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Field-Programmable Gate Array (FPGA) Market size is set to grow by USD 4.43 billion from 2024-2028, High adoption of smartphones and tablets globally boost the market, Technavio

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NEW YORK, Aug. 14, 2024 /PRNewswire/ — The global field-programmable gate array (FPGA) market size is estimated to grow by USD 4.43 billion from 2024-2028, according to Technavio. The market is estimated to grow at a CAGR of over 8.09%  during the forecast period. High adoption of smartphones and tablets globally is driving market growth, with a trend towards increased proliferation of IoT. However, cloning concerns in fpga design  poses a challenge. Key market players include Achronix Semiconductor Corp., Advanced Micro Devices Inc., Berkshire Hathaway Inc., Broadcom Inc., Efinix Inc., Flex Logix Technologies Inc., GlobalSpec LLC, GOWIN Semiconductor Corp., Infineon Technologies AG, Intel Corp., iWave Systems Technologies Pvt. Ltd., Lattice Semiconductor Corp., Menta SAS, Microchip Technology Inc., NXP Semiconductors NV, QuickLogic Corp., Siemens AG, Silicon Creations, SoftBank Group Corp., and Synopsys Inc..

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Field-Programmable Gate Array (FPGA) Market Scope

Report Coverage

Details

Base year

2023

Historic period

2018 – 2022

Forecast period

2024-2028

Growth momentum & CAGR

Decelerate at a CAGR of 8.09%

Market growth 2024-2028

USD 4438.6 million

Market structure

Fragmented

YoY growth 2022-2023 (%)

7.32

Regional analysis

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

Performing market contribution

APAC at 76%

Key countries

China, South Korea, US, Japan, and Germany

Key companies profiled

Achronix Semiconductor Corp., Advanced Micro Devices Inc., Berkshire Hathaway Inc., Broadcom Inc., Efinix Inc., Flex Logix Technologies Inc., GlobalSpec LLC, GOWIN Semiconductor Corp., Infineon Technologies AG, Intel Corp., iWave Systems Technologies Pvt. Ltd., Lattice Semiconductor Corp., Menta SAS, Microchip Technology Inc., NXP Semiconductors NV, QuickLogic Corp., Siemens AG, Silicon Creations, SoftBank Group Corp., and Synopsys Inc.

Market Driver

The Internet of Things (IoT) market encompasses a vast array of applications, from smart consumer electronics to wearables and automobiles. For individuals, IoT brings the advantage of affordable and efficient devices to streamline daily tasks. For businesses, it offers optimization in automation processes, inventory management, energy efficiency, security, and energy conservation. With over 8.5 billion active IoT devices in 2020 and an expected growth to 25 billion by 2030, designers face challenges such as power efficiency, incompatible interfaces, and accommodating future devices’ performance requirements. FPGAs, with their re-programmability and low power consumption, offer a solution to these challenges, making them a valuable asset in the IoT market’s growth during the forecast period. 

The FPGA market is experiencing significant growth due to its application in various industries. In aerospace and defense, FPGAs are used for real-time data processing and hardware acceleration. In consumer electronics, FPGAs power emerging technologies like artificial intelligence and machine learning in devices. The IoT sector leverages FPGAs for data processing and network processing, especially in telecom segments. Automotive applications, including driver safety and autonomous driving, are adopting FPGAs for infotainment and cockpit systems. Cloud computing and big data analytics rely on FPGAs for hardware acceleration and faster data processing. 5G and specialized expertise are driving the demand for longer FPGA design cycles. The application categories span from telecom and high-performance computing to antifuse and integrated circuits. Semiconductor companies are investing in Configurable Logic Blocks and Programmable Interconnects to cater to diverse requirements. OEMs in sectors like Smart Cities and deep packet inspection are exploring FPGAs for their application-specific needs. FPGAs offer an alternative to PROM, ASIC, EEPROM, SRAM, Flash, and EPROM, with the added benefit of NRE cost savings. The FPGA market is poised for continued growth in the coming years. 

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Market Challenges

FPGA market growth may be challenged due to the ease of imitation of FPGA designs, leading manufacturers to implement Physical Unclonable Functions (PUFs) since 2002. PUFs, which create unique outputs added to chips in a semi-randomized manner, provide effective protection against design theft. Altera’s Stratix chips offer side-channel attack protection, while Xilinx’s Device DNA embeds unique device numbers. JTAG disabling systems and CRC prevent tampering and boot code protection are additional measures. Effective deployment relies on using the correct device configuration at the right time in the development process. These defensive measures, while beneficial, could pose a threat to the global FPGA market growth during the forecast period.The FPGA market is thriving in the semiconductor industry, offering configurable logic blocks and programmable interconnects as alternatives to traditional Integrated Circuits (ICs) like PROM, ASIC, EEPROM, SRAM, Flash, and EPROM. FPGAs provide OEMs with the flexibility to create custom logic functions for various applications, including smart cities, deep packet inspection, network processing, security, and more. With continuous evolution, FPGAs offer lower power consumption and high compute density, making them suitable for wearables, handheld devices, mobile applications, cloud service providers, and more. Mid-range FPGAs are particularly popular in the telecom sector, while flash-based FPGAs cater to digital signal processing and data processing applications. FPGA architecture’s programmable and reprogrammable nature allows for customization of logic gates and flip-flops, benefiting telecoms, data processing centers, automotive, and other industries. With a lower turnaround time and the ability to adapt to new requirements, FPGAs are essential in today’s rapidly changing business landscape, enabling remote work, online learning, telemedicine, and more.

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Segment Overview 

This field-programmable gate array (fpga) market report extensively covers market segmentation by  

Type 1.1 High-end FPGA1.2 Mid-end FPGA1.3 Low-end FPGAApplication 2.1 Telecommunication2.2 Industrial2.3 Automotive2.4 Consumer electronics2.5 OthersGeography 3.1 APAC3.2 North America3.3 Europe3.4 South America3.5 Middle East and Africa

1.1 High-end FPGA-  The FPGA market experienced steady growth in 2020, driven by increasing demand for customized solutions in various industries. Companies are integrating FPGAs into their products to enhance functionality and flexibility. The automotive, telecommunications, and defense sectors are significant contributors to the market’s growth. FPGA vendors continue to innovate, offering advanced features and integrating AI and machine learning capabilities into their products. The market is expected to continue expanding due to these trends and the ongoing digital transformation across industries.

For more information on market segmentation with geographical analysis including forecast (2024-2028) and historic data (2017-2021) – Download a Sample Report

Research Analysis

The Field-Programmable Gate Array (FPGA) market refers to the business sector focused on designing, manufacturing, and selling FPGAs. An FPGA is a type of digital integrated circuit that utilizes configurable logic blocks and programmable interconnects to create custom logic functions. Unlike Programmable Read-Only Memories (PROM), Application-Specific Integrated Circuits (ASIC), or Electronically Erasable Programmable Read-Only Memories (EEPROM), FPGAs are programmable and reprogrammable, making them ideal for various applications. FPGAs are widely used in deep packet inspection, network processing, security, and digital signal processing for sectors such as telecommunications, automotive, military, and consumer electronics. Their high compute density, low power consumption, and customizable nature make them suitable for wearables, handheld devices, mobile applications, cloud service providers, and data processing applications. FPGAs consist of programmable logic elements, including logic gates and flip-flops, which can be configured to perform a wide range of logic functions.

Market Research Overview

The Fpga market is a dynamic segment of the semiconductor industry that offers configurable logic blocks and programmable interconnects, making it a versatile solution for various applications. FPGAs are digital integrated circuits that are programmable and reprogrammable, allowing for customizable logic functions and digital signal processing. They are used in data processing applications across multiple industries, including telecom, automotive, aerospace and defense, consumer electronics, and emerging technologies. FPGAs offer several advantages, such as low power consumption, high compute density, and shorter design cycles, making them ideal for applications in smart cities, wearables, handheld devices, mobile applications, cloud service providers, and more. The telecom sector is a significant application category for FPGAs, with use cases including deep packet inspection, network processing, and security. FPGAs come in different types, such as mid-range FPGAs and flash-based FPGAs, each catering to specific application requirements. The continuous evolution of FPGA architecture and the emergence of new technologies, such as artificial intelligence, machine learning, and the Internet of Things, are driving the growth of the Fpga market. FPGAs are used in various applications, including telecoms, data processing centers, autonomous driving, infotainment, and cockpit applications, among others. The Fpga market also caters to the needs of OEMs and offers specialized expertise for longer design cycles and application-specific requirements. The market is expected to grow significantly in the coming years due to the increasing demand for high-performance computing, big data analytics, hardware acceleration, and 5G technologies.

Table of Contents:

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

TypeHigh-end FPGAMid-end FPGALow-end FPGAApplicationTelecommunicationIndustrialAutomotiveConsumer ElectronicsOthersGeographyAPACNorth AmericaEuropeSouth 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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Care Career Announces Acquisition of MAS Medical Staffing, Completing Its First Acquisition Phase and Expanding Annual Revenue Beyond $150 Million, with a Path to Exceed a Quarter Billion by the End of 2026 Through Additional Acquisitions and Organic Growth

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WOODBRIDGE, N.J., July 24, 2026 /PRNewswire/ — Care Career, a rapidly growing healthcare workforce technology organization, today announced the acquisition of MAS Medical Staffing, one of the Northeast’s leading healthcare workforce organizations. Financial terms of the transaction were not disclosed.

The acquisition represents Care Career’s seventh strategic acquisition in the past 24 months, further strengthening the company’s position as one of the largest healthcare workforce organizations in the United States while accelerating its strategy to redefine the future of healthcare workforce management through artificial intelligence, enterprise technology, and workforce innovation.

MAS Medical Staffing has built an outstanding reputation for delivering high-quality workforce solutions through strong client relationships, exceptional clinician engagement, and deep regional expertise throughout the Northeastern United States. The acquisition significantly expands Care Career’s geographic footprint while broadening its access to healthcare professionals, client relationships, workforce data, and regional market intelligence.

Care Career is building a technology-enabled workforce ecosystem powered by its AI-powered workforce platform, where every acquisition contributes not only additional market presence, but also expanded data, enhanced artificial intelligence capabilities, digital innovation, and operational scale that continuously improve the experience for clients and clinicians alike. As the platform grows, every clinician engagement, client interaction, credential, placement, and workforce trend strengthens the intelligence of Career’s technology, creating a continuously improving ecosystem designed to deliver faster, smarter, and more effective workforce solutions.

The acquisition also brings MAS Medical Staffing’s MAESTRA® engagement technology, along with its client relationships and clinician network, directly onto Career’s AI-powered workforce platform. MAESTRA’s scheduling, credentialing, and communication capabilities will be integrated into Care Career’s existing technology stack, further enhancing clinician engagement across onboarding, scheduling, and career management while providing healthcare organizations with greater workforce visibility and operational efficiency.

“Our vision is to build the AI-powered infrastructure that modernizes healthcare workforce management,” said Siva Konatham, Group President and Chief Executive Officer of Care Career. “Under my leadership, Care Career is focused on transforming a fragmented, labor-intensive industry into a data-driven, technology-enabled ecosystem that improves speed, efficiency, and workforce visibility for healthcare providers. Each acquisition strengthens our platform intelligence, expands our scale, and enhances our margin potential. By integrating advanced analytics, AI automation, and digital engagement tools, we are not just growing revenue—we are building a smarter, more scalable model positioned to lead the next era of healthcare workforce solutions.”

The combined organization will leverage expanded recruiting resources, centralized credentialing, advanced workforce analytics, AI-enabled automation, and digital engagement technologies—all powered by Care Career’s AI-powered workforce platform—to deliver broader recruiting capabilities, faster response times, enhanced workforce insights, and expanded national coverage. Clinicians will benefit from a seamless digital experience that simplifies every stage of their careers—from job discovery and credentialing to onboarding, scheduling, communication, and long-term career development.

With seven strategic acquisitions completed in less than two years, representing the first round of acquisitions now totaling more than $150 million in annual revenue, Care Career has rapidly expanded its national presence while executing a disciplined growth strategy focused on technology integration, operational excellence, and workforce innovation. The company has also signed additional Letters of Intent with other entities with expected close dates in the third quarter of 2026. Upon completion of these transactions, coupled with organic growth, Care Career expects consolidated annual revenue to exceed a quarter of a billion dollars by the end of 2026.

The addition of MAS Medical Staffing further strengthens the organization’s ability to serve healthcare systems, hospitals, long-term care providers, outpatient facilities, and other healthcare organizations across an increasingly diverse geographic footprint.

“The healthcare workforce industry is entering a new era where technology, artificial intelligence, and data-driven decision-making will define the market leaders,” Konatham added. “Every acquisition we complete expands the intelligence of our AI-powered workforce platform, enhances the value we deliver to our clients, and creates more opportunities for clinicians. We believe the combination of exceptional people, innovative technology, and strategic scale positions Care Career to lead the next generation of healthcare workforce solutions.”

About Care Career

Care Career is a technology-enabled healthcare workforce solutions company dedicated to transforming how healthcare organizations recruit, engage, credential, deploy, and retain clinical talent. Powered by its proprietary AI-powered workforce platform and supported by advanced artificial intelligence, enterprise technology, and workforce analytics, Care Career is building an intelligent healthcare workforce ecosystem that connects providers and clinicians more efficiently while improving workforce performance, operational effectiveness, and patient care. Following seven strategic acquisitions over the past 24 months the first round of acquisitions totaling more than $150 million in annual revenue and with additional signed LOIs under contract expected to complete shortly, positioning the company to surpass a quarter of a billion dollars in consolidated annual revenue by the end of 2026, Care Career has become one of the nation’s largest and fastest-growing healthcare workforce organizations, serving healthcare providers and clinicians across the United States.

About MAS Medical Staffing

MAS Medical Staffing is a premier healthcare workforce organization recognized for exceptional service, strong client partnerships, and a commitment to connecting healthcare professionals with rewarding career opportunities. With an established presence throughout the Northeastern United States, MAS Medical Staffing has earned a reputation for quality, responsiveness, and delivering workforce solutions that help healthcare providers meet their evolving workforce needs while supporting clinicians throughout every stage of their careers.

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SOURCE Care Career

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PointsKash Demonstrates How Businesses Can Build on Bitcoin Without Burdening the Blockchain

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As industry debate surrounding Bitcoin Improvement Proposal (BIP-110) intensifies, PointsKash unveils an architecture designed to work regardless of the proposal’s outcome.

SCOTTSDALE, Ariz., July 24, 2026 /PRNewswire/ — As the global Bitcoin community debates Bitcoin Improvement Proposal 110 (BIP-110) and the future of data stored on the Bitcoin blockchain, PointsKash, Inc. today announced that its next-generation kiosk infrastructure was intentionally designed to operate efficiently under any outcome of the proposal.

Rather than storing operational data directly on the Bitcoin blockchain, PointsKash utilizes a layered architecture that combines Bitcoin‘s unmatched security with modern decentralized communications technology. Every transaction, machine event, system update, and operational record generated across the PointsKash network is cryptographically verified, securely maintained off-chain, and anchored to the Bitcoin blockchain through a single immutable cryptographic proof.

This approach allows thousands of operational events to be permanently verified while utilizing only a minimal amount of blockchain data.

As discussion surrounding BIP-110 has intensified across the digital asset industry, PointsKash believes the debate does not require choosing between innovation and responsible blockchain stewardship.

“The industry has been debating whether businesses can build meaningful applications on Bitcoin without unnecessarily consuming blockchain space,” said Michael Herron, Chief Executive Officer of PointsKash. “We believe we’ve demonstrated that the answer is yes. Bitcoin provides the world’s most trusted immutable timestamp and security layer, while higher-volume operational data belongs on technologies specifically designed to manage it. By combining both, we’ve built an architecture that is scalable, transparent, and future-ready regardless of how the BIP-110 discussion ultimately evolves.”

The company’s infrastructure assigns every kiosk its own unique cryptographic identity, allowing each machine to securely authenticate every transaction and operational event. Those records are then independently verifiable through cryptographic proofs while remaining resistant to alteration or manipulation—even by PointsKash itself.

According to the company, this architecture delivers several significant advantages:

Mathematically verifiable transaction records for regulators, banking partners, auditors, and enterprise customers.Improved network reliability, allowing kiosks to continue operating during temporary connectivity interruptions without losing transaction history.Enhanced cybersecurity, with every machine maintaining its own authenticated identity and secure communications.A scalable blockchain architecture that minimizes on-chain data while preserving complete auditability.

Bitcoin was created to provide trust, security, and permanence—not to become a storage system for every piece of application data,” Herron added. “Our philosophy has always been simple: use Bitcoin for what it does better than anyone else—creating immutable proof that records have never been altered—and leverage modern decentralized technologies for everything else. We believe that’s the future of enterprise blockchain infrastructure.”

PointsKash believes this architecture positions the company among a new generation of fintech innovators utilizing Bitcoin as a secure trust layer while developing scalable financial applications for enterprise deployment.

The technology also establishes the foundation for future blockchain-based financial products currently under development, including enhanced digital audit capabilities, verifiable financial records, enterprise licensing opportunities, and next-generation digital asset infrastructure.

As the Bitcoin ecosystem continues to mature, PointsKash believes its technology demonstrates that responsible innovation and blockchain scalability can successfully coexist—providing enterprise organizations with the confidence to build on Bitcoin without contributing unnecessary data to the network.

About PointsKash, Inc.

PointsKash, Inc. is a financial technology company developing an integrated ecosystem of AI-enabled self-service financial centers, digital banking, digital payment solutions, cryptocurrency services, loyalty rewards, enterprise merchant technologies, and mobile financial applications. Through proprietary software, Artificial Intelligence, and strategic partnerships, PointsKash is building innovative financial solutions designed to empower consumers, merchants, and enterprise organizations throughout North America.

For more information, visit www.pointskash.com.

Media Contact

PointsKash, Inc.
Investor Relations
info@pointskash.com
www.pointskash.com

Forward-Looking Statements

This press release contains forward-looking statements regarding anticipated technology integrations, Artificial Intelligence initiatives, product development, future commercialization plans, expected operational efficiencies, business strategy, and future growth. These statements are based on current expectations and involve risks and uncertainties that could cause actual results to differ materially from those expressed or implied. Factors that could affect actual results include, but are not limited to, technology development timelines, integration efforts, financing, regulatory developments, market conditions, and other risks facing the Company. PointsKash undertakes no obligation to update any forward-looking statements except as required by applicable law.

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SOURCE PointsKash Inc.

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As ADA Anniversary Approaches, University of Phoenix Survey Highlights AI’s Potential to Advance Accessibility in Work and Learning

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Survey conducted by The Harris Poll on behalf of University of Phoenix finds among those already using AI in the workplace, 60% say AI has improved their knowledge of and ability to use accessibility standards and guidelines.

PHOENIX, July 24, 2026 /PRNewswire/ — As artificial intelligence becomes part of how people work, learn and solve problems, a new University of Phoenix survey conducted by The Harris Poll finds that recent working learners see meaningful opportunities for AI to support accessibility. The survey was designed to understand the impact of AI in the workplace and learning environments on accessibility, defined as ensuring digital content, tools and resources, including AI tools and output, are usable by people with different abilities through inclusive design, use of assistive technology or conformance with accessibility standards, such as the Web Content Accessibility Guidelines (WCAG). The findings are being released ahead of the 36th anniversary of the Americans with Disabilities Act (ADA) on July 26.

The survey, conducted among 1,019 U.S. employed adults who completed a professionally presented training or school course in the past 12 months (“recent working learners”), found that, among workers already using AI in the workplace, 3 in 5 (60%) say AI has improved their knowledge of and ability to use accessibility standards and guidelines, including nearly 1 in 5 (19%) who report significant improvement. 

While the findings point to optimism about AI’s accessibility potential, they also reveal an opportunity for clearer organizational guidance: 45% of respondents say accessibility is absent from, unclear in, or they are uncertain whether it is covered by their workplace AI policies.

“The reality is that accessibility benefits everyone,” shares Kelly Hermann, Vice President of Accessibility and Student Affairs at University of Phoenix. “If accessibility is built in from the beginning, organizations are more likely to create AI-enabled environments that are universally usable. Clearer content, better summaries, accurate captions, and multiple formats can help workers and learners with disabilities, but they also help busy adults, multilingual learners, mobile users, and anyone trying to absorb information quickly.”

Key findings from the survey include:

Workers see AI’s accessibility potential: 89% of recent working learners identify workflows that could benefit from AI and accessibility tools, especially creating accessible documents, presentations, websites or learning materials (38%), presenting information in different formats such as plain language, audio, summaries or translations (33%), and training employees or learners on accessibility practices (30%).AI may help build accessibility awareness: Among those already using AI in the workplace, 60% say AI has improved their knowledge of and ability to use accessibility standards and guidelines.Accessibility is not always clear in workplace AI policies: 45% of recent working learners say accessibility is absent from, unclear in, or they are uncertain whether it is covered by their workplace AI policies.AI tools may not yet fully support different access needs: Among those who use workplace AI tools, only about a quarter of survey respondents (27%) say AI tools available through their workplace or professional learning environment support people with disabilities very well.Human oversight remains important: 36% of recent working learners say human review for important decisions or high-impact work should be part of responsible AI use at work or school.Workers also recognize how AI and accessibility can have an impact on their own career journey: 90% of recent working learners identify AI and accessibility skills that would be valuable in their current or desired career field, including 45% who see value in understanding when AI-generated content needs human review.

Why accessibility is essential to responsible AI adoption

As AI tools are used to draft documents, summarize information, generate captions and transcripts, create image descriptions, support learning and assist with workplace tasks, accessibility becomes central to responsible use. Poorly implemented AI can also create or amplify barriers, including inaccessible content, inaccurate summaries, biased outputs and tools that do not work effectively with assistive technologies.

“Responsible AI is not only about productivity,” Hermann said. “It is about whether the technology works for the people who need to use it. AI can help create more accessible materials and more flexible ways to engage with information, but it still requires clear policies, practical training and human judgment to make sure the outputs are accurate, applicable and usable.”

What the findings mean for employers and educators

The survey suggests that organizations have an opportunity to align AI adoption with supportive design, accessibility practices and workforce training. Employers and educators can take immediate steps by:

Naming accessibility directly in AI policies and guidance.Choosing AI tools with accessibility and assistive technology compatibility in mind.Training workers and learners to create, check and improve accessible AI-generated content.Making support pathways clear for people who experience barriers using AI tools.Keeping human review in place for important decisions, high-impact work and accessibility-sensitive outputs.

The survey also found workers want practical AI training. The most helpful resources identified by recent working learners include real-world examples from their field or industry (36%), hands-on practice using realistic workplace scenarios (34%) and step-by-step demonstrations of common tasks (33%).

Accessibility insights from University of Phoenix

Hermann shared the survey findings ahead of the ADA anniversary in recent media interviews. Hermann oversees the University’s accessibility initiative, including evaluation and remediation of curricular resources, the Center for Access, Resources, Engagement and Support Services (CARES), and the Office of Collaborative Learning and Educational Engagement. Her work focuses on fostering accessible and welcoming educational environments for students, faculty and staff.

Hermann’s office at University of Phoenix also convenes accessibility conversations through initiatives such as Access Amplified™, a free, annual virtual event focused on advancing digital accessibility in web development. The event brings together engineers, developers, designers, content authors and digital strategists for practical strategies and human-centered conversations that address the gap between coding practices and how users with assistive technology experience the web.

About the survey

The survey was conducted online within the United States by The Harris Poll on behalf of University of Phoenix from June 22–29, 2026, among 1,019 employed adults ages 18 and older who have taken a professionally presented training or a school course in the past 12 months, referred to as “recent working learners.” Data were weighted where necessary by age, gender, race/ethnicity, region, education, employment, marital status, household size, household income and smoking status to bring them in line with their actual proportions in the population.

Respondents for this survey were selected from among those who have agreed to participate in surveys. The sampling precision of Harris online polls is measured by using a Bayesian credible interval. For this study, the sample data is accurate to within +/- 3.8 percentage points using a 95% confidence level. This credible interval will be wider among subsets of the surveyed population of interest.

Review the complete survey at phoenix.edu/aiaccessibility.

About University of Phoenix

University of Phoenix is Built for Real Life. 50 Years Strong. The University innovates to help working adults enhance their careers and develop skills in a rapidly changing world through flexible online learning, relevant courses, academic AI pillars, and skills-mapped curriculum for associate, bachelor’s and master’s degree programs. Active students and alumni have access to Career Services for Life® resources including career guidance and tools. For more information, visit phoenix.edu. 

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SOURCE University of Phoenix

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