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Genenta-backed Sòphia High Tech Brings Aerospace Precision Inside a Nuclear Fusion Reactor with ROMAN, a Robotic Arm

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Genenta (Nasdaq: GNTA)-backed Sòphia High Tech, an Italian aerospace and defense manufacturer, announced ROMAN, a robotic arm for remote inspection and maintenance inside the RFX-mod2 nuclear fusion research machine, where plasma can reach about 20 million °C.

Developed with the University of Naples Federico II’s Department of Industrial Engineering and Herobots, ROMAN can visually inspect, clean, and remove or reinstall individual graphite tiles on the machine’s inner wall. According to Sòphia HT, the project extends its precision-engineering capabilities from rockets, satellites, and defense into nuclear technology, adding a reference in a mission-critical, highly regulated market and aligning with Genenta’s strategy to build a cross-sector industrial platform, which may be renamed Saentra Forge subject to shareholder approval.

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News Explained

The release reports that Sòphia High Tech and its partners designed, developed, produced, assembled, tested and integrated ROMAN units for the DII and Consorzio RFX2, documenting a completed delivery and integration milestone for the fusion-robotics project.

News Market Reaction – GNTA

-2.44%
5 alerts
-2.44% News Effect
-13.8% Trough in 5 hr 18 min
-$2M Valuation Impact
$79.56M Market Cap
0.4x Rel. Volume

On the day this news was published, GNTA declined 2.44%, reflecting a moderate negative market reaction. Argus tracked a trough of -13.8% from its starting point during tracking. Our momentum scanner triggered 5 alerts that day, indicating moderate trading interest and price volatility. This price movement removed approximately $2M from the company's valuation, bringing the market cap to $79.56M at that time.

Data tracked by StockTitan Argus on the day of publication.

Market Context

GNTA’s recent record includes 3 divergences from positive announcements, including Sòphia-related ev...
Analysis

GNTA’s recent record includes 3 divergences from positive announcements, including Sòphia-related events, while current short positioning was low. The platform record adds a valuation-and-execution lens; subsequent project validation is the key watchpoint.

Key Figures

RFX-mod2 plasma temperature: 20 million °C Facilities: 2 facilities
2 metrics
RFX-mod2 plasma temperature 20 million °C Nuclear fusion research machine
Facilities 2 facilities ROMAN manipulator units

Historical Context

5 past events · Latest: Jul 22 (Positive)
Pattern 5 events
Date Event Sentiment 24h Move Catalyst
Jul 22 FY2025 earnings Positive -0.6% Sales, EBITDA, margin, and operating profit all increased year over year.
Apr 23 Investment agreement Positive -1.7% Genenta agreed to invest €6.0 million for staged Sòphia High Tech ownership.
Mar 27 Binding investment offer Positive -14.3% Genenta proposed two capital increases funding Sòphia High Tech expansion.
Mar 24 Strategic review Positive +8.2% Genenta announced its industrial-platform strategy and review of biotechnology collaboration opportunities.
Mar 13 Leadership appointment Positive +1.7% Genenta's CEO joined the Board of Guarantors of the Italian Academy at Columbia University.

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

Pattern Detected

GNTA historically diverged from positive corporate announcements in three of the five selected recent events, including a 14.29% decline after the Sòphia High Tech binding offer.

Key Terms

end-effector, nuclear fusion, safety-critical applications
3 terms
end-effector technical
"required custom mechanics, a purpose-built end-effector and extensive qualification"
The end-effector is the tool, instrument, or device attached to the end of a robotic arm that interacts with the environment—like a hand, gripper, welder, or surgical instrument. It matters to investors because the design and capabilities of an end-effector determine what tasks a robot can perform, how precisely and safely it operates, and which markets or regulations the product can address, affecting a company’s product competitiveness and commercial potential.
nuclear fusion technical
"a nuclear fusion research machine in which plasma can reach"
A nuclear fusion reaction is the process where two light atomic nuclei combine to form a heavier nucleus, releasing large amounts of energy, similar to how two Lego blocks snap together and free stored power. It matters to investors because commercial fusion promises a new form of large-scale energy generation with implications for utility markets, fuel demand, supply chains, capital allocation, and long-term regulatory and infrastructure planning.
safety-critical applications technical
"robotics and automation for safety-critical applications"
Systems, software, or products whose malfunction or failure could cause bodily harm, environmental damage, or major property loss; examples include control software for medical devices, transportation systems, industrial controllers, and aviation systems. Investors care because these applications face strict regulation, rigorous testing, higher development and liability costs, and long certification timelines that affect a company’s costs, revenue timing, and operational risk—similar to how car brakes must be reliable to keep passengers safe.

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

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Sòphia High Tech designs and manufactures ROMAN units for the remote inspection and maintenance of the RFX-mod2 fusion experiment, combining its precision manufacturing capabilities with the robotics expertise of University of Naples Federico II and Herobots, extending the group's precision-engineering capabilities into the nuclear domain

MILAN and NAPLES, Italy, July 23, 2026 (GLOBE NEWSWIRE) -- Sòphia High Tech S.r.l. (Sòphia HT), an Italian aerospace and defense company manufacturing critical parts for Europe's space and defense programs, backed by Genenta Science S.p.A. (Nasdaq: GNTA) — evolving into Saentra Forge¹, a strategic industrial consolidator focused on aerospace, defense, biotech and Italian national-security-related technologies — today announced the unveiling of ROMAN, a robotic arm engineered to perform inspection and maintenance operations inside a nuclear fusion machine. Sòphia HT and its partners Department of Industrial Engineering (DII) and Herobots designed, developed, produced, assembled, tested and integrated the manipulator ROMAN units for two facilities: the DII of the University Federico II and to Consorzio RFX2.

ROMAN demonstrates Sòphia HT’s ability to engineer systems for environments where humans cannot operate and failure is not an option. Designed for RFX-mod2, a nuclear fusion research machine in which plasma can reach approximately 20 million °C, ROMAN remotely inspects and maintains the machine’s innermost wall. Its custom-built tool can identify, remove and reinstall individual graphite tiles, as well as perform visual inspection and cleaning operations.

ROMAN is the result of a close collaboration between Sòphia HT, Herobots – a technology partner specialized in robotics and automation for safety-critical applications – the DII and Consorzio RFX. Within the project, Sòphia HT led the development, manufacturing, assembly, testing, and integration of the ROMAN manipulators, working closely with all partners throughout the definition, validation, and refinement of the solution. The partners worked closely throughout the definition, validation, and refinement of the solution.

The project extends Sòphia HT’s proven precision-engineering capabilities—from critical components for rockets, satellites and defense systems—into nuclear technology and energy infrastructure, while leveraging the robotics expertise for hazardous and challenging environments of the DII and Herobots team. This provides Sòphia HT with a new strong reference capability for future applications in another highly regulated, mission-critical market and supports Genenta’s strategy of building an industrial platform across sectors central to national technological sovereignty.

Delivering with our partners ROMAN took Sòphia HT into the nuclear domain for the first time, and our team met that challenge with the same rigor we apply to space-flight hardware. Developing a manipulator that can operate safely and repeatably inside RFX-mod2 required custom mechanics, a purpose-built end-effector and extensive qualification. It is a proud milestone for our engineers and PhDs, and, together with Genenta, it opens a new avenue of growth for the company,” said Domenico Borrelli, CTO of Sòphia HT.

ROMAN is exactly the kind of capability that makes Sòphia HT irreplaceable. The same mastery of precision mechanics that lets this company 3D-print flight-ready space hardware now allows it to manufacture the mechanical systems of advanced robotic platforms operating where no human can go — inside a nuclear fusion machine. It is a powerful demonstration of how deep-tech know-how developed for space and defense translates directly into the technologies that will underpin energy independence. This is the model we are building: keeping critical industrial know-how in Italy, and letting it compound across the sectors that define national economic security,” said Pierluigi Paracchi, CEO of Genenta.

1 The name change from Genenta Science S.p.A. to Saentra Forge S.p.A. is subject to shareholder approval.
2 https://www.igi.cnr.it/en/about-us/

About Genenta Science

Genenta Science (Nasdaq: GNTA) is evolving into a next-generation strategic consolidator focused on privately held specialized companies operating in Italian national security-regulated sectors, with activities spanning cybersecurity, defense, aerospace, and biotechnology/biosecurity. Genenta holds a 19% equity interest in Sòphia High Tech and has an option to increase its ownership to 51% at a pre-agreed valuation.

About Sòphia High Tech

Sòphia High Tech S.r.l. is an Italian aerospace and defense engineering and manufacturing company, headquartered in Somma Vesuviana (Naples). At its core, Sòphia HT builds the critical mechanical components of space and defense systems — the precision parts that hold rockets together, protect satellites in orbit, and allow aircraft to perform under extreme stress. The company covers the entire product lifecycle, from initial concept design and computer simulation, through prototyping and manufacturing, all the way to final testing, assembly, and qualification for flight. What sets Sòphia HT apart is its mastery of advanced manufacturing techniques — including state-of-the-art metal 3D printing (Selective Laser Melting), CNC precision machining and multitasking, and the ability to work with some of the most demanding exotic materials in the industry, including titanium, Inconel, tungsten, and specialized copper alloys. Certified to the EN9100 aerospace quality standard and to ECSS-Q-ST-70-80C, the ESA specification for additive manufacturing, Sòphia HT is one of the very few companies in Europe qualified to 3D-print flight-ready space hardware to ESA and NASA standards. With over 530 advanced projects completed, Sòphia HT serves leading European aerospace and defense organizations, including ESA, AVIO, Thales Alenia Space, Leonardo, MBDA, GSSI, and D-Orbit.

Forward-Looking Statements. Statements in this press release contain “forward-looking statements,” within the meaning of the U.S. Private Securities Litigation Reform Act of 1995, that are subject to substantial risks and uncertainties. Forward-looking statements contained in this press release may be identified by the use of words such as “anticipate,” “believe,” “contemplate,” “could,” “estimate,” “expect,” “intend,” “seek,” “may,” “might,” “plan,” “potential,” “predict,” “project,” “suggest,” “target,” “aim,” “should,” "will,” “would,” or the negative of these words or other similar expressions, although not all forward-looking statements contain these words. Forward-looking statements are based on Genenta’s current expectations and are subject to inherent uncertainties, risks, and assumptions that are difficult to predict, including risks related to the transition to Saentra Forge, the expansion to a sovereign-aligned industrial consolidator. Further, certain forward-looking statements are based on assumptions as to future events that may not prove to be accurate. These and other risks and uncertainties are described more fully in the section titled “Risk Factors” in Genenta's Annual Report on Form 20-F for the year ended December 31, 2025, and Genenta's material disclosures on Form 6-K dated October 10, 2025, January 26, 2026, as well as other Form 6-K disclosures filed with the Securities and Exchange Commission. Forward-looking statements contained in this document are made as of the date of this announcement, and Genenta undertakes no duty to update such information except as required under applicable law.

Genenta Science Media
Tiziana Pollio, Mobile: +39 348 23 15 143
email: tiziana.pollio@genenta.com


FAQ

What did Genenta (GNTA) and Sòphia High Tech announce about the ROMAN robotic arm on July 23, 2026?

Genenta-backed Sòphia High Tech announced ROMAN, a robotic arm for inspecting and maintaining the RFX-mod2 nuclear fusion machine. According to Sòphia HT, ROMAN operates remotely on the machine’s inner wall, handling graphite tiles and performing visual inspection and cleaning inside an extreme-temperature environment.

How does the ROMAN robotic arm work inside the RFX-mod2 fusion experiment for Sòphia High Tech and GNTA investors?

ROMAN remotely inspects and maintains RFX-mod2’s innermost wall, where plasma can reach about 20 million °C. According to Sòphia HT, its custom tool can identify, remove, clean, and reinstall individual graphite tiles while performing visual inspections inside the nuclear fusion device.

Which partners collaborated with Sòphia High Tech on ROMAN and how is this relevant to Genenta (GNTA)?

ROMAN was developed by Sòphia High Tech with the University of Naples Federico II’s Department of Industrial Engineering and Herobots. According to Sòphia HT, this collaboration adds nuclear technology capabilities, supporting Genenta’s strategy to build an industrial platform across aerospace, defense, biotech, and national-security-related technologies.

How does the ROMAN project extend Sòphia High Tech’s capabilities beyond aerospace and defense for GNTA shareholders?

ROMAN extends Sòphia High Tech’s precision-engineering expertise from rockets, satellites, and defense systems into nuclear technology and energy infrastructure. According to Sòphia HT, this provides a reference capability in a highly regulated, mission-critical market, aligning with Genenta’s broader industrial platform strategy.

What is the connection between the ROMAN robotic arm and Genenta’s planned name change to Saentra Forge (GNTA)?

Genenta plans to evolve into Saentra Forge, subject to shareholder approval, as a strategic industrial consolidator. According to Genenta, ROMAN exemplifies the type of deep-tech capability it aims to aggregate across aerospace, defense, biotech, and Italian national-security-related technologies.

Where are the ROMAN robotic arm units deployed and what facilities are involved for Sòphia High Tech and GNTA?

ROMAN manipulators were designed, built, and integrated for two facilities: the University of Naples Federico II’s Department of Industrial Engineering and Consorzio RFX. According to Sòphia HT, these installations support work on the RFX-mod2 nuclear fusion research machine and related infrastructure.