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

Sales 575W-605W PV Module Mono Half Cut 156 Cells 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)
  • Junction Box : IP68, three diodes
  • Model : SP605M-78H

Product Detail  



HiMAX5 Solar Panel

Sunpal high-efficiency PV module HiMAX5 156 cell series, the maximum power can reach 605W. It has lower current and power loss; low temperature coefficient, high low light power generation performance, high power and low hot spots and a series of outstanding characteristics, can withstand the same snow load and wind load capacity as standard components. The installation method is also equipped with two ways of guide rail and clamp (press block), customers can choose to use according to the actual situation.






Half-cut cell technology

Half Cell Solar panel has 605W ultra-high power,with 21% module efficiency. Less mismatch and parallel design reduce shading impact. High density encapsulation reduces the cell spacing to 0.5mm. Significantly lower LCOE,and more BoS savings. Lower internal loss and the risk of micro-cracking due to multi-busbar cells.







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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