EVO 5N Series Bifacial modules combine combining gettering process and single-side μc-Si technology to ensure higher cell efficiency and higher module power. More stable power generation performance and is even better in hot climates. Natural symmetrical bifacial structure brings more energy yield from the backside.
Brand:
SunEvoPower Range:
430W~450WMax. Efficiency:
23.04%Number of Cells:
108 (6×18)Dimensions of Module L*W*H:
1722 x 1134 x 30mmWeight:
23.5kgsFront Side Glass:
2.0mm coated semi-tempered glassBack Side Glass:
2.0mm semi-tempered glassFrame:
Anodized aluminium alloyJunction Box:
Ip68 rated (3 bypass diodes)Cable:
4mm² , 300mm (+) / 300mm (-), Length can be customizedWind/Snow Load:
5400PaConnector:
MC4 compatibleBifaciality:
80±5%EVO 5N N-type HJT 108 Half Cells 430W 435W 440W 445W 450W Bifacial Dual Glass Solar Module
EVO 5N Series Bifacial modules combine combining gettering process and single-side μc-Si technology to ensure higher cell efficiency and higher module power. More stable power generation performance and is even better in hot climates. Natural symmetrical bifacial structure brings more energy yield from the backside.
Electrical Parameters (STC*)
Maximum Power (Pmax/W) |
430 |
435 |
440 |
445 |
450 |
Maximum Power Voltage (Vmp/V) |
33.49 |
33.75 |
34.01 |
34.26 |
34.51 |
Maximum Power Current (Imp/A) |
12.84 |
12.89 |
12.94 |
12.99 |
13.04 |
Open Circuit Voltage (Voc/V) |
40.30 |
40.56 |
40.83 |
41.09 |
41.34 |
Short Circuit Current (Isc/A) |
13.30 |
13.35 |
13.40 |
13.45 |
13.50 |
Module Efficiency (%) |
22.02 |
22.28 |
22.53 |
22.79 |
23.04 |
Power Output Tolerance (W) |
0/+5W |
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Temperature Coefficient of Isc |
+0.040%/°C |
||||
Temperature Coefficient of Voc |
-0.240%/°C |
||||
Temperature Coefficient of Pmax |
-0.260%/°C |
5% | Maximum Power (Pmax/W) | 475 | 481 | 486 | 492 | 497 |
Module Efficiency STC(%) | 22.12 | 23.39 | 23.66 | 23.93 | 24.19 | |
15% | Maximum Power (Pmax/W) | 495 | 500 | 506 | 512 | 518 |
Module Efficiency STC(%) | 25.32 | 25.62 | 25.91 | 26.21 | 26.50 | |
25% | Maximum Power (Pmax/W) | 538 | 544 | 550 | 556 | 563 |
Module Efficiency STC(%) | 27.53 | 27.85 | 28.16 | 28.49 | 28.80 |
Solar HJT (Heterojunction with Intrinsic Thin layer) technology is a highly efficient solar cell module manufacturing technology. It combines the advantages of traditional silicon energy sources with those of new thin-film solar cells.
HJT technology utilizes a multilayer structure that includes p-type and n-type silicon layers and internal heterojunctions. The heterojunction is achieved by coating the silicon layer with a transparent conducting oxide (TCO) and a thin layer of transparent conducting oxide. This multilayer structure can improve light absorption and carrier separation efficiency, thereby improving the conversion efficiency of solar cells.
The advantages of HJT technology include:
High conversion efficiency: The conversion efficiency of HJT solar cells is as high as more than 20%, and can even reach a higher level. This is higher than conventional crystalline silicon solar cells.
Low-temperature coefficient: HJT solar cells have a low-temperature coefficient, which means they can still maintain high efficiency in high-temperature environments.
Good low-light performance: HJT solar cells have good low-light response characteristics and can generate high power output under low-light conditions.
Lower heat loss: Due to the multi-layer structure of the HJT battery, the heat loss is lower, which helps to improve the performance and life of the battery.
Long Lifespan: HJT solar cells excel in lifespan and can provide reliable long-term energy output.
Although HJT technology has many advantages, it is currently expensive and complicated to manufacture. However, with the advancement of technology and large-scale production, it is expected that the cost of HJT solar modules will gradually decrease, making it one of the important technologies for the future solar industry.
SunEvo solar company provides high-efficiency HJT solar panels to customers. Please visit our website at www.sunevo.com.