Half-cut cell technology is to cut the cell into two seperate parts by mature infrared laser, hence halve the working current. The
thermal loss on the ribbon will be remarkably reduced and the module’s power increases by 2%. The reliability of module is also
enhanced.
The combination of half-cut cell technology and bifacial module can amplify the gain over the effect of current-reduction.
- Product Details
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Quick Details
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Warranty:
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25 years linear power output warranty
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Brand Name:
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Trina
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Model Number:
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TSM-NEG9R.28 415-440W
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Place of Origin:
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Jiangsu, China
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Panel Dimensions:
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1762mm*1134mm*30mm
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Product name:
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Trina solar panels
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Application:
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Solar Power System
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Solar cell:
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182*182mm
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Junction Box:
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IP68 Rated
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Weight:
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21.8 kg
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Connector:
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MC4 EVO2 / TS4*
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Certificate:
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CE TUV
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Frame:
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Black Anodized Aluminium Alloy
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Cable:
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4mm2
Quick Details
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Cell size:
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182mm*182mm
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Type:
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PERC, Half Cell
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Panel Efficiency:
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20.8%-21.8%, 21.8%
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Warranty:
-
25 years linear power output warranty
-
Brand Name:
-
Trina
-
Model Number:
-
TSM-NEG9R.28 415-440W
-
Place of Origin:
-
Jiangsu, China
-
Panel Dimensions:
-
1762mm*1134mm*30mm
-
Product name:
-
Trina solar panels
-
Application:
-
Solar Power System
-
Solar cell:
-
182*182mm
-
Junction Box:
-
IP68 Rated
-
Weight:
-
21.8 kg
-
Connector:
-
MC4 EVO2 / TS4*
-
Certificate:
-
CE TUV
-
Frame:
-
Black Anodized Aluminium Alloy
-
Cable:
-
4mm2
Product Description
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Brand Name
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TRINA
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Model Number
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TSM-NEG9R.28/DE09R.05 405-440w
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Cell size
|
182mmx182mm
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Type
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Perc half cut cells
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Panel Dimensions
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1762mm*1134mm*30mm
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Panel Efficiency
|
22%
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Certificate
|
TUV/CE/VDE
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Warranty
|
25 years
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Application
|
Solar Power System
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Type
|
Half Cell
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Product name
|
N-TYPE Mono Solar Panel
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Weight
|
21.8kg
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Cell Type
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Mono 182mm*182mm
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Cable
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4mm² Length 300mm
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Junction Box
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IP68,with Bypass Diodes
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Connector
|
MC4 Compatiple
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Number of Cells
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144 Half Cells
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Trina Technology
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Multi-busbar Technology
In comparison with the conventional 5 busbar design, the innovative multi-busbar design on the cell can shorten the current collection transverse path by 50% and thereby reduce remarkably the cell internal resistance, which contributes a 1% - 1.5% increase in the power output compared with 5 busbar design.
The MBB design can also mitigate the performance loss caused by blocked electrical pathways in case of cell microcracks and finger electrode erosion due to external factors.
In comparison with the conventional 5 busbar design, the innovative multi-busbar design on the cell can shorten the current collection transverse path by 50% and thereby reduce remarkably the cell internal resistance, which contributes a 1% - 1.5% increase in the power output compared with 5 busbar design.
The MBB design can also mitigate the performance loss caused by blocked electrical pathways in case of cell microcracks and finger electrode erosion due to external factors.
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Half-cut Technology
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