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QTREX and U.S. Department of Defense Laboratory Target Q4 2026 to Formalize Joint Quantum Development Program

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QTREX Quantum (Nasdaq: QTEX) reported it is in discussions with a U.S. Department of Defense research laboratory to establish a joint quantum development program, targeting formalization in Q4 2026. The laboratory already operates QTREX’s additively manufactured electronics (AME) system, focused on high-density cryogenic interconnects and RF/microwave pathways for quantum systems.

The lab is distinct from the U.S. government facility disclosed on July 6, 2026, extending QTREX’s footprint to a second federal research institution. According to QTREX Quantum, the initiative aligns with its U.S. government presence, creation of QTREX USA, and broader strategy in quantum, defense, aerospace, and mission-critical markets.

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Negative

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News Market Reaction – QTEX

-2.78%
13 alerts
-2.78% Session close to close
-14.8% Trough in 28 hr 25 min
$60.42M Market Cap
1.0x Rel. Volume

In the Aug 13 session, QTEX declined 2.78%, reflecting a moderate negative market reaction. Argus tracked a trough of -14.8% from its starting point during tracking. Our momentum scanner triggered 13 alerts that day, indicating notable trading interest and price volatility.

Data tracked by StockTitan Argus on the day of publication.

Market Context

QTEX previously gained 7.79% after a research-program launch, giving this proposed federal program a...
Analysis

QTEX previously gained 7.79% after a research-program launch, giving this proposed federal program a comparable historical reference. The 90-day insider record was net selling, a risk alongside the laboratory’s existing platform operation.

Key Figures

Program timing: Q4 2026 Government research footprint: Second U.S. government research institution
2 metrics
Program timing Q4 2026 Targeted timing to formalize the joint quantum development program
Government research footprint Second U.S. government research institution Laboratory footprint disclosed in the announcement

Historical Context

5 past events · Latest: Jul 31 (Positive)
Pattern 5 events
Date Event Sentiment 24h Move Catalyst
Jul 31 quantum platform validation Positive +8.4% Platform exceeded strategic-partner RF performance requirements during qualification testing.
Jul 27 research program launch Positive +7.8% Northeastern collaboration included a first option to negotiate commercial rights to project-generated IP.
Jul 22 registration clarification Negative -23.2% Resale registration involved outstanding warrants and disclosed potential dilution and funding considerations.
Jul 17 director appointment Positive -5.2% Dr. Shlomit Chappel-Ram joined the board as an independent director effective July 14.
Jul 14 commercial order Positive +1.4% Government-owned customer order entered production following testing and qualification.

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

Pattern Detected

QTEX’s previous five news events showed four aligned price reactions and one divergence, with the divergence following a director appointment.

Key Terms

additively manufactured electronics, cryogenic interconnects, rf/microwave pathways, cryostat
4 terms
additively manufactured electronics technical
"focused on advancing Additively Manufactured Electronics (“AME”) for quantum computing infrastructure"
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 interconnects technical
"The program under discussion targets the layer where scaled quantum systems physically break"
Hardware links — such as specialized wires, connectors, cables, and circuit traces — that carry electrical, optical, or microwave signals between components kept at very low (cryogenic) temperatures. They are engineered to preserve signal quality and minimize heat transfer so delicate low-temperature devices can function. Investors care because these components affect the performance, scalability, reliability, and cost of technologies that require cold environments, like superconducting and quantum systems; think of them as well-insulated pipes that move sensitive signals between freezer rooms without warming them.
rf/microwave pathways technical
"prints high density cryogenic interconnects, RF/microwave pathways and application specific"
RF/microwave pathways are the routes that radio-frequency and microwave signals take through hardware—wires, traces on circuit boards, waveguides, antennas and connectors—that carry wireless or high-frequency signals inside devices or between components. Like pipes that must be the right size, shape and material to move water without leaks or blockages, these pathways affect signal strength, interference, power loss and reliability. For investors, they matter because their design and quality influence product performance, regulatory compliance, manufacturing cost and competitive positioning in wireless and high-frequency markets.
cryostat technical
"inside the cryostat, where conventional wiring, packaging and RF pathways collapse"
A cryostat is a refrigerated laboratory instrument that keeps samples very cold while a built-in microtome slices them into ultra-thin sections for microscopic or diagnostic analysis, commonly used in pathology and research. It matters to investors because cryostats are essential equipment for hospitals, diagnostic labs and research centers, so sales, service contracts and consumable demand can signal trends in clinical testing, device replacement cycles and recurring revenue for medical-equipment companies.

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

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Ness Ziona, Israel, Aug. 13, 2026 (GLOBE NEWSWIRE) -- QTREX and U.S. Department of Defense Laboratory Target Q4 2026 to Formalize Joint Quantum Development Program

Ness Ziona, Israel, August 13, 2026 – 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 is in discussions with a U.S. Department of Defense’s research laboratory (the “Research Laboratory”) to establish a joint quantum development program. The parties are targeting the fourth quarter of 2026 to formalize the program. The laboratory already operates the Company’s AME system and is distinct from the U.S. government laboratory referenced in QTREX’s July 6, 2026, announcement, extending the Company’s disclosed footprint to a second U.S. government research institution.

The program under discussion targets the layer where scaled quantum systems physically break: the interconnect. Across the U.S. defense quantum enterprise, programs are advancing from single processors toward networked and scaled architectures, yet every such system still depends on the physical layer inside the cryostat, where conventional wiring, packaging and RF pathways collapse under density, thermal and signal integrity constraints, and where hardware today is manually assembled and largely sourced from overseas suppliers. QTREX’s AME platform prints high density cryogenic interconnects, RF/microwave pathways and application specific quantum components as monolithic structures, fabricated domestically, on site, within a customer’s own secured environment. This laboratory already operates that capability.

The engagement caps a sequence that QTREX has executed: an operating footprint inside U.S. government laboratories; the establishment of QTREX USA to support federal contracting and program execution; and now, program level discussions with the U.S. Department of Defense Research Laboratory. Presence, structure, programs, in that order.

“This is one of the largest research organizations in the U.S. Department of Defense, an institution whose quantum programs reach beyond building individual systems toward connecting them at scale,” said Dagi Ben-Noon, CEO of QTREX. “Every connected quantum system stands or falls on its interconnect layer. That is the layer QTREX prints, and this is a laboratory that knows our platform from the inside, not from a brochure. We believe this can become far more than a single program. It can establish a path for QTREX technology into the physical infrastructure of future federal quantum systems.”

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 its discussions with the Research Laboratory and any outcomes of such discussions; the establishment of a joint quantum development program; the targeted timing of the fourth quarter of 2026 to formalize the program; the technical abilities of such program and of the anticipated engagement between the Company and the Research Laboratory; the Company’s AME abilities; the Company’s expectations to set footprint inside U.S. government laboratories; the ability of QTREX USA to support federal contracting and program execution; the possibility of this being more than a single program and the potential it has on establishing a path for QTREX technology into the physical infrastructure of future federal quantum systems. 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 did QTREX Quantum (QTEX) announce about its joint quantum development program with a U.S. Department of Defense laboratory?

QTREX Quantum announced it is in discussions with a U.S. Department of Defense research laboratory to establish a joint quantum development program. According to QTREX Quantum, the program would focus on quantum hardware interconnects and is targeted for formalization in the fourth quarter of 2026.

When does QTREX Quantum (QTEX) aim to formalize its joint quantum development program with the U.S. Department of Defense lab?

QTREX Quantum and the U.S. Department of Defense research laboratory are targeting the fourth quarter of 2026 to formalize the joint quantum development program. According to QTREX Quantum, this timing applies to moving from discussions into a formal program framework.

How is QTREX Quantum’s AME technology being used by the U.S. Department of Defense research lab mentioned in the 2026 announcement?

The U.S. Department of Defense research laboratory already operates QTREX Quantum’s AME system. According to QTREX Quantum, the platform prints high-density cryogenic interconnects, RF/microwave pathways, and application-specific quantum components as monolithic structures, fabricated domestically within the customer’s secured environment.

Is the U.S. Department of Defense lab in QTREX Quantum’s August 13, 2026 news the same as in its July 6, 2026 announcement?

No, the laboratory in the August 13, 2026 announcement is distinct from the U.S. government laboratory disclosed on July 6, 2026. According to QTREX Quantum, this extends its disclosed footprint to a second U.S. government research institution using its AME technology.

What problem in quantum computing infrastructure is QTREX Quantum (QTEX) targeting with the proposed DoD joint program?

The proposed program targets the interconnect layer where scaled quantum systems physically break. According to QTREX Quantum, current wiring, packaging and RF pathways inside cryostats face density, thermal and signal integrity limits, which its AME platform aims to address with printed cryogenic interconnects.

Besides quantum infrastructure, what markets does QTREX Quantum (QTEX) focus on according to the August 2026 announcement?

QTREX Quantum focuses on advanced connectivity and electronics manufacturing for defense, aerospace, missile, space and other mission-critical environments. According to QTREX Quantum, it also continues to develop respiratory support and blood monitoring platforms and is working to monetize certain parts of its medical technology business.