Hopium Hydrogen Engineering for the Most Demanding Applications
Drawing on our expertise in fuel cell systems, hydrogen infrastructure, and complex systems engineering, Hopium supports manufacturers in developing and integrating solutions tailored to their operational requirements—where power, range, and reliability are essential.
Each application has its own constraints: available power, battery life, operating environment, size, or energy strategy. Hopium develops fuel cell systems designed using a comprehensive systems approach, enabling them to be adapted to various industrial environments. From defining the energy architecture to final integration, our teams have mastered the essential technological building blocks to support the development of high-performance hydrogen solutions.
"No matter what I need, Hopium has the technological building blocks to develop my hydrogen system."
01

Low-carbon energy systems designed for demanding marine environments
Marine applications require power systems capable of providing a reliable, high-performance, and continuous power supply in particularly challenging environments. Drawing on its expertise in system architecture and fuel cell integration, Hopium develops solutions tailored to the needs of marine manufacturers, integrators, and operators. Our approach is based on a modular design that allows us to tailor power output, integration, and energy management to the specific characteristics of each platform.
An architecture designed around your application
Power architectures tailored to available space, mission profiles, and power requirements
Energy available when the mission calls for it
Stable, continuous power where energy availability is critical
A scalable platform
A modular design that supports various types of platforms and power levels
Integration Planned from the Very Beginning
Mechanical architecture, thermal management, power electronics, and control systems developed in a coordinated manner

Develop an energy solution tailored to each vessel's operational profile.

Optimize the system's layout based on the ship's space constraints and interfaces.

Ensure consistent performance in a marine environment.

Efficiently distribute power to the various onboard consumers.

Adapt the system's operation in real time to changes in load.

Ensure development through rigorous performance testing.
Are you developing a hydrogen-powered marine application?
Let's work together on your project.
02

Reliable energy when availability is critical
Critical infrastructure requires energy solutions capable of ensuring maximum operational continuity. Data centers, industrial facilities, and backup systems must be able to rely on a reliable, flexible energy source tailored to their specific requirements. Drawing on its expertise in fuel cell systems and energy integration, Hopium develops architectures capable of meeting stationary power and backup energy needs.
Energy available when you need it most
Operational capacity aligned with the operational requirements of critical infrastructure
An alternative to conventional systems
Electricity generation with no local emissions, quiet operation, and suitable for sensitive environments
A Scalable Architecture
Installed capacity that can be adjusted to meet the needs of each infrastructure and accommodate its growth
Integration Designed for Industrial Environments
A systems-based approach that facilitates the integration of the battery into complex energy architectures

Develop a solution tailored to the consumption profile and operational constraints.

To provide an efficient and reliable energy source.

Maintain performance during intensive or prolonged use.

Optimize the conversion and distribution of the energy produced.

Intelligently manage the system based on energy needs.

Simplify deployment in existing industrial environments.
Are you developing an infrastructure that requires a reliable power supply?
Let's build your energy architecture together.
03

Lightweight Energy for New Aerial Architectures
The aerial applications of the future require new energy solutions capable of providing an optimal balance between power, weight, and range. Drawing on its expertise in designing high-performance fuel cell systems, Hopium develops architectures tailored to the specific constraints of emerging aerial platforms. Our approach combines technological expertise and systems engineering to optimize energy integration, thermal management, and control of the entire system.
High energy density for applications with strict constraints
Systems designed to maximize performance where space and weight are limited
Optimized system integration
An energy architecture tailored to the constraints of each aerial platform
Expertise in Critical Interfaces
Coordinated management of hydrogen, air, thermal, and electrical flows
An approach focused on industrial development
Support from the design phases through to integration and validation

Design a solution tailored to aviation constraints.

Maximize the power-to-weight ratio.

Maintain the system's effectiveness under various operating conditions.

Integrate the solution into spaces with very tight constraints.

Optimize energy efficiency in real time.

Ensure performance before deployment.
Are you developing a new aerial architecture?
Let's work together to find the right energy solution for you.
04

Hydrogen Energy for High-Volume Transportation Missions
Heavy-duty transportation presents specific challenges: long distances, intensive use, high availability requirements, and the need to limit operational emissions. Hopium develops high-performance fuel cell systems that can be integrated into various heavy-duty mobility architectures, providing a solution tailored to the needs for power, range, and energy efficiency.
Power Designed for Heavy-Duty Use
Stable, sustainable power for extended operation with consistent performance
Range compatible with operational constraints
Architectures that meet the need for high autonomy without compromising operations
Optimized integration with vehicle platforms
An energy solution tailored to the needs of manufacturers and integrators
A platform designed for a variety of uses
A modular approach adaptable to various vehicle configurations and usage profiles

Define an energy integration strategy that is consistent with the platform's constraints.

Tailor the solution to actual power and range requirements.

Ensure consistent performance during intensive cycles.

Optimize system installation in a highly constrained environment.

Maximize overall energy efficiency.

Intelligently manage performance based on usage conditions.
Are you developing a heavy-duty hydrogen-powered vehicle?
Let's build your energy architecture together.
05

Zero-emission solutions for demanding environments
Industrial vehicles operate in environments where reliability, durability, and availability are essential. From construction equipment to airport vehicles, each application imposes specific constraints in terms of space, power, and operation. Through its systems engineering approach, Hopium develops hydrogen solutions capable of adapting to a wide variety of industrial architectures.
A solution tailored to every environment
Energy architectures tailored to the specific needs of each application
Easier integration into existing platforms
Optimization of Mechanical, Electrical, and Thermal Integration in Complex Environments
Power Designed for Intensive Cycles
A suitable solution for applications requiring battery life and extended operation
A scalable platform
A modular approach that supports various power levels and integration configurations

Design a solution that aligns with operational constraints.

Define an appropriate energy integration strategy.

Optimize space and installation.

Maintain performance in challenging environments.

Ensure reliability before industrialization.

Prepare for the transition to production volumes.
Are you developing a specialized commercial vehicle?
Let's work together to define your hydrogen solution.
06

Energy Independence in Support of Strategic Operations
Certain applications require maximum energy availability, regardless of environmental or operational constraints. Hopium develops hydrogen solutions capable of meeting these needs through a systems-based approach that integrates energy performance, modularity, and adaptability. From stand-alone systems to embedded applications, our expertise supports partners seeking a reliable energy source in complex environments.
Power designed to perform when it counts
Systems developed for applications where energy continuity is critical
An architecture adaptable to complex environments
Modularity and system integration to adapt to the constraints of each mission
A small operational footprint
A viable alternative when quiet operation, discretion, and reduced local emissions are desired
A mission-driven approach
Each architecture is designed around the end user's operational requirements

Adapt the solution to the mission's constraints.

Deploy a compact and effective solution.

Optimize battery life and energy usage.

Ensure that operations are adapted to different scenarios.

Ensuring operational performance.
Does your application require a reliable power source?
Let's develop your solution together.
07

Testing Tomorrow's Energy Technologies Today
Extreme environments pose unique challenges in terms of power, reliability, and system optimization. They provide an ideal testing ground for pushing the boundaries of technology. Through demonstration and competition programs, Hopium explores new energy architectures, validates its technical choices, and accelerates the transfer of innovations to industrial applications.
A full-scale laboratory
Test technologies under real-world conditions and accelerate development cycles
Continuous performance optimization
Each program helps improve the overall efficiency of the energy system
A Shift Toward Industrial Applications
The lessons learned from these environments will help shape future hydrogen solutions

Pushing the boundaries of technology.

Improve efficiency and performance.

Test the robustness of the solutions.

Speed up development cycles.

Turning experimentation into industrial solutions.
Are you interested in developing an innovative hydrogen demonstration project?
Let's work together on your next technology program.