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Digital Wound Management Devices Market to Reach USD 3,594.49 million By 2032, Growing At An 5.03% CAGR – Credence Research

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PUNE, India, May 5, 2025 /PRNewswire/ — The global Digital Wound Management Devices Market was valued at USD 2,415.89 million in 2024 and is projected to reach USD 3,594.49 million by 2032, growing at a CAGR of 5.03% during the forecast period from 2025 to 2032. This steady growth is driven by the increasing demand for advanced technologies that enhance wound monitoring, improve treatment outcomes, and streamline clinical workflows. Digital wound management devices, which include imaging tools, sensors, and software platforms, are gaining traction due to their ability to provide accurate, real-time assessment and documentation of chronic and acute wounds.

The market is witnessing strong adoption across healthcare facilities, particularly in the management of diabetic ulcers, pressure ulcers, and post-surgical wounds, which are becoming more prevalent due to the global rise in chronic diseases and aging populations. Additionally, integration with telehealth and electronic health records (EHRs) supports remote monitoring, enabling healthcare providers to make faster, data-driven decisions. As innovation in AI-powered wound analysis and mobile applications continues to expand, the Digital Wound Management Devices Market is poised for sustained growth in both developed and emerging economies.

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Key Growth Determinants

Rising Prevalence of Chronic Wounds
The increasing global incidence of chronic conditions such as diabetes, obesity, and vascular diseases has led to a surge in chronic wounds like diabetic foot ulcers, pressure ulcers, and venous leg ulcers. These conditions require continuous monitoring and management, thereby driving the demand for advanced digital wound management devices that offer real-time data, precise wound tracking, and faster clinical decisions.

Advancements in Digital Health Technologies
Technological innovations, including artificial intelligence (AI), cloud computing, and image analytics, are transforming traditional wound care practices. Smart sensors, mobile applications, and software platforms integrated with AI algorithms are now capable of evaluating wound healing stages and recommending treatment options. These advancements enable personalized and efficient wound care management, thereby boosting market growth.

Growing Adoption of Telehealth and Remote Monitoring
The shift toward remote patient monitoring, particularly accelerated by the COVID-19 pandemic, has significantly influenced the digital wound care landscape. Healthcare providers are increasingly relying on telemedicine and mobile wound care apps to monitor patient progress remotely, reduce in-person visits, and ensure timely interventions. This trend enhances care accessibility while reducing the burden on healthcare systems.

Healthcare System Digitization and Demand for Cost-Efficiency
The global push toward digital transformation in healthcare, including the implementation of electronic health records (EHRs) and interoperable systems, supports the integration of digital wound management solutions. These devices reduce the need for manual documentation, lower hospital readmission rates, and improve clinical workflow efficiency. The cost-effectiveness and operational benefits they offer are further accelerating their adoption among healthcare providers and institutions.

Key Growth Barriers

High Cost of Advanced Technologies
Cutting-edge digital wound management devices, especially those incorporating 3D imaging, planimetry, or laser-based technologies, often come with substantial costs. This financial barrier can limit adoption, particularly in resource-constrained healthcare settings and developing regions where traditional wound measurement methods remain more accessible .Training and Adoption Challenges
The integration of sophisticated digital solutions necessitates comprehensive training for healthcare professionals. A lack of proficiency and familiarity with these technologies can impede their effective implementation, leading to resistance among clinicians and affecting the overall adoption rate .Regulatory and Reimbursement Hurdles
Navigating the complex regulatory landscape and securing reimbursement approvals for new digital wound management devices can be time-consuming and challenging. These hurdles may delay product launches and deter investment in innovative solutions .Limited Infrastructure in Emerging Markets
In many low- and middle-income countries, inadequate healthcare infrastructure, including unreliable internet connectivity and limited access to electronic health records, poses significant challenges to the deployment of digital wound management systems. This limitation restricts market penetration in these regions.Data Privacy and Security Concerns
The handling of sensitive patient data through digital platforms raises concerns about data privacy and security. Ensuring compliance with data protection regulations and safeguarding against cyber threats are critical challenges that need to be addressed to build trust among users.

Segmentation

By Type

Smart Wound DressingsWound Care Management SoftwareNegative Pressure Wound Therapy DevicesAdvanced Wound Care DevicesOthers

By Solution

Cloud-BasedOn-PremiseMobile-BasedOthers

By End-user

HospitalsWound Care ClinicsOthers (Home Healthcare Settings)

By Wound Type

Chronic WoundAcute Wound

Based on region

North AmericaThe U.S.CanadaMexicoEuropeGermanyFranceUK.ItalySpainRest of EuropeAsia PacificChinaJapanIndiaSouth KoreaSouth-east AsiaRest of Asia PacificLatin AmericaBrazilArgentinaRest of Latin AmericaMiddle East & AfricaGCC CountriesSouth AfricaThe Rest of the Middle East and Africa

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Regional Analysis

North America

North America holds the largest share of the market, driven by its advanced healthcare infrastructure, high expenditure on medical technologies, and early adoption of digital health solutions. The region benefits from the widespread use of electronic health records (EHRs) and the presence of major industry players offering integrated wound care solutions. The United States, in particular, leads in terms of innovation and implementation of AI-driven wound management platforms, supported by strong clinical research and reimbursement frameworks.

Europe

Europe stands as the second-largest regional market, fueled by growing awareness of digital wound care technologies and an aging population prone to chronic wounds. Countries such as Germany, the UK, and France are leading in the adoption of smart wound assessment tools in hospital and homecare settings. Government support for digital transformation in healthcare and increasing pressure to reduce hospital readmissions are key factors promoting the uptake of these devices.

Asia-Pacific

The Asia-Pacific region is expected to witness the fastest growth during the forecast period, owing to a rapidly increasing diabetic and elderly population, rising healthcare spending, and greater awareness of advanced wound care solutions. Markets like China, India, Japan, and South Korea are investing heavily in digital health ecosystems, creating new opportunities for manufacturers. However, disparities in infrastructure and access to digital tools between urban and rural areas may present short-term challenges.

Latin America and Middle East & Africa

In Latin America, countries such as Brazil and Mexico are gradually embracing digital wound management as part of broader healthcare modernization efforts. Meanwhile, the Middle East & Africa market is in the early stages of development, with adoption primarily concentrated in urban centers. Growth in these regions is being supported by rising healthcare investments and the increasing burden of chronic wounds, although infrastructure limitations and cost constraints may slow widespread deployment.

Credence Research’s Competitive Landscape Analysis

The Digital Wound Management Devices Market is moderately consolidated, featuring a mix of established medical device manufacturers and emerging digital health innovators. Competition is driven by technological advancements, product differentiation, strategic collaborations, and regional expansion efforts. Key players are focused on enhancing clinical outcomes, improving workflow efficiency, and reducing overall treatment costs through integrated digital platforms.

Leading companies in this space are continuously investing in research and development to introduce next-generation solutions that incorporate artificial intelligence, machine learning, and cloud-based technologies. These innovations enable real-time wound assessment, automated healing progress tracking, and integration with electronic health records (EHRs). Players are also targeting mobile and remote care capabilities to cater to the growing demand for home healthcare and telemedicine.

To maintain a competitive edge, market participants are pursuing strategic mergers, acquisitions, and partnerships. Such collaborations often focus on combining imaging technologies with digital software platforms, expanding product portfolios, or accessing untapped geographic markets. Additionally, companies are emphasizing user-friendly interface designs, clinician training, and regulatory compliance to strengthen adoption rates and customer retention.

The competitive landscape also reveals a growing emphasis on value-based healthcare, with vendors aligning their offerings to support data-driven decision-making and outcome-focused wound care protocols. While large multinational corporations benefit from their broad distribution networks and brand recognition, agile startups and tech-driven companies are carving niches by offering highly specialized, interoperable digital wound care solutions. This dynamic environment encourages continuous innovation and positions the market for sustained competitive activity over the forecast period.

Tailor the report to align with your specific business needs and gain targeted insights. Request https://www.credenceresearch.com/report/assembly-line-solutions-market 

Key Player Analysis

Healogics, LLC.WoundZoomSmith+NephewWoundMatrix, Inc.Healthy.io LtdSwift Medical Inc.eKare, Inc.Joerns Healthcare (digitalMedLab Ltd.)Net Health Systems, Inc.Essity Aktiebolag (publ)3MEntec Health Ltd.The Wound Pros, Inc.MolecuLight Inc.NATROX Wound Care (Inotec AMD Limited.)

 Recent Industry Developments

In February 2024, Perceptive Solutions, Inc. launched WoundZoom PRO, an advanced application designed to streamline wound care management. Featuring non-contact 3D wound measurement technology, the platform is optimized for smart devices and adaptable across various clinical settings. Earlier, in April 2023, Perceptive Solutions formed a strategic partnership with MolecuLight Corp. to integrate the MolecuLightDX point-of-care bacterial imaging device with the WoundZoom cloud-based solution. This collaboration enables clinicians to access bacterial imaging, wound measurement, and digital documentation through a unified system, enhancing diagnostic accuracy and treatment efficiency.In March 2022, Swift Medical introduced Swift Ray 1, an innovative imaging hardware that attaches to smartphone cameras to capture precise clinical data, including for patients with diverse skin tones. This device significantly improves subcutaneous wound visualization and care outcomes.In July 2022, Smith+Nephew launched the WOUND COMPASS Clinical Support App, a comprehensive digital tool supporting wound assessment and clinical decision-making. Similarly, in July 2022, Johnson & Johnson unveiled VELYS Digital Surgery, a digital platform aiding minimally invasive surgeries by offering real-time data and surgical planning tools.Bruin Biometrics’ Provizio SEM Scanner Sensor was made available free of cost in November 2022 to over one million at-home patients in the UK. The device, added to the Drug Tariffs from August to October 2022, detects pressure injury risk early, supporting preventive care.In February 2023, researchers developed the first flexible, stretchable e-bandage capable of accelerating healing by 30%. The bandage delivers electrotherapy directly to the wound site and biodegrades once healing is complete, representing a breakthrough in advanced wound care.In February 2022, ARANZ Medical deployed its Silhouette wound imaging system across U.S. Department of Veterans Affairs (VA) facilities. The platform enhances wound tracking and documentation, contributing to improved patient outcomes nationwide.MolecuLight Corp. further strengthened its market position in June 2022 through a group purchasing agreement with Premier, Inc., giving access to over 4,400 U.S. hospitals. The i:X and DXTM imaging devices also received Premier’s Technology Breakthrough designation, recognizing their impact on wound care innovation.Medtronic made strides in both surgical and structural heart markets. In December 2021, the company launched the Hugo System, a robotic-assisted surgical platform enhancing precision and efficiency in minimally invasive procedures. Earlier, in October 2020, Medtronic partnered with The Foundry to advance transcatheter mitral valve repair and replacement, reinforcing its leadership in the heart valve domain.In October 2021, Essity introduced the Cutimed Wound Navigator, a mobile application that enables clinicians to assess and document wounds digitally, supporting optimal treatment decisions.Despite these advancements, challenges remain. In July 2020, Smith & Nephew reported supply disruptions in its advanced wound care segment due to the COVID-19 pandemic, impacting its Q2 revenue and underscoring the importance of supply chain resilience in healthcare delivery.

Reasons to Purchase this Report:

Gain a comprehensive understanding of the market through qualitative and quantitative analyses, considering both economic and non-economic factors, with segmentation and sub-segmentation details provided in terms of market value (USD Billion).Identify regions and segments expected to experience the fastest growth or dominate the market, with a detailed analysis of geographic consumption patterns and the factors driving or hindering market performance in each region.Stay informed about the competitive environment, with rankings of major players, recent product and service launches, partnerships, business expansions, and acquisitions from the past five years.Access detailed profiles of major market players, including company overviews, insights, product benchmarking, and SWOT analysis, to understand competitive advantages and market positioning.Explore the present and forecasted market landscape, with insights into growth opportunities, market drivers, challenges, and constraints for both developed and emerging regions.Benefit from Porter’s Five Forces analysis and Value Chain insights to evaluate various market perspectives and competitive dynamics.Understand the evolving market scenario, including potential growth opportunities and trends expected in the coming years.

Browse the report and understand how it can benefit your business strategy – https://www.credenceresearch.com/report/digital-wound-management-devices-market

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Electra to Usher in the Next Era of Aviation with Advanced Production Facility in Springfield, Ohio

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$850 million investment in Springfield and Clark County will move Direct Aviation from concept to reality, creating nearly 2,000 jobs and supporting production of up to 800 EL9 Ultra Short aircraft per year

SPRINGFIELD, Ohio, July 21, 2026 /PRNewswire/ — Electra today announced plans to establish its first production facility for the EL9 Ultra Short in the City of Springfield, within Clark County, a major milestone that will bring its nine-passenger hybrid-electric aircraft from development into scaled commercial production.

The initial phase will support capacity for up to 400 aircraft per year, later expanding to up to 800 aircraft per year.

The $850 million investment will create 1,975 new jobs, anchor production of the EL9 Ultra Short, and help meet demand for Direct Aviation, a new category of accessible, point-to-point air mobility. The EL9 Ultra Short is a nine-passenger fixed-wing aircraft that uses hybrid-electric propulsion and blown-lift technology to take off and land in as little as 150 feet. The new facility will be located at AirPark Ohio, adjacent to Springfield-Beckley Municipal Airport.

“Electra is opening a new era of aviation, one where flight is direct, accessible, and closer to the communities it serves,” said Marc Allen, CEO of Electra. “This agreement is the moment that our vision moves from demonstration into reality. In Springfield and Clark County, we found the rare combination this next era requires: a ready site, a skilled workforce, a deep aerospace and defense ecosystem, and state and local leaders with the commitment and vision to build it with us. We are grateful to the City of Springfield, Clark County, and the State of Ohio for welcoming Electra into this community as we prepare to bring the EL9 Ultra Short into production, through certification, and ultimately into service.”

The production facility will ensure Electra remains at the forefront of American global leadership in hybrid-electric aviation, with the EL9 Ultra Short unlocking new markets for commercial advanced air mobility, military logistics, and humanitarian applications. The decision to build in Springfield is a bet on reindustrializing America’s capacity to manufacture next-generation aircraft at scale in the Birthplace of Aviation.

“Ohio is where flight began, and the Dayton-Springfield area has become the national epicenter for advanced air mobility – the place where the next generation of aircraft is being designed, tested, and now built at scale,” said Ohio Governor Mike DeWine. “Electra’s decision to bring nearly 2,000 new jobs to Springfield will be transformative for Clark County, demonstrating Ohio’s unique ability to lead America into aviation’s next era.” 

Electra selected the site following a year-long competitive national site-selection process that evaluated more than 140 potential locations. Criteria included workforce availability, infrastructure readiness, long-term expansion capacity, state and local partnership, incentives, and proximity to the aerospace, defense, and advanced manufacturing talent needed to support EL9 Ultra Short production.

The new 96-acre facility will house production of the EL9 Ultra Short. The initial phase of development will start immediately with design, while construction of the facility will begin next year. The initial phase will support capacity for up to 400 aircraft per year. A second phase of development will expand capacity to up to 800 aircraft per year.

The company chose the Dayton-Springfield region because it offers advanced air mobility (AAM) companies a combination of assets found nowhere else in the country. Springfield-Beckley Municipal Airport is home to the National Advanced Air Mobility Center of Excellence (NAAMCE) and SkyVision, the FAA-approved ground-based detect-and-avoid system that enables beyond visual line of sight (BVLOS) flight testing in unrestricted airspace, which allows companies to move from concept to flight test faster than anywhere else in the nation. That infrastructure is complemented by growing AAM production near Dayton International Airport and the region’s proximity to Wright-Patterson Air Force Base and the Air Force Research Laboratory (AFRL), which together form one of the deepest concentrations of aerospace R&D talent in the world.

“JobsOhio and our partners at the Dayton Development Coalition are proud to welcome Electra’s first point-to-point hybrid-electric aircraft production facility to Ohio,” said JobsOhio President and CEO J.P. Nauseef. “This investment builds on years of collaboration to establish Springfield-Beckley Municipal Airport as a national hub for advanced air mobility. Here, Electra will have direct access to the nation’s premier AAM testing infrastructure, a proven aerospace workforce, a deep manufacturing supply chain and the unmatched research capabilities of Wright-Patterson Air Force Base—an ideal environment to innovate, scale and grow for decades to come.”

Electra’s investment will be supported by state and local incentives tied to job creation, workforce development, infrastructure readiness, and long-term manufacturing growth. An incentive package is being designed to support hundreds of new Ohio jobs over the coming years as Electra scales production in the region. The project will pursue a Job Creation Tax Credit from the Ohio Department of Development at a future Tax Credit Authority meeting. JobsOhio also plans to provide assistance with the project, which will be made public after a final agreement is executed.

The EL9 Ultra Short is designed to unlock Direct Aviation, a new category of air travel that connects people and places directly through point-to-point mobility using novel access points such as parking lots, barges, and sports fields. The aircraft is designed around Electra’s Rule of Six: access, quiet operations, payload, range, safety, and affordability. In 2025, the company secured $115 million in Series B funding to support pre-production and certification of the EL9 Ultra Short, led by Prysm Capital.

“This is a landmark moment for Electra and for aviation,” said Jay Park, Co-Founder and Managing Partner at Prysm Capital. “Building a new category of aircraft takes conviction at every step, and the Electra team has delivered on each one. We’re proud to be their partner as the EL9 goes from proving what’s possible to producing it.”

In May, Electra released the Direct Aviation Market Outlook, a nationwide analysis of U.S.-based travel. At the heart of this market are trips between 50 and 250 flying miles, where demand is both concentrated and largely unserved by existing aviation. Electra’s analysis found that meeting this demand will require between 12,000 and 16,000 aircraft between 2030 and 2040.

This announcement follows Electra and Safran Helicopter Engines’ life-of-program agreement to develop and produce the TG600 turbogenerator that will power the EL9 Ultra Short. The agreement includes an initial order for 250 units and establishes Safran’s TG600 as the core of the EL9’s hybrid-electric propulsion system.

Earlier this year, Electra and Bristow Group Inc. announced a Pre-Delivery Payment agreement with non-refundable deposits and binding terms and conditions aligned to commercial aviation industry standards, subject to aircraft certification, securing the first delivery slot for the EL9 Ultra Short hybrid-electric aircraft with the TG600.

Electra has also submitted the EL9 Ultra Short aircraft to the Federal Aviation Administration (FAA) for Part 23 type certification and anticipates a first flight scheduled for late 2027 or early 2028. The FAA recently closed the G-1 Issue Paper, formally establishing the certification basis for Electra’s EL9 Ultra Short aircraft and advancing the company toward the next phase of type certification.

“The first era of aviation began right here in the greater Dayton region,” Allen said. “It is fitting that aviation’s next era will be built here too — in Springfield and Clark County — where Electra will produce groundbreaking aircraft designed to transform the way people travel.”

Electra will also continue to operate parts of its business from its Manassas, Virginia facilities. Together, the two campuses will give Electra the structure, talent, and operating model needed to fuel its next chapter of growth. To learn more, visit electra.aero/ohiojobs.

About Electra

Electra.aero, Inc. (Electra) is an advanced air mobility (AAM) company building hybrid-electric Ultra Short airplanes that deliver unprecedented performance advantages to fly people and cargo seamlessly without airports, emissions, or noise. With the EL9 Ultra Short, Electra is pioneering Direct Aviation, the next level of connectivity that brings air travel closer to where we live, work, and play. Electra’s Ultra Short technology delivers 2.5x the payload and 10x longer range with 70% lower operating costs than helicopters and eVTOLs with significantly greater safety and far less certification risk.

Electra’s team includes some of the most respected and successful entrepreneurs and engineers in novel aircraft design, with over 40 prior aircraft successfully developed and/or certified. Lockheed Martin Ventures, Honeywell, and Safran are among Electra’s strategic investors along with Prysm Capital, the Virginia Innovation Partnership Corporation (VIPC), and other private investors. Electra’s contracted customers include the U.S. Air Force, the U.S. Army, the U.S. Navy, and NASA along with over 2,200 letters of intent from 60+ commercial customers, including both airlines and helicopter operators.

About JobsOhio 
JobsOhio, Ohio’s private nonprofit economic development corporation, enhances company growth and personnel development through business attraction, retention, and expansion across 10 competitive industry sectors. With a team of seasoned professionals, JobsOhio utilizes a comprehensive network to foster talent production in targeted industries and attract talent through Find Your Ohio. Collaborating with seven regional partners, including Dayton Development Coalition, Lake to River Economic Development, Ohio Southeast Economic Development, One Columbus, REDI Cincinnati, Regional Growth Partnership, and Team NEO. JobsOhio delivers world-class customer service to provide companies with a competitive advantage. In 2026 Ohio was named CNBC’s Top State for Business. Learn more at www.jobsohio.com. Follow us on LinkedIn, X , Instagram, and Facebook

Media Contacts:

Matthew Bowen
Vrge Strategies
matthew@vrge.us 

Matt Englehart
Englehart@jobsOhio.com
614-300-1152

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Introducing Harness Agent DLC: New Capabilities for the AI Agent Development Lifecycle

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Enterprises can now ship AI agents with the same governance, testing, and security they already trust for application code

SAN FRANCISCO, July 21, 2026 /PRNewswire/ — Harness, the AI Software Delivery Platform™ company, today announced it is extending its platform to cover the full AI Agent Development Lifecycle (DLC), giving enterprises a single set of pipelines and controls to build, test, deploy, and run agents the same way they already ship everything else.

Every enterprise is building AI agents, but most can’t get them past internal pilots or proofs of concept. According to Gartner®, “Only 8% of organizations have agentic AI in production.” The software delivery lifecycle enterprises trust for shipping application code hasn’t extended to agents yet, trapping the ROI of internal AI investments. Real innovation arrives once a company can run an agent live with the same trust and confidence it has in the rest of its software.

“When we started Harness, the vision was a safety harness for code,” said Jyoti Bansal, co-founder and CEO of Harness. “Until recently, that meant application code. Today it also means agentic code, written across engineering, product, sales, and support teams alike, each building agents for their own workflows. Everything you’ve done for software delivery over the last decade — governance, orchestration, security, testing — you can now do for agents in the same platform.”

Why AI agents break the traditional software delivery lifecycle

Traditional software works because it’s predictable. Application code is deterministic. Run the same test against the same code twice, and it produces the same result both times.

Agents don’t work that way: an agent’s underlying language model decides how to complete a task, and the same agent, given the same input, can choose a different tool or take a different action from one run to the next. A test that passes once offers no guarantee it will pass the next time. Incidents stop being reproducible on demand, which means the standard playbook for catching and fixing bugs doesn’t transfer either.

The stakes rise with the size of the business. A rogue agent can expose customer data, violate a compliance policy, or take an action nobody approved. Enterprises need a way to answer for what their agents are doing, and the traditional software delivery lifecycle was never built to give them one.

New Harness Agent DLC products and capabilities

Agent DLC closes the gap between building an agent and delivering it safely to production. Today’s launch includes five new products and capabilities spanning testing, deployment, operations, and governance:

Harness AI Evals make agent quality measurable, letting teams define eval datasets, wire up scoring functions, and set quality gates that automatically catch regressions whenever an agent or model changes.Agent Deployments extend the canary releases, approvals, and OPA guardrails that Harness already applies to Kubernetes deployments to managed agent runtimes like Amazon Bedrock AgentCore and Google’s Agent Runtime. Agents now ship through existing pipelines instead of a separate cloud-specific workflow.AI Configs support the release and management of prompts and model changes at runtime, backed by the same feature flagging infrastructure that already manages code releases. Teams can test what performs best and roll back instantly, without redeploying.AI Asset Catalog automatically discovers every agent, skill, and plugin built across an organization’s repositories and links each to an owner, so nothing ships or runs unaccounted for.Harness AgentTrace records what happens during a single agent run and across a full multi-step session, showing which path an agent took, where it slowed down, and how different models or prompts affect the outcome. Harness is also open-sourcing the foundational components behind AgentTrace, including harness-sdk and harness-evals, so developers can bring the same tracing primitives into their own AI applications.

In addition, existing Harness products already extend to agents without requiring any changes: Continuous Integration builds them like any other service, Artifact Registry tracks their versions and dependencies, AI Test Automation validates their responses in plain English criteria, and AI Cost Management extends spend visibility to every agent and model.

Securing the Agent DLC

Agents choose their own approach and path to get there, so their behavior is hard to predict and just as hard to secure. They expand their own attack surface by connecting to tools and APIs, spawning sub-agents, and inheriting trust from every model they touch. Static scans were never designed for this kind of risk. Harness is launching new security capabilities to close that gap.

Shift-left: constrain what agents can do before they ship.

Primitive Scanning flags misconfigurations in agent skills, prompts, and models.AIBOM captures every model, tool, and dependency an agent was built with.AI Testing runs agents against adversarial inputs and the OWASP Top 10 for LLMs.

Shield-right: enforce policy and maintain visibility once they’re live.

Agent Discovery and Posture Management continuously surfaces agents as they’re invoked, maps how they connect and orchestrate work, and assesses their posture across the organization.AI Firewall enforces policy in real time against prompt injection, tool misuse, and data exfiltration.

Together, these capabilities give Agent DLC a single audit trail from development to production.

Built on the Harness platform

Harness built context and intelligence directly into the platform with the Software Delivery Knowledge Graph, which captures and connects data from every stage of the delivery lifecycle, now spanning both applications and agents. Organizations relying on siloed tools don’t have that same connected view.

In June 2026, Harness introduced Autonomous Worker Agents, a platform for building and safely running AI agents inside software delivery pipelines. Worker Agents run as governed steps within those pipelines, covered by the same controls Harness already applies to every deployment.

Agent DLC extends that same context and governance across the full agent lifecycle. The pipelines, policies, approvals, and evidence that already apply to an organization’s code now apply to its agents too, so eval gates, deployment approvals, and security checks run as stages within a single pipeline, from the moment an agent is created through everything it does afterward.

Availability

Harness Agent DLC capabilities are rolling out now to Harness customers. For a full breakdown of what’s included at each stage of the lifecycle, visit https://www.harness.io/blog/introducing-harness-agent-dlc.

Gartner, Emerging Market Quadrant for AI Agent Development Platforms — Established Vendors, 8 June 2026. GARTNER is a trademark of Gartner, Inc. and/or its affiliates

About Harness

Harness is the AI Software Delivery Platform™ company, enabling engineering teams to build, test, and deliver software faster and more securely. Powered by Harness AI and the Software Delivery Knowledge Graph, the platform brings intelligent automation to every stage of the software delivery lifecycle after code — removing toil and freeing developers from manual, repetitive work. Companies like United Airlines, Morningstar, and Choice Hotels use Harness to accelerate releases by up to 75%, cut cloud costs by 60%, and achieve 10x efficiency across DevOps. Based in San Francisco, Harness is backed by Goldman Sachs, Menlo Ventures, IVP, Unusual Ventures, and Citi Ventures.

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VIVIFY Technology Hosts Governor Candidate Byron Donalds at South Florida Headquarters

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Delray Beach company demonstrates hydrogen energy platforms built to address Florida’s hurricane recovery, infrastructure growth, and data center demand

DELRAY BEACH, Fla., July 21, 2026 /PRNewswire/ — VIVIFY Technology today welcomed Florida Governor Candidate Byron Donalds to the company’s South Florida headquarters for a firsthand demonstration of its deployed hydrogen energy platforms: the HOG™ (Hydrogen Oxygen Generator), the CAT™ (Clean Air Technology) emissions control system, and the Flying Pig™, VIVIFY’s 1MW containerized hydrogen power unit.

The visit focused on the direct applications of VIVIFY’s technology to Florida’s most pressing infrastructure challenges: disaster recovery and hurricane resilience, power capacity for the state’s rapidly growing communities, and dedicated behind-the-meter energy for the data center build-out accelerating across the state.

The Flying Pig™ — a self-contained, 1MW hydrogen power system engineered for rapid deployment — is designed to be transported and operational within hours of arriving on site. In a post-storm environment, that means restoring critical power to Florida communities without waiting on grid repair timelines that can stretch for days or weeks.

“We didn’t build VIVIFY in Florida by accident,” said Jason Herring, Founder and CEO of VIVIFY Technology. “Hurricane season, the data center boom, communities being built faster than the grid can reach them: these are Florida realities. We built the answer here because the problem is here.”

Florida’s population growth has created compounding pressure on transmission infrastructure. New master-planned communities, industrial corridors, and data center campuses across the state are running into the same constraint: available grid capacity cannot keep pace with announced development. VIVIFY’s on-site hydrogen energy systems are engineered to close that gap, delivering dedicated power on the developer’s schedule rather than the utility’s.

“Every new community, every new data center, every growth corridor in this state runs into the same wall,” Herring said. “The grid can’t keep up. We built the technology that lets Florida build without waiting.”

Candidate Donalds toured the facility and engaged directly with VIVIFY’s engineering team and deployed systems.

“Hurricane recovery, new community development, the data center wave: these are the issues that define Florida’s future,” Candidate Donalds said. “The technology I saw today addresses every one of them.”

About VIVIFY Technology

VIVIFY Technology is a hydrogen energy company headquartered in South Florida. The company designs and develops hydrogen-based energy platforms — including its flagship Hydrogen Oxygen Generator™ (HOG™), the Clean Air Technology™ (CAT™) emissions control system, and the Flying Pig™ containerized power unit — engineered to deliver dependable, dedicated power for the most demanding infrastructure environments in operation today. Learn more at vivify-technology.com.

Forward-Looking Statements: This release contains forward-looking statements regarding VIVIFY Technology’s products, platforms, and intended performance. Forward-looking statements are subject to inherent uncertainty and reflect the company’s current expectations. Actual results may differ materially. The company undertakes no obligation to update any forward-looking statement except as required by law.

Media Contact
Ashley Stevenson, Chief Marketing Officer
ashley@vivify-technology.com

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SOURCE VIVIFY

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