575W-605W PERC Half Cut 156 Cells PV Module Monocrystalline Solar Panel

Sales 575W-605W PERC Half Cut 156 Cells PV Module Monocrystalline Solar Panel

With 182mm Cells Mono PERC with MBB & Half-cut Technology, Sunpal HiMAX5 156 Cell Series Solar Panel Power Range 575W 580W 585W 590W 600W 605W.
  • Packaging : 30pcs per pallet 540 pcs per 40'ft Container
  • Dimension : 2465x1134x35mm
  • Weight : 30.5kg±3%
  • Frame : Silver anodized aluminum alloy frame
  • Glass : Single glass 3.2mm coated tempered glass
  • Output Cable : 4mm2, 300mm in length,length can be customized
  • Junction Box : IP68, three diodes
  • Cell Orientation : 156 (6x26)
  • Model : SP605M-78H
  • Junction Box : IP68, three diodes

Product Detail  



HiMAX5 Solar Panel

Sunpal HiMAX5 products use 182 mm large-size 0 light-decay silicon wafers, while deeply optimizing the module layout, which greatly reduces the ineffective power generation area of the module. Selected auxiliary materials, such as high-reflective grid film backplane, improve light utilization, and module conversion efficiency can reach 21.65%.









Half-cut cell technology

Si cell is divided into two, the main grid current is halved, and the current loss of the whole module is reduced to 1/4 of the original. The output power is about 5-10W higher than the same version of the whole cell module. The hot spot temperature of the half cell module The temperature is about 25℃ lower than that of the same version of the whole cell module, which can effectively reduce the hot spot effect of the module.




certifications of solar panel

HiMAX5 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




HiMAX5 solar panel featureas:

  • Positive power tolerance (0~+5W) guaranteed High module conversion efficiency (up to 21.65%) 
  • 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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