The SJ-MT1 fully intelligent control digital high-precision artificial solar simulator is a scientific device that can highly simulate the spectral, irradiance, and spatial distribution characteristics of the sun. It has the characteristics of high precision, adjustability, and anti-interference, and can achieve 24-hour uninterrupted lighting. It is widely used in multiple fields.
1、 Product Features
1. Intelligent adjustment of irradiation intensity, which can adjust the irradiation intensity in time according to the experimental requirements and the experimental stage settings.
2. The lighting direction is vertically up and down, horizontally left and right. Four directional illumination.
3. The irradiation area can be customized according to demand, ranging from 1-100 square meters
4. Intelligent three controls: can be manually controlled, can be controlled through the client, and can be controlled through the cloud.
5. Fan power-off delay function, after shutdown, the device's cooling system delays power-off processing, eliminating the need for manual intervention, saving work time, and improving device lifespan.
6. Ultra long service life: The lifespan of light bulbs is over 2000 hours.

2、 Technical indicators
| name |
Technical Specifications |
| Irradiation area |
1-100 square meters, customized according to experimental requirements |
| Light source type |
Long arc pulse xenon lamp |
| Non-uniformity of light |
±10% |
| Optical instability |
±10% |
| Spectral distribution |
Class B |
| Control method |
Manual, client-side, and cloud based control |
| cooling method |
Delayed air cooling |
| working environment |
Environmental temperature: -20~40 ℃, relative humidity: ≤ 70% |
| power supply method |
AC380V, Three phase five wire system incoming line |
| Lamp Lifetime |
2000 hours |
| lighting direction |
Vertical up and down, horizontal left and right |
| radiation intensity |
400~1800 W/m2 |
| Light source output |
Parallel light irradiation |
3、 Application Fields
1. Photovoltaic industry
Used for characteristic testing of solar cells (such as perovskite cells and dye-sensitized cells), quickly measuring component IV curves, improving detection accuracy, and ensuring factory performance meets standards.
2. Materials Science
Conduct weather resistance experiments on optoelectronic materials, accelerate photocatalytic degradation research, and evaluate the stability of materials under long-term light exposure.
3. Biochemistry and Environmental Research
Simulate the effects of different lighting conditions on plant growth and optimize cultivation plans; Accelerate the photostability testing of cosmetics and evaluate their ability to resist photoaging.
4. Aerospace
Test the performance of spacecraft materials in illuminated environments to provide data support for design.