Applications

Cellerate systems support electrochemistry, materials research, quality control, scale-up, and advanced cell development. Explore how automation improves data quality, repeatability, and throughput across different lab contexts.

Whether you are exploring electrochemistry, validating production materials, scaling processes toward pilot lines, or building large datasets for AI-driven workflows, the challenge is the same: reducing experimental noise and improving confidence in results. Cellerate systems provide modular automation that adapts to your application.

Electrochemistry

High-precision electrochemical testing focused on clean, reproducible material data.

Automation improves:
  • Reduce assembly-induced variability
  • Improve statistical confidence
  • Enable reference electrode integration
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Battery Material Research

Iterative development of cathodes, anodes, solid electrolytes, and additives.

Automation improves:
  • Flexible build routines
  • Format switching (coin, Protocell, SLP)
  • Reduced failed cells
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Quality Control of Battery Materials

Stable, repeatable cell builds for material validation and supply chain decisions.

Automation improves:
  • Up to 90% reduction in staff time
  • ~0.2–0.3% standard deviation
  • Lower failure rates
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Material Scale-Up & Process Development

Bridging R&D and pilot production workflows.

Automation improves
  • 100+ cells/week capability
  • Reduced operator dependency
  • Traceable builds
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High Throuput Testing

Large batch experimentation and parameter sweeps.

Automation improves:
  • 20+ cells/hour
  • Unattended runs
  • Controlled variation at scale
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AI & Machine Learning Screening

Structured cell builds for clean training datasets.

Automation improves:
  • Structured build logs
  • Traceable metadata
  • Repeatable execution
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Sodium & Emerging Chemistries

Next-generation systems with unique handling challenges.

Automation improves:
  • Controlled pressure
  • Reduced failure rates
  • Stable handling of reactive materials
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Solid-State Development

Precision stack pressure and interfacial control.

Automation improves:
  • Pressure control via Protocell
  • Precision alignment
  • Reduced mechanical variability
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Cell Prototyping

Rapid format switching and early commercial validation.

Automation improves:
  • Coin, Protocell, and SLP formats
  • <5 minute die swaps
  • Smooth transition to relevant formats
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