Danble successfully completed a customized Triple-Layer Battery Test Chamber Project for a leading new energy customer in China, with a total delivery of 168 units.
The project was developed to improve battery testing efficiency through an innovative one controller for three zones system, enabling multiple independent test zones to operate with optimized space utilization and energy consumption.
After a six-month laboratory evaluation involving multiple suppliers, Danble was selected as the final supplier due to its outstanding temperature control performance, system reliability, and engineering capability.
The customer required a battery testing solution that could:
· Support long-term battery testing under wide temperature conditions
· Improve laboratory space utilization
· Reduce energy consumption during multi-chamber operation
· Maintain high testing accuracy with a multi-chamber control architecture
Due to the complexity of controlling three test chambers with one system, the customer conducted a strict prototype evaluation before final supplier selection.
Danble developed a customized multi-layer battery testing solution featuring a centralized control system that manages three independent chamber units.
Compared with traditional single-chamber configurations, this design provides:
· Reduced equipment footprint
· Improved laboratory layout efficiency
· Lower overall energy consumption
· Flexible battery testing operation
Parameter | Specification |
Equipment Type | Triple-Layer Battery Test Chamber |
Application | Battery Environmental Reliability Testing |
Quantity Delivered | 168 Units |
Control System | One Controller for Three Test Zones |
Temperature Range | -40°C ~ +150°C |
Temperature Fluctuation | ≤±0.5°C |
Temperature Uniformity | ≤2°C |
Safety Features | Automatic Door, Explosion-Proof Hinges, Pressure Relief Window |
The one-to-three control architecture was developed to meet the customer’s requirements for high-density battery testing facilities.
It enables multiple chambers to operate efficiently while optimizing laboratory space and operational costs.
Before mass production, Danble provided prototype units for customer-side laboratory evaluation.
The equipment underwent approximately six months of comparative testing against multiple suppliers, and Danble was selected based on:
· Stable performance
· Reliable operation
· Accurate environmental control
· System integration capability
The chamber integrates multiple safety protection designs to support safer battery testing operations and reduce risks during long-term testing processes.
Danble completed the manufacturing, delivery, installation support, and commissioning of all 168 units by June 30, 2026.
The complete system has been successfully deployed and put into operation, supporting the customer’s battery development and reliability testing activities.
With Danble’s customized battery testing solution, the customer achieved:
· Large-scale battery testing capability
· Improved laboratory space efficiency
· Reduced energy consumption through optimized system design
· Reliable long-term environmental testing performance
Danble provides customized environmental testing solutions for new energy and battery industries, including:
· Battery Test Chambers
· Battery Safety Test Chambers
· Thermal Shock Chambers
· Temperature Humidity Chambers
· Low Pressure Test Chambers
· Customized Multi-Chamber Testing Systems
With strong engineering capability and experience in complex battery testing projects, Danble helps customers improve testing efficiency and accelerate new energy product development.