Industrial Solar Module Laminating Machine with 2400x5500mm Pressure Area and 45kW Peak Power for PV Production
This industrial-grade laminating machine utilizes advanced hot-pressing technology to bond multiple layers of photovoltaic materials including solar cells, glass panels, backsheets, and encapsulation films into sealed, durable solar modules.
The machine operates by placing layered photovoltaic materials in the working chamber where upper and lower heating plates apply controlled temperature and pressure. The encapsulation film melts and flows to fill all gaps between material layers, then cools and solidifies to form a complete, hermetically sealed photovoltaic module.
| Effective Pressure Area | 2400 mm x 5500 mm x 2 |
| Overall Dimensions | 27970 mm x 3300 mm x 2540 mm |
| Total Weight | Approximately 49T |
| Main Busbar Compatibility | 10-20BB |
| Power Supply | AC380V, 3-phase 5-wire |
| Temperature Control | Uniformity ±1.5°C, Accuracy ±1°C, Range 30°C - 180°C |
| Power Consumption | Average: 37W, Peak: 45 kW |
| Vacuum Performance | Ultimate: 30Pa, Rapid evacuation to 120Pa within 120 seconds |
| Inflation Pressure | Adjustable -100KPa to 0KPa within 10 seconds |
| Cooling System | Section Cooling |
- Available in single layer, double layer, dual chamber, and triple chamber configurations
- Customizable in-feed and out-feed tables for specific production requirements
- Advanced vacuum system for bubble-free lamination
- Precision control system for temperature and pressure management
- Robust pressure system with adjustable inflation capabilities
Beijing X-Solar Energy Co., Ltd., founded in 2020, specializes in photovoltaic technology innovation, flexible module production, and advanced equipment manufacturing. The company operates demonstration factories and maintains global presence with regional centers and research facilities.
Review the user manual, inspect equipment for damage, verify component connections, conduct power-on tests, and perform trial production with standard materials.
Configure temperature, pressure, and time settings through the built-in control system interface according to specific photovoltaic module requirements.
Evaluate through visual inspection for bubbles/delamination and electrical performance testing of voltage, current, and fill factor parameters.
Potential causes include vacuum system malfunctions, temperature control inaccuracies, or material quality issues affecting encapsulation film performance.
Regular cleaning, inspection of key components, monitoring operating parameters, and addressing any abnormalities promptly.
Perform thorough maintenance every 1-3 months depending on usage frequency and manufacturer recommendations.
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