Introduction
Solar Simulator runs at 300 watts and uses a high-brightness, A+A+A+ class xenon light source for stable performance. Its power can be smoothly adjusted between 150 and 300 watts, offering flexibility for different testing needs. The integrated design of the bulb and reflector ensures efficient use of light during experiments. Our solar simulator features imported heat dissipation modules that help extend the lamp’s lifespan to up to 6000 hours.
This analytical equipment is designed to meet the rigorous requirements of modern laboratory operations, ensuring high precision, reliability, and ease of use for various experimental applications.
Applications
Solar Simulator is used in a variety of fields, including material testing, biological research, environmental testing, photovoltaic testing, and space and aerospace.
Specifications
| Lamp Power | 300W |
| Light Source Classification | A+A+A+ xenon light |
| Power Adjustment Range | 150W to 300W continuously adjustable |
| Average Optical Output Power Density | 5 to 15 Sun (1 Sun = 1000W/m²), adjustable |
| Radiant Output | 50W |
| Spectral Output | 300nm to 2500nm |
| Working Spot Diameter | >60mm, continuously adjustable |
| Optical Output Form | Circular light spot, free rotation along axis |
| Input Power | 300W (range: 180W to 320W) |
| Working Current | 21A (range: 10A to 22A) |
| Working Voltage | 14V (range: 13V to 16V) |
| UV Output (<390nm) | 2.6W |
| IR Output (>770nm) | 28.8W |
| Visible Output (390 to 770nm) | 5000 Lumens |
| Light Bulb Window | 25.4mm |
| Bulb’s Lifetime | 1000H (limit: 6000H) |
| Parallel Light Divergence Angle | Average 5° |
| Power Supply | 220V 50Hz / 110V 60Hz |
| Dimension | 640 × 400 × 350 mm |
| Packaging Dimension | 740 × 480 × 430 mm |
| Weight | 20 Kg |
| Gross Weight | 28.8 Kg |
Features
Fast electro-optical conversion
Quick-change filter system
Modular design
Compatible with multiple filter and lens
FAQs
1. What makes the It Solar Simulator suitable for different types of testing applications?
The It Solar Simulator is highly versatile, making it ideal for a wide range of applications like material testing, biological research, environmental studies, and photovoltaic testing. One of the key reasons for this flexibility is its adjustable power range between 150 to 300 watts. This allows users to fine-tune the light intensity based on specific experimental needs. Additionally, the simulator provides a consistent and high-quality light source using a -class xenon lamp, which closely mimics natural sunlight. Its spectral output covers a wide range from 300nm to 2500nm, including ultraviolet, visible, and infrared light, making it perfect for simulating different real-world lighting conditions.
2. How does the solar simulator ensure stable and efficient light output for experiments?
The It Solar Simulator uses a high-brightness xenon light source known for its stable performance. The light bulb is integrated with a reflector in a compact design, which ensures that the maximum amount of light is efficiently directed to the testing area. This design not only improves light utilization but also maintains uniformity in illumination. The simulator provides a circular light spot that can be rotated freely along its axis, with a spot diameter of over 60mm. This makes it easier to align and focus the light precisely where it is needed, ensuring reliable results in every experiment.
3. What is the lifespan of the light bulb, and how does the system help extend it?
The xenon bulb used in the simulator typically has a standard lifespan of around 1000 hours, but it can last up to 6000 hours under optimal conditions. This extended life is made possible by advanced heat dissipation technology. The simulator is equipped with imported heat dissipation modules that effectively manage the heat generated during operation. By keeping the temperature under control, these modules reduce wear on the bulb and other internal components, helping users save on maintenance and replacement costs over time.
4. Can the simulator be customized or upgraded with different optical components?
Yes, the It Solar Simulator is designed with a modular structure, which makes it easy to customize or upgrade. It supports a quick-change filter system, allowing users to swap filters depending on the required wavelength or experimental conditions. Additionally, it is compatible with multiple lenses and filters, making it adaptable to a variety of research setups. This modularity is particularly useful in labs where different types of tests are performed regularly, allowing the equipment to be tailored for specific applications without needing a complete overhaul.
5. What are the safety and usability features that make it easy to operate?
The It Solar Simulator is built with user-friendly and safe operation in mind. It operates on standard power supplies (220V 50Hz or 110V 60Hz) and allows continuous adjustment of both voltage and current within safe limits. The average current is around 21A and the working voltage stays between 13V to 16V, providing a stable electrical input. The system also features fast electro-optical conversion, which means it responds quickly when power settings are changed. These features make the simulator safe and simple to use, even for users who may not have extensive technical experience.
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