Xenon Light Sterilization Transfer Window | 99.99% Kill Rate in 3 Mins | Cleanroom, Lab & Hospital Safe Material Pass-Through
The Xenon Light Transfer Window is a contamination control and sterilization system designed for safe material transfer between clean and non-clean areas, featuring rapid purification and high-efficiency sterilization. Ideal for micro-technology, biological laboratories, pharmaceutical factories, hospitals, food processing, and electronics industries, it integrates 304 sanded/mirror stainless steel construction, xenon light sterilization, and dual interlocking systems. Equipped with a deozonation module, touch control screen, and radiation protection window, it ensures contamination-free transfers and compliance with stringent sterilization standards.
Parameter Name | parameter |
Material | Outer: 304 sanded stainless steel; Inner: 304 mirror stainless steel |
Window Design | Radiation protection window + touch control screen |
Interlock System | Electronic + mechanical interlocking |
Lighting | Xenon light sterilization lamp + deozonation module |
Door Handle | Clamping handle |
External Dimensions | W825 × D670 × H860 (mm) |
Internal Dimensions | W600 × D600 × H600 (mm) |
Power Supply | 220V/50Hz |
Sheet Thickness | 1.0mm |
Key Features
Dual-Layer Stainless Steel Construction:
Outer 304 sanded stainless steel for durability; inner 304 mirror stainless steel for easy cleaning and contamination resistance.
Advanced Sterilization System:
Xenon light sterilization lamp achieves ≥99.99% killing efficiency within 3 minutes for bacteria, viruses, and spores.
Integrated deozonation module eliminates residual ozone, ensuring safety.
Dual Interlocking System:
Electronic + mechanical interlocking prevents simultaneous door opening, eliminating cross-contamination risks.
User-Friendly Components:
Touch control screen for operational ease; built-in printer for process documentation.
Radiation Protection Window:
Ensures operator safety during sterilization cycles.
Compact Design:
Optimized dimensions maximize space efficiency while accommodating diverse transfer items.