2025 Latest Prices | In Stock | Fast Shipping
Multi Busbar Technology
Better light trapping and current collection to improve module power output and reliability
Reduced Hot Spot Loss
Optimized electrical design and lower operating current for reduced hot spot loss and better temperature coeffcient
Durability Against Extreme Environmental Conditions
High salt mist and ammonia resistance
Enhanced Mechanical Load
Certifed to withstand: wind load (2400 Pascel) and snow load (5400 Pascal).
Positive power tolerance (0-+5W) guaranteed
High module conversion efficiency (up to22.53%)
Slower power degradation enabled by Low LID technology: first year <1%,0.40% year 2-30
Solid PlD resistance 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
Positive power tolerance (0-+5W) guaranteed
High module conversion efficiency (up to22.53%)
Slower power degradation enabled by Low LID technology: first year <1%,0.40% year 2-30
Solid PlD resistance 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
Positive power tolerance (0-+5W) guaranteed
High module conversion efficiency (up to23.04%)
Slower power degradation enabled by Low LID technology: first year <1%,0.40% year 2-30
Solid PlD resistance 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
Positive power tolerance (0-+5W) guaranteed
High module conversion efficiency (up to23.04%)
Slower power degradation enabled by Low LID technology: first year <1%,0.40% year 2-30
Solid PlD resistance 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
Positive power tolerance (0-+5W) guaranteed
High module conversion efficiency (up to 22.82%)
Slower power degradation enabled by Low LID technology: first year <1%,0.40% year 2-30
Solid PlD resistance 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
Positive power tolerance (0-+5W) guaranteed
High module conversion efficiency (up to 22.82%)
Slower power degradation enabled by Low LID technology: first year <1%,0.40% year 2-30
Solid PlD resistance 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
2025 Latest Prices | In Stock | Fast Shipping
Multi Busbar Technology
Better light trapping and current collection to improve module power output and reliability
Reduced Hot Spot Loss
Optimized electrical design and lower operating current for reduced hot spot loss and better temperature coeffcient
Durability Against Extreme Environmental Conditions
High salt mist and ammonia resistance
Enhanced Mechanical Load
Certifed to withstand: wind load (2400 Pascel) and snow load (5400 Pascal).
Positive power tolerance (0-+5W) guaranteed
High module conversion efficiency (up to22.53%)
Slower power degradation enabled by Low LID technology: first year <1%,0.40% year 2-30
Solid PlD resistance 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
Positive power tolerance (0-+5W) guaranteed
High module conversion efficiency (up to22.53%)
Slower power degradation enabled by Low LID technology: first year <1%,0.40% year 2-30
Solid PlD resistance 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
Positive power tolerance (0-+5W) guaranteed
High module conversion efficiency (up to23.04%)
Slower power degradation enabled by Low LID technology: first year <1%,0.40% year 2-30
Solid PlD resistance 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
Positive power tolerance (0-+5W) guaranteed
High module conversion efficiency (up to23.04%)
Slower power degradation enabled by Low LID technology: first year <1%,0.40% year 2-30
Solid PlD resistance 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
Positive power tolerance (0-+5W) guaranteed
High module conversion efficiency (up to 22.82%)
Slower power degradation enabled by Low LID technology: first year <1%,0.40% year 2-30
Solid PlD resistance 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
Positive power tolerance (0-+5W) guaranteed
High module conversion efficiency (up to 22.82%)
Slower power degradation enabled by Low LID technology: first year <1%,0.40% year 2-30
Solid PlD resistance 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