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American Fusion Inc. (OTC: AMFN) Completes Initial Phase of Texatron™ Testing at Texas Tech University

(Very Positive)
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American Fusion (OTC: AMFN) reported completion of the initial phase of engineering and testing for its Texatron™ Fusion Engine™ at Texas Tech University’s Center for Emerging Energy Sciences in Lubbock, Texas. A seven-member company team, working with Texas Tech personnel, conducted subsystem demonstrations, instrumentation testing, and laboratory evaluations.

According to American Fusion, the phase achieved key objectives, including successful operation of the remote ignition and control system, plasma switching with non-radioactive fusion fuel, and high-voltage operation in a controlled vacuum. Radiation monitoring and diagnostics were evaluated and calibrated, with no measurable radiation detected. The company also designed, built, and tested a specialized high-voltage power supply integrated with the Texatron™ platform. Data from this phase will guide multiple subsequent testing phases, with American Fusion planning further technical updates, a published technical summary, and a short video for shareholders.

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Positive

  • Initial Texatron™ test phase completed at Texas Tech University laboratory
  • Successful high-voltage operation in vacuum of Texatron™ Fusion Engine™
  • Remote ignition and control system and plasma switching successfully demonstrated
  • No measurable radiation detected using calibrated monitoring instrumentation
  • Specialized high-voltage power supply designed, constructed, and successfully tested
  • Multi-phase testing program initiated with plans for technical publications and updates

Negative

  • None.

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Initial Engineering Objectives Achieved as Company Advances to the Next Phase of Its Texatron™ Development and Testing Program

LUBBOCK, Texas, July 31, 2026 (GLOBE NEWSWIRE) -- American Fusion Inc. (OTC: AMFN) (“American Fusion” or the “Company”), developer of the proprietary Texatron™ Fusion Engine™, announced the successful completion of the initial phase of its Texatron™ engineering and testing program at the Center for Emerging Energy Sciences within the Department of Physics & Astronomy at Texas Tech University in Lubbock, Texas.

During the week, a seven-member American Fusion scientific and engineering team worked alongside Texas Tech personnel to complete a series of engineering evaluations, subsystem demonstrations, instrumentation testing, and laboratory activities supporting the Company’s ongoing Texatron™ development program. The initial phase of testing achieved several important engineering objectives and generated valuable operational and diagnostic information that will help guide subsequent phases of the Company’s planned testing activities.

Among the accomplishments of the initial testing phase were the successful operation of the Texatron™ remote ignition and control system, demonstration of the plasma switching system while operably coupled to a Texatron™ Fusion Engine™ utilizing non-radioactive fusion fuel, successful operation of the Texatron™ Fusion Engine™ under high-voltage conditions within a controlled vacuum environment, evaluation and calibration of radiation monitoring and diagnostic instrumentation used to verify and document the absence of measurable radiation emissions during planned testing activities, and additional engineering work involving diagnostics, vacuum systems, power systems, and supporting laboratory infrastructure.  

As part of the initial testing program, American Fusion monitored the testing activities using radiation detection and diagnostic instrumentation. No measurable radiation was detected during the testing performed in this initial phase. The Company emphasized that radiation monitoring will remain an integral part of each phase of the Texatron™ testing program as development continues.

The Company also designed, constructed, and successfully tested a specialized high-voltage power supply integrated with the Texatron™ platform. Information obtained during testing, including observations relating to system performance under high-voltage operating conditions, is expected to support additional engineering refinements and future phases of the Texatron™ testing program.

The initial testing phase also provided engineering observations and system performance data that, in several areas, compared favorably with the Company’s pre-test expectations. American Fusion is continuing its review of the engineering and diagnostic information collected during the week and expects those findings to help shape the next phase of testing as development of the Texatron™ platform continues.

American Fusion emphasized that the initial testing phase represents the beginning of a broader engineering and scientific evaluation program. Additional testing is expected to continue through multiple phases as the Company further integrates, evaluates, and validates the Texatron™ platform using a disciplined and methodical engineering approach.

Dr. John E. Brandenburg, Chief Technology Officer and inventor of the Texatron™, commented: “Completing this initial phase of testing represents an important milestone for the Texatron™ program. After nearly a decade of engineering development, it is extremely rewarding to begin evaluating the technology in a laboratory environment and to collect the engineering and diagnostic information that will guide future phases of development. We are encouraged by the results obtained during this first phase and look forward to expanding the testing program in the weeks ahead.”

Dr. Brandenburg added: “The purpose of this initial phase was to verify critical subsystems, evaluate instrumentation, and establish the engineering foundation necessary for more advanced testing. As additional information is analyzed, our objective is to communicate results that are accurate, reproducible, and supported by measured data. Scientific progress is achieved through disciplined testing, careful analysis, and continuous refinement, and we remain committed to that process.”

Michael G. Smith, Chief Legal Officer and Director of American Fusion, commented: “This first phase of testing marks the transition of the Texatron™ program from years of engineering development into an active laboratory testing environment. Equally important, it establishes a disciplined process for generating the technical information necessary to support future engineering decisions, continued scientific evaluation, and the long-term development of the Texatron™ platform.”

American Fusion is currently reviewing the engineering and diagnostic information collected during the initial phase of testing and expects to provide additional technical updates in the coming weeks as that information is compiled and analyzed. The Company also anticipates publishing a technical summary of the initial testing activities following completion of its engineering review. In addition, the Company expects to release a short video next week providing shareholders with a behind-the-scenes look at the initial testing activities at Texas Tech University and the progress made during the first phase of the Texatron™ testing program.

Testing will continue through subsequent phases as the Company advances subsystem integration, diagnostics, instrumentation, engineering measurements, and additional evaluation of the Texatron™ platform. American Fusion believes that repeated testing, independent measurement, and disciplined engineering review provide the strongest foundation for responsible technology development and long-term scientific credibility.

About American Fusion Inc.

American Fusion Inc. (OTC: AMFN) is an advanced energy platform company focused on the development and commercialization of next-generation fusion energy technologies. The Company is advancing the Texatron™ Fusion Engine™ aneutronic fusion platform, designed for modular, infrastructure-grade deployment across industrial, commercial, defense and grid-constrained applications.

The Company’s development strategy emphasizes system-level engineering, disciplined intellectual property protection, and scalable architectures intended to support long-term commercial operation, while maintaining a focus on capital discipline and transparent corporate governance.

For more information about American Fusion and its Texatron™ platform, please visit: americanfusionenergy.com

For an overview of American Fusion, please click here: American Fusion Overview

Forward-Looking Statements

This press release contains forward-looking statements within the meaning of Section 27A of the Securities Act of 1933 and Section 21E of the Securities Exchange Act of 1934, including statements regarding the Company’s plans, objectives, expectations, and intentions relating to technology development and commercialization, system integration and testing activities, patent filings, regulatory initiatives, financing activities, SEC registration and reporting matters, exchange uplisting initiatives, future business operations, and related matters.

Words such as “anticipate,” “believe,” “expect,” “intend,” “may,” “plan,” “potential,” “should,” “will,” and similar expressions are intended to identify forward-looking statements. These statements are based on current expectations and assumptions and involve risks and uncertainties that could cause actual results to differ materially from those expressed or implied, including risks related to technology development, testing outcomes, intellectual property protection, regulatory approvals, financing availability, litigation matters, SEC reporting timelines, exchange requirements, market conditions, and other factors beyond the Company’s control.

This press release is provided for informational purposes only and does not constitute an offer to sell or a solicitation of an offer to buy any securities. The Company undertakes no obligation to update forward-looking statements except as required by law.

Corporate Communications

info@americanfusionenergy.com
americanfusionenergy.com


FAQ

What did American Fusion (OTC: AMFN) achieve in the first Texatron™ testing phase?

American Fusion completed the initial Texatron™ engineering and testing phase at Texas Tech, meeting key subsystem and instrumentation objectives. According to American Fusion, results included successful high-voltage operation, plasma switching demonstrations, and remote ignition control, generating diagnostic data to guide future multi-phase testing.

Where was American Fusion’s Texatron™ Fusion Engine™ tested in July 2026?

The initial Texatron™ testing took place at Texas Tech University’s Center for Emerging Energy Sciences in Lubbock, Texas. According to American Fusion, a joint team performed subsystem demonstrations, instrumentation checks, and vacuum high-voltage operations in this controlled laboratory environment during the first testing phase.

Did American Fusion report any radiation emissions during the initial Texatron™ tests for AMFN?

American Fusion reported no measurable radiation detected during the initial Texatron™ testing phase. According to American Fusion, calibrated radiation monitoring and diagnostic instruments were used, and radiation monitoring will remain an integral part of each subsequent phase of the Texatron™ development program.

What systems were verified during American Fusion’s first Texatron™ test phase for AMFN shareholders?

American Fusion verified the remote ignition and control system, plasma switching system, and a specialized high-voltage power supply. According to American Fusion, these systems operated with a Texatron™ Fusion Engine™ using non-radioactive fusion fuel in a high-voltage vacuum environment, supporting further engineering refinement.

What are the next steps in American Fusion’s Texatron™ testing program after the initial phase?

American Fusion plans multiple additional testing phases to further integrate, evaluate, and validate the Texatron™ platform. According to American Fusion, ongoing analysis of engineering and diagnostic data will shape future tests, with a planned technical summary and shareholder video providing updates on progress.

How does the initial Texatron™ testing impact American Fusion’s long-term fusion energy plans?

The initial testing marks Texatron’s transition from development to active laboratory evaluation, establishing an engineering foundation for further work. According to American Fusion, repeated testing, independent measurement, and disciplined review are intended to support responsible technology development and long-term scientific credibility for its aneutronic fusion platform.