Basic Characterization of Solar Cell
In-Line Four Point Probe Tester
Amorphous/microcrystalline Silicon Materials
Steady State Solar Simulator for Solar Cell
Analysis of Defects in Performance Test
Light Induced Degradation Test
Potential Induced Degradation Test
Reverse Current Overload Tester
Potential Induced Degradation (PID) Tester
Current Continuity Test System
Equipment to Evaluate the Performance of PV Modules - Millennial UV Aging Test Chamber
Since the natural aging test of solar modules takes a long time to determine the aging results, it is very costly for photovoltaic companies. At the same time, due to the influence of different environments, the solar modules being tested may also obtain large differences in aging results. Therefore, photovoltaic companies tend to use environmental chambers to artificially accelerate aging. The UV aging test chamber produced by Millennial Solar can ensure the stability of photovoltaic module testing by shortening the solar module test cycle, thereby evaluating the performance of the tested module! In this issue of Millennial Solar, we will introduce you to the function of Millennial UV aging test chamber!
Millennial UV Aging Test Chamber
Millennial UV Aging Test Chamber is specially used for testing solar photovoltaic modules. It is used to evaluate the resistance of polymers and surface coatings to the aging effects of natural factors such as UV radiation, rain, and wind, effectively shortening the time to observe these phenomena, and effectively helps in the screening and optimization of materials and formulas.
E-mail: market@millennialsolar.cn
Millennial UV Aging Test Chamber uses a UV lamp with a metal halide lamp structure to simulate solar radiation and accelerate the aging process of photovoltaic modules by continuously irradiating them. UV lamps have high energy and can simulate the ultraviolet component under solar radiation. This allows photovoltaic modules to undergo long-term exposure and aging in a short period of time, and detect performance changes and aging of photovoltaic modules,to evaluate its service life and performance in real environments.
● Low testing cost and short testing cycle
● Irradiation intensity reaches 150~250W/㎡, irradiation uniformity ≤15%
● Track and record component temperature and maintain it at 60±5℃
●When the operating time/accumulated radiation dose is reached, the equipment automatically stops
Describe the role of Millennial UV Aging Test Chamber in detail
Millennial UV Aging Test Chamber has multiple functions, it can simulate solar radiation under different conditions, such as ultraviolet, visible light and infrared rays of different wavelengths. By simulating different radiation conditions, the performance of photovoltaic modules in different environments can be more accurately evaluated.Millennial UV Aging Test Chamber can also accelerate aging tests, simulating years or even decades of solar exposure conditions in real external environments in a shorter period of time.This helps accelerate the aging of photovoltaic modules and detect potential problems and performance degradation in advance.
In order to simulate the aging of photovoltaic modules under various climate conditions, the environmental control function of Millennial UV Aging Test Chamber can also be used to evaluate the aging of photovoltaic modules by controlling environmental factors such as temperature, humidity, and irradiance.Moreover,Millennial UV Aging Test Chamber is equipped with a cloud platform, which allows it to integrate control of temperature, humidity, vibration, etc., and generate reports with one click, which can greatly shorten the time cost and save the time of making reports!
UV Aging Test Chamber has important application value in the photovoltaic industry. It can evaluate the durability and performance of solar modules for photovoltaic module manufacturers, and provide an important reference for the practical application of photovoltaic modules.Millennial UV Aging Test Chamber produced by Millennial Solar can help photovoltaic module manufacturers regularly detect and evaluate the performance changes and aging of photovoltaic modules by simulating exposure and aging conditions under solar radiation, and develop corresponding maintenance plans.
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