Israeli Quantum Technology Lands Inside U.S. Government Lab
QTREX Quantum enters the race for next-generation computing infrastructure with a deployment tied to U.S. national security research
Israeli quantum technology company QTREX Quantum announced that its Additively Manufactured Electronics (AME) system is now operational at a U.S. government laboratory involved in quantum computing research with a focus on national security applications.
The deployment places QTREX’s technology inside one of the United States’ key research environments for advancing emerging technologies, where scientists are working to move quantum computing from laboratory experiments toward practical, engineered systems.
Unlike traditional computing, quantum systems require highly specialized hardware capable of managing extreme engineering challenges, including dense electronic connections, advanced packaging, thermal control, and high-frequency signal pathways. QTREX’s AME platform is designed to address these challenges by enabling the production of complex, high-density electronic structures that could support future quantum hardware architectures.
The U.S. government laboratory is involved in research areas including quantum device fabrication, integrated control systems, modeling, and experimental testing of quantum technologies. The company did not identify the facility.
“Quantum computing and advanced microelectronics are critical national security priorities,” said Dagi Ben-Noon, CEO of QTREX. “Having our AME system actively operating inside a federal lab directly aligns QTREX with these strategic initiatives and positions us within the infrastructure required to secure U.S. quantum leadership.”
The move comes as governments around the world increase investment in quantum computing, viewing the technology as a potential strategic advantage in areas ranging from cybersecurity and intelligence to advanced materials and defense.
For QTREX, the deployment represents more than a technology demonstration: it provides direct exposure of its platform to researchers working on some of the most advanced quantum applications and could open the door to future defense, aerospace, and mission-critical projects.