Solar Simulation Test Chamber

Solar Simulation Test Chamber
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Simulating direct sunlight for testing the properties of products and components

Accurate Simulation of Direct Sunlight for Comprehensive Property Testing

Our solar simulation test chambers offer a reliable and precise solution to evaluate the aging process and properties of your products under direct sunlight exposure. Compliance with international standards and regulations, including PR306.5, DIN75220, GJB150.7A, GB/T2423.24, MIL-STD-810, ensures the accuracy and reliability of our test chambers. Moreover, we offer the flexibility to customize our chambers based on specific testing requirements, addressing the unique needs of our customers.

By subjecting your materials to controlled high-temperature full spectrum sunlight exposure, our test chambers enable you to conduct weathering tests and assess the effects of sunlight radiation, replicating damages that would normally take months or even years to occur outdoors. These damages include fading, color changes, loss of gloss, powdering, cracking, wrinkling, blistering, embrittlement, strength reduction, oxidation, and more. The test results obtained from our chambers can help you select new materials, improve existing ones, or evaluate changes in material formulations.

  • Volume: 1000L to 10m³
  • Temperature Range: -40℃ to 150℃
  • Humidity Range: 10% to 98%
  • Irradiance Range: 600W to 1200W
  • UV, visible light, and infrared radiation with a spectrum distribution close to CIE85
  • Multivariable control to adjust irradiance or black standard surface temperature
  • Special structural design for enhanced protection of the precision irradiation system
  • Customized internal size to accommodate different testing needs
  • Additional temperature ranges
  • Other irradiance intensities tailored to your applications
Full Spectrum Solar Simulation Test Chamber
Features
  • Compliance with industry standards and regulations, such as DIN 75220, IEC 68, US-SFTP, MIL-STD 810, and more
  • Adaptive spectrum through different light sources and filter systems to meet specific application needs
  • Uniform irradiation (X-Y-Z dimensions) for precise testing
  • Special design considerations for challenging environmental conditions, including temperature, climate, wind, and acoustics
  • Versatile light sources adaptable to various installation environments
  • Specialized lamp designs, including lamp groups with cooling systems
  • Multiple lighting functions for tunnel simulation, cloud simulation, and day cycle simulation
  • Lamp stand with dedicated mechanical functions, including height adjustment, X-Y directional movement, and tilt irradiation (front, rear, and side)
  • User-friendly control options, including manual control units, touch screens, and PC interfaces for sunlight simulation
  • Standard and specialized software for seamless operation, offering features such as scene replication, irradiation cycles, profile adaptation, and area management
  • Integration of measurement technologies, including light intensity meters and blackbody temperature sensors, for precise management of irradiation energy and temperature
Specifications
Model EEXT(H)1000 AZTH3.5L-SO
Effective Volume (L) 1045 3480
Internal Dimensions (mm) Width (mm) 1000 2000
Depth (mm) 950 1160
Height (mm) 1100 1500
External Dimensions (mm) Width (mm) 1250 2250
Depth (mm) 2150 2700
Height (mm) 2945 2650
Temperature Range Without sunlight simulation 10%~98% 10℃~ 90℃
With sunlight simulation 10%~98% 15℃~ 80℃
Heating Rate -30℃~ 100℃ 4℃/min
Cooling Rate 100℃~-30℃ 2.5℃/min
Spectrum Distribution CIE85, DIN75220
Irradiance 4200cm² 13600cm²
Maximum Black Standard Temperature 125℃
Power supply AC 380V 50Hz three-phase N PE
Maximum Power (kW) 18 30
Drive-in Solar Simulation Test Chamber
Specifications
Dimensions (W X D X H) 4000mm×6500mm×3100mm
Temperature Range -15℃~60℃
Humidity Range 10%RH~75% RH
Temperature Uniformity /- 7,5%
Lamp 2500W X 18
Light Intensity Range 600~1200 W/m2 (± 3-5%)
Irradiation Area 2000 mm×5000mm
Applications

Our drive-in solar simulation test chamber is specifically designed to evaluate the performance and appearance changes of entire vehicles and their components after exposure to artificial atmospheric conditions.

Our drive-in solar simulation test chamber is widely used in automotive industries for assessing the effects of exposure on backrests, panels, interior and exterior components. Additionally, our test chambers find applications in vehicle thermal management sunlight simulation testing, automotive emission sunlight simulation testing, environmental durability sunlight simulation testing, rail transportation sunlight simulation testing, aerospace sunlight simulation testing, solar cell testing, special lighting, optoelectronic material testing, environmental research, and more.

Test standard
  • DIN 75220(1992);
  • VDA 230;
  • Etc.
Custom Solar Simulation Test Chamber

In addition to our standard aging test equipment, ZUNDAR offers customized solar simulation test chambers tailored to your specific needs. We can design and develop test chambers based on your desired internal volume, temperature range, heating rate, irradiance intensity, and other requirements, ensuring a precise and efficient simulation of sunlight exposure.

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