We are dedicated to redefining the dynamic solar performance of building envelopes within the framework of non-thermal break technology. The 100 Series Non-Thermal Break Louver Shutters System provides an intelligent external shading solution that integrates variable shading coefficients, natural ventilation control, and architectural façade aesthetics for buildings in hot and sunny regions, modern office spaces, and glass curtain wall projects requiring precise daylight management. This is achieved through a precision blade linkage mechanism and a weather-resistant monolithic design. The system utilizes single-piece extruded reinforced aluminum alloy blades with a thickness of 1.2mm and internal reinforcing rib structures, maintaining the fully open characteristics of the louver system without thermal breaks while achieving a structural standard of maximum blade deflection of less than L/200 under wind pressure resistance class 10 conditions.
The core technology of the system is reflected in the three-dimensionally adjustable blade system: each blade unit is equipped with an independent rotation axis and a collective linkage device, enabling precise positioning at 15° increments within a 0°-90° range; the drainage-oriented blade cross-section design incorporates both drainage channels and capillary break lines to achieve rapid water drainage and self-cleaning functions during heavy rain; the drive system offers three options: manual knobs, electric motors, and intelligent photothermal sensors, which can be integrated into building automation systems for automatic adjustment based on solar angles. We provide comprehensive shading coefficient calculation services, generating seasonal shading strategies based on project geographic coordinates, along with professional accessories such as bird deterrents, typhoon locks, and removable cleaning modules.
Choosing the 100 Series Non-Thermal Break Louver Shutters System means gaining dynamic control over building daylight management. Through the synergistic effects of physical shading and natural ventilation, the system effectively reduces cooling loads by up to 30% while maintaining visual transparency in scenarios such as tropical architecture, west-facing glass façades, and green retrofit projects. It achieves adaptive façade innovation for modern buildings under sustainability requirements through zero-energy mechanical intelligence, ensuring over twenty years of maintenance-free operation even under extreme climatic conditions.