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Quantum Cyber Files Non-Provisional Patent Application With the USPTO for EMP-Shielding 3D-Printable Composite Filament for Drone and Defense Electronics

Key Takeaway: Quantum Cyber N.V. has filed a non-provisional patent application for a novel Electromagnetic Pulse Shielding Composite Filament designed for 3D printing drone enclosures. This innovation aims to address a critical gap in drone defense technology, offering a lightweight and manufacturable solution. The company positions itself as a leader in EMP hardening, essential for modern autonomous systems.

Market Sentiment Analysis

POSITIVE FACTORS

  • First-mover advantage in EMP hardening for drones.
  • Utilizes standard 3D printing technology for production.
  • Addresses a significant gap in drone defense capabilities.
  • Potential for on-demand manufacturing of drone enclosures.

CONCERNS & RISKS

  • Patent approval from the USPTO is not guaranteed.
  • Challenges to the validity of the patent may arise.
  • Commercialization of the technology is uncertain.
  • Risks associated with changes in laws or regulations.

Full Press Release Details

WEST PALM BEACH, Florida, May 19, 2026 (GLOBE NEWSWIRE) -- Quantum Cyber N.V. (Nasdaq: QUCY), a Nasdaq-listed autonomous defense technology company assembling an AI-powered System-of-Systems platform for drone warfare, counter-UAS, and border security applications, today announced it has filed a non-provisional utility patent application with the United States Patent and Trademark Office (USPTO) for an Electromagnetic Pulse Shielding Composite Filament for Fused Deposition Modeling and Method of Manufacture Thereof.
EMP Hardening as a Structural CapabilityThe patent application describes a multi-component composite thermoplastic filament formulated for use in standard fused deposition modeling (FDM) three-dimensional printers. The filament, composed of a PETG polymer matrix combined with aluminum flake, carbonyl iron powder, carbon black, and milled carbon fiber, produces 3D-printed drone enclosures that achieve broadband shielding effectiveness of 35 to 55 dB across the full frequency range of 10 kHz to 10 GHz, as measured per ASTM D4935.
Unlike metallic Faraday enclosures or conductive gaskets that impose weight and manufacturing complexity penalties incompatible with modern UAV size, weight, and power constraints, the Company's filament is designed for use with commercially available desktop FDM printers, enabling on-demand production of EMP-hardened drone enclosures and electronics housings at the unit level.
Strategic Significance: A Documented Gap in the Drone Defense EcosystemElectromagnetic pulse attacks represent one of the most consequential unsolved problems in autonomous drone warfare. A single EMP event -- whether generated by a high-altitude nuclear detonation, a non-nuclear electromagnetic device, or a high-power microwave weapon -- can simultaneously destroy the semiconductor components and flight control systems of an entire drone swarm. No publicly listed drone defense company, including platforms the Company monitors as market comparables, currently offers a fielded EMP-hardening solution at the drone enclosure level.
Quantum Cyber believes this patent application establishes its first-mover position in EMP hardening for autonomous systems, a capability layer that management views as essential infrastructure for any serious drone defense platform. The Company intends to integrate this technology across its developing System-of-Systems portfolio.
"EMP hardening has been a known gap in drone defense for years, and every military deploying drone swarms is exposed to it," said David Lazar, Chief Executive Officer of Quantum Cyber. "We have developed a real, manufacturable solution using standard 3D printing equipment and commercially available materials. The assignment is written into the specification, the claims are tightly drawn, and this goes directly onto our patent portfolio. We intend to move quickly to integrate this capability across our platform."
Forward-Looking StatementsCertain statements made in this press release are "forward-looking statements" within the meaning of the "safe harbor" provisions of the Private Securities Litigation Reform Act of 1995. Forward-looking statements may be identified by the use of words such as "anticipate", "believe", "expect", "estimate", "plan", "outlook", and "project" and other similar expressions that predict or indicate future events or trends or that are not statements of historical matters. These forward-looking statements reflect the current analysis of existing information and are subject to various risks and uncertainties. The filing of a non-provisional patent application does not guarantee issuance of a patent. As a result, caution must be exercised in relying on forward-looking statements. Due to known and unknown risks, actual results may differ materially from the Company's expectations or projections. The following factors, among others, could cause actual results to differ materially from those described in these forward-looking statements: (i) the failure to receive patent approval from the USPTO; (ii) challenges to the validity or enforceability of the patent application; (iii) the failure to successfully commercialize or integrate the described technology; (iv) changes in applicable laws or regulations; and (v) other risks and uncertainties described herein, as well as those risks and uncertainties discussed from time to time in other reports and other public filings with the Securities and Exchange Commission (the "SEC") by the Company. The Company's SEC filings are available publicly on the SEC's website at www.sec.gov. Any forward-looking statement made by us in this press release is based only on information currently available to the Company and speaks only as of the date on which it is made. The Company undertakes no obligation to publicly update any forward-looking statement, whether written or oral, that may be made from time to time, whether as a result of new information, future developments or otherwise, except as required by law.
About Quantum Cyber N.V.Quantum Cyber N.V. (Nasdaq: QUCY) is assembling an AI-powered, quantum-accelerated System-of-Systems autonomous defense platform that integrates drone warfare, counter-UAS, autonomous naval mine countermeasures, EMP shielding, anti-drone ammunition, command-and-control, and quantum antenna applications under a single Nasdaq-listed company. The Company acquires, licenses, and develops combat-proven autonomous technologies, deploying them as a coordinated, multi-domain portfolio across air, land, and sea. For more information, visit www.quantum-cyber.ai.

Investor Relations Contact:Arx Investor RelationsNorth American Equities Deskqucy@arxhq.com

Frequently Asked Questions

What is the purpose of the new patent filed by Quantum Cyber?

The patent aims to protect a composite filament for 3D printing drone enclosures that provide electromagnetic pulse shielding.

How does the EMP shielding filament benefit drone technology?

It allows for lightweight, manufacturable drone enclosures that can be produced using standard 3D printers.

What challenges could Quantum Cyber face with the patent application?

Potential challenges include not receiving patent approval and difficulties in commercializing the technology.

Why is EMP hardening important for drones?

EMP hardening protects drones from electromagnetic pulse attacks that can disable their systems.

What materials are used in the EMP shielding filament?

The filament is made from a PETG polymer matrix combined with aluminum flake, carbonyl iron powder, and carbon black.

Last updated: May 19, 2026