The BioLogic BCS-900 is a modular multi-channel battery cycling and electrochemical characterization system offering up to 64 independent channels with EIS capability, designed for large-scale battery research programs, pilot production testing, and high-throughput cell characterization requiring simultaneous testing of many cells with full electrochemical measurement capability.
The BioLogic BCS-900 is BioLogic flagship multi-channel battery cycling platform, providing scalable high-throughput battery characterization with electrochemical impedance spectroscopy (EIS) capability on all channels. The BCS-900 system is modular starting from a base configuration and scaling to up to 64 independent channels on a single system, making it suitable for large battery research programs, pilot production quality control, and industrial-scale cell characterization workflows that require simultaneously testing dozens of cells.
Every channel in the BCS-900 is a full potentiostat/galvanostat with independent current, voltage, and EIS measurement capability. This is a fundamental difference from high-channel-count battery testers used in manufacturing QC, which typically only perform pass/fail cycling without any impedance or advanced electrochemical analysis. The BCS-900 enables the full spectrum of research-grade measurements: CV, EIS, GITT, PITT, rate capability characterization, and Embedded EIS during cycling on every channel simultaneously.
The BCS-900 is designed for demanding battery R&D programs such as parallel aging studies across large cell populations to generate statistically significant lifetime data, high-throughput electrode formulation screening across material libraries, and comprehensive quality characterization of pilot-production cell batches. The system integrates fully with EC-Lab software for protocol programming, automated data management, and analysis. NewRoad provides the BioLogic BCS-900 in Israel for advanced battery research institutions and pilot production facilities.
Modular — up to 64 independent channels, each with full potentiostat/galvanostat + EIS
Research-grade EIS on all channels simultaneously, including Embedded EIS during cycling
Modular expansion from base configuration to 64 channels on a single system
EC-Lab — research-grade protocol programming, parallel channel management, analysis
Large-scale aging studies, material library screening, pilot production QC, statistical cell characterization
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