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Smart IOPS and H3 Platform Unveil AI Compute Storage Solution Designed to Deliver Up to One Billion Random IOPS

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Smart IOPS Unobtanium™ T50 SSD and H3 Platform’s GPU-centric appliance bring compute, networking and ultra-high-IOPS flash together for NVIDIA Storage-Next™ and SCADA-enabled AI infrastructure

MILPITAS, Calif. and NEW TAIPEI CITY, Taiwan, Aug. 6, 2026 /PRNewswire/ — Smart IOPS, Inc., a provider of high-performance enterprise storage solutions, and H3 Platform, a pioneer in AI and composable IT infrastructure, today announced world’s first one billion IOPS capable AI Compute Storage solution. The solution integrates Smart IOPS Unobtanium™ T50 solid-state device with a new H3 Platform appliance built for the recently announced NVIDIA AI infrastructure, NVIDIA networking technologies.

The solution is being engineered for the emerging class of data-intensive AI Inference applications that require GPUs to access very large datasets through fine-grained, highly parallel I/O. It is designed to support NVIDIA’s Storage-Next initiative and the NVIDIA SCADA (Scaled Accelerated Data Access) programming model. NVIDIA Storage-Next and NVIDIA SCADA enable GPU-initiated storage access for workloads whose working sets extend beyond local GPU memory. By shortening the path between GPU compute and NVMe storage, the companies aim to reduce CPU control-path overhead, keep accelerators supplied with data and improve infrastructure utilization for AI inference and data analytics.

At the center of the announcement is the Smart IOPS AI Compute Storage™ or ACS device, Unobtanium™ T50. The PCIe Gen6 x4, NVMe 2.0 ACS device in an E3.S form factor is slated to deliver up to 50 million random-read IOPS and up to 10 million random-write IOPS at a highly granular 512-byte block size, together with up to 28 GB/s sequential reads and 24 GB/s sequential writes. Four such T50 devices can provide an aggregate device-level target of up to 200 million random-read IOPS—to align with the I/O capability of next-generation PCIe Gen6 x16 GPUs like NVIDIA Rubin. Actual system performance will depend on workload, software, topology, configuration and other system-level factors.

A pathbreaking attribute of the Smart IOPS TruRandom® controller architecture is its use of broadly available TLC NANDs operated in pseudo-SLC mode to deliver the extreme IOPS. Because the standard TLC NAND can be sourced from multiple qualified suppliers, Smart IOPS ACS device benefits from the flash industry’s manufacturing scale, supply-chain resilience, and cost efficiencies. ACS devices, however, can also support specialized low-latency NANDs, where a workload or customer requirement is justified over the cost.

H3 Platform is developing an air-cooled appliance that brings these storage devices into a deployable GPU-centric system. The planned platform combines four NVIDIA RTX PRO 6000 Blackwell Server Edition GPUs, four NVIDIA ConnectX-8 and 20 E3.S 2T storage slots, each designed to support up to 60 watts. This allows up to a billion IOPS to be delivered from 20 storage slots each supporting up to 50 million IOPS. The appliance is designed to provide balanced connectivity across compute, networking, and storage resources, giving customers a practical platform for evaluating and deploying GPU-initiated, small-block storage workloads in production environments.

“AI infrastructure is entering a phase in which storage must behave less like a passive repository and more like an active extension of the compute fabric,” said Ashutosh Das, CEO of Smart IOPS. “With the Unobtanium™ T50 ACS device, our goal is to deliver 50 million IOPS in a compact PCIe Gen6 x4 E3.S form factor using standard TLC NAND. This approach combines extreme performance with flash-industry’s economies of scale making the ACS devices suitable for large scale deployment. H3 Platform complements that innovation with the system architecture needed to place high-IOPS storage close to NVIDIA AI infrastructure and networking.”

The planned H3 Platform delivers the highest IOPS performance ever achieved in the smallest datacenter footprint by integrating Smart IOPS ACS devices across 20 E3.S slots. The Air-cooled appliance design combines GPUs, high-speed network cards, and E3.S storage device slots that support up to 60W of power and thermal requirement per slot to handle the demands of high-performance storage devices like Smart IOPS ACS.

“The next wave of AI systems must be designed as an integrated data path—not as disconnected compute, network and storage components,” said Brian Pan, CEO of H3 Platform. “Our appliance is being developed to combine NVIDIA accelerated computing and networking with 20 high-power E3.S slots in an efficient, air-cooled platform. Smart IOPS’ ACS device is a strong complement to this design, helping us turn the concept of GPU-accelerated memory/storage into a system customers can evaluate, optimize and deploy.”

Why High IOPS Matters for AI Infrastructure

AI workloads are increasingly combining intensive computation with irregular, data-dependent access patterns. Graph neural networks, vector search, recommendation systems, retrieval-augmented generation, embedding stores and other sparse analytics can generate large numbers of small, random requests from many GPU threads. Conventional CPU-orchestrated I/O can add synchronization, queueing and control-path overhead, while bandwidth-oriented SSD specifications alone may not describe how well a system serves these fine-grained accesses.

Storage-Next and SCADA address this shift by enabling GPUs to initiate and orchestrate storage activity at scale. High-IOPS, low-latency SSDs are relevant because they can service more concurrent fine-grained requests, helping use PCIe bandwidth efficiently and reducing the risk that expensive GPU resources wait for data. The combined Smart IOPS and H3 Platform solution is intended to provide an integrated environment for this new storage architecture.

Smart IOPS ACS — Unobtanium™ T50

Attribute

Preliminary specification

Random read

Up to 50 million IOPS

Random write

Up to 10 million IOPS

Block size

512 bytes

Sequential read

Up to 28 GB/s

Sequential write

Up to 24 GB/s

Capacity

9 TB, 18 TB and 36 TB

Media

TLC NAND operated in pseudo-SLC mode; support for
specialized low-latency SLC NANDs

Form factor

E3.S 2T

Interface

PCIe Gen6 x4; NVMe 2.0

Planned availability

Evaluation samples: Q1 2027; production: Q2 2027

Preliminary specifications; subject to change without notice.

H3 Platform High IOPS Appliance

Attribute

Preliminary specification

GPU

4 × NVIDIA RTX PRO 6000 Blackwell Server Edition GPUs

Networking

4 × NVIDIA ConnectX-8

SSD bays

20 × E3.S 2T slots for high-IOPS SSDs

Per-slot power

Up to 60 W per E3.S slot

Cooling

Air-cooled

Planned

 availability

Evaluation systems: Q1 2027; production: Q2 2027

 

Preliminary specifications; subject to change without notice.

Availability

Smart IOPS and H3 Platform expect evaluation samples and systems to be available in the first quarter of 2027, with production availability planned for the second quarter of 2027. Product specifications, configurations and schedules are preliminary and may change without notice. Customer qualification, ecosystem software readiness and NVIDIA validation or approval are separate processes and are not implied by this announcement.

About Smart IOPS

Smart IOPS provides enterprise-class SSD solutions designed for the extreme demands of AI-driven and data-intensive workloads. The company’s SSD controller architecture is powered by TruRandom® technology to deliver high random-I/O performance, bandwidth and consistent quality of service. Smart IOPS solutions help cloud service providers, high-performance computing environments and enterprise data centers address storage I/O bottlenecks across AI/ML, analytics, databases, caching and other demanding applications. For more information, visit https://www.smartiops.com

About H3 Platform

Founded in 2014 and headquartered in New Taipei City, Taiwan, H3 Platform is a global pioneer in AI and composable IT infrastructure solutions. With more than a decade of expertise in PCIe switch fabric and CXL technologies, H3 Platform develops solutions for enterprise memory scaling, resource allocation and composable infrastructure. The company is advancing GPU-accelerated memory and storage architectures that establish direct, GPU-centric data paths, helping AI-native data centers improve accelerator utilization, scale demanding workloads and reduce total cost of ownership. For more information, visit https://www.h3platform.com

Forward-Looking Statements

This press release contains forward-looking statements regarding products under development, expected performance, interoperability, customer benefits and availability. Words such as “aim,” “design,” “develop,” “expect,” “intend,” “plan,” “target,” “will” and similar expressions identify forward-looking statements. These statements are based on current expectations and assumptions and are subject to risks and uncertainties that could cause actual results to differ materially, including development and validation results, component and software availability, ecosystem readiness, customer qualification, manufacturing schedules and changes in market requirements. Smart IOPS and H3 Platform undertake no obligation to update these statements except as required by law.

Trademarks

NVMe is a trademark of NVM Express, Inc. TruRandom® and Unobtanium™ are trademarks and/or claimed marks of Smart IOPS, Inc. All other company names, product names and service names may be trademarks of their respective owners.

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SOURCE Smart IOPS, Inc.; H3 Platform

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Chainguard Named a CVE Numbering Authority, Advancing Open Source Vulnerability Disclosure

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Authorization enables Chainguard to assign CVEs for qualifying open source vulnerabilities processed through Athena, helping protect open source software from AI attacks

NEW YORK, Sept. 22, 2026 /PRNewswire/ — Chainguard, the trusted source for open source, today announced that it has been authorized by the Common Vulnerabilities and Exposures (CVE®) Program as a CVE Numbering Authority (CNA). The mission of the CVE Program is to identify, define, and catalog publicly disclosed cybersecurity vulnerabilities. As a CNA, Chainguard can assign CVE identifiers and publish CVE Records for qualifying vulnerabilities. The authorization is scoped to include open source vulnerabilities processed through the Athena coalition, when upstream maintainers have already fixed the flaw without an identifier, no maintainer remains to assign one, or no more specific CNA covers the project.

This milestone underscores Chainguard’s deep commitment to transparent, coordinated vulnerability disclosure and protecting open source software from AI attacks. Frontier AI models are surfacing latent vulnerabilities in widely used open source software that traditional security tools and years of expert review failed to detect. As AI compresses the time between discovery and exploitation, vulnerabilities without CVE identifiers may remain invisible to the scanners, databases, and compliance systems organizations rely on to identify and prioritize risk.

“AI-driven zero-day discovery is pushing traditional approaches to vulnerability handling and disclosure to the breaking point,” said Quincy Castro, Chief Information Security Officer, Chainguard. “Through Athena, we are working to get fixes as quickly as possible into as many hands as possible. Becoming a CNA allows us to communicate about vulnerability fixes in a ‘language’ familiar to many organizations and open source maintainers.”

The designation strengthens Athena, Chainguard’s industry coalition for the orchestrated defense of open source software, by providing precise affected and fixed version ranges and technical details that help organizations assess their exposure, reduce false positives, and take appropriate action. Chainguard’s CVE Records also defer to maintainers and project-specific CNAs wherever they exist. With the help of coalition members and mitigation partners, such as Akamai, BNY, Cisco, Cloudflare, JPMorganChase, Kyndryl, Morgan Stanley, and Upwind, Athena validates AI-discovered vulnerabilities, and develops fixes, then partners with Akrites to carry vulnerabilities through disclosure and toward durable upstream remediation.

To learn more about how Chainguard advances open source vulnerability discovery through Athena, visit chainguard.dev/athena.

About Chainguard

Chainguard is the trusted source for open source. By providing engineers and AI agents with hardened, trusted, and production-ready artifacts, Chainguard helps organizations prevent AI supply chain attacks, increase engineering velocity while reducing toil, and maintain continuous compliance. Customers include Fortune 500 enterprises and global industry leaders, including Anduril, Canva, DocuSign, OpenAI, Public Storage, Snap Inc., and Snowflake. Chainguard is venture-backed by leading investors, including Amplify, IVP, Kleiner Perkins, Lightspeed Venture Partners, Mantis VC, Redpoint Ventures, Sequoia Capital, and Spark Capital.  For more information, visit: https://www.chainguard.dev/ 

Brittany Hendrickson, press@chainguard.dev 

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SOURCE Chainguard

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Coveo announces its intention to repurchase for cancellation 2,615,859 subordinate voting shares held by a subsidiary of Qatar Investment Authority

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MONTREAL, Sept. 22, 2026 /CNW/ — Coveo (“Coveo” or the “Company”) (TSX: CVO), the leader in AI-Relevance, delivering best-in-class search and generative experiences, today announced that it has entered into an agreement with Al-Rayyan Holding LLC (“Al-Rayyan”), a wholly-owned subsidiary of Qatar Investment Authority (“QIA”), to repurchase for cancellation 2,615,859 Subordinate Voting Shares of Coveo (“SVS”) held by Al-Rayyan (the “Repurchase”) immediately following the conversion by Al-Rayyan of an equivalent number of Multiple Voting Shares of Coveo (“MVS”), for a total repurchase price of approximately C$9,809,471. In addition, Al-Rayyan will pay Coveo a transaction fee.

The Repurchase will be completed at a price of $3.75 per SVS, which represents a discount of 10.5% on the closing price of the SVS on the Toronto Stock Exchange (“TSX”) on September 22, 2026. The purchase price will be paid using cash on hand.

In a separate concurrent transaction (the “Brokered Sale” and, together with the Repurchase, the “Transactions”), Al-Rayyan intends to dispose of an additional 4,800,000 SVS for aggregate consideration of $18,000,000, immediately following the conversion by Al-Rayyan of an equivalent number of MVS, through a separate prospectus-exempt bought deal block trade led by RBC Dominion Securities Inc. (“RBC”). In addition, Al-Rayyan will pay RBC a commission. Completion of the Repurchase is conditional upon completion of the Brokered Sale. Upon completion of the Transactions, Al-Rayyan will cease to hold any equity interest in Coveo.

The board of directors of Coveo (the “Board”) approved the Repurchase after considering, among other factors, the Company’s financial position and capital requirements and the terms of the Repurchase. The Board determined that the Repurchase represents an efficient use of excess capital, in addition to being immediately accretive to the Company’s shareholders. The Transactions also facilitate an orderly exit of Al-Rayyan’s investment in Coveo, and are expected to enhance trading liquidity by increasing the Company’s public float. The Repurchase demonstrates Coveo’s conviction in its business and the Board’s strong belief that Coveo’s SVS remain undervalued.

The Repurchase constitutes a “related party transaction” within the meaning of Regulation 61-101 Protection of Minority Security Holders in Special Transactions (“Regulation 61-101”) as Al-Rayyan is a “related party” of the Company within the meaning of Regulation 61-101. The Company is relying on the exemptions from the formal valuation and minority shareholder approval requirements under Regulation 61-101 on the basis that the fair market value of the SVS being repurchased and the consideration to be received by Al-Rayyan in respect of the Repurchase do not exceed 25% of the Company’s market capitalization determined in accordance with sections 5.5(a) and 5.7(1)(a) of Regulation 61-101, respectively. Closing of the Transactions is expected to occur on or before September 24, 2026, which is less than 21 days from the date hereof. Such shorter period is consistent with market practice and the Company believes is reasonable and necessary in the circumstances as it wishes to complete the Transactions in an expeditious manner.

Early Warning Disclosure

Prior to the Transactions, QIA, through Al-Rayyan, had beneficial ownership of, or control and direction over, 7,415,859 MVS, representing approximately 18.5% of the issued and outstanding MVS on an undiluted basis and approximately 16.4% of the aggregate voting rights associated with the issued and outstanding MVS and SVS. Immediately prior to the Transactions, QIA converted such MVS into 7,415,859 SVS, representing approximately 12.2% of the issued and outstanding SVS on an undiluted basis and approximately 1.9% of the aggregate voting rights associated with the issued and outstanding MVS and SVS. QIA has caused Al-Rayyan to undertake the Transactions to monetize QIA’s investment in Coveo.

This press release and QIA’s corresponding early warning report, which is expected to be filed on SEDAR+ in the near term, constitutes the required disclosure pursuant to pursuant to National Instrument 62-103 – The Early Warning System and Related Take-Over Bid and Insider Reporting Issues.

QIA’s head office is located at Ooredoo Tower (Building 14), Al Dafna Street (Street 801), Al Dafna (Zone 61), Doha, Qatar. Al-Rayyan exists under the laws of Qatar. Coveo’s head office is located at 1100 Av. Des Canadiens-de-Montréal, Suite 401, Montréal, Quebec, Canada.

Forward-Looking Information

This press release contains “forward-looking information” and “forward-looking statements” within the meaning of applicable securities laws, including statements relating to the Transactions (including with respect to the timing of settlement, completion and anticipated benefits thereof), and other statements that are not historical facts (collectively, “forward-looking information”). This forward-looking information is identified by the use of terms and phrases such as “may”, “would”, “should”, “could”, “might”, “will”, “achieve”, “occur”, “expect”, “intend”, “estimate”, “anticipate”, “plan”, “foresee”, “believe”, “continue”, “target”, “opportunity”, “strategy”, “scheduled”, “outlook”, “forecast”, “projection”, or “prospect”, the negative of these terms and similar terminology, including references to assumptions, although not all forward-looking information contains these terms and phrases. In addition, any statements that refer to expectations, intentions, projections, or other characterizations of future events or circumstances contain forward-looking information. Statements containing forward-looking information are not historical facts but instead represent management’s expectations, estimates, and projections regarding future events or circumstances.

Forward-looking information is necessarily based on a number of opinions, estimates, and assumptions that we considered appropriate and reasonable as of the date such statements are made. Although the forward-looking information contained herein is based upon what we believe are reasonable assumptions, actual results may vary from the forward-looking information contained herein. Forward-looking information is subject to known and unknown risks, uncertainties, and other factors, many of which are beyond our control, that may cause the actual results, level of activity, performance, or achievements to be materially different from those expressed or implied by such forward-looking information, including but not limited to macro-economic uncertainties and the risk factors described under “Risk Factors” in the Company’s most recently filed Annual Information Form available under our profile on SEDAR+ at www.sedarplus.ca. There can be no assurance that such forward-looking information will prove to be accurate, as actual results and future events could differ materially from those anticipated in such information. Accordingly, readers should not place undue reliance on forward-looking information, which speaks only as of the date made. Moreover, we operate in a very competitive and rapidly changing environment. Although we have attempted to identify important risk factors that could cause actual results to differ materially from those contained in forward- looking information, there may be other risk factors not presently known to us or that we presently believe are not material that could also cause actual results or future events to differ materially from those expressed in such forward-looking information.

You should not rely on this forward-looking information, as actual outcomes and results may differ materially from those contemplated by this forward-looking information as a result of such risks and uncertainties. Except as required by law, we do not assume any obligation to update or revise any forward-looking information, whether as a result of new information, future events, or otherwise, after the date on which the statements are made or to reflect the occurrence of unanticipated events.

About Coveo

Coveo brings superior AI-Relevance to every point-of-experience, transforming how enterprises connect with their customers and employees to maximize business outcomes.

Relevance is about moving from person to person, the degree to which the enterprise-wide content, products, recommendations, and advice presented to a person online aligns easily with their context, needs, preferences, behavior and intent, setting the competitive experience gold standard. Every person’s journey is unique, and only AI can solve the complexity of tailoring experiences across massive, diverse audiences and large volumes and variety of content and products.

Stay up to date on the latest Coveo news and content by subscribing to the Coveo blog, and following Coveo on LinkedIn and YouTube.

SOURCE Coveo Solutions Inc.

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OxiWear and Alfardan Medical with Northwestern Medicine (AMNM) Announce Exclusive Distribution Partnership in Qatar

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Partnership marks an important step in OxiWear’s international expansion and growing presence in the Middle East

ARLINGTON, Va. and DOHA, Qatar, Sept. 22, 2026 /PRNewswire/ — OxiWear Inc., a wearable technology company focused on continuous physiological measurements, today announced an exclusive distribution partnership with Alfardan Medical with Northwestern Medicine (AMNM) in Qatar.

The partnership brings together OxiWear’s wearable measurement technology with AMNM’s established presence, local expertise, and network in Qatar, supporting OxiWear’s continued expansion across the Middle East.

The partnership marks another milestone in OxiWear’s international growth as the company continues to expand its technology and build strategic relationships across the United States and international markets.

“Qatar has built an incredible ecosystem around technology and innovation, and we are excited to partner with AMNM as we continue expanding OxiWear internationally,” said Shavini Fernando, Founder and CEO of OxiWear. “Having a strong local partner that understands the market and shares our long-term vision is incredibly important to us. We see significant opportunities for OxiWear in Qatar and across the region, and we look forward to working closely with Dr. Abdulla and the AMNM team to build that presence.”

Under the partnership, the organizations will collaborate on distribution, market development, customer engagement, and opportunities for OxiWear across Qatar.

“We are pleased to partner with OxiWear and support the company’s expansion into Qatar,” said Dr. Abdulla Al-Ansari, CEO of AMNM. “Innovation and the introduction of new technologies are important to the continued development of Qatar’s ecosystem. OxiWear’s approach to continuous physiological measurements presents exciting opportunities across a range of applications, and we look forward to working together to establish and grow its presence in Qatar.”

The partnership is part of OxiWear’s broader international expansion strategy and reflects the company’s focus on establishing strong local relationships as it enters and develops new markets.

About OxiWear: OxiWear Inc. is a wearable technology company developing solutions for continuous physiological measurements. Through its wearable technology and connected platform, OxiWear is building new ways to capture physiological data continuously across a range of environments and applications. Headquartered in Arlington, Virginia, OxiWear works with organizations and partners in the United States and internationally across research, performance, industrial, and other markets.

For more information, visit oxiwear.com.

Alfardan Medical with Northwestern Medicine (AMNM) is a multi-specialty private day-care surgery center located in Lusail, Qatar, operating in affiliation with Northwestern Medicine, the Chicago-based academic health system. AMNM brings together internationally trained physicians, advanced surgical facilities, and Northwestern Medicine’s clinical standards to deliver high-quality, patient-centered outpatient care across a wide range of specialties. Committed to innovation and clinical excellence, AMNM works to introduce new medical technologies and best practices that advance healthcare in Qatar and the wider region.

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SOURCE OxiWear

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