Electrolyzers

Begin your journey toward sustainable energy solutions by collaborating with our technical experts to discuss your project requirements.

More Information

Electrolyzers

Electrolyzers

In electrolysis mode water enters the cell and is split at the surface of the membrane to form protons, electrons, and gaseous oxygen. The gaseous oxygen leaves the cell while the protons move through the membrane under the influence of the applied electric field while electrons move through the external circuit. The protons and electrons combine at the opposite surface to form gaseous hydrogen. The hydrogen and oxygen can be produced at pressure in the electrolysis cell, minimizing the need for external mechanical compression.
Electrolyzers

Basic Electrolyzer Specs

China lake II Electrolyzer - Copy
Begin your journey toward sustainable energy solutions by collaborating with our technical experts to discuss your project requirements.

More Information

image002 (1)

Advanced PEM Electrolyzer Technology for Clean Hydrogen Production

Infinity designs and manufactures Proton Exchange Membrane (PEM) electrolyzer systems that efficiently convert electricity and water into high-purity hydrogen and oxygen. Engineered for renewable energy integration, industrial applications, and aerospace environments, our electrolyzer technology enables clean hydrogen production with exceptional efficiency and reliability.

Why PEM Electrolyzers?

PEM electrolyzers use electricity to split water into hydrogen and oxygen through an electrochemical process. When powered by renewable energy sources such as solar or wind, they produce green hydrogen that can be stored, transported, or used to generate electricity on demand. This makes PEM electrolyzers a key technology for long-duration energy storage, decarbonization, and the emerging hydrogen economy.

Engineered for Mission-Critical Performance

Infinity’s PEM electrolyzer systems are designed to deliver high-purity hydrogen directly at pressure, reducing or eliminating the need for additional mechanical compression. Their rapid response to changing power inputs makes them well suited for renewable energy systems, mobile microgrids, industrial hydrogen production, and aerospace applications where efficiency, reliability, and compact system design are critical.

High-Pressure Hydrogen Generation

Efficient Hydrogen Production with Fewer Components

Unlike conventional electrolyzer systems that often require multiple stages of external compression, Infinity’s PEM electrolyzers generate hydrogen directly at high pressure within the cell. This approach simplifies the balance of plant (BoP), improves overall system reliability, and helps reduce lifecycle operating costs while delivering clean hydrogen for energy storage, transportation, and industrial applications.

Aerospace Heritage & Advanced Engineering

Drawing on decades of experience developing PEM fuel cells and electrolyzers for NASA, defense, and commercial aerospace programs, Infinity designs every electrolyzer system to the rigorous standards required for mission-critical applications. Manufactured in our AS9100-certified facility in Windsor, Connecticut, our technology combines aerospace-grade engineering with practical hydrogen production solutions for the future of clean energy.