Battery testing equipment
Advanced Battery Test Chambers for Safety and Abuse Testing
ITM-LAB designs and manufactures heavy-duty battery test chambers to simulate extreme conditions for EV batteries and consumer electronics power cells. Our advanced testing equipment supports battery crush, nail penetration, and thermal abuse tests strictly in compliance with UN38.3, IEC 62133, and UL standards. Engineered with multi-layered explosion-proof safety features, these chambers are ideal for lithium-ion battery manufacturing plants and compliance testing laboratories globally.
The RS-8000A2-50KN Battery Puncture and Compression Tester is designed for testing battery and power battery packs under puncture and compression conditions. It simulates potential risks like local thermal runaway or internal short circuits caused by compression or external puncture forces. During the test, real-time data on puncture force, stroke, battery surface temperature, and voltage changes are collected and synchronized.
High and low temperature battery explosion-proof test chamber ITM-DEP is designed for power batteries, electric cells, electronic products and other products, parts and components, a variety of materials for high temperature, low temperature test, the equipment can simulate temperature changes in the conditions of Bian on the product, parts and components, materials, such as slanting the quality inspection and reliability testing.
The testing battery sample is placed on a flat surface with a 15.8 earth 0.2mm (5/8 inch) diameter bar placed crosswise over the center of the specimen. A 9.1kg or 10kg weight is dropped onto the sample from a certain height (610mm or 1000mm or 1500mm). Cylindrical or square cells are subjected to the impact test with their longitudinal axis parallel to the plane and perpendicular to the longitudinal axis of the steel column. The longest axis of the square cell is perpendicular to the sub-steel column, and the most heavenly surface is perpendicular to the direction of impact, and each cell is subjected to only one impact test.
Precise Testing: Simulates battery compression under high and low-temperature environments with ±0.5% accuracy.
Wide Application: Complies with multiple international and domestic testing standards (GB, UL, IEC, UN38.3, etc.).
Advanced Technology: Equipped with Panasonic servo motor drive and ball screw transmission.
Customizable: Adjustable compression speed (0.01–1000mm/min) and holding time (0–99h).
High Safety: Features automatic explosion-proof, smoke exhaust, and fire suppression systems.
Model: RS-8000A2
Application: Designed for battery and battery module crush & puncture tests, simulating localized thermal runaway or internal short circuits.
Real-time Data Collection: Monitors pressure, displacement, puncture force, surface temperature, and voltage curve.
Customizable Testing: Adjustable compression and puncture speeds with various fixture options.
Safety: Ensures operator safety and prevents damage to the testing environment during potential fire or explosion.
Compliance: Meets global standards, including GB/T, UL, IEC, and UN38.3
The RS-6006GDW Battery Extrusion Test Chamber combines programmable temperature control with precision battery crush testing to evaluate lithium battery safety under extreme environmental conditions. Designed for battery cells, modules, and small battery packs, it provides reliable data for product development, quality control, and safety validation across EV, energy storage, and consumer electronics industries.
The High and low temperature battery extrusion & needle testing machine RS-6006 GDW is designed for extrusion & acupuncture test of battery and battery module in high and low temperature environment. It has video monitoring function and can automatically save video and reproduce the test process.
The RS-6003C Temperature-Controlled Battery Short-Circuit Test Chamber is designed for lithium battery safety testing under controlled thermal conditions. Supporting up to 1000A short-circuit current, it helps manufacturers comply with UN38.3, IEC 62133, UL 1642, and UL 2580 standards.
RT+10°C to 150°C — Wide temperature range for high-temperature ageing and burn-in testing.
1400 / 2520 L Capacity — Large workspace for multiple DUTs and rack-based testing.
Up to 750 W DUT Heat Load — Designed for powered electronics that generate heat during testing.
≥5°C/min to 80°C — Fast heat-up under specified no-load conditions.