SFX-FX-6 Square Battery Testing and Sorting Machine
Description of Product Functions
This unit is multifunctional in design. The Battery Testing System has the capability to accurately measure key parameters for lithium batteries including AC internal resistance and open-circuit voltage. In particular, the OCV Tester can accurately measure the open-circuit voltage to confirm the accuracy of the obtained data. The Battery Sorting Machine can sort and group batteries based on these previously mentioned parameters, while allowing the sorting of and use pair for up to 6 groups at the same time. This unit also possesses a reasonably high degree of automation through the use of hopper feeding, allowing the testing and grouping of approximately 600 battery cells per hour, greatly increasing productivity. At the same time, the system has database management functions, allowing the long-term collection, tracing, and analysis of cell performance data which will allow serious credibility to the research and development, and ameliorate the process's improvement.
Core High-Tech Advantages of the Product
High Precision Testing: The unit has accurate professional testers and reliable measuring conditions, to accurately collect battery parameters, which ensures accuracy is achieved while sorting batteries and confirming performance of a pair of batteries.
Efficient Automation: Use of hopper feeding alongside automated processes allows for the testing and grouping of ~600 battery cells per hour which greatly increases productivity and reduces labor costs.
Powerful Data Management: The Battery Testing System uses a database to manage cell performance data with long-term collection and traceability. The ability to analyze data provides a purposive basis for better research and production improvements.
Technical Parameter Settings
Applications, Benefits and Considerations
Battery Manufacturing Enterprises: The high-precision testing and efficiency of this machine will allow you to quickly and accurately screen batteries with consistent performance in a large scale production environment to improve the overall quality of battery packs, mitigate defect rates, and increases competitiveness within an enterprise.
Battery R&D Institutions: The ability to trace and analyze data will allow researchers to obtain large amounts of accurate battery performance data through the testing process to evaluate and analyze patterns in battery performance variation, improve R&D formulations, and ultimately, foster innovation in battery technology.
Energy Storage System Integrators: The accurate sorting and grouping functions of the Battery Sorting Machine ensure consistency of battery performance in an energy storage system, while also increasing stability and safety to addressing issues of failure of the energy storage systems as previous batteries may not have functioned the same way. This ultimately improves efficacy of the energy system.