Cell Efficiency:

24.80% , 24.90% , 25.00% , 25.10% , 25.20 % , 25.30% , 25.40% , 25.50% , 25.60% , 25.70%

Thickness:

130±15um

Dimensions:

183.75mm*182.2mm±0.5mm/φ256±0.5mm


  • Half-Cut Technology Optimization (Cell Level)
    The advanced half-cut design of the 183.75 mm N-Type cell reduces internal resistive losses, improves electron transport, and minimizes heat concentration—effectively lowering hotspot risk and increasing overall power output.
  • High-Efficiency Surface Passivation (TOPCon Structure)
    Enhanced passivation layers including SiNx, Al₂O₃, and the TOPCon tunnel oxide significantly improve light absorption and minimize carrier recombination, enabling superior conversion efficiency characteristic of N-Type TOPCon cells.
  • 1500 V System Compatibility
    Cells are engineered to support high-voltage 1500 VDC module configurations, allowing longer string design and reducing BOS (Balance of System) costs in large-scale systems.
  • Microcrack-Resistant Cell Structure
    High-quality N-Type wafers and advanced 16BB metallization reduce the risk of microcracks. Each cell undergoes multi-stage EL inspection to ensure maximum structural reliability and long-term stability.
  • Enhanced Mechanical Strength
    183.75 mm wafers are designed to handle mechanical stress during high-speed stringing, soldering, and lamination. This ensures superior durability and stable performance throughout module manufacturing.
  • Positive Power Tolerance (Precise Cell Sorting)
    Strict IV sorting and tight binning tolerances guarantee positive power output and excellent module matching, resulting in higher and more consistent final module performance.
  • PID-Free Cell Design
    N-Type TOPCon passivation and metallization systems are naturally resistant to Potential Induced Degradation (PID). This ensures long-term reliability under high-voltage, high-humidity, and extreme field conditions.
  • Double-Side Light Response (Bifacial Performance)
    The advanced N-Type TOPCon structure provides strong front and rear light response, with optimized metallization patterns delivering high bifaciality (up to 80–85%), increasing total energy yield in various installation environments.

IEC61215: 2016.IEC61730: 2016 Latest Standard ISo 9001, IS014001 and ISO45001, meeting the highest international standards. Strict quality control