This project is primarily focused on the research and application of novel fluorescent luminescent materials. Leveraging the unique properties of advanced luminescent crystal materials—such as high energy density, low light decay, high-temperature resistance, thermal quenching performance, physicochemical stability, and waterproof/anti-corrosion capabilities—the project explores their application in specialized lighting technologies. The specialized light sources developed in this project exhibit significant advantages over traditional light sources in terms of lifespan, light decay, reliability, and environmental adaptability.
1. High-Power Lighting
Develop new high-temperature-resistant fluorescent luminescent materials to reduce light decay under high energy density, achieving the goals of miniaturization, long-range projection, and high lumen output.
2. Special environments
Develop new corrosion-resistant fluorescent luminescent materials to achieve long lifespan and high reliability of luminaires in special use scenarios.
3. Special spectra
Develop full-spectrum and special-spectrum light sources that can be applied in fields such as educational eye protection, animal husbandry and plant growth.
1.Livestock Lighting
Addresses the challenge of sulfurization resistance in lighting for the livestock industry, ensuring long lifespan and maintenance-free operation. Customizes photoperiod and spectral modulation based on animal needs to enhance productivity.
2. Smart Agriculture
Features tailored light spectra to promote plant growth and development, integrated with intelligent dimming control systems.
3. Industrial Applications
Provides maintenance-free, sensor-driven energy-efficient lighting solutions.
4. Outdoor & Stadium Lighting
Overcomes the high-temperature instability of traditional phosphor conversion materials, improving energy density for high-efficiency and energy-saving illumination.