400 Watt 210mm Monocrystalline Half Cell Photovoltaic Solar Power Panel

390-405W Mono PERC Silver Aluminum Half Cut Solar PV Module, Sunpal HiMAX6 120 Cell Series Solar Panel Power Range 390W 395W 400W 405W.

Features and benefits
  • WEIGHT :

    21.3kg±3%
  • FRAME :

    Anodized aluminum alloy frame
  • GLASS :

    Single glass, 3.2mm coated tempered glass
  • OUTPUT CABLE :

    4mm2, 300mm in length, length can be customized
  • CELL ORIENTATION :

    120 (5x24)
  • JUNCTION BOX :

    IP68, three diodes
  • MODEL :

    SP405M-60H
  • DIMENSION :

    1754x1096x30mm
  • PACKAGING :

    36pcs per pallet, 930pcs per 40'ft Container
Product Details





Aluminum Framed Solar Panel

The power of 210 components can reach 500 watts or above, the efficiency of single-side components is up to 21%, and the efficiency of double-side components is 20.7%, which can meet some projects with high efficiency requirements.









Half-cut Solar Cell

The output power of 210 is limited due to the series resistance lifting of the two-slice halving scheme. The power of the fourth and fifth shards is slightly higher than that of the three shards, but with the increase of the number of shards, the difficulty of the manufacturing process related to the components will be greatly increased, and the product yield will be greatly affected. However, the power difference of the components in the three-chip design of 9BB~14BB is within 2W.





certifications of solar panel

HiMAX6 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




HiMAX6 solar panel featureas:

  • Positive power tolerance (0~+5W) guaranteed High module conversion efficiency (up to 21.4%) 
  • 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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