Fuel Cell and Electrolyzer Component Production Automation System

  • Automation for fuel-cell and electrolyzer component production
  • BPP feeding and separation
  • MEA feeding and separation
  • Bipolar plate forming or injection moulding
  • Seal application
  • Automated handling and positioning
  • Joining processes
  • Component testing and inspection
  • Customised series-production equipment
  • Scalable industrialisation from lab scale to fab scale

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XENON's Fuel Cell and Electrolyzer Component Production Automation is a configurable manufacturing solution for industrialising component-level processes used in fuel-cell and electrolyzer production. The current portfolio covers feeding and separation of bipolar plates (BPP) and membrane electrode assemblies (MEA), forming or injection moulding of bipolar plates, seal application, handling, positioning, joining and testing. XENON develops customised automation equipment for series production and combines its own feeding, transfer, robot handling, inspection and test technologies to move component manufacturing from manual or laboratory processes toward scalable industrial production.

Use Cases

  • Fuel-cell component manufacturing
  • Electrolyzer component manufacturing
  • Bipolar plate production automation
  • MEA handling and assembly
  • Industrialisation of hydrogen-technology component production

Capabilities

  • Automates component feeding, processing, handling and inspection
  • Integrates multiple manufacturing processes into customised production equipment
  • Supports scale-up from manual production to industrial series manufacturing
  • Combines automation, inspection and testing within one production concept
XENON Automatisierungstechnik GmbH

XENON Automatisierungstechnik GmbH is a German automation-equipment manufacturer providing customised assembly and test systems for series production. Its energy portfolio covers fuel cells and electrolyzers across the full manufacturing value chain, from component production through stack assembly to complete system assembly, using in-house automation, feeding, handling, joining, inspection and testing technologies.

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