardens.
In an ambitious move to counteract the issue of network congestion within city environments, UK mobile operator Three has initiated a pioneering project in Glasgow, employing the advanced technology of Mavenir. The initiative focuses on the strategic placement of small cell units across the city to enhance urban connectivity, particularly in areas where 5G coverage is inconsistent.