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From co-development with global partners to in-house innovation, we design and build advanced sensing solutions for complex industrial environments.
Our R&D Department Designs the Sensors of Tomorrow
Innovation is at the core of Fast Sense. Our dedicated R&D team develops next-generation sensor technologies to detect a wide range of gases and environmental variables.
We work closely with partners like Engie to co-develop tailored solutions, transforming real-world challenges into reliable, high-performance products.
- Built on expertise.
- Driven by real-world needs.
- Designed for scale.

Fast, Tiny & Affordable IoT Gas Sensor Development & Integration
Hydrogen Gas Sensing
The first Fast Sense developed application is our H2 Gas Sensor solution that can detect and analyse gas blends without being affected by crosssensitivity, providing capabilities for accurate gas measurement, cost-effective distribution & fast analysis of multi-component gas mixtures.
Co-Development with Industry Leaders
We don’t just build sensors — we build them together with our partners.
Through close collaboration with companies like Engie, we co-develop sensing solutions tailored to specific infrastructure, gases, and operating conditions.
Our approach combines deep material science, system integration, and real-world validation to ensure performance where it matters most.
- Joint specification definition
- Application-specific sensor design
- Rapid prototyping and iteration
- Field testing in real environments
- Path to industrial deployment
We transform businesses
Chemiresistor-based sensors decorated with engineered nano-catalyst
Designed for Prevantative Maintenace, Energy Storage, Mixing Process Control, Flow Correction and Gas Delivery. Our platform enables flexible development across multiple sensing needs:
The development of reliable and scalable Hydrogen Quantification sensor solutions for any hard-to-ebate, distribution grids and transportation industries. We bring together deep industry expertise and the latest Materials Science advancements to deliver hydrogen sensing solutions and products that perfectly fit the needs and behavior of their users.
Gases:
- Hydrogen (H₂)
- Methane (CH₄)
- Carbon dioxide (CO₂)
- Nitrogen oxides (NOx)
- Ammonia (NH₃)
- VOCs
Environmental Variables:
- Temperature
- Humidity
- Pressure
- Air quality (PM)
- Flow conditions
- Harsh environments
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Advanced materials such as palladium alloys, metal oxides, and graphene-based composites are being researched and developed for their superior ability to adsorb and react with hydrogen.
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Materials for Gasses

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The complexity real-world environments where hydrogen sensors operate, advanced signal processing algorithms are necessary to filter noise, compensate for sensor drift, and enhance the accuracy of measurements.
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Accurate Signal Processing

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Designing instruments that are certified, robust, compact, and capable of withstanding harsh conditions, such as extreme temperatures and high humidity ensure measurements in the most harshest enviroment.
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IOT for Sensor Design

From Idea to Reliable Sensor
Our R&D Process
Step 1 – Needs Analysis:
We work closely with partners to understand use cases, constraints, and performance targets.
Step 2 – Research & Exploration:
We explore sensing materials, technologies, and detection principles.
Step 3 – Design & Prototyping:
We design and build sensor prototypes, optimizing sensitivity, selectivity, and stability.
Step 4 – Validation & Testing:
We test in lab and real-world conditions to ensure reliability and robustness.
Step 5 – Industrialization:
We prepare scalable designs for manufacturing and deployment.

Use-case Hydrogen Fugitive Footprint
Knowing how much Hydrogen is in your gas.
Our sensors feature a proprietary membrane developed in-house, which selectively allows hydrogen (H2) to permeate. This unique design triggers a measurable alteration in electrical resistance, facilitating precise quantification of H2 levels.
The Fast Sense A1R IoT represents a cutting-edge chemiresistor-based sensor meticulously crafted for discerning and communicating blends of hydrogen and methane in gaseous environments.
Technology Sensing Overview
The chemiresistor-based sensors are semiconductor-based decorated with engineered nano-catalyst, absorbing the target gas. The sensor is currently ATEX approved for Class I, Zone 1 to ensure it highly sensitive material is explosive proof for detection of Hydrogen in flammable gases, such as methane and natural gas.
The benefits of our sensor is a leak detection and gas analysis rolled into one.
- Know whats in your gas through a data stream of accurate gas mixture readings, including emission, concentration, compound and potential caloric value.
- Fast Sense uses much less power than other industry sensors.
- Fast Sense sensors detect the full range of Hydrogen in flammable gases quickly.
- Acts as an embeddable, affordable gas-leakdetecting option.
- On the fly automated environmental recognition
- Fundamentals-based energy analysis
- The sensors have a guranteed life expectancy of up to five years
- Sensors have a fail-safe and built-in log diagnostic, if the sensor becomes inoperable. alerting the owner.
// Feel safe - We build fast and responsive sensors





