Pulse SeriesIndustrial Impedance Spectroscopy for Degradation and Performance Diagnostics; Built for Scientists and Engineers

The Pulse Series provides industrial-scale EIS diagnostics for product development and qualification teams. See the full electrochemical picture of your cells, stacks, and packs, from early research to pre-production. No more guessing why your voltage is changing. Pinpoint the exact source of performance loss.

Track degradation and diagnose performance across stacks up to 5MW+, without losing accuracy or resolution. Optimize performance and understand lifetime faster. Accelerate product development cycles with fewer test iterations.

Applications & Case Studies

Insight in Action: Applications & Papers

1
Degradation Benchmarking and Diagnosis

Uncover the real cause behind declining performance through continuous degradation studies. Instead of relying on scattered, point-in-time measurements, The Pulse Probe tracks how a system degrades over time, giving engineers the data to trace performance loss back to its root cause and design toward longer-lasting systems.

2
Failure Analysis and Post-Field Forensics

Pinpoint why a stack failed without ever taking it apart. By capturing cell-level electrical signatures across the whole stack, The Pulse Probe helps failure analysis teams tell manufacturing defects apart from field misuse, so warranty decisions rest on data instead of guesswork.

3
Detect Electrolyser Stack Defects and Prevent Quality Escapes

Catch stack defects before they ever leave the factory floor. The Pulse Probe tests dormant stacks at open circuit voltage instead of requiring full-power infrastructure, so quality engineers can flag electrode faults, contamination, and uniformity issues early and protect against costly warranty escapes.

Product Insights: EIS for Characterizing Industrial Electrochemical Systems
EIS for Optimizing and Monitoring Stack Operations
Developing Better Electrochemical Cells Using Insights From EIS
Technology

Diagnose and Optimize Electrochemical Performance with Advanced Impedance Spectroscopy

Pinpoint the source of performance loss, and the cause of voltage changes
Run full EIS diagnostics under load, no downtime, no assets offline
Catch degradation mechanisms and failure modes early
Detect electrolyser stack defects and prevent quality escapes at OCV
Track degradation and optimize lifetime performance throughout development, faster and with less energy
Built for industrial scale: Up to to 5MW+, from individual cells to full stacks

The Perfect Pulse Probe for Every Case

For Product Development

Low voltage single channel for single cell measurements

Speak to a Consultant

For High-Throughput Quality Assurance

Higher current and voltage capabilities with simultaneous cell measurement for high-throughput screening

Speak to a Consultant

For High Power Stacks, Modules & Packs

High power characterization for industrial multi-cell stacks, modules or packs

Speak to a Consultant

Custom Probe for your specific needs

Don't see a Probe that suits your electrochemical analysis needs? Give us your specifications and let us design the perfect Probe for you! We provide tailored services and support to ensure the best measurement techniques for your unique system requirements.

Speak to a Consultant
Capabilities

Replace Guesswork with Diagnostics.

Pulse Diagnose replaces trial-and-error testing with industrial-scale diagnostic depth, at every stage of development.

01
Full frequency bandwidth

Measure from 0.01 Hz to 100 kHz with customizable frequency ranges. Capture slow solid-state diffusion and fast charge-transfer processes using rapid multi-sine excitations.

01
Single cell to full stack

Start with individual cell measurements and scale seamlessly to full stacks with the Cell Measurement Unit to measure hundreds of cells simultaneously without additional test time.

01
In-line Measurement

Run EIS while your asset is operating under real conditions. No need to take cells or stacks offline to get accurate impedance data.

01
Catch Degradation Earlier

Identify degradation mechanisms and failure modes early in development, before they become costly problems at scale.

01
Faster Diagnostics, Less Energy

Get deeper diagnostic answers in less time and with less energy than conventional testing methods.

01
High-power capability

High-voltage, high-current architecture supports assets from individual cells to 5MW+ stacks, covering every format at industrial scale.

Expand the Pulse Probe with our Cell Measurement Unit

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.

The Pulse Hub Platform

Software

Pulse Hub: Your analytical command center

Every Pulse R&D system includes full access to the Pulse Hub software platform, purpose-built for electrochemical data at research depth.

01
Real-time visualization

See impedance spectra as measurements happen. Monitor trends, track drift, and catch anomalies the moment they appear.

01
Equivalent Circuit Modeling

Fit impedance data to physical circuit models to extract meaningful electrochemical parameters from every measurement.

01
Distribution of Relaxation Times

Resolve overlapping processes in complex electrochemical systems without assuming a circuit model. Ideal for novel chemistries.

01
High-volume data support

Pulse Hub handles large datasets without bottlenecks. Process days of continuous measurement data with ease.

01
Remote access

Secure cloud-based access means your team can analyze data from anywhere: lab, office, or collaborator site.

01
Benchmark lab to production

Pulse Hub bridges R&D and manufacturing. Export protocols and data formats that map directly to production workflows, reducing ramp time at scale.

Papers

Technical Whitepapers

Developing Failure Catalogues Using Signatures From EIS
EIS for Battery SOC Prediction
Failure Detection Using Signatures From EIS
Developing Failure Catalogues Using Signatures From EIS
EIS for Battery SOC Prediction
Failure Detection Using Signatures From EIS