425W-455W Mono Solar Panel 9BB Half Cut 144 Cells Photovoltaic Panel

Sales 425W-455W Mono Solar Panel 9BB Half Cut 144 Cells Photovoltaic Panel

With 166mm Cells Mono PERC with MBB & Half-cut Technology, Sunpal HiMAX4 144 Cell Series Solar Panel Power Range 425W 430W 435W 440W 445W 450W 455W.
  • Model : SP455M-72H
  • Junction Box : IP68, three diodes
  • Cell Orientation : 144 (6x24)
  • Junction Box : IP68, three diodes
  • Output Cable : 4mm2, 300mm in length,length can be customized
  • Glass : Single glass 3.2mm coated tempered glass
  • Frame : Silver anodized aluminum alloy frame
  • Weight : 23.5kg±3%
  • Dimension : 2094x1038x35mm
  • Packaging : 30pcs per pallet 660 pcs per 40'ft Container

Product Detail  



HiMAX4 Solar Panel

Sunpal HiMAX4 The product adopts 166 +mm large size 0 optical decay silicon wafer, matched with half piece and multi-main gate mainstream process, redefining the efficient conversion rate of components;Simultaneously launched double-sided version, optional glass back or transparent back, can be flexibly increased to 156 pieces of version, power can be increased to 490 W+.









Multi-main gate technology

Assembled with multi-busbar PERC cells, the half-cell configuration of the modules offers the advantages of higher power output, better temperature-dependent performance, reduced shading effect on the energy generation, lower risk of hot spot, as well as enhanced tolerance for mechanical loading.








certifications of solar panel

HiMAX4 solar panel meet certifications:

IEC 61215, IEC 61730, UL 61730
ISO 9001:2008: ISO Quality Management System
ISO 14001: 2004: ISO Environment Management System
OHSAS 18001: 2007 Occupational Health and Safety




HiMAX4 solar panel featureas:

  • Positive power tolerance (0~+5W) guaranteed High module conversion efficiency (up to 21%) 
  • Slower power degradation enabled by Low LID Mono PERC technology: first year <2%, 0.55% year 2-25 
  • Solid PID resistance ensured by solar cell process optimization and careful module BOM selection 
  • Reduced resistive loss with lower operating current
  • Higher energy yield with lower operating temperature
  • Reduced hot spot risk with optimized electrical design and lower operating current 
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