Measure all your cells simultaneously
With its modular design, the Pulse Probe can be easily expanded with the Cell Measurement Unit, allowing for simultaneous cell measurements for hundreds of cells within a stack, module, or pack.

Electrochemical assets like batteries, fuel cells, and electrolysers have become irreplaceable infrastructure for our modern energy system. Unfortunately, quality control technology has not kept pace. Until now.
The Pulse Probe Series, by Pulsenics, enables real-time diagnostics for industrial electrochemical systems.

The hardware and software were easy to set up and begin using right away. Using the Pulsenics Probe allowed for continuous and real-time monitoring of cell performance under industrial conditions, which has traditionally been difficult or impossible to do with normal EIS. The software made the processing and analysis of large amounts of EIS data effortless to extract new insights into degradation.
Experience with the Pulsenics' team was phenomenal. Everyone was supportive and flexible from start to finish. The provided documentation and training simplified all stages and maximized testing time. The team is very knowledgeable in EIS and went above and beyond helping to analyze and interpret data.
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The Pulse Series stood out for its ability to analyze multiple cells in a fuel cell stack simultaneously, giving us clear stack-level insight without adding complexity. From planning the stack connectors and completing setup to optimizing parameters, collecting data, and running analysis, the workflow was smooth and reliable. The Pulsenics team was consistently accessible and highly knowledgeable, which made the entire process efficient and straightforward.

Pulsenics’ hardware and software allow us to perform in-situ EIS measurements on our high-performance electrolyser stacks without taking them offline. This capability provides deep insights into stack behaviour under real-world conditions, enabling faster diagnostics, targeted improvements, and more reliable system performance.
Pulsenics' support has been invaluable - they’ve gone above and beyond to ensure we get the most out of their platform. From setup to data interpretation, their team has been responsive, knowledgeable, and proactive in helping us address technical challenges and accelerate our development work.

With its modular design, the Pulse Probe can be easily expanded with the Cell Measurement Unit, allowing for simultaneous cell measurements for hundreds of cells within a stack, module, or pack.


Our software seamlessly integrates with measurement benches, ensuring a smooth and efficient workflow. This compatibility eliminates setup complexities, allowing you to focus on analyzing data with ease.
Our software provides real-time electrochemical data with intuitive visualization tools that bring your measurements to life as they happen. This ensures you can monitor processes and track performance with clarity and precision.
Our software is designed to handle high-volume data with ease, ensuring fast processing and seamless analysis. This capability allows you to work efficiently, even with extensive datasets, without compromising functionality.
Our software supports statistical analysis such as Equivalent Circuit Modeling and Distribution of Relaxation Times analysis, providing advanced tools to model and interpret complex electrochemical systems. This enables accurate characterization and a detailed understanding of system performance and issues.
Our software streamlines data workflows from R&D to Gigafactory, combining real-time electrochemical insights with advanced analytics to optimize processes, accelerate development, and ensure consistent production.
Our cloud-based software offers secure remote access, allowing you to monitor and analyze your data from anywhere. This flexibility ensures you stay connected to your systems and insights, no matter where you are.