About DRM

DeepTech Research & Multiphysics (DRM) LLC is an advanced engineering research and scientific consulting firm focused on solving complex, multidisciplinary challenges at the intersection of science, technology, and innovation. Our expertise spans multiphysics modeling and simulation, advanced electrochemical systems, decarbonization strategies, environmental control, and life support systems (ECLSS), in-situ resource utilization (ISRU), and next-generation materials processing.

DRM was founded by Dr. Jesus Dominguez, a former NASA Principal Investigator with over 20 years of experience at Kennedy Space Center and Marshall Space Flight Center. NASA has granted intellectual property and patent rights to Dr. Dominguez and NASA colleagues for innovative systems they developed. These technologies now form a key part of DRM’s proprietary intellectual property (IP) portfolio, positioning the company to convert government-originated innovations into scalable, mission-ready commercial solutions.

We collaborate with government agencies, commercial enterprises, and research institutions to deliver high-fidelity analysis, integrated system designs, and deployable technologies. By combining physics-based modeling, experimental validation, and advanced computational methods, DRM enables clients to reduce technical risk, optimize performance, and accelerate development timelines.

Our mission is to advance transformative technologies that support energy transition, space exploration, and sustainable industrial processes, while maintaining the highest standards of scientific rigor, engineering excellence, and operational integrity.

Why DRM?

Precision Engineering. First-Principles Thinking. Mission-Level Impact.

DeepTech Research & Multiphysics (DRM) delivers first-principles engineering solutions for high-stakes, physics-constrained systems. Founded by Dr. Jesus Dominguez, a former NASA Principal Investigator, DRM translates NASA-grade research into deployable technologies across energy, space, and advanced manufacturing.

First-Principles Engineering

Physics-based modeling grounded in transport phenomena, thermodynamics, and electrochemistry—eliminating reliance on empirical approximations.

NASA Heritage

Technologies derived from NASA programs, including ECLSS and ISRU, validated under mission-critical constraints.

Multiphysics Digital Twins

Coupled simulations across EM, thermal, fluid, and electrochemical domains to accelerate design and reduce risk.

Rapid Deployment

From concept to implementation, with reduced iteration cycles and accelerated engineering validation.

Proprietary Innovation

Advanced IP portfolio, including a unique, efficient electrochemical process for producing metals and oxygen from metal-oxide feedstocks, including lunar regolith. .

Cross-Domain Expertise

Integrated solutions across energy, aerospace, and materials systems beyond traditional disciplinary boundaries.