Intel's Xeon 6 processors are revolutionizing the telecommunications industry by enabling AI-powered network modernization, improving performance and efficiency, and addressing security concerns, all while fostering collaboration with major telecom players and paving the way for a sustainable future.
- Intel's Xeon 6 processors boost AI RAN performance by 3.2x, reducing server footprint and optimizing TCO.
- The Xeon 6 SoC features the industry's first integrated media transcode accelerator, offering up to 14.25x performance-per-watt gain for video transcoding.
- Intel is driving the next wave of vRAN and open RAN innovation alongside major telecom players, showcasing the competitive edge of networks built on Xeon processors.
The Telecom Revolution: AI and 5G at the Forefront
The telecommunications industry is on the brink of a major transformation, driven by the twin forces of AI and 5G technology. While operators are eager to embrace modern infrastructure, they face a slew of challenges, from hefty capital expenditures to security concerns and the tricky integration of legacy systems. Enter MWC 2025, where Intel, along with over 50 partners and customers, is set to unveil solutions that promise to deliver high capacity and efficiency—all while integrating AI seamlessly. Imagine cutting out the need for costly hardware upgrades and optimizing your total cost of ownership (TCO). Sounds enticing, right?
Intel’s Vision for Network Modernization
Sachin Katti, Intel’s senior vice president and general manager of the Network and Edge Group, paints an exciting picture: “By leveraging cloud technologies and fostering close collaborations with partners, we are helping operators virtualize both 5G core and radio access networks.” This means that even the most demanding workloads can run efficiently on general-purpose silicon. With the introduction of the new Xeon 6 processors, Intel is paving the way for a future where AI-powered network modernization is not just a dream but a reality.
Revolutionizing Network Performance with Xeon 6
Have you ever wondered how the latest technologies can redefine performance? Nearly every commercial virtual radio access network (vRAN) deployment is powered by Intel Xeon, and the new Xeon 6 SoC is raising the bar for performance-per-watt. With AI acceleration integrated through Intel Advanced Vector Extensions (AVX) and Intel Advanced Matrix Extensions (AMX), this SoC boosts AI RAN performance by an impressive 3.2x compared to previous generations. What does this mean for operators? It means they can dramatically reduce their server footprint, consolidating multi-server open vRAN sites into a single-server footprint—all while optimizing TCO.
But that’s not all. The Xeon 6 SoC also features the industry’s first integrated media transcode accelerator, which offers up to a staggering 14.25x performance-per-watt gain for video transcoding. This is a game-changer for video service providers, enabling near-real-time experiences for live sports, gaming, and auctions, all while slashing power consumption.
Security: A Top Priority in Modern Networks
As data generation skyrockets at the network edge, security becomes paramount. The Intel Xeon 6 SoC addresses this head-on with security features that facilitate secure, zero-trust connections throughout the edge-to-cloud ecosystem. In a world where data breaches are all too common, can we really afford to overlook security?
Intel’s Ecosystem: A Collaborative Effort
Intel is not going it alone; it’s driving the next wave of vRAN and open RAN innovation alongside major telecom players. For instance, Vodafone’s first OpenRAN deployments are showcasing the competitive edge of networks built on Intel Xeon, proving that they can stand toe-to-toe with advanced legacy radio access networks.
AT&T is also in the mix, collaborating with Ericsson and Intel to create the world’s most open, programmable, and reliable RAN network. Starting this year, AT&T will utilize Intel’s Xeon 6 SoC to facilitate ongoing AI advancements through seamless software updates. Meanwhile, Samsung is leveraging Xeon 6 to enhance performance and energy efficiency, aligning perfectly with its TCO and AI goals.
Verizon is making strides too, with over 40% of its nationwide 5G RAN footprint now virtualized. They’re developing a next-gen high-compute-density vRAN server based on the Xeon 6, aiming to double RAN compute capacity while improving energy efficiency and multitenancy. And let’s not forget Ericsson, which is industrializing Open RAN and AI RAN innovations with the Xeon 6 SoC, having already achieved its first Cloud RAN call on the platform.
Operators like Rakuten Mobile, Reliance Jio, SK Telecom, and TELUS are also advancing 5G adoption and transforming their network infrastructure with Intel Xeon processors. The future of connectivity is bright, and it’s powered by collaboration.
Paving the Way for a Sustainable Future
The Intel Xeon 6 processors, launched in 2024, are seeing widespread adoption among 5G core solution vendors and telecom operators alike. With the addition of Intel Infrastructure Power Manager (IPM) software, companies can enhance energy efficiency and accelerate time-to-market. This means optimizing infrastructure, reducing energy consumption, and minimizing hardware footprints without sacrificing performance.
Take Ericsson, for example; their software optimizations have led to a remarkable 3.8x improvement in performance-per-watt compared to current configurations. Nokia is also making waves, achieving a 60% reduction in run-time power consumption for its 5G Packet Core solution. Samsung’s next-gen Cloud Native Core, expected in Q2 2025, will feature Intel Xeon 6 processors with E-Cores, delivering 3.2x better performance and density.
Advancements in Ethernet for Modern Networks
Intel is also stepping up its game in the Ethernet arena with two new families of discrete Ethernet controllers and network adapters: the E830 and E610 product lines. The Intel Ethernet E830 family supports up to 200 Gb of bandwidth, complete with precision time measurement for real-time vRAN workloads. On the other hand, the Intel Ethernet E610 family offers 10GBASE-T connectivity, making it ideal for power-efficient control plane networking.
Join the Revolution at MWC 2025
Curious about how these advancements can transform the telecom landscape? Join Intel and its global ecosystem of partners and customers at MWC 2025 to dive into the transformative power of the Xeon 6 family. Expect to see breakthroughs in RAN, media and edge advancements, security innovations, enterprise services, and commercial AI PC solutions. The future of connectivity is here, and it’s more exciting than ever!

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Background Information
About Intel:
Intel Corporation, a global technology leader, is for its semiconductor innovations that power computing and communication devices worldwide. As a pioneer in microprocessor technology, Intel has left an indelible mark on the evolution of computing with its processors that drive everything from PCs to data centers and beyond. With a history of advancements, Intel's relentless pursuit of innovation continues to shape the digital landscape, offering solutions that empower businesses and individuals to achieve new levels of productivity and connectivity.Latest Articles about Intel
About Samsung:
Samsung, a South Korean multinational conglomerate, has established itself as a global leader in various industries, including electronics, technology, and more. Founded in 1938, Samsung's influence spans from smartphones and consumer electronics to semiconductors and home appliances. With a commitment to innovation, Samsung has contributed products like the Galaxy series of smartphones, QLED TVs, and SSDs that have revolutionized the way we live and work.Latest Articles about Samsung
Technology Explained
E-Cores: E-Cores (Efficiency Cores) are a type of technology used in the computer industry to provide a more efficient and reliable way of powering and cooling computer components. They are made up of a combination of copper and aluminum, and are designed to be more efficient than traditional copper cores. E-Cores are used in a variety of applications, such as in CPUs, GPUs, and other computer components. They are also used in servers, laptops, and other electronic devices. The technology is designed to reduce heat and power consumption, while also providing a more reliable and efficient way of powering and cooling computer components.
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SoC: A System-on-Chip (SoC) is a highly integrated semiconductor device that encapsulates various electronic components, including processors, memory, input/output interfaces, and often specialized hardware components, all on a single chip. SoCs are designed to provide a complete computing system or subsystem within a single chip package, offering enhanced performance, power efficiency, and compactness. They are commonly used in a wide range of devices, from smartphones and tablets to embedded systems and IoT devices, streamlining hardware complexity and facilitating efficient integration of multiple functions onto a single chip.
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Xeon: The Intel Xeon processor is a powerful and reliable processor used in many computer systems. It is a multi-core processor that is designed to handle multiple tasks simultaneously. It is used in servers, workstations, and high-end desktop computers. It is also used in many embedded systems, such as routers and switches. The Xeon processor is known for its high performance and scalability, making it a popular choice for many computer applications. It is also used in many cloud computing applications, as it is capable of handling large amounts of data and providing high levels of performance. The Xeon processor is also used in many scientific and engineering applications, as it is capable of handling complex calculations and simulations.
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