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ALDAS-Mini – Compact EIS Analyzer for Electrolysis Cell Development

Description

Product information ALDAS-Mini – Compact EIS Analyzer for Electrolysis Cell Development

The ALDAS-Mini is a compact, high-performance electrolysis cell analyzer designed to accelerate R&D in hydrogen production technologies. Using advanced electrochemical impedance spectroscopy (EIS), it provides deep insights into the internal behavior of electrolysis cells, enabling engineers to optimize efficiency, reduce energy losses, and improve the performance of electrolysis cells and stacks. 

The cell analyzer [OW1.1]can be integrated into existing test setups without modifications to the existing electrolysis system, making it ideal for flexible usage in both laboratory and industrial environments. ALDAS-Mini supports a wide range of electrolysis technologies - including PEM, SOEC, AEM, and alkaline systems, which ensures compatibility across different development platforms. 

A key differentiator is its ability to perform impedance measurements under real high-current operating conditions, handling electrolysis currents from a few amperes up to 2000 A. Combined with simultaneous multi-cell measurement up to 8 cells, ALDAS-Mini enables efficient comparative analysis within cell stacks, significantly improving testing throughput and enabling faster identification of performance differences and degradation effects. 

With high noise immunity and precise current sensing, the ALDAS-Mini delivers stable and reliable measurement results - even in demanding environments. This makes it - making it a powerful tool for advancing next-generation hydrogen technologies. 

The ALDAS-Mini complements the ALDAS lineup as a compact solution alongside the high-speed ALDAS-α and the high-power ALDAS-E

Technical Specifications 

  • Electrochemical impedance spectroscopy (EIS) for electrolysis cells 
  • Electrolysis current range: up to 2000 A
  • Multi-channel measurement: up to 8 cells simultaneously 
  • Compatible with PEM, SOEC, AEM, AWE technologies 
  • High noise immunity for stable measurements

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