Custom-Made High-Flux Solar Simulator
RCS Model
Achieve ultra-high intensity solar simulation with our compact, single-lamp design

High-Flux Solar Simulator (RCS Model)
The RCS model of our High-Flux Solar Simulator (HFSS) is specifically developed to meet our customers' unique needs. Unlike conventional multi-lamp HFSS systems, the RCS model adopts a single-lamp condensing optical system, allowing for high-intensity irradiation while maintaining a compact and user-friendly design.
Key Highlights
High Irradiance
- Effective irradiation area of 20mm x 20mm, providing an irradiance of over 50 W/cm² (500 suns)
- Achieves temperatures over 600°C
- Capable of up to 1000 suns within a 20mm x 20mm area (higher intensities possible with smaller areas)
Innovative Design
- Single-lamp condensing optical system for efficient operation
- Compact design ideal for laboratory environments
- Simplified optical alignment system
Features and Benefits
1. Compact Design
The compact body makes it easy to install in laboratories and suitable for everyday use. Its space-efficient design ensures it can fit in most research environments without compromising on performance.
2. Easy Lamp Alignment
Simple lamp optical axis adjustment eliminates the need for complex alignment work. This feature significantly reduces setup time and maintenance requirements, allowing researchers to focus on their experiments.
3. Spectral Matching Capability
By adding optical filters, it is possible to reproduce spectral distributions such as AM1.5G, AM1.5D, and AM0. This flexibility makes the system suitable for a wide range of research applications and testing scenarios.
Customization Options
We offer custom-made solutions based on these specifications to meet various customer requirements, including:
- Desired irradiance levels
- Irradiation area sizes
- Spectral matching specifications
- Integration with existing research equipment
- Special mounting or positioning requirements
Ready to Learn More?
Contact us to discuss how our High-Flux Solar Simulator can be customized to meet your specific research and development needs.
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