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Correction: QTREX Establishes Cryogenic Interconnect Capacity, More Than Four Times the Highest Publicly Disclosed Industry Benchmark

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QTREX Quantum (Nasdaq: QTEX) announced it will publicly unveil an ultra-high-density cryogenic interconnect architecture at IEEE Quantum Week 2026 in Toronto, held September 13–18, 2026. The architecture is designed to support 17,280 coaxial lines per cryogenic stage in full-scale commercial systems.

QTREX will present a scaled physical demonstrator reproducing this density across multiple dilution refrigerator stages and establishing its intended production architecture. According to QTREX, no other publicly disclosed interconnect architecture for dilution refrigerators reaches even half this capacity. Structured configuration programs will launch after the event to translate customer requirements into engineered systems and commercial proposals.

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Negative

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Market Context

QTREX’s 8.42% reaction to its July 31 performance-validation update provides a platform benchmark fo...
Analysis

QTREX’s 8.42% reaction to its July 31 performance-validation update provides a platform benchmark for technical announcements. This architecture adds scale context, while customer conversion, production execution, and financing needs remain important risks to monitor.

Key Figures

Interconnect capacity: 17,280 coaxial lines per cryogenic stage Industry benchmark comparison: More than four times the highest publicly disclosed benchmark Unveiling dates: September 13–18, 2026 +1 more
4 metrics
Interconnect capacity 17,280 coaxial lines per cryogenic stage Full-scale commercial systems
Industry benchmark comparison More than four times the highest publicly disclosed benchmark Cryogenic interconnect capacity
Unveiling dates September 13–18, 2026 IEEE Quantum Week 2026 in Toronto
Exhibition booth Booth 712 IEEE Quantum Week 2026

Historical Context

5 past events · Latest: Aug 20 (Negative)
Pattern 5 events
Date Event Sentiment 24h Move Catalyst
Aug 20 registered direct offering Negative -24.6% Registered direct offering announced with approximately $10 million in gross proceeds
Aug 19 technology announcement Positive +22.6% Laser conversion technology produced graphene-like carbon across tested processing conditions
Aug 13 development program Positive -2.8% Company discussed a joint quantum development program with a defense laboratory
Jul 31 performance validation Positive +8.4% Printed coaxial platform exceeded strategic-partner RF performance requirements
Jul 27 research collaboration Positive +7.8% Northeastern collaboration included an option to negotiate commercial Project IP

24h Move is the share-price change in the day after each event; other market factors may also have contributed.

Pattern Detected

QTEX generally aligned with the direction of its recent technical and financing news, with one divergence following a federal-lab development update.

Key Terms

additively manufactured electronics, cryogenic stage, dilution refrigerator, coaxial lines, +1 more
5 terms
additively manufactured electronics technical
"a company focused on advancing Additively Manufactured Electronics"
Additively manufactured electronics are electronic components and circuits created by layer-by-layer printing techniques instead of traditional machining or assembly. Think of building a cake where each layer can contain wiring, sensors or conductive traces so a finished part can combine structure and electronics in one piece. For investors, this can cut production time and part counts, enable custom or lightweight designs, and open new product opportunities or cost savings across manufacturing and supply chains.
cryogenic stage technical
"17,280 coaxial lines per cryogenic stage in full-scale commercial systems"
A cryogenic stage is a part of a process or supply chain where materials—such as biological samples, vaccines, or specialty chemicals—are kept or handled at extremely low temperatures (typically below −150°C) to preserve their properties. It matters to investors because maintaining cryogenic conditions requires specialized equipment, logistics and regulatory controls; failures or higher costs in this cold‑chain “freezer stage” can affect product quality, timelines, and operating expenses.
dilution refrigerator technical
"across multiple temperature stages of a dilution refrigerator"
A dilution refrigerator is a laboratory machine that cools materials and electronic devices to temperatures very close to absolute zero using a special mixture of helium isotopes; think of it as an ultra-deep freezer for delicate quantum equipment. It matters to investors because it is essential infrastructure for developing and testing quantum computers, superconducting sensors, and other cutting-edge technologies, influencing a company’s research progress, capital needs, product viability, and competitive edge.
coaxial lines technical
"capable of supporting 17,280 coaxial lines per cryogenic stage"
Coaxial lines are cables that carry radio-frequency or broadband electrical signals using a central conductor surrounded by an insulating layer and an outer metal shield, all sharing the same axis like a straw inside a tube. They matter to investors as physical infrastructure for telecommunications, broadcast, and data networks: their design affects signal quality, capacity, installation cost, and compatibility with equipment, so mentions of coaxial lines in corporate disclosures can indicate the nature and cost of a company’s network or product hardware.
dielectrics technical
"integrate conductors, dielectrics, shielding and mechanical routing"
Materials that do not conduct electricity but can be polarized by an electric field, storing and insulating electrical energy; common examples include ceramics, polymers, and glass used between conductors in capacitors, circuit boards, sensors and chip packaging. Their electrical properties — such as dielectric constant and breakdown strength — affect how well electronic components hold charge, dissipate heat, and fit into smaller devices, which in turn influences product performance, manufacturing costs and supply-chain value for companies.

AI-generated analysis. How Rhea-AI works. Not financial advice.

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The Company will publicly unveil the architecture to the global quantum computing industry at IEEE Quantum Week 2026 in Toronto on September 13th

Ness Ziona, Aug. 31, 2026 (GLOBE NEWSWIRE) -- QTREX Quantum Ltd. (Nasdaq: QTEX) ("QTREX" or the "Company") a company focused on advancing Additively Manufactured Electronics (“AME”) for quantum computing infrastructure, today announced that it will publicly unveil its ultra-high-density interconnect architecture, capable of supporting 17,280 coaxial lines per cryogenic stage in full-scale commercial systems, .at the IEEE Quantum Week 2026, taking place on September 13–18, 2026 in Toronto, Canada. QTREX will present a scaled physical technology demonstrator that reproduces the architecture’s density and demonstrates its implementation across multiple temperature stages of a dilution refrigerator.

The demonstrator establishes the production architecture for the interconnect systems QTREX intends to deliver commercially. Structured configuration programs launching after Toronto will enable prospective customers to define systems around their processors, cryostats, channel mixes, thermal budgets and performance requirements, advancing those requirements into engineering configurations and commercial proposals. QTREX is already engaged with quantum computing companies, U.S. federal laboratories, academic research institutions and defense organizations, and requirements from these confidential engagements are directly shaping the initial configurations.

The architecture distributes coaxial lines around the circumference and across the surface of each cryogenic stage, using both the perimeter and plate area to support 17,280 lines at full commercial dimensions. Its interconnect elements, manufactured using AME, integrate conductors, dielectrics, shielding and mechanical routing within monolithic structures, replacing networks of discrete coaxial cables, connectors and thermal anchoring assemblies installed stage by stage in conventional cryostats. Across the publicly available product specifications, technical publications and industry roadmaps reviewed by QTREX, no other disclosed physical interconnect architecture for dilution refrigerators, regardless of manufacturing technology, reaches even half of this capacity at each cryogenic stage.

“By unveiling an architecture capable of supporting more than 17,000 coaxial lines at each cryogenic stage, we are providing the scalable physical interconnect infrastructure required for fault-tolerant quantum computing,” said Dagi Ben Noon, Chief Executive Officer of QTREX. “In Toronto, we will turn this capability into a physical demonstrator that industry participants can inspect and configure around their needs. Building on our existing commercial activity and customer engagements, the structured configuration programs will accelerate the translation of this architecture into tailored systems that our partners across the quantum ecosystem can deploy.”

IEEE Quantum Week 2026, a leading international forum for quantum computing and engineering, will bring together technology companies, researchers, academic institutions and government organizations from across the global quantum ecosystem, with an industry focused on advancing quantum innovation toward practical deployment. The event will take place from September 13 to 18, 2026, at the Metro Toronto Convention Centre in Toronto, Ontario, Canada. QTREX will exhibit at Booth 712.

About QTREX Quantum

QTREX Quantum Ltd. (Nasdaq: QTEX) is a technology company focused on advanced connectivity and electronics manufacturing solutions for next-generation hardware markets. Following its acquisition of the AME platform, the Company is developing high-density, thermally optimized quantum connectivity solutions for dilution cryostats and advancing AME applications for defense, aerospace, missile, space, and other mission-critical environments. The Company also continues to advance its medical technology portfolio, including respiratory support and blood monitoring platforms, while actively working to monetize certain parts of the medical business.

For more information, please visit: www.q-trex.com

Forward-Looking Statement Disclaimer

This press release contains express or implied forward-looking statements pursuant to U.S. Federal securities laws. These forward-looking statements are based on the current expectations of the management of the Company only and are subject to factors and uncertainties that could cause actual results to differ materially from those described in the forward-looking statements. For example, the Company is using forward-looking statements when it discusses the potential benefits, advantages and capabilities of its ultra-high-density interconnect architecture, including the ability to support 17,280 coaxial lines per cryogenic stage in full-scale commercial systems and its belief that building on its existing commercial activity and customer engagements, the structured configuration programs will accelerate the translation of this architecture into tailored systems that its collaborators across the quantum ecosystem can deploy. Except as otherwise required by law, the Company undertakes no obligation to publicly release any revisions to these forward-looking statements. More detailed information about the risks and uncertainties affecting the Company is contained under “Risk Factors” in the Company’s annual report on Form 20-F for the fiscal year ended December 31, 2025, filed with the U.S. Securities and Exchange Commission.

Company Contact
QTREX Quantum
Email: info@q-trex.com
Phone: +972-9-9664485




QTREX Quantum
Email: info@q-trex.com
Phone: +972-9-9664485

FAQ

What cryogenic interconnect capacity did QTREX Quantum (NASDAQ: QTEX) announce in August 2026?

QTREX Quantum announced an interconnect architecture capable of supporting 17,280 coaxial lines per cryogenic stage. According to QTREX, this capacity is based on full-scale commercial dimensions and uses additively manufactured electronics structures that integrate conductors, dielectrics, shielding and routing within monolithic assemblies for dilution refrigerators.

When and where will QTREX Quantum (QTEX) unveil its new cryogenic architecture?

QTREX Quantum will unveil its ultra-high-density interconnect architecture at IEEE Quantum Week 2026 in Toronto. According to QTREX, the event runs from September 13 to 18, 2026, at the Metro Toronto Convention Centre, where the company will exhibit at Booth 712 with a physical demonstrator.

How does QTREX Quantum’s 17,280-line architecture compare to publicly disclosed industry benchmarks for dilution refrigerators?

QTREX Quantum states its architecture exceeds four times the highest publicly disclosed industry benchmark. According to QTREX, among reviewed product specifications, publications and roadmaps, no other disclosed physical interconnect architecture for dilution refrigerators, regardless of manufacturing method, reaches even half of this per-stage coaxial line capacity.

What will QTREX’s configuration programs offer after IEEE Quantum Week 2026?

After IEEE Quantum Week 2026, QTREX plans structured configuration programs to help customers define systems around their processors and cryostats. According to QTREX, these programs will translate channel mixes, thermal budgets and performance requirements into detailed engineering configurations and commercial proposals for tailored interconnect systems.

Which customers is QTREX Quantum (QTEX) targeting with its new cryogenic interconnect systems?

QTREX Quantum is targeting quantum computing companies, U.S. federal laboratories, academic institutions and defense organizations. According to QTREX, requirements from these ongoing but confidential engagements are directly shaping the initial configurations of its high-density cryogenic interconnect architecture for commercial deployment in dilution refrigerators.