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HJT Bifacial Double Glass 680W 690Wp 700Watt Photovoltaic Solar Panel Module

Evo 6 Pro Series 132 Half Cells Solar PV Panel 680W 685W 690W 695Wp 700Watt

High Effficiency Monocrystalline HJT Bifacial Double Glass Photovoltaic Solar Panel Module Based on 210mm Solar Cell

  • Brand:

    SunEvo
  • Power Range:

    680W-700W
  • Max. Efficiency:

    22.5%
  • Number of Cells:

    132 Cells (6x22)
  • Dimensions of Module L*W*H:

    2384 x 1303 x 35mm
  • Weight:

    38.2kg
  • Front Side Glass:

    High transparency solar glass 2.0mm
  • Back Side Glass:

    High transparency solar glass 2.0mm
  • Frame:

    Black/Silver, anodized aluminium alloy
  • Junction Box:

    IP68 Rated, 3 Diodes
  • Cable:

    4.0mm2, Portrait: 350mm / Landscape: 1400mm
  • Wind/Snow Load:

    2400Pa/5400Pa*
  • Connector:

    MC Compatible
  • Bifaciality:

    80±5%

New Products


EVO 6 Pro 132 Half Cells HJT 680W 685W 690W 695W 700W Bifacial Dual Glass Solar Module


In order to create the ultimate cost-effective product, SunEvo Solar launched a new generation of ultra-high efficiency HJT solar modules, the Evo 6 Pro monocrystalline N-type HJT bifacial double glass 680-700Watt photovoltaic solar panel. The new series integrates 210mm silicon wafers, with HJT, bifacial, multi-busbar cell technology and high-density encapsulation. The maximum power output on the front side of the three formats, 110 / 120 / 132 half cells, maximum output power reach 700Wp. Meanwhile, based on different installation environments, the rear side power generation gain is between 10-30%.


Evo6-Series-66Cells-HJT-Bifacial-Dual-Glass-680-700W


Electrical Specification


Maximum Power (Pmax/W) 680 685 690 695 700
Maximum Power Voltage (Vmp/V) 41.49 41.65 41.80 41.95 42.10
Maximum Power Current (Imp/A) 16.39 16.45 16.51 16.57 16.63
Open Circuit Voltage (Voc/V) 49.5 49.66 49.82 49.98 50.13
Short Circuit Current (Isc/A) 17.19 17.25 17.31 17.37 17.43
Module Efficiency (%) 21.9 22.1 22.2 22.4 22.5
Power Output Tolerance (W) 0~+5W
Temperature Coefficient of Isc +0.04%/°C
Temperature Coefficient of Voc -0.24%/°C
Temperature Coefficient of Pmax -0.26%/°C



Certifications


All of SunEvo's products have been certified by professional third-party testing bodies around the world, and the testing conditions are complex and diverse, from ordinary installation conditions to various extreme weather conditions, natural environments. We pursue the ultimate in quality and provide the best guarantee for customers' assets and profits.


SunEvo-Solar-PV-Panel-Monocrystalline-CE-TUV-UL-IEC-61215-IEC-61730-INMETRO-CB-Certificates-Photovoltaic-Solar-Cell-Module



  • ISO 9001: 2015: ISO Quality Management System
  • ISO 14001: 2015: ISO Environment Management System
  • ISO 45001: 2018: Occupational Health and Safety
  • CE & EU declaration of conformity
  • IEC 61215 / IEC 61730 Anti-PID Test for Photovoltaic Module
  • IEC 61701 Salt Mist Corrosion Test for Photovoltaic Module
  • IEC 60068-2-68 Dust and Sand Test for Photovoltaic Module
  • UL1703 / UL 61730 – PV Module Safety Standards by UL / CSA / INTERTEK
  • Italian First-Class Report on Fire Prevention
  • INMETRO Ex Tariff for Brazil
  • MCS / JEPC & JET / CEC(Clean Energy Council) approved PV modules / FIDE / CB / DEWA / RETIE




What's the advantage of HJT bifacial dual glass solar panels?


  • Heterojunction Cell Technology

A heterojunction cell combines all the advantages of crystalline and thin-film solar technologies in a single hybrid structure. This provides one of the most effective cell passivations on the market for high levels of power and efficiency - even in hot climates.


  • Lowest Temperature Coefficient

Due to the high open circuit voltage, leading lowest temperature coefficient up to -0.26%/℃, compared with PERC temperature coeffiecient of -0.38%/℃, there is an advantafe of 0.12%/℃, Considering the operating temperature of the Solar Cell exceeds the ambient temperature 10-40℃,the annual average temperature is 5-10℃,which is lower than the standard operating condition of the laboratory, then the output of HJT cell per W is about 0.6-3.9% higher than that of bifacial PERC cell.


  • Higher Bifacial Efficiency

The HJT data show that the Bifacial efficiency rate is as high as 93-95%, while the Double side PERC rate is only 75%+. Taking into account the 10%-20% backside irradiation and the difference in the double-side rate of the cells, the output of HJT cells per watt is about 3%-6% higher than that of double-side PERC cells. 


  • Weak Light Performance 

Under the irradiation intensity below 600W/㎡, the power generation performance of the N-type monocrystalline is higher than the P-type monocrystalline by about 1-2%;Due to extremly low light induced degradation, HJT cells generates about 0.5-1.0% more electricity per W than double-sided PERC cells.




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