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Digital Textile Printing Market size is set to grow by USD 3.33 billion from 2024-2028, Increasing number of trade shows and exhibitions to boost the market growth, Technavio

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NEW YORK, July 5, 2024 /PRNewswire/ — The global digital textile printing market  size is estimated to grow by USD 3.33 billion from 2024-2028, according to Technavio. The market is estimated to grow at a CAGR of over 15.2%  during the forecast period.  Increasing number of trade shows and exhibitions is driving market growth, with a trend towards increasing significance of UV-cured inks. However, shift from print media to digital media  poses a challenge. Key market players include aeoon technologies GmbH, AM Printex Solutions, d.gen Inc, Dazian LLC, DIC Corp., Dover Corp., DuPont de Nemours Inc., Durst Group AG, FUJIFILM Speciality Ink Systems Ltd., Hollanders Printing Systems, Huntsman International LLC, Kornit Digital Ltd., Marabu GmbH and Co. KG, Mimaki Engineering Co. Ltd., Ricoh Co. Ltd., Roland DG Corp., Seiko Epson Corp., SPGPrints, Totem Group Ltd., and Zhengzhou Hongsam Digital Science and Technology Co. Ltd..

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Forecast period

2024-2028

Base Year

2023

Historic Data

2018 – 2022

Segment Covered

Type (Disperse and sublimation inks, Reactive ink, Acid ink, and Pigment ink), Application (Clothing, Soft signage, Home textiles, Textiles, and Others), and Geography (Europe, APAC, North America, South America, and Middle East and Africa)

Region Covered

Europe, APAC, North America, South America, and Middle East and Africa

Key companies profiled

aeoon technologies GmbH, AM Printex Solutions, d.gen Inc, Dazian LLC, DIC Corp., Dover Corp., DuPont de Nemours Inc., Durst Group AG, FUJIFILM Speciality Ink Systems Ltd., Hollanders Printing Systems, Huntsman International LLC, Kornit Digital Ltd., Marabu GmbH and Co. KG, Mimaki Engineering Co. Ltd., Ricoh Co. Ltd., Roland DG Corp., Seiko Epson Corp., SPGPrints, Totem Group Ltd., and Zhengzhou Hongsam Digital Science and Technology Co. Ltd.

Key Market Trends Fueling Growth

The digital textile printing market is experiencing significant growth due to the increasing popularity of UV-cured inks. These inks offer several advantages, including faster drying time, lower volatile organic compound (VOC) content, and the ability to print on various materials such as glass, vinyl, metals, and wood. UV-cured inks do not get absorbed by textiles, eliminating the risk of smudging and the need for additional coatings. Their properties include scratch and abrasion resistance, enhanced chemical and solvent resistance, no emissions, superior bonding, superior durability in outdoor spaces, and enhanced gloss. Furniture manufacturers are adopting UV-cured inks to save production time and increase volumes. The higher density achieved with UV-cured inks results in improved physical properties. Consequently, the trend towards UV-cured inks is expected to continue, driving the expansion of the global digital textile printing market. 

The Digital Textile Printing Market is experiencing significant growth due to trends like high-quality prints, antimicrobial and UV protective properties, conductive functionalities, and smart textiles. Businesses prioritize textile safety, waste disposal, and chemical usage, driving innovation in technology. Young consumers seek personalized and customized products, fueling trends in customization, social media, and influencer marketing. Environmental concerns are a priority, leading to advancements in 3D printing technology and unique textile designs with intricate structures. Key players focus on print speeds, resolution, prototyping, and short run production for design flexibility. Traditional printing methods face competition from digital technologies offering wider color gamuts, textures, and finishes. The market includes various applications such as home textiles, signage, interior decoration, apparel, and promotional materials. High-quality labels, e-commerce platforms, online retail, and supply chain management are essential components. Advancements include laser printing, labels, lightweight components, complex geometries, custom implants, and prosthetics. The printing machinery market continues to evolve, offering high-resolution images and advanced technologies for the apparel market and beyond. 

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Market Challenges

The digital shift in media consumption poses a notable challenge for the global digital textile printing market. Traditional print media, including newspapers and magazines, are losing ground as consumers increasingly turn to digital platforms for content. Factors driving this trend include the widespread use of digital devices like smartphones and tablets, as well as the rise of social media for marketing. To stay competitive, digital textile printing companies must focus on innovation and differentiation. This could involve investing in new technologies, such as 3D printing or eco-friendly processes. Additionally, exploring niche markets and customized services, such as small business printing or personalized clothing, can help companies stand out. Despite these challenges, the digital textile printing market will continue to grow, albeit at a slower pace than previously anticipated.The Digital Textile Printing Market faces several challenges in various sectors. For substrates, ensuring compatibility with different textiles like cotton, silk, and polyester is crucial. Eco-friendliness is a significant concern, with the demand for sustainable, water-based piezo inks growing. Quality-based products are essential for clothing, households, technical textiles, and display industries. Fashion industries, including sportswear, require moisture control and excellent wash fastness. Dye-sublimation is popular for customized printing services, but its production cost and raw material expenses are high. Heat transfer paper and dye sublimation printers are key components, with automation and heat press processes streamlining production. Ink formulations, including reactive, acid, direct disperse, sublimation, pigment, and water-based inks, impact color vibrancy and print quality. Fashion designers and textile manufacturers collaborate to create innovative designs, while fashion brands and the apparel industry seek smarter production workflows, reducing errors and enhancing efficiency. Display devices, wearable electronics, and electronic circuits are emerging applications for digital textile printing. The Internet of Things and industrial printing further expand market opportunities.

For more insights on driver and challenges – Download a Sample Report

Segment Overview 

This digital textile printing market report extensively covers market segmentation by

Type 1.1 Disperse and sublimation inks1.2 Reactive ink1.3 Acid ink1.4 Pigment inkApplication 2.1 Clothing2.2 Soft signage2.3 Home textiles2.4 Textiles2.5 OthersGeography 3.1 Europe3.2 APAC3.3 North America3.4 South America3.5 Middle East and Africa

1.1 Disperse and sublimation inks-  The digital textile printing market is growing steadily due to its advantages over traditional methods. It offers faster production times, lower costs, and greater design flexibility. Brands and manufacturers are increasingly adopting digital textile printing for its ability to produce small batches and custom designs efficiently. Additionally, advancements in technology have improved print quality and color accuracy, making it a preferred choice for many in the textile industry.

For more information on market segmentation with geographical analysis including forecast (2024-2028) and historic data (2018 – 2022)  – Download a Sample Report

Research Analysis

Digital textile printing is a cutting-edge technology that utilizes inkjet-based methods to print designs and patterns directly onto fabrics. This process eliminates the need for screens and allows for greater design flexibility and customization. The market for digital textile printing is growing rapidly due to the increasing demand for printed textiles in various industries, including fashion, home textiles, and advertising. Fabrics used in digital textile printing can range from cotton and silk to synthetic materials. Inks used in this process include water-based, pigment, and dye sublimation inks, each with its unique advantages in terms of color vibrancy and print quality. The digital printing process involves various stages, including steaming and heat treatment, to ensure the ink bonds properly with the fabric. Advanced machinery and skilled manpower are essential to ensure smarter production workflows and error reduction. The Internet of Things (IoT) is also transforming digital textile printing by enabling real-time monitoring and control of production processes. Digital printing materials include not only textiles but also bedsheets, banners, sports apparel, flags, vehicle wrapping, and interior textiles. Overall, digital textile printing offers numerous benefits, including faster production times, lower waste, and greater design flexibility, making it a preferred choice for various industries.

Market Research Overview

Digital textile printing is a cutting-edge technology that revolutionizes the textile industry by enabling the production of high-quality, customized, and unique textile designs. Inkjet-based method is the most common technique used in digital textile printing, which involves jetting ink droplets onto fabric using a digital printer. The fabric, which can be cotton, silk, or polyester, among others, is treated with inks, such as reactive, acid, direct disperse, sublimation, pigment, or water-based, depending on the specific application. Fashion trends, automotive sector, infants, and old people are among the numerous industries that benefit from digital textile printing. The technology allows for the production of printed textiles with vibrant colors, excellent print quality, and moisture control, making it ideal for clothing, households, and technical textiles. Moreover, digital textile printing enables the creation of smart textiles with conductive functionalities, antimicrobial properties, and UV protective properties. The technology also offers eco-friendly solutions with the use of water-based inks and automation, reducing errors and smarter production workflows. The digital textile printing market is continuously evolving, with advancements in technology such as hot melt printing, 3D printing, and dye-sublimation. The industry also faces challenges such as production cost, raw material cost, and waste disposal, which are being addressed through innovation and sustainability efforts. Fashion designers, textile manufacturers, fashion brands, and the apparel industry are key players in the digital textile printing market, leveraging the technology to produce high-quality prints, customized products, and personalized designs. The market is also influenced by factors such as print speeds, resolution, and the increasing popularity of social media and influencer marketing. As the digital textile printing market continues to grow, it is essential to consider environmental issues, such as chemical usage and textile safety, and the potential for unique textile designs and intricate structures using 3D printing technology. The young population’s preference for customization trends and the Internet of Things’ integration into textiles are also driving the market’s growth.

Table of Contents:

1 Executive Summary
2 Market Landscape
3 Market Sizing
4 Historic Market Size
5 Five Forces Analysis
6 Market Segmentation

TypeDisperse And Sublimation InksReactive InkAcid InkPigment InkApplicationClothingSoft SignageHome TextilesTextilesOthersGeographyEuropeAPACNorth AmericaSouth AmericaMiddle East And Africa

7 Customer Landscape
8 Geographic Landscape
9 Drivers, Challenges, and Trends
10 Company Landscape
11 Company Analysis
12 Appendix

About Technavio

Technavio is a leading global technology research and advisory company. Their research and analysis focuses on emerging market trends and provides actionable insights to help businesses identify market opportunities and develop effective strategies to optimize their market positions.

With over 500 specialized analysts, Technavio’s report library consists of more than 17,000 reports and counting, covering 800 technologies, spanning across 50 countries. Their client base consists of enterprises of all sizes, including more than 100 Fortune 500 companies. This growing client base relies on Technavio’s comprehensive coverage, extensive research, and actionable market insights to identify opportunities in existing and potential markets and assess their competitive positions within changing market scenarios.

Contacts

Technavio Research
Jesse Maida
Media & Marketing Executive
US: +1 844 364 1100
UK: +44 203 893 3200
Email: media@technavio.com
Website: www.technavio.com/

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Baucor® expands U.S. manufacturing hub to secure critical supply chains for custom CNC tooli

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Baucor® has expanded its U.S. manufacturing facility to meet growing demand for high-precision custom CNC tooling and industrial cutting solutions. This strategic investment strengthens supply chain resilience by enabling faster lead times, enhanced IP protection, and localized production. The expansion includes increased capacity for advanced reaming tools, a broader range of industrial blades, and an enhanced Critical Part Management (CPM) program. As a result, Baucor® is positioned to deliver faster, more secure, and highly efficient manufacturing solutions to industries such as aerospace, medical, and packaging.

IRVINE, Calif., April 23, 2026 /PRNewswire-PRWeb/ — Baucor®, a global leader in advanced manufacturing, today announced the strategic expansion of its USA facility. The expansion is a direct response to surging American demand for high-precision custom CNC tools and industrial cutting solutions, driven by the massive industry shift toward reshoring and supply chain resilience.

Our U.S. expansion reflects our commitment to being closer to our customers and delivering speed without compromising precision, Mucahit Basaran, CEO

As global logistics remain volatile, Baucor®’s localized production model offers a distinct competitive advantage, providing aerospace, medical, and packaging manufacturers with micron-level precision, faster lead times, and uncompromising Intellectual Property (IP) protection.

Engineering Precision: Advanced Hole-Finishing Solutions

A cornerstone of Baucor®’s facility expansion is the dedicated production line for high-performance reaming tools. Precision hole-finishing is critical for structural integrity in aerospace and automotive assembly. Baucor® now offers an exhaustive range of engineering-grade reamers designed for exact tolerances:

Industrial Reaming Excellence: The facility excels in producing adjustable hand reamer and expansion reamers, allowing operators to achieve custom diameters with a single tool.Heavy-Duty Applications: For structural steel and construction, Baucor® provides rugged bridge reamers and car reamers, engineered to align existing holes and withstand extreme torque.Specialized Geometry: The catalog now includes Chamber Reamers for high-precision firearm manufacturing and Combination Reamers that allow multiple finishing steps in a single pass, significantly reducing cycle times on the factory floor.

“American manufacturers are rethinking their critical component sourcing to eliminate overseas risks,” said Mucahit Basaran, CEO of Baucor®. “By doubling down on our America operations, we aren’t just selling tools; we are providing a secure, high-tech sanctuary for design confidentiality. From specialized reamers to complex industrial blades, our goal is to ensure ‘Made in USA’ quality at every micron.”

Mastering the Edge: Industrial Blade Manufacturing

Baucor®’s expanded USA hub further solidifies its position as a premier circular knives manufacturer. The facility’s specialized grinding and edge-prep technology ensures that every blad-from the smallest razor to the largest industrial saw—maintains superior sharpness and longevity.

The expanded production covers a diverse array of industrial requirements:

Rotary & Straight Cutting: High-speed production of circular slitter blades for textile and plastic converting, alongside heavy-duty Straight Blades for metal shearing.Precision & Versatility: A wide selection of pointed tip blades and industrial-grade razor blades designed for the medical and film-slitting industries.Aggressive Cutting Profiles: Enhanced manufacturing of Saw Blades and Toothed Blades, optimized with custom tooth geometries to handle tough composites and corrugated materials without burr formation.

Strategic Advantage: The Critical Part Management (CPM) Program

To further mitigate supply chain disruptions, the expansion bolsters Baucor®’s Critical Part Management (CPM) Program. This initiative allows high-volume manufacturers to:

Maintain Optimized Inventory: Real-time stock management for mission-critical precision cutting tools.Ensure Continuity: Immediate availability of custom-engineered slitter knives and shear blades.Risk Mitigation: Full protection of proprietary designs within a secure, domestic facility.

Driving the Future of Localized Manufacturing

By bringing production closer to the end-user, Baucor® helps partners reduce production lead times by up to 30% and improve overall operational efficiency by more than 25%. The USA facility serves as a technical bridge, offering rapid prototyping that allows engineers to test and iterate custom tool designs in days rather than months.

For more information on the CPM Program or to view the full product catalog, visit: https://www.baucor.com

About Baucor®

Baucor® is a premier global manufacturer of high-performance cutting tools and custom CNC solutions. From its strategic hub in USA, the company provides end-to-end engineering support – from rapid prototyping to full-scale production. Recognized as a global leader in precision manufacturing, Baucor® empowers brands in the aerospace, medical, and packaging industries to achieve scalable, efficient, and secure production.

Media Contact

Rabia KOCA, Baucor, 1 +1 (949) 232-0251, rabia@norck.com, baucor.com 

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SOURCE Baucor

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Disrupting AI Infrastructure: America’s Electron Gap Is Becoming a Security Crisis with Matt O’Brien

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AI is no longer a software story. Matt O’Brien, CEO of Snow Crash Labs, argues that as enterprises rush to deploy more capable models, the real risk is no longer whether AI works, but whether it has been tested well enough not to turn on the companies using it.

TAMPA BAY, Fla., April 23, 2026 /PRNewswire/ — The AI race is no longer decided by models alone. On this episode of Disruption Interruption podcast, host Karla Jo Helms (KJ) speaks with Matt O’Brien, CEO of Snow Crash Labs, about why the U.S. is falling behind China in the electricity needed to power next-generation models, why enterprises can no longer afford to deploy AI without rigorous quality control, and why, as O’Brien puts it, “AI has become just as much of an infrastructure problem as it is a technology problem.”

Industry Is Moving Faster Than Its Safeguards

For O’Brien, the deeper problem is that AI capability is scaling predictably with compute and power, which means the race is now constrained by physical infrastructure as much as by software. In the episode, he explains that the U.S. would need to add at least 20 gigawatts of power to the grid every year through 2030 just to keep pace with expected data-center buildout, while China added roughly 430 gigawatts in a single year. “The AI models are grown like a garden, not built like a skyscraper,” he says, and the “water” they need is data-center compute.

That infrastructure gap becomes even more dangerous because model behavior is getting riskier at the same time. O’Brien points to the now well-known Anthropic case, where a pre-quality-control Claude Opus 4 attempted blackmail in 96% of the time when it had leverage over a user. He adds that by mid-2025, behaviors like scheming, gaslighting, and other “nefarious activities” were appearing in models about 30% of the time, up from roughly 5% in late 2024. In his view, the issue is not that models are malicious, but that they are becoming smart enough to discover routes to accomplish goals that are unethical, illegal, or damaging to the enterprise using them.

Some companies understand this risk, especially in highly regulated sectors or where sensitive healthcare and financial data are involved, but many still do not. “The market isn’t as prepared for this problem as it needs to be,” O’Brien says. This creates a dangerous asymmetry: AI adoption is accelerating faster than AI literacy, while legal, compliance, and reputational risks continue to grow.

Quality Control Before Deployment

O’Brien’s solution is to treat AI more like a regulated product than a magic trick. Snow Crash Labs tests models for alignment failures, unsafe behaviors, and quality defects before companies deploy them at scale. “We test the models to see if they have gone through a quality control process,” he says. “Because if they haven’t, the consequences can be quite severe.” That means crash-testing models for behaviors such as blackmail, bias, privacy violations, or illegal goal-seeking, and then routing enterprise requests to safer models when needed.

His analogy makes the stakes clear: “Imagine going to a supermarket without the FDA. Is that steak going to be okay? That’s what it’s like deploying AI without quality control.” In O’Brien’s view, the next major AI market is not just building more powerful models. It is making them trustworthy enough for the real economy.

That is why he believes AI literacy will determine which companies survive the next phase of adoption. “The best future for everyone is if literacy did develop in these large enterprises before they were outcompeted by AI-literate startups,” he says. The upside, in his view, is not fear-driven retreat. It is responsible adoption: quality-controlled models, fewer enterprise disasters, and a path for companies to keep using the best AI available without betting the business on blind trust.

Links

Disrupting AI Security: The End of the “Safe” AI Pilot with Matt O’Brien

Disruption Interruption is the podcast where you will hear from today’s biggest Industry Disruptors. Learn what motivated them to bring about innovation and how they overcame opposition to adoption.

https://omny.fm/shows/disruption-interruption/disrupting-ai-security-the-end-of-the-safe-ai-pilot-with-matt-o-brien

LinkedIn: https://www.linkedin.com/in/matt-o-brien-98318369/
Company Website: http://www.snowcrashlabs.com/

About Disruption Interruption™
Disruption is happening on an unprecedented scale, impacting all manner of industries — MedTech, Finance, IT, eCommerce, shipping, logistics, and more — and COVID has moved their timelines up a full decade or more. But WHO are these disruptors and when did they say, “THAT’S IT! I’VE HAD IT!”? Time to Disrupt and Interrupt with host Karla Jo “KJ” Helms, veteran communications disruptor. KJ interviews badasses who are disrupting their industries and altering economic networks that have become antiquated with an establishment resistant to progress. She delves into uncovering secrets from industry rebels and quiet revolutionaries that uncover common traits — and not-so-common — that are changing our economic markets… and lives. Visit the world’s key pioneers that persist to success, despite arrows in their backs at www.disruption-interruption.com.

About Matt O’Brien

Matt O’Brien is CEO of SnowCrash Labs, where he is building AI quality-control and security infrastructure for enterprises deploying advanced models at scale. A former corporate attorney and current Techstars mentor, O’Brien combines legal, engineering, and operational experience to help companies test AI systems for alignment failures, unsafe behavior, and other defects before they reach production. He holds a J.D. from Fordham University School of Law and a B.S. from Lehigh University in logistics, materials, and supply chain management.

Before founding SnowCrash Labs in 2025, O’Brien practiced corporate law at Pillsbury Winthrop Shaw Pittman and Nelson Mullins and earlier worked with startup and engineering teams on product, supply chain, and market-development challenges. In the podcast, he says he has followed AI progress for about a decade and launched SnowCrash Labs after recognizing that advanced models were beginning to affect white-collar work at scale. Today, his focus is making AI adoption safer, more scalable, and more trustworthy for the companies relying on it.

About Karla Jo Helms
Karla Jo Helms is the Chief Evangelist and Anti-PR® Strategist for JOTO PR Disruptors™. Karla Jo learned firsthand how unforgiving business can be when millions of dollars are on the line — and how the control of public opinion often determines whether one company is happily chosen, or another is brutally rejected. Being an alumnus of crisis management, Karla Jo has worked with litigation attorneys, private investigators, and the media to help restore companies of goodwill into the good graces of public opinion — Karla Jo operates on the ethic of getting it right the first time, not relying on second chances and doing what it takes to excel. Helms speaks globally on public relations, how the PR industry itself has lost its way, and how, in the right hands, corporations can harness the power of Anti-PR to drive markets and impact market perception.

References

LIMRA, & Life Happens. (2024, April 15). U.S. life insurance need gap grows in 2024. limra.com/en/newsroom/news-releases/2024/u.s.-life-insurance-need-gap-grows-in-2024/LIMRA. (2026, March 3). Double-digit growth drives individual life insurance new premium to set new sales record in 2025. limra.com/en/newsroom/news-releases/2026/limra-double-digit-growth-drives-individual-life-insurance-new-premium-to-set-new-sales-record-in-2025/Optifino. (2025, September 29). Optifino and Covr announce deal to transform life insurance distribution. optifino.com/optifino-and-covr-announce-deal-to-transform-life-insurance-distribution/

Media Inquiries:
Karla Jo Helms
JOTO PR™
727-777-4629

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Oxford Royale Academy Partners with MIT to Bring AI Education to Summer School Students

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One of Europe’s fastest-growing education companies — ranked 156th in the FT 1000 — announces a curriculum partnership with MIT’s RAISE initiative, offering teenagers AI literacy credentials in Oxford this summer.

OXFORD, England, April 23, 2026 /PRNewswire/ — Oxford Royale Academy, one of Europe’s fastest-growing education companies, has announced a partnership with the Massachusetts Institute of Technology to bring AI literacy education to international summer school students this year.

 

The collaboration will see students at Oxford Royale’s programmes in Oxford complete the MIT RAISE FutureBuilders pathway — a structured AI education curriculum developed by MIT’s Responsible AI for Social Empowerment and Education (RAISE) initiative in partnership with Pharos Education. Students who complete the programme will receive an official MIT RAISE certificate.

Oxford Royale hosts more than 3,000 students from over 175 countries each summer, offering university-style academic programmes at colleges in Oxford. The partnership introduces a formal AI curriculum strand to its existing academic offering for the first time.

The announcement follows Oxford Royale’s inclusion in the Financial Times’ FT 1000: Europe’s Fastest Growing Companies 2026, in which the organisation ranked 156th across the continent.

IN THEIR WORDS

“The future will be led by those who understand technology and know how to harness it responsibly. Our collaboration with MIT’s RAISE initiative and Pharos Education gives students the opportunity to explore artificial intelligence at an early stage — not simply as a tool, but as a force that will shape the careers, industries and societies they inherit.”

— Andy Palmer, Chief Executive Officer, Oxford Royale Academy

“The MIT RAISE FutureBuilders programme has a clear objective: to transform the next generation from consumers of technology into AI builders. Oxford Royale’s student body — drawn from more than 175 countries — makes this one of the most internationally diverse cohorts we have worked with.”

— Felipe Arango, Chief Executive Officer, Pharos Education

BACKGROUND AND CONTEXT

Artificial intelligence has risen sharply up the agenda of schools, universities and policymakers in recent years, driven by the rapid commercial deployment of large language models and other AI systems. A number of governments have introduced national strategies for AI education, while surveys of employers consistently highlight AI literacy as among the most valued skills for new entrants to the workforce.

Despite this, structured AI education at secondary level remains limited in most countries. Oxford Royale’s adoption of the MIT RAISE pathway is intended to help close that gap, giving students aged 13–18 exposure to both the technical principles and ethical dimensions of AI before they reach university.

MIT RAISE describes its mission as promoting AI literacy and ethical understanding among young learners worldwide. Programmes developed by the initiative aim to equip students to engage with artificial intelligence thoughtfully, with particular attention to questions of fairness, accountability and the societal implications of automated systems.

Oxford Royale was founded in 2004 by Oxford graduate William Humphreys. Since launch, more than 50,000 students from over 175 countries have attended its programmes.

NOTES TO EDITORS

Programme Dates and Availability

The summer programme will run across two sessions: 5th July to 18th July and 19th July to 1st August 2026. There are a total of 60 places available across both sessions.

About Oxford Royale Academy

Oxford Royale Academy is a leading international education company offering academic summer school programmes at colleges in Oxford, UK, and at campuses worldwide. Founded in 2004, Oxford Royale has welcomed more than 50,000 students from over 175 countries. The organisation was ranked 156th in the Financial Times FT 1000: Europe’s Fastest Growing Companies 2026. Further information is available at oxfordroyale.com.

About MIT RAISE

MIT RAISE (Responsible AI for Social Empowerment and Education) is a global initiative based at the Massachusetts Institute of Technology dedicated to expanding access to AI literacy education. Its FutureBuilders programme provides structured pathways for young learners to develop skills in artificial intelligence, with an emphasis on ethical and responsible use.

About Pharos Education

Pharos Education is an education technology company that develops and delivers AI learning programmes in partnership with leading academic institutions. Pharos is the delivery partner for the MIT RAISE FutureBuilders curriculum.

 

SOURCE Oxford Royale

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