Connect with us
Anglostratits

Tech

Huawei Pioneers a New Computing Architecture for the AI Era: Making One Million Processors Work as One Computer

Published

on

Huawei

SHANGHAI, CHINA – Media OutReach Newswire – 30 September 2026 – During HUAWEI CONNECT on September 17, 2026, Eric Xu (Huawei’s Rotating Chairman) and Dr. Liao Heng (Chief Scientist of HiSilicon) had a Q&A session with journalists of media outlets to discuss Huawei’s Peerium Computing Architecture for the AI era as well as UnifiedBus (UB).

At last year’s HUAWEI CONNECT, Eric Xu gave a keynote speech and released Ascend chips and their roadmap (including the 950, 960, 970, and SuperPoDs and SuperClusters). He also announced the open release of the UnifiedBus protocol.

 




 
 

At this year’s HUAWEI CONNECT, Huawei announced the Ascend 950 and the Atlas 950 SuperPoD. While the industry is talking about SuperPoDs or supernodes, the ways of making these products differ hugely. The key of SuperPoDs is about allowing several thousand or even tens of thousands of processors to work as one computer.

Today, Huawei announced a SuperPoD based on the Ascend 950 chip. The SuperPoD is powered by a new computing architecture that Huawei has pioneered. This architecture now can make one million processors work as one computer. This architecture is called Peerium, and it can achieve strong scaling to the million-processor level through nested parallelism, unified memory addressing, and peer-to-peer interconnect. It extends the parallelism paradigm of Turing with the introduction of Nested BSP (Nested Bulk Synchronous Parallel).

This architecture also extends the von Neumann single-machine architecture and overruns the master-slave design paradigm that has prevailed for decades. Given that the available technologies in the industry could not support this architecture, Huawei invented a key interconnect technology – UnifiedBus. Ultimately, one million processors can truly work as one larger computer.

UnifiedBus is a high-speed bus that uses an open protocol to scale without a limit to connect CPUs, NPUs, memory, SSDs, interface cards, and switches. With UnifiedBus, peer-to-peer interconnect is achieved across compute, storage, and networking. This fundamentally overruns the traditional master-slave architecture.

The Atlas 950 SuperPoD is a product built upon the Peerium Computing Architecture. A SuperCluster with 256,000 computing cards is currently being deployed and tested.

Q: Dr. Liao, your paper mentioned a SuperPoD that’s made up of 256,000 cards. Is that the upper limit of your technology? Can you tell us more about market demand for your products?

Liao Heng: 256,000 or roughly 200k, this number is not an arbitrary number.

First of all, the purpose of these large clusters is for training. It has a hardware infrastructure that can support the training of foundation models, which today are already in the 5T parameter range.

Over the next two years, there will be roughly 6 or 7 frontier AI labs in China, and all will aim at training foundation language models of sizes ranging from 10 to 40 trillion parameters. These numbers kind of match up to the memory capacity and the size of the SuperPoD. So you need such a scale of infrastructure to train these models.

The second thing is that in China, most data centers have a national plan on this power grid. So 200,000 is a relatively conservative number, given the design of the power delivery system in a single autonomous zone and single data center campus.

As I said, everybody must be quite familiar with the AI model race that’s happening across the globe. And in China, there are at least 3 or 4 tier-1 players that are already well recognized and have achieved tier-1 status.

Q: What are your plans to encourage Chinese model providers to use Ascend chips for training?

Eric Xu: For the Ascend 950, we first launched the 950PR to the market. It’s primarily used for AI inference, and currently the total volume of supply available in the market is not very big. The SuperPoDs based upon the Ascend 950DT are mainly used for AI training. Right now, they are under testing, and their large-scale supply will start at the end of this year or early next year. We are having extensive dialogues and discussions with AI model providers. The testing result of using the Ascend 950DT for training is pretty good. I believe that starting from next year, a lot of AI model training will be based upon SuperPoDs that use the Ascend 950DT. I think at the end of the day, it’s not about how hard we are going to push model providers, but about how much supply capacity we will have. We can only supply based on how much that’s produced. And we hope the value chain will expand its capacity faster to increase supply.

Q: What is Huawei’s take on recent calls by leading AI model providers in the US to slow down AI development?

Eric Xu: We need to look at the level and cadence of AI development in China and the US. AI models in China are largely open-source models and their progress is relatively transparent. If we look at the mainstream model providers in the US, they have more computing power, so maybe only they themselves know where they are in terms of the level of sophistication of their models. The market feeling about AI risks might be weaker in China than in the US. Model providers in China need to speed up their pace to reach a level where they could also feel the risks from AI development. And then, maybe they will feel the same as the leading US model providers. But I always believe that we need to strike a balance between driving AI development and managing AI risks. At the very least, the bottom line is we need to ensure AI for good, not AI for evil.

Q: Does Huawei have plans to bring the Atlas 950 SuperPoD to other markets outside China? If yes, which markets are you going to target? Can you share with us data about your market share in China? What is your take on China’s push for chip self-sufficiency?

Eric Xu: Since we don’t have enough capacity to even satisfy the demand in China, we don’t have plans to expand to the international market in a fully-fledged way. But indeed, there are several countries that have very strong demand. We are doing some testing, and we are providing some supply to those countries, but the volume is quite limited.

Right now, it’s pretty hard to collect data about the market share of NVIDIA in China. But based on the data we have collected, Ascend has surpassed NVIDIA.

China’s push for chip self-sufficiency is an inevitable path forward. China is a country of 1.4 billion people and it’s an industrial powerhouse, so the way people work and live is closely tied to chips. Chinese people have a keen sense of urgency, and will not accept a future in which others decide whether or not we can have access to certain products. Even though our chips may be less advanced, at least their supply is assured, so that you don’t have to worry about chip supply day in and day out. I think that’s certainly the path forward. For the Chinese government, for the domestic industry, and for Huawei, the path forward is undoubtedly to push for full self-sufficiency in terms of chips and the entire semiconductor value chain. We also believe this will become a reality sooner or later.

To read the full Q&A session: https://www.apmultimedianewsroom.com/multimedia-newsroom/huawei-pioneers-a-new-computing-architecture-for-the-ai-era-making-one-million-processors-work-as-one-computer-2 




 

Business

Mukuru launches everyday transactional account in South Africa

Published

on

Mukuru

Higher limits, faster EFTs, better prices: everyday banking for the burgeoning emerging economy

This launch is a key milestone in our remittance-led neobank strategy

JOHANNESBURG, South Africa, September 30, 2026/APO Group/ –Mukuru (www.Mukuru.com), the Pan-African fintech trusted by more than 17 million customers, today launched the Mukuru Account & Card in South Africa. The product is offered in partnership with Bank Zero, the licensed sponsor bank, and is enabled by Paymentology and Mastercard.

 




  

The new proposition builds on Mukuru’s established remittance and card foundation, giving customers access to a broader range of everyday financial services through a single account, integrated with the rest of the Mukuru offering in South Africa. For existing Mukuru customers, it means being able to receive their salaries, make local payments, shop and send money across borders without having to rely on multiple financial services providers.

More power, better value

With the new Mukuru Account & Card, customers can:

  • send EFTs and real-time payments to any bank in South Africa for the first time through their Mukuru Account
  • receive salaries and other incoming EFT payments faster
  • spend up to R150 000 a month
  • make everyday purchases in-store and online and withdraw cash at reduced ATM fees
  • access credit facilities
  • get exclusive discounts when sending money across Africa.

The account launches with an existing customer base. Around 500 000 Mukuru customers hold a Mukuru prepaid card today, and migration to the new Account, for more functionality and lower fees, is already gathering momentum.

“This launch is a key milestone in our remittance-led neobank strategy,” said Andy Jury, Mukuru CEO. “For 22 years, we’ve been synonymous with cross-border money transfers, and millions of our customers have trusted us with the money that matters most to them, the money they send to family. Over time we have introduced a range of complementary products and services and now, together with Bank Zero, we can give them their everyday banking too: getting paid, paying rent, shopping and sending money across borders, all from one account.”

A bridge between cash and everyday banking

Mukuru has built its business on understanding how customers across Africa earn, move and use their money. In South Africa, that includes people who support family members in another province or country and who move between cash and digital payments every day.

The new Account & Card build on Mukuru’s established and proprietary distribution network (with 320 000 physical locations offering Mukuru services or cash-in/cash-out points) and digital channels, enabling customers to move between cash and digital financial services in ways that suit their individual needs.

“At Mukuru, we always talk about meeting our customers where they are,” said Juan Seco, Chief Growth Officer at Mukuru. “Just because someone transacts in cash should not mean they have access to fewer financial services. The strength of the Account & Card is that it bridges that gap and can grow with the customer, leveraging the reach of our physical and digital networks.”

The Mukuru Account & Card is now available at Mukuru branches, participating partner locations and customer service offices, and through roaming customer field ambassadors across South Africa. Customers can also sign up via the Mukuru app and on WhatsApp. To find the nearest location, visit https://apo-opa.co/4xWCDdJ .

The South African launch follows the recent launch of the Mukuru Wallet & Card in Botswana. It further expands Mukuru’s regulated footprint across the region, which includes e-money licences in Botswana, Zambia and Malawi, as well as a deposit-taking microfinance licence in Zimbabwe.

Distributed by APO Group on behalf of Mukuru.

 

 




 

Continue Reading

Events

Africa Tech Festival 2026 puts the conversations shaping Africa’s digital economy in focus

Published

on

digital economy

Africa Tech Festival returns to the Cape Town International Convention Centre from 16 to 19 November 2026, bringing together government, technology companies, telecoms operators, infrastructure providers, enterprise leaders, startups and investors from across the continent and beyond

CAPE TOWN, South Africa, September 29, 2026/APO Group/ –With a little over two months to go, anticipation is building for the 29th edition of Africa Tech Festival (https://AfricaTechFestival.com), the continent’s longest running and most influential technology event. As the countdown continues, the programme is taking shape around some of the most pressing questions facing Africa’s digital economy, from AI and the infrastructure needed to support it, to cybersecurity, connectivity and the changing investment environment for African technology businesses.

 




  

Africa Tech Festival returns to the Cape Town International Convention Centre from 16 to 19 November 2026, bringing together government, technology companies, telecoms operators, infrastructure providers, enterprise leaders, startups and investors from across the continent and beyond.

“The questions facing Africa’s digital economy are becoming more interlinked, more complex and more urgent. It’s no longer simply about whether businesses will adopt AI, move to the cloud or invest in new infrastructure, but about how those decisions are made, who benefits from them and what needs to be in place for them to deliver sustainable growth,” said David Monaghan, VP, Africa Tech Festival. “This year’s programme is designed to provide a platform for those conversations and give stakeholders a clearer view of the decisions, partnerships and investment priorities that will shape the next phase of Africa’s digital development.”

The questions facing Africa’s digital economy are becoming more interlinked, more complex and more urgent

Artificial intelligence runs through much of the 2026 programme. A panel titled Beyond Adoption: What Will Make Africa an AI Producer, Not Just a Consumer? will examine what is required to build globally competitive AI capabilities in Africa. Sessions will explore the emergence of agentic AI in enterprise decision-making and how companies should prioritise investment across AI, cloud, data platforms and core systems as they modernise for growth.

That focus on capability extends to the infrastructure underpinning it. AI growth is inseparable from questions about data centres, cloud infrastructure and local compute capacity. The Next Wave of AI Infrastructure Growth panel will consider where new capacity should be built, the role of hyperscaler partnerships and the need for localised compute to meet data sovereignty requirements. Dedicated discussions will examine which African markets are attracting investment interest, how power availability and hyperscaler presence are shaping that interest, and how sovereignty, performance and cost are reshaping cloud architecture decisions.

Africa’s next phase of digital growth also depends on extending reliable connectivity while keeping digital businesses and services secure. The Telecoms & Connectivity programme will examine fibre investment, 4G and 5G deployment and the growing role of satellite technology in reaching underserved communities.

All of these conversations point to a maturing digital economy, where competitiveness depends as much on enabling environments as on ambition, and where practical groundwork, compute, capital, skills and partnerships will determine who benefits from Africa’s growth. This is what makes Africa Tech Festival such a highly anticipated fixture on the calendar: it is where these decisions are debated, tested and made, bringing together the people setting policy, developing infrastructure and allocating capital across the sector.

With just months to go, the excitement is building for three days of conversation, connection and insight into where Africa’s digital future is heading. Registration for Africa Tech Festival 2026 is now open.

Distributed by APO Group on behalf of Africa Tech Festival.

 

 




 

Continue Reading

Tech

Huawei releases world’s slimmest and largest foldable smartphone

Published

on

Mate XT 2

First smartphone to run HarmonyOS 7 and include chip design breakthrough LogicFolding
SHENZHEN, CHINA – Media OutReach Newswire – 28 September 2026 – Huawei released the HUAWEI Mate XT 2 | ULTIMATE DESIGN trifold smartphone on September 7. The phone is the first to run HarmonyOS 7, and is the slimmest and largest foldable smartphone in the industry. The Mate XT 2’s Kirin 9050 chip also includes a major breakthrough in semiconductor design. As the first smartphone to feature the LogicFolding Tau (τ) Chip, the Mate XT 2 marks the chip’s official entry into mass commercialization.

 




  

World-class engineering and design

The device is proving popular with consumers due to its foldable wing-like form, which means it can be opened up, transforming the phone into a tablet.

The engineering to make this possible is unprecedented. The glass screen must be tough enough to withstand daily use, whilst being able to fold thousands of times. The hinge to allow the screen to fold is the first of its kind. Once open, the handset is just 3.5mm thick. However, the screen is not the only remarkable folding technology in the device.

The first chip with semiconductor design breakthrough, LogicFolding

The Mate XT 2 Ultimate Design includes a major breakthrough in semiconductor design. The phone is the first to use Huawei’s LogicFolding Tau chip Kirin 9050 Pro. Designed by engineers in Huawei’s HiSilicon team, the chip offers a solution to the problem of geometric scaling.

With Moore’s law (the historical observation that the number of transistors on a microchip doubles approximately every two years) believed to be reaching its physical limit, making chips smaller is becoming more challenging and costly.

For Huawei, faced with external restrictions, the need to find a solution came sooner than expected.

 

In May this year, He Tingbo, President of Huawei’s HiSilicon division, unveiled a new way of designing and making chips, alongside a new law to measure their performance, the τ (Tau) Scaling Law. The work led to Ms He being recently named one of the world’s leading AI innovators by Time Magazine.

The point of shrinking transistors was never the smallness itself, it’s what the smallness delivered. Shoppers looking to buy the latest smartphone don’t care if the chips inside have 7, 5 or even 2-nanometer nodes, they care about the performance of the device in their hands. What matters to consumers is the time it takes for a task to be completed, a video to be shared or a game to load. The performance of the chip should be measured in the same way: by time, not size. This is why Huawei proposed τ (Tau) Scaling Law as an alternative to Moore’s Law.

Breaking through barriers to improve performance

The Kirin 9050 Pro uses 3D integration to boost performance. Traditional chip advancement focussed on packing more and more transistors into a linear plain by making each one smaller. LogicFolding uses 3D integration to reduce the distance between transistors by stacking them on top of one another, increasing the number of transistors whilst reducing the distance between them.

In fact, in the Kirin 9050 Pro transistor density has risen from approximately 155 to 238 million transistors per square millimetre. That’s an equivalent increase to what was achieved in the previous three years using geometric shrinking.

It was thought that stacking active transistors on top of each other and sealing them inside a solid mobile device would present an engineering challenge. Power turns into heat, which in a confined space would raise the temperature and ultimately break the device.

The key to the solution came in recognising that integrated chips have both transistors and circuits. As He Tingbo explains in her IEEE article, Huawei’s τ Chip Was Supposed to Melt?, the inner workings of a chip can be compared to an office worker’s day of work. Many office workers will use more energy on their commute to and from the office than they do at their desk because they are moving around more on the road. The ‘work’ part of their day is not the most energy intensive part as they are often seated at their desk.

The same is true for chips. The most energy intensive part of the process is the ‘commute’, moving data from point A to point B, not processing it. Integrated circuits use power in two main ways. The first is switching, flipping a transistor gate to change a bit from 0 to 1 and back. The second is the transmission of that data, moving the bits from one part of the chip to another.

This is important in mobile phones where a lot of performance requirements are asked of a single chip. Equally, however, in a large AI cluster 80% of the energy is used in the moving the data, not processing it. In both cases, LogicFolding reduces the space between transistors which in turn reduces the power used. The previous assumption that packing transistors on top of one another would increase the heat turned out to be false. In fact, even with a higher transistor density per millimetre, LogicFolding chips run cooler per unit of work. The result is Huawei’s most powerful smartphone ever.

The first phone to run HarmonyOS 7

The Mate XT 2 is the first smartphone to run HarmonyOS 7. Forty-two percent more powerful than the previous generation, it remains the slimmest and largest foldable display in the industry when open. The cover screen spans 6.5 inches, boosting the screen-to-body ratio from 86.4% to 92.8%. Enhanced with 70% better anti-reflection, the screen exhibits a deeper, cleaner black when off, and pure, crystal-clear transparency when lit.

The Huawei Mate XT 2 also introduces the world-first Smart Shield Privacy Screen on a foldable screen. Two independent pixel sets co-exist within the 10.2-inch display at a micro-pitch of just 9 μm. When Privacy Mode is activated, the screen seamlessly switches from a wide viewing angle to a narrow one while maintaining identical resolution and clarity, protecting your privacy in public spaces without compromising your view.

Industry first ECG analysis

Health tech is increasing important to consumers, and so the Mate XT 2 is the industry’s first smartphone to introduce ECG analysis. Capitalising on the innovative tri-fold form factor, users can simply hold both side frames with both hands while unfolded to capture a 30-second ECG signal. Paired with the medically certified analysis software, it generates detailed ECG reports to help identify Sinus Rhythm, Atrial Fibrillation, and Premature Beats.

The launch of the Mate XT 2 marks a significant moment in Huawei’s journey. The company’s R&D has delivered industry leading, and industry changing innovation. More than half of Huawei’s employees work in R&D. That’s over 100,000 people. The company currently holds 160,000 active patents worldwide. In the first half of 2026 alone, Huawei’s R&D investment was over RMB 121 billion, accounting for 25.94% of revenue, up 25.2% year on year.

The HUAWEI Mate XT 2 | ULTIMATE DESIGN starts at RMB 19,999 and is now available for purchase, along with a stylus set, following its official sales launch at 10:08 on September 12th.

 
 




 

Continue Reading

Trending