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.
Danble successfully delivered a customized Airbag Deployment Test Chamber for an automotive customer to support reliability and safety validation of airbag systems under controlled environmental conditions.
Danble successfully delivered a customized Damp Heat Test Chamber for an Israeli photovoltaic customer to perform long-term reliability testing of solar modules.
Danble successfully delivered a customized Full Vehicle Climatic Test Chamber for automotive performance evaluation, engine testing, and vehicle reliability development.
Danble successfully delivered a customized Thermal Shock Test Chamber for an automotive customer to evaluate the reliability and durability of electric drive systems under extreme temperature conditions.
Danble successfully delivered a customized Battery Pack Test Chamber for NAST(DAAN AUTOMOTIVE TEST CENTER) to support battery system reliability evaluation and safety verification.
Danble successfully developed a customized E-Axle Test Bench Environmental Chamber for electric vehicle powertrain reliability validation.
Danble successfully completed a customized Constant Temperature & Humidity Controlled Room Project for a medical equipment manufacturer in Thailand.
Danble successfully delivered a customized Walk-In Composite Salt Spray Aging Test Chamber for Fuyao Glass, a leading automotive glass manufacturer.
Danble successfully delivered a customized Drawer-Type High Temperature Aging Test Chamber for an electronics reliability testing project in Chonburi, Thailand.
Danble successfully delivered a customized Low Pressure Test Chamber designed for environmental reliability testing under simulated altitude conditions.
Danble successfully delivered a customized Walk-In High Temperature Aging Test Chamber for Inovance Technology, a leading industrial automation and automotive electronics company.
Automotive manufacturers require reliable testing solutions to ensure vehicle components perform safely under extreme climates and long-term operating conditions.
Aerospace and defense products must operate reliably in extreme environments with strict quality requirements.
The transition toward electric mobility creates increasing demand for environmental testing of EV components and systems.
Material performance depends heavily on environmental conditions. Danble helps research institutions and manufacturers evaluate material durability.
Electronic products require strict environmental validation to ensure stable performance throughout their lifecycle.
The rapid development of electric vehicles and renewable energy systems requires advanced environmental testing solutions for battery safety, reliability, and performance validation.
Standard battery test chambers often create R&D bottlenecks through sequential testing and shared systems prone to cross-contamination. Danble Instrument addresses these limitations with a bespoke three-layer independent battery test chamber, engineered for high-throughput validation. The core innovation lies in three fully isolated 540L cavities, each functioning as a self-contained ecosystem with dedicated refrigeration and control systems. This architecture supports simultaneous execution of disparate test profiles—from -40°C pulse tests to +120°C aging cycles—without thermal interference. Designed for a 120kg load per cavity, the system guarantees temperature uniformity (≤1.5°C) and stability (±0.5°C) under real-world conditions, aided by CFD-optimized airflow and dynamic PID control. Industrial-grade durability is ensured via full PTFE interior coating, resisting hydrofluoric acid corrosion from electrolyte leakage, and redundant water-cooled systems managing up to 1kW internal he
As full-scale e-drive assemblies (EDUs) become standard test subjects in EV R&D, conventional sub-300L thermal shock chambers prove incompatible: cutting prototypes to fit invalidates structural integrity data, making customized large-format solutions a necessity rather than a premium option. Danble Instrument addresses this gap with a bespoke 1800L left-right two-zone thermal shock chamber, engineered to retain the precision of bench-top units at six times the volume. Core design strategies include front-loaded 3D thermal-fluid simulation to optimize airflow and temperature uniformity without post-production tuning, dynamic refrigeration capacity control that anticipates thermal loads to achieve <5-minute recovery without oversized hardware, and a robust nested partition structure that leverages precise alignment between the fixed wall aperture and moving basket to ensure airtightness without complex moving gates. The build demonstrates that large-volume environmental testin