Ultraviolet accelerated aging test chamber
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Standards
(1)IEC 61215 Terrestrial Photovoltaic (PV) Modules – Design Qualification and Type Approval
(2)IEC 61646 Thin-Film Terrestrial Photovoltaic (PV) Modules – Design Qualification and Type Approval
Parameters
| Item | Technical Specification |
|---|---|
| Structural material | High UV-blocking, high-sealing, high-thermal-insulation specialized material |
| Total UV irradiation area | ≥2000 mm × 2000 mm |
| Maximum test capacity | Simultaneous testing of 2 photovoltaic modules (2 m × 1 m each) |
| Light source type | Xenon lamp |
| Lamp lifetime (single set) | Approx. 1000 h |
| Spare lamps | 1 set (standard configuration) |
| System cumulative service life | ≥2000 h |
| UVA / UVB energy ratio | UVB accounts for approx. 3%–10% of total energy |
| Irradiance intensity | Approx. 100 W/m² in the 280–385 nm range |
| 280–320 nm proportion | ≤10% |
| Irradiance uniformity | Better than ±15% |
| UVA probe | 320–385 nm, fiber-optic type |
| UVB probe | 280–320 nm, fiber-optic type |
| Module surface temperature | 60 ℃ ±5 ℃ |
| Temperature resolution | 0.1 ℃ |
| Temperature measurement accuracy | ±0.1 ℃ |
| Ozone generation | Negligible |
| Irradiation method | Top irradiation, light source vertically directed at module surface |
| Control mode | Touchscreen control with automatic monitoring and light source cut-off |
Features
Large irradiation area suitable for full-size photovoltaic module testing
Independent UVA and UVB dual-band monitoring compliant with IEC standard requirements
High irradiance intensity effectively shortens test duration
Precise irradiance uniformity control ensures consistency and comparability of test results
Real-time module surface temperature monitoring prevents non-UV-related thermal degradation
Extremely low ozone generation avoids additional material aging effects
Touchscreen human–machine interface enables intuitive parameter setting and traceable operation status
Accessories
(1)Xenon lamp set (standard configuration)
(2)UVA fiber-optic probe (320–385 nm)
(3)UVB fiber-optic probe (280–320 nm)
(4)High-precision surface temperature sensor
(5)Control system (touchscreen and control module)
(6)Dedicated power supply and connection components
Test Procedures
Confirm normal status of the light source, temperature sensors, and irradiance probes before testing
Install photovoltaic modules according to standard requirements, ensuring the irradiated surface is perpendicular to the light source
Set irradiance intensity, test duration, and module surface temperature
Start the ultraviolet aging test and monitor system parameters in real time
Keep the chamber door closed throughout the test to prevent ultraviolet leakage
If irradiance or temperature exceeds preset limits, the system automatically cuts off the light source
After test completion, allow modules to cool to a safe temperature before removal
Maintenance Information
Regularly inspect xenon lamps and replace them according to specified service life
Periodically calibrate UVA and UVB probes to ensure measurement accuracy
Check temperature sensors and control systems for stable operation
Keep the irradiation chamber clean to maintain irradiance uniformity
Verify sealing components to prevent UV leakage and ensure operator safety
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