NEW YORK – February 19, 2025 –Lightpath, an all-fiber infrastructure-based connectivity provider that is revolutionizing how organizations connect to their digital destinations, announced its entrance into the Phoenix market with a new 230-route mile, high-fiber count network throughout the region, anchored by multiple hyperscaler customers.
The Phoenix network build will encompass 230-route miles of underground, multi-conduit systems with capacity for 20,000 fibers, connecting 8 data center campuses and carrier hotel locations, with an additional 30+ data center campuses near the planned routes. The network will connect emerging data center ecosystems in Goodyear, Buckeye, Chandler, Glendale, Mesa, and Tempe, with additional connectivity to major carrier hotels throughout Phoenix Metro.
Construction of the network has already commenced with priority routes targeted for completion in Q2 of 2025. Subsequent routes will be service-ready on a phased basis with overall completion in 2026.
Lightpath will be offering a full range of infrastructure and connectivity services on its Phoenix network, including high-count dark fiber, conduit services, wavelengths up to 800 Gbps, Ethernet, Internet, and more. In addition to hyperscalers, the Lightpath Phoenix network will be available to enterprises, educators, governments, carriers, and wireless providers.
“We’re thrilled to be partnering with our hyperscale customers to develop the next generation of fiber infrastructure in greater metropolitan Phoenix,” explained Chris Morley, CEO of Lightpath. “Phoenix represents the fifth largest data center ecosystem globally with 1.6GW of operational capacity and an additional 1+GW planned by 2027.”
Phoenix Network Designed to Support Massive AI-Driven Connectivity Requirements
The massive fiber-density and overall capacity of the network design are direct reflections of the unprecedented connectivity demand the company is seeing from hyperscalers planning for AI-related initiatives. Lightpath previously announced $110 million of AI-related bookings in 2024 with a remaining demand pipeline of approximately $1 billion.
“The incredible fiber density in our Phoenix network is designed to support AI workload requirements that are estimated to be 10x those required to serve today’s multi-cloud network architectures,” explained Tim Haverkate, EVP of Major Infrastructure Solutions, Lightpath. “Add to that more capacity for other market segments and customers, and this is the densest network we have ever brought to market, by far.”
The Innovation Centre is supported by a grant from the Spanish Space Agency and will allow partners to test solutions combining satellite and mobile connectivity
Vodafone has this week announced the creation of a new innovation centre in Málaga, Spain, aimed at better integrating satellite and terrestrial mobile communications.
The centre’s creation is partially financed by a grant from the Spanish Space Agency and includes AST SpaceMobile and the University of Málaga as its key initial partners.
According to Vodafone, the centre “will specifically focus on the design, testing and validation of new open-source hardware, software, and processing chips that can work interchangeably in both space and terrestrial networks”, according to a joint press release.
More specifically, the centre will house a space-to-land gateway, allowing third parties to test services using AST SpaceMobile’s BlueBird satellites.
AST SpaceMobile launched its first five commercial low Earth orbit satellites in September last year. These satellites are designed to integrate with mobile networks, allowing regular smartphone users to access satellite connectivity whenever terrestrial connectivity is lost.
These initial five satellites are set to cover the US, while subsequent launches set to increase coverage across the globe.
AST SpaceMobile already has agreements with 45 mobile network operators worldwide, including Vodafone.
“As society becomes more digital, the need to close coverage gaps increases. Vodafone, together with AST SpaceMobile and the University of Málaga, will forge partnerships with like-minded organisations to build harmonious space and earth networks to meet Europe’s ambitious targets for ubiquitous digital connectivity,” said Alberto Ripepi, Vodafone Group’s Chief Network Officer.
Vodafone says that it expects to commercially launch direct-to-device satellite connectivity services in parts of Europe later this year.
The Centre is expected to open for partners by summer this year.
The North East’s pioneering role in advanced wireless innovation took centre stage at the 5G Innovation Regions (5GIR) Showcase.
Bringing together industry leaders, government representatives and technology innovators, the event celebrated the progress, impact and future potential of advanced wireless infrastructure use cases across key sectors, including smart port operations, agritech, connected transport and creative industries.
Spearheaded by Sunderland City Council in collaboration with the North East Combined Authority, this initiative is driving regional innovation and connectivity. The 5GIR programme has established the North East as a national leader in digital innovation and demonstrated close partnerships with industry, academia and technology providers. With investment from the Department for Science, Innovation and Technology (DSIT), the region has accelerated the deployment of cutting-edge technologies that are shaping the future of connectivity, industry and sustainability.
Through these four pioneering projects, the region is demonstrating how connectivity can enhance efficiency, safety and engagement, ensuring no one and nowhere is left behind.
Opening the event at City Hall in Sunderland, Patrick Melia, chief executive of Sunderland City Council and digital lead officer for the North East Combined Authority, reinforced the region’s commitment to harnessing technology for economic growth, social impact and environmental sustainability. Patrick said: “5G innovation is not just about infrastructure, but about real-world benefits. Our goal encompasses more than leveraging technology alone, it’s focused on the impact technological advancement has on people’s lives, prospects and the opportunities it opens for them.”
This sentiment was echoed by Rob Hamilton, chief economist at the North East Combined Authority,who highlighted that: “Technology must serve a purpose, driving real benefits for businesses and communities across the North East.
“5G infrastructure is underpinning the region’s ambitions for economic resilience, digital inclusion and future skills development.”
The showcase event focused on the impressive progress across four main projects, each demonstrating the vital role of advanced wireless technologies, including 5G, in reshaping regional industries: Connected Intelligent Transport Systems (C-ITS), Creative Industries, Smart Port and Agritech.
Connected Intelligent Transport Systems (C-ITS): One focus of the showcase was the Connected Intelligent Transport Systems (C-ITS) project, which leverages 5G to improve the movement of people and goods across the region. Mark Wilson from Sunderland City Council’s HighwaysAuthority said: “5G connectivity is enabling real-time traffic management, multimodal journey planning and enhanced safety measures.
“By integrating live data, we are creating a smarter, more efficient transport network across our region, whilst demonstrating how this can be transferred and implemented throughout the UK.”
Adrian Molloy, Head of Delivery at Boldyn Networks, discussed the role of 5G private networks in enabling autonomous vehicle integration and AI-driven analytics for transport efficiency. Simon Edwards, Senior Researcher in Inclusive Mobility at Newcastle University, further emphasised the role of CITS in supporting connected and autonomous vehicle (CAV) trials, highlighting the potential for real-time data exchange between vehicles and infrastructure to optimise mobility solutions.
Creative Industries The showcase also featured groundbreaking applications in the Creative Industries, with a focus on immersive digital experiences and real-time broadcasting. Two major use cases were introduced: live 360º video broadcasting and the Sunderland EXPO Pavilion, one of the UK’s largest immersive screens, developed in collaboration with Animmersion and ArtAV.
Marion Dixon, Assistant Director Regulatory Services and Events at Sunderland City Council, said:“The EXPO Pavilion serves as adynamic digital canvas, showcasing the city’sculture, music and heritage. It’s been incredible to see live demonstrations in Keel Square – broadcast in real time using 5G-enabled cameras and dual-SIM broadcasting technology –redefining audience engagement as we merge technology and creativity to bring digital content to life in public spaces.”
The project team at Port of Tyne – part of the 5GIR North East Showcase.
Smart Port On the second day, attendees visited Port of Tyne’s Innovation Hub, where Dr Jo North, innovation ecosystem director, and Mark Stoner, chief financial officer at the Port, highlighted how 5G is transforming port operations. Mark said: “The expansion of our private 5G network, in partnership with BT and Ericsson, is enabling real-time monitoring of road conditions, vehicle movements and environmental impact. This enhanced connectivity allows us to proactively manage safety risks, optimise logistics and improve operational efficiency across the Port.
“By leveraging data-driven insights, we are creating a smarter, safer and more sustainable port environment that supports the wider supply chain and maritime industry.”
The implementation of AI-enhanced PPE monitoring, vehicle tracking and automated maintenance insights, are further reinforcing the Port’s vision to become a smart, green and fully connected logistics hub.
Agritech The showcase concluded with a visit to Newcastle University’s Nafferton Farm, where attendees explored advanced wireless farm sensors for soil health monitoring and methane reduction. Dr Elisa Lopez Capel, senior lecturer in soil science at Newcastle University, demonstrated how LoRaWAN-connected sensors are providing continuous soil condition data, while James Standen, director of Newcastle University Farms, detailed the use of IoT technology in precision agriculture to improve sustainability and efficiency.
Dr Hannah Davis of Newcastle University introduced the methane monitoring use case, explaining its critical role in reducing agriculture’s carbon footprint. By leveraging advanced wireless infrastructure, researchers have developed low-cost methane sensors, which are now installed in the dairy parlour at Nafferton Farm. This technology advances environmental sustainability whilst unlocking opportunities for carbon credits and additional revenue streams.
The 5GIR North East Showcase reinforced the region’s status as a leader in digital transformation, demonstrating how collaboration, investment, and innovation are shaping the future. With projects already delivering tangible benefits, the North East continues to drive forward as a blueprint for connected, intelligent and sustainable communities.
Colt Technology Services (Colt), the global digital infrastructure company, today announced an expansion to its technology portfolio with Managed LEO+, a new managed service which integrates Low Earth Orbit (LEO) satellite connectivity with cellular 4G/5G. Managed LEO+, now available to Colt customers across 65 countries, brings a greater choice of networking technologies to businesses with operations – such as production facilities, manufacturing sites and retail locations – in rural and hard-to-reach areas. The new service complements Colt’s fibre connectivity by providing businesses with alternative back-up options for their infrastructure and is ideal for organisations looking for rapid deployment*.
Managed LEO+ is launched following a successful trial with a global biopharmaceutical company which has operations in 30 countries, some of which are in rural locations previously underserved by network providers. The company needed a secure, sustainable, futureproof digital infrastructure to connect and integrate its operations; to run tools and applications; and to share data between sites in areas such as research and development and supply chain management.
The company required consistently high levels of performance and reliability, regardless of whether they were located in urban or rural areas. Colt’s managed LEO 4G/5G network met these requirements and more, enabling efficient remote access, improving collaboration and ensuring robust levels of regulatory compliance.
Managed LEO+ demonstrates Colt’s commitment to delivering innovative connectivity solutions which address the unique needs of its customers while maintaining business continuity in the most challenging environments.
Annette Murphy, chief commercial officer, Colt Technology Services said, “Businesses with operations in remote and hard-to-reach areas are disadvantaged by patchy, low-quality access to their enterprise networks. This isn’t just frustrating for them: it slows progress, stifles innovation and excludes them from the digital economy. Our new Managed LEO+ service complements our existing fibre network and provides an exciting new option for high-performing, secure network access – and it’s fully managed by Colt, so businesses benefit from our mission to remove complexity and make life easier for them”.
Colt’s expansive global network spans four continents, with a land-based network in 40 countries and ten subsea systems, including subsea cables and landing stations.
Managed LEO + completes Colt’s trio of digital infrastructure across land, sea, and low Earth orbit, offering wide coverage and secure, low-latency networks to help global businesses succeed.
*The site survey determines the optimal location for the satellite antenna and establishes the required works guidelines to install the necessary equipment. Following approval of the works by the customer or site owner, the deployment is scheduled taking no more than 24 hours including installation, commissioning and testing.
The centrally located Netherlands is well-known as an important digital hub. There is a tremendous density of datacenters, a strong digital economy and an excellent digital infrastructure, both by sea and by land to the European hinterland. With its world-class connectivity and strategic position, the country offers unparalleled opportunities for digital infrastructure development. The Dutch Subsea Cable Coalition* aims to foster international collaboration and emphasize and further strengthen the Dutch position as a digital hub.
Unique support for landing sea cables in the Netherlands
The coalition is a unique public-private partnership with top-level partners from the business community, infrastructure, datacenters, wholesale end users, knowledge institutions and different levels of government. The coalition supports new cable initiatives by sharing knowledge about the Dutch ecosystem, connecting with relevant parties and offering support for navigating the regulatory and licensing system in the Netherlands. The coalition is committed to guiding landing parties every step of the way and is the first stop to getting support in navigating the Dutch landscape en-route to a successful landing of a subsea cable in the Netherlands.
2024: A milestone year for the Dutch Subsea Cable Coalition
2024 was a very productive year for the coalition. First off, all Dutch coastal provinces joined the coalition, thereby providing direct lines to all relevant governmental organizations, wherever subsea cables wish to land in the Netherlands. Besides strengthening the support and reach of the coalition internally, there are also exciting developments internationally.
Martin Prins, the ambassador of the Dutch Subsea Cable Coalition, says: ‘We are currently working on cable routes with various consortia. Off course we are supporting the IOEMA initiative, which is planned to land on two locations on the Dutch coast. We connect them with the relevant people, whether that is with government authorities for permitting procedures or market parties for collaboration.’
Furthermore, the coalition is currently in advanced talks with entities from several other European countries to develop a means to collaborate on a new, extensive and unique cable system. Stay informed by finding Dutch Coalition members at events such as Submarine Networks, connecting through email or signing up for our Webinar later this year.
Further streamlining and lowering the threshold for landing in the Netherlands
In addition to directly assisting international consortia, the coalition is also actively working on projects in the Netherlands that make landing simpler and more attractive. In the first quarter of 2025 a special ‘service counter’ will be launched by the Dutch Enterprise Agency, commissioned by the Ministry of Economic Affairs. All consortia interested in landing in the Netherlands can connect to one project guide who will be their point of contact and help in centrally coordinating permitting processes. By integrally instead of sequentally pursuing permits, this unique service will significantly reduce the processing times for permitting applications.
Peter van Burgel, CEO of AMS-IX: “The Dutch Subsea Cable Coalition is undertaking significant steps in further facilitating submarine cable systems to the Netherlands. We are happy that we are actively collaborating on further strengthening the leading position of the Netherlands as digital hub and digital gateway to Europe.”
The Dutch government is ‘future-focused and supportive’
Landing and properly maintaining sea cables is also on the political agenda. The Dutch government realizes emphasizes that the digital infrastructure, including maritime cables, should not be taken for granted. It requires continuous efforts from both companies and the government to keep the digital infrastructure innovative, high-quality, affordable, resilient, safe, sustainable and attractive for investors.
“The Dutch government’s plan is to invest more in digital infrastructure in the coming years,” says Martin Prins. ‘That is of course a positive development for us, because we want to continue to encourage submarine cable landings. But it is also a good time for external parties to make landings.’
Looking forward to meeting you at Submarine Networks
Dutch Subsea Coalition ambassador Martin Prins, together with his colleagues Aldert de Jongste (Coalition Strategist) and Björn Oosterwijk (Gereral Secretary), and other coalition members representing the Netherlands, will be present at the Submarine Networks Event in London, February 2025. During the News in Brief sessions on Tuesday February 18th at 10:50, Martin will further discuss the coalition and the proposition of the Netherlands. Don’t miss his unique insights!
Martin Prins: ‘It is clear that the Netherlands is “open for business”. We will further introduce our coalition to the international submarine cable community and inform interested parties about the possibilities that the Netherlands and the Subsea Cable Coalition can offer.’
*The Dutch Subsea Cable Coalition is a collaboration of: ABN AMRO, AMS-IX, Digital Realty, Dutch Datacenter Association (DDA), Equinix, Eurofiber, Fiber Carrier Association (FCA), KPN, the Ministry of Economic Affairs, i3D.net, InnovationQuarter, Liberty Global, Netherlands Foreign Investment Agency (NFIA), NL-IX, Relined, Rijkswaterstaat, Stichting DiNL, Stratix, SURF and WorldStream.
Join the Dutch Subsea Cable Coalition at Booth 13 at Submarine Networks EMEA, the world’s largest submarine connectivity event taking place this week!
Introducing OciusX, a next-generation construction management platform revolutionising fibre rollout projects with real-time progress tracking, geo-tagged data, and seamless closeout documentation
Tell us about OciusX
OciusX provides an intuitive and field-friendly construction management platform designed specifically for fibre network deployments. By enabling real-time progress tracking, automated closeout packages, and seamless communication between field teams and management, we help service providers and general contractors improve efficiency, reduce costly delays, and maintain high-quality standards. In an industry where time is money, OciusX ensures projects stay on track with unparalleled transparency and control.
What was the inspiration behind OciusX?
The telecom construction industry has traditionally relied on outdated, fragmented tools for project management, leading to inefficiencies, delays, and miscommunication. After witnessing these pain points firsthand whilst building a construction company in Sweden, we started building an internal tool to manage these problems. The intention was never to build commercial software, but the combination of our background in technology together with a deep understanding of fibre network deployment, ultimately lead to OciusX becoming a very powerful tool, built by fibre guys, for fibre guys.
What have been the biggest challenges and successes so far?
Since launching, OciusX has rapidly gained traction, proving the demand for a specialised construction management platform tailored to fibre rollout. One of our biggest successes has been onboarding key customers in the U.S., including major internet service providers and contractors, who have experienced increased efficiency and cost savings using our platform.
Challenges have included navigating the complexities of enterprise sales in the telecom sector and educating potential clients on the value of adopting new digital workflows. However, by consistently delivering results and optimising our product based on customer feedback, we’ve successfully built a strong reputation in the industry.
Where do you see the company a year from now?
In the next year, we aim to expand our presence in the U.S. market, onboarding more major fibre network operators and contractors. We also plan to introduce AI-driven insights to further automate project tracking and quality assurance. Our goal is to become the go-to software for fibre construction management and expand into adjacent industries like power and utility infrastructure.
What are you most looking forward to about exhibiting at Connected America?
Connected America is a key event for the fibre and broadband industry, bringing together the top players shaping the future of connectivity. We’re excited to showcase OciusX to industry leaders, demonstrate how our platform is driving efficiency in fibre rollout, and connect with potential customers and partners. This event is an incredible opportunity to network, gain insights, and reinforce OciusX’s position as a leader in fiber construction management technology.
Join OciusX and the booming startup community at Connected America 2025 live in Dallas, Texas
Company Details:
HQ Location: Stockholm, Sweden
Number of Employees: 9
Funding: Seed-funded, no additional funding needed
The Asia Direct Cable (ADC) system is now fully operational, two months ahead of schedule
The ADC, developed by a consortium of companies including China Telecom, China Unicom, Singtel, SoftBank, Tata Communications, and Viettel, is the first new submarine cable introduced in the Asia-Pacific in over eight years.
The cable spans approximately 10,000km, connecting China, Japan, the Philippines, Singapore, Thailand, and Vietnam, and has a capacity of over 160 Tbps.
The submarine cable aims to boost connectivity in region and support growing network capacity demands. With existing cable resources increasingly stretched, the activation of ADC capacity is expected to ease congestion and support the expansion of services such as cloud computing and big data analytics.
The wet plant of the ADC was marked ready for service last November, with the dry plant section announced as fully operational this week.
China Telecom, serving as Co-chair of the ADC Consortium, coordinated efforts among stakeholders, despite delay challenges. faced long delays.
The ADC’s launch is expected to enhance digital infrastructure in Asia-Pacific, supporting technology development and digital transformation across industries. As demand for reliable, high-speed connectivity grows, China Telecom continues to expand its global network.
by Tim Parker, Chief Growth Officer of Assured Comms
The rapid evolution of AI is reshaping data center infrastructure, changing the approach to compute deployment by enterprises and cloud providers. Driven by traditional hyperscalers with large-scale training clusters, emerging efficiency gains are shifting demand toward smaller, more distributed inference deployments. Meanwhile, demands for connectivity continue to rise globally, demanding infrastructure that best minimizes latency and improves data distribution.
This shift presents an opportunity for hybrid cable landing stations (HCLS)—a model integrating subsea connectivity with AI infrastructure—to support the next generation of AI workloads.
Moving beyond hyperscalers
Historically, AI infrastructure required 100–200MW data center campuses optimized for model training. However, advancements like DeepSeek’s efficiency gains are altering this model, reducing energy requirements and making 5–20MW AI inference hubs a viable alternative. Enterprises increasingly recognize that AI processing doesn’t need to be concentrated in massive, high-density clusters. Instead, regionalized AI workloads allow for more flexible, cost-efficient deployment while minimizing bottlenecks.
Greater efficiency does not necessarily reduce overall demand. Instead, it enables broader AI adoption, shifting workloads to a wider range of locations and infrastructure types. As AI becomes more accessible and cost-effective, enterprises are reconsidering where and how their compute resources should be deployed.
The role of hybrid infrastructure in AI deployment
As AI workloads move toward distributed inference models, connectivity becomes a critical factor. Traditionally, cable landing stations (CLS) have been designed solely to handle subsea fiber traffic, routing data from international networks to terrestrial infrastructure. However, this model is evolving.
Hybrid cable landing stations integrate subsea connectivity with AI processing, enabling localized compute power at network entry points. This reduces the need for long-haul data transport, cutting latency for AI-driven applications while optimizing bandwidth utilization.
The benefits of this model include:
Lower latency, with AI workloads processing data closer to the end user.
Greater flexibility, allowing enterprises to deploy inference workloads at strategic global entry points rather than relying on centralized hyperscaler hubs.
Improved scalability, supporting modular AI deployments that can adapt to changing infrastructure needs.
Investment and infrastructure implications
As these shifts take hold, investors and data center operators must rethink long-term strategies. The move away from ultra-large AI campuses suggests that speculative hyperscaler builds may carry greater risk, particularly those requiring extensive power commitments. Instead, mid-sized deployments (5–20MW) and modular colocation models are becoming more attractive investment targets.
For enterprises, the ability to leverage regionalized AI infrastructure offers cost advantages while reducing reliance on traditional hyperscaler platforms. GPU-as-a-service providers and enterprise-owned AI deployments are also gaining traction, further diversifying the AI infrastructure landscape.
AI is no longer confined to massive hyperscale campuses. As training efficiency improves and inference workloads become more distributed, the industry must adapt. Hybrid cable landing stations represent a critical evolution, merging subsea connectivity with AI infrastructure to enable faster, more flexible data processing.
This shift has broad implications for infrastructure investment, data center design, and global connectivity strategies. The future of AI-driven networks will be defined not by scale alone, but by strategic placement, efficiency, and adaptability—a trend that forward-thinking enterprises and investors must embrace.
Join Assured Comms and the subsea cable commuity next week at Submarine Networks EMEA, the world’s leading subsea connectivity event
Boosting Wavelength and Interconnection Services in the Region
GNM’s Budapest Point of Presence takes advantage of its own DWDM-system. It provides valuable options for network redundancy improvement, traffic flow optimization, and reduction of points of failure. The GNM’s interconnection services such as GNM-IX and IP Transit allow direct connections with a wider range of networks, as well as access to Tier-1 connectivity providers. Flexible port options from 10G to 400G provide customized options to meet different bandwidth needs.
Expanding Infrastructure to Support Growing Demand
“The launch of our Budapest PoP marks an important milestone in GNM’s expansion strategy,” said Alex Surkoff, Business Development Director at GNM. “This new PoP not only enhances connectivity in Central Europe but also supports local telecom providers by delivering cost-efficient and scalable solutions.”
The Budapest PoP is now part of GNM’s European backbone, offering direct, low-latency connections to hubs in Bratislava and Sofia. This expansion improves access for Hungarian telecom companies to European content and international networks while reducing reliance on third-party transit providers. It also enables seamless integration with major global content providers, cloud platforms, and international carriers. By lowering latency and ensuring stable traffic flows, the PoP ensures more efficient data exchange and service quality for end-users.
Future Expansion Plans
GNM plans to expand its backbone and establish new PoPs in Central Europe to strengthen network coverage, providing businesses and telecom operators with a robust digital infrastructure.
About GNM
GNM is a global backbone provider known for its extensive 18,000 km DWDM backbone network. It offers high-performance connectivity solutions that ensure low-latency, scalable, and resilient network infrastructure. Unlike traditional providers, GNM combines its own GNM-IX Internet Exchange with direct access to Tier-1 ISPs, giving customers enhanced routing efficiency and cost-effective traffic exchange. including Internet Exchange and IP Transit, as well as DWDM transport services.
Following CMA clearance of the Vodafone UK Three UK merger in December 2024 (subject to legally binding commitments), and in anticipation of final deal completion in the coming months, Vodafone-Three has announced the company’s General Management Team
Max Taylor, CEO Vodafone UK, and CEO of the future merged entity, has appointed the following people to lead the new company:
Darren Purkis, CFO
Kelly Barlow, Strategy and Portfolio
Clare Corkish, HR
Andrea Dona, Networks
Nick Gliddon, Business
Stephen Lerner, Regulatory, Government Affairs & Company Secretary
Nicki Lyons, Corporate Affairs & Sustainability
Stephen Reidy, IT
Jon Shaw, Consumer Operations
Rob Winterschladen, Consumer
Andy Yorston, Legal, Security, Compliance & Risk
The appointments followed a robust selection process and were approved by the MergeCo Governance Board, with representatives of both Vodafone Group and CK Hutchison as shareholders of the future merged company. The General Management Team appointees will transition into their new roles once the CMA process is fully complete and the new company, [MergeCo], is created, with the date of completion yet to be announced. Until then, all appointees will continue in their current roles at either Vodafone UK or Three UK, with both companies and teams continuing to operate separately until the merger is finalised.
Max Taylor said: “I would like to congratulate everyone on their new appointments. The new leadership team are all looking forward, following completion of our merger, to integrating our two companies and deliver on our commitment to build the UK’s best network for our customers”.
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