Solar Control Coated Glass is a high-performance functional glazing solution engineered to regulate solar radiation through advanced surface coating technologies, including magnetron sputtering and chemical vapor deposition. By utilizing the selective reflection and absorption of light at various wavelengths, this glass effectively blocks near-infrared heat and harmful ultraviolet rays while maintaining optimal visible light transmittance for indoor spaces.
Designed as a cornerstone for sustainable architecture and energy-efficient building envelopes, our solar control glass balances the critical need for natural daylighting with the necessity of thermal insulation. Whether applied to high-rise curtain walls, residential windows, or specialized automotive glass, it serves as a premium material for optimizing indoor climates and reducing dependence on artificial cooling systems.
| Coating Technology | Magnetron Sputtering / CVD | Visible Light Transmittance | 30% - 70% (Adjustable) |
|---|---|---|---|
| Infrared Radiation Block | Over 60% Reduction | UV Protection Rate | Up to 90%+ Blockage |
| Common Colors | Blue, Green, Gold, Neutral | Core Materials | Metals, Metal Oxides, Composite Films |
| Primary Function | Solar Heat Control & UV Filtering | Application Types | Single/Double/Triple Glazing |
| Thermal Performance | Low-E / High Thermal Insulation | Compliance | Green Building Standards |
Blocks over 90% of ultraviolet rays, preventing the fading and aging of interior furniture, fabrics, and artworks.
Significantly lowers air conditioning loads in summer and preserves heat in winter, reducing overall energy consumption.
Reduces glare and softens incoming sunlight to create a visually comfortable and productive indoor environment.
Minimizes sunlight reflections on outdoor electronic screens and billboards, ensuring image clarity and visibility.
Available in multiple coating colors like blue, gold, and green to enhance the architectural beauty of any building.
Suitable for diverse applications from high-rise curtain walls and residential homes to automotive and rail transit.
Seamlessly integrates into high-rise curtain walls and residential window systems for total climate control.
Customizable layer structures to achieve specific balances between light transmittance and heat insulation.
Actively protects internal assets and passengers by filtering harmful spectrums of solar radiation.
Optimizes the passenger experience in high-speed rail and cruise ships by reducing heat gain.
Provides precise wavelength filtering for medical equipment and optical laboratory environments.
Reduces the operational burden on HVAC systems, aligning with global green building certifications.
| Comparison Metric | Ordinary Float Glass | Solar Control Coated Glass |
|---|---|---|
| Energy Consumption | High HVAC Costs | Reduced Cooling/Heating Costs |
| Indoor Comfort | Prone to Glare/Heat | Soft Light, Balanced Temp |
| Asset Lifespan | Rapid UV Degradation | Extended Material Durability |
| Environmental Impact | High Carbon Footprint | Eco-friendly/Green Certified |
| Long-term ROI | Low (High OpEx) | High (Energy Savings) |
Unlike ordinary glass, Solar Control Coated Glass uses specialized metal or metal oxide coatings to selectively reflect infrared heat and UV rays while allowing visible light to pass through, significantly improving thermal insulation.
Yes, it is highly recommended for residential use to prevent indoor temperatures from rising in summer and to reduce heat loss in winter, enhancing overall living comfort.
Our coatings are engineered to maintain high visible light transmittance (typically 30%-70%). While some colors may subtly tint the view, they are designed to reduce glare and improve visual comfort.
By blocking a significant portion of solar infrared radiation, the glass reduces the heat load inside the building, which directly lowers the energy required for air conditioning during hot months.
Absolutely. It is widely used in automotive windshields and side windows to protect passengers from UV radiation and maintain a cooler cabin temperature.
Both are advanced methods. Magnetron Sputtering typically offers higher precision and versatility in coating layers, while CVD (Chemical Vapor Deposition) is highly durable. The choice depends on the specific performance requirements of the project.