345-370W PERC Mono Solar Panel MBB 120 Cells Half Cut All Black PV Module

120 All Black Half Cell Dual Glass Multi Busbar Solar Photovoltaic Module, Sunpal BiMAX4 120 Cell Series Solar Panel Power Range 350W 355W 360W 365W 370W 375W 380W.
Features and benefits
  • MODEL :

    SP370MB-60H
  • JUNCTION BOX :

    IP68, three diodes
  • CELL ORIENTATION :

    120 (6x20)
  • OUTPUT CABLE :

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

    Dual glass, 2.0mm coated tempered glass
  • FRAME :

    Anodized aluminum alloy frame
  • WEIGHT :

    19.5kg
  • DIMENSION :

    1755x1038x30/35mm
  • PACKAGING :

    30pcs per pallet, 180pcs per 20'GP, 780pcs per 40'HC
Product Details


bifacial solar panel




HiMAX4 Solar Panel

Sunpal HiMAX4 120Cell Half Cell mono solar panel, Option: full Black module with Black frame and black Backsheet(60HPB). Backsheet and junction box supporting 1500V system. Split junction box, Cable Length 300mm (can be Customized). 8 mounting holes, adaptable to various mounting approaches. two grounding holes and one leakage hole at each corner.








half cell solar panel



Half Cut Technology

Half-cut cell technology enables higher power and lower hot spot temperature because of low working current。Using M6 standard wafer Part of assembly line upgraded to 9BB, further improve power。35mm frame,front / back side maximum static loading: 5400Pa/2400pa。Cell efficiency >21, anti-LID, anti-PID, 1st year degradation ≤2%。Backsheet with Fluoride on both sides, resistant to ultraviolet radiation.




certifications of solar panel

BiMAX4 Solar Panel 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 




BiMAX4 Solar Panel Features:

  • Bifacial technology enables additional energy harvesting from rear side (up to 21%)
  • Glass/glass lamination ensures 30 year product lifetime, with annual power degradation < 0.45%, 
  • 1500V compatible to reduce BOS cost
  • 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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