High-Temperature Negative Pressure System
Dynamic environment control: Precise temperature control of 15-60℃ (±3℃) and adjustable negative pressure from -90kPa to 0kPa, guarantees that the uniformity of electrolyte impregnation is enhanced.
Two safety protections: Each layer comes with 2 smoke detectors and temperature measuring zones, to give abnormal conditions a response time of less than 1 second.
Energy-saving design: Charging efficiency ≥80%, discharging efficiency ≥70% saves over 30% on annual electricity costs.
High-Precision Testing Capability
120A high current support: Wide range of charging and discharging current between 240mA-120A meets testing requirements for high rate batteries. As a
Lithium Ion Battery Tester, ±(0.5‰ reading + 0.5‰ full scale) voltage accuracy, and ±(0.5‰ reading + 0.5‰ full scale) current accuracy.
Four-wire precision measurements: Contact resistance <1 milliohm to eliminate contact errors, enabling accuracy of data.
Intelligent sorting system: Supports automatic grading of measured performance by 12 parameters (capacity, voltage, platform etc.) increasing yield by 5%.
Intelligent Production Management
Modular design: Supports fast model change using independent replacements for fixtures, nozzles and the constant current boards, reducing model change by 50%.
Whole-process traceability: Integrated seamlessly with MES systems to record over 20 parameters (voltage, current, temperature etc.) at real-time, enables traceability for the whole process of production.
Automatic recovery function: Power-off continuation will not lost data if the equipment is off-direction-in shutdown, enables the continuity of production.
Mass production of power batteries: Testing of fast-charging performance with 120A high-current validation, with daily mass production capacity of 12,000 pcs batteries.
Energy storage system integration: Consistency can be tested, more than 100Ah battery.
High-end battery R&D: Performance test in high-temperature negative pressure conditions to provide support of new materials development.
Development of special processes: Optimization of aluminum-cased batteries formation for energy density.