395-420W Trina 144 Half Cell Framed Multi-busbar Solar Module

395-420W Trina 144 Half Cell Framed Multi-busbar Solar Module, Power Range 395W 400W 405W 410W 415W 420W.
Features and benefits
  • PACKAGING :

    31 pieces per box 682 pieces per 40HQ
  • WEIGHT :

    22.0kg ( 48.5lb)
  • DIMENSION :

    2015 × 996 × 35 mm (79.33× 39.21× 1.38 inches)
  • GLASS :

    3.2 mm High Transmission, AR Coated Heat Strengthened Glass
  • FRAME :

    35 mm (1.38 inches) Anodized Aluminium Alloy
  • OUTPUT CABLE :

    Photovoltaic Technology Cable 4.0mm2
  • CELL ORIENTATION :

    144 cells (6 × 24)
  • JUNCTION BOX :

    IP 68 rated
  • MODEL :

    TSM-DE15M(II) 420W
Product Details



TallMax Solar Module

The multi-busbar technology, with the capability to increase the light absorption, is a perfect match with the large-area cell. Technology integrations enable the panel to achieve higher power and power generation capacity per watt.












Half Cell Solar Module

Tallmax with half cell tech, high-power box, 1500V system voltage, reduce BOS cost, reduce half-cut battery resistance, increase MBB (multi busbar), reflection coefficient ensure higher power.











Trina Authority Certificate

Sunpal is experienced in Trina solar panel,Trina solar panel module mainly includes Vertex, Vertex S, Honey, DUOMAX, TALLMAX series, power range from 360W to 670W.










certifications of solar panel

Trina solar panel meet certifications:

UL 61730 IEC61215/IEC61730/IEC61701/IEC62716

ISO 9001: Quality Management System

ISO 14001: Environmental Management System

ISO14064: Greenhouse Gases Emissions Verification

OHSAS 18001: Occupation Health and Safety Management System




Trina solar panel featureas:

  • Positive power tolerance (0~+5W) guaranteed High module conversion efficiency (up to 20.9%) 
  • 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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