Insider Brief
- QTREX has launched a research collaboration with Northeastern University to develop advanced cryogenic quantum interconnect technologies for quantum computing infrastructure.
- The collaboration will investigate micro-system structures, interconnect designs, and materials for cryogenic quantum environments while generating experimental data for future connectivity solutions.
- Under the agreement, QTREX receives a first option to negotiate a commercial license for intellectual property generated through the joint research.
Press release – QTREX Quantum Ltd. (Nasdaq: QTEX) (“QTREX” or the “Company”) a company focused on advancing Additively Manufactured Electronics (“AME”) for quantum computing infrastructure today announced the launch of a research collaboration with Northeastern University in Massachusetts, focused on advanced micro-system structures for cryogenic quantum interconnects. Pursuant to the collaboration agreement, Northeastern University has agreed to provide QTREX with a first option to negotiate a commercial license to Northeastern-owned or jointly developed intellectual property arising directly from the parties’ joint research (the “Project IP”). The program further expands QTREX’s vertically integrated quantum connectivity platform by adding a structured innovation pipeline alongside the Company’s proprietary materials, advanced manufacturing and cryogenic interconnect capabilities.
The research activities are expected to focus on micro-system structures and interconnect geometries that may support new quantum connectivity architectures, including the evaluation of conductive, dielectric and superconducting materials for cryogenic environments and characterization of fabricated structures under cryogenic conditions. These activities are intended to generate experimental data and technical insights that can strengthen QTREX’s long-term innovation pipeline and inform future quantum connectivity, packaging and processor-interface solutions.
Northeastern University, a leading R1 research university, the highest US research activity designation, with a dedicated quantum research ecosystem anchored by its Quantum Materials and Sensing Institute, brings capabilities in quantum materials, superconducting devices, nanofabrication, advanced characterization and quantum sensing. The research effort will be led by Prof. Benyamin Davaji, whose work in advanced micro-systems, microfabrication and NSF-funded superconducting nanowire detector research provides quantum-relevant expertise directly aligned with QTREX’s structured innovation pipeline.
“Additive manufacturing of electronics and microsystems holds exciting potential to reshape how we approach electrical connectivity—offering a path toward three-dimensional, low-parasitic interconnects with micron-scale precision that could benefit both quantum sensing and quantum computing,” said Prof. Benyamin Davaji, Professor of Electrical and Computer Engineering at Northeastern University.
“We believe that the combination of our proprietary technology platform with the deep scientific knowledge, research infrastructure and years of experience of Northeastern University’s researchers, led by Prof. Benyamin Davaji, creates a powerful foundation for breakthrough developments in quantum interconnect architectures,” said Dagi Ben-Noon, CEO of QTREX. “Our strategy is to build a comprehensive quantum connectivity platform by combining proprietary materials, advanced manufacturing, processor-interface technologies and a continuously expanding innovation pipeline. This program strengthens that strategy by creating a structured pathway to translate academic research and eligible project-generated IP into potential commercial technologies for next-generation quantum systems.”
The program has already commenced, with joint teams from QTREX and Northeastern University beginning to work together to define research objectives,
