Science-Led Product Development
We pair fundamental electrochemistry with applied engineering to move from lab insight to manufacturable battery systems.

We are an American energy storage company combining deep battery science, AI-driven software, and a domestic supply chain to build safer, more resilient systems for critical applications.
Our Mission
Coulomb Technology is focused on the parts of the energy transition where the margin for failure is thin: mission-critical sites, industrial operations, and government programs that need proven performance.
We combine battery chemistry, software, and system integration so customers can move from concept to field deployment with fewer compromises.
Our work is shaped by the practical constraints that matter most in the real world: safety, supply chain resilience, reliability, and a clear path to scale.
We pair fundamental electrochemistry with applied engineering to move from lab insight to manufacturable battery systems.
We design around domestic manufacturing and compliance requirements so deployment teams can move faster with less sourcing risk.
Our team brings together PhD battery scientists, product builders, and deployment experience across the systems that need to work the first time.
PhD-level chemistry, modeling, and materials expertise informs the cell and pack strategy from the start.
Control logic and analytics help us optimize performance, simplify operation, and surface actionable system insights.
We know how to bridge prototypes, pilots, and funded programs into repeatable delivery.
The team is built around customers who need resilient systems that can survive demanding environments.
Three fundamental problems drive our technology strategy: safer chemistry, stronger supply chain control, and a product architecture that can be deployed where conventional solutions fall short.
Sodium-ion chemistry is fundamentally non-flammable and better suited to environments where safety and operational continuity are non-negotiable.
Sodium is abundant and widely distributed, which supports a manufacturing path less exposed to geopolitical concentration risk.
Our systems are designed for the thermal, operational, and maintenance realities of industrial and government deployments.
Our technology has been selected for funded programs that validate both the science and the execution path behind our platform.
837 kWh DC block deployment supporting resilient energy delivery for mission-critical operations.
837 kWh • 821V nominal • 8-hour backup
Programs supporting battery system refinement, validation, and the path from prototype to field-ready delivery.
Multiple phases • Government-backed R&D
Partnerships that strengthen our materials understanding, validation process, and commercialization approach.
Lab validation • Scale-up alignment







