Futurasun Velvet Pro Solar Panels

VELVET PRO SOLAR PANELS

Futurasun Velvet Pro Solar Panels

VELVET PRO SOLAR PANELS 

FU 460 / 465 / 470 / 475 / 480 MVL Velvet Pro 

Velvet is a new photovoltaic panel bifacial glass/glass model based on N-type heterojunction half-cut multi busbar solar cells. Moreover, the symmetrical cell structure grants a high bifaciality factor and also the aesthetics of the module is enhanced with a very uniform appearance for both module sides.

The Velvet Pro range features a glass-glass structure with 144 HJT MMB half-cut cells (166 mm – M6). These cells are laminated and framed in 2094 x 1038 mm, and weight 27.5 kg. Moreover, the rated power of this range can reach 480 Wp.

INFORMATION

BRAND 

FuturaSun

PRODUCT TYPE 

Solar Panel

POWER

Approximately 10 Watts

PROTECTION CLASS 

II - accordance to IEC 61730

MAXIMUM REVERSE CURRENT

20 A

USE

Indoor

COLLECTION

Velvet

144 BIFACIAL HJT HALF-CUT MBB CELLS 

166mm

DIMENSIONS 

2094 x 1038 x 30 mm

Futurasun Velvet Pro Solar Panels

TEMPERATURE 

Temperature coefficient Pmax: -0.26 %/°C

EFFICIENCY 

High module efficiency up to : 22,1%

FRAME 

Anodized aluminium frame with mounting and drainage hole

TEMPERATURE COEFFICIENT 

Only 0.26 %/°C which ensures a higher yield during hot weather conditions.

GLASS-GLASS CONFIGURATION  

The double glass structure grants mechanical stability that moreover reduces the risk of microcracks, snail trails, corrosions caused by moisture, sand and salt mist.

PRODUCT TECHNOLOGY

Futurasun Velvet Pro Solar Panels
Heterojunction
half-cut module
Futurasun Velvet Pro Solar Panels
Temperature
coefficient
-0.26 %/°C
Futurasun Velvet Pro Solar Panels
Mechanically strong thanks to the dual glass

WEIGHT 

27.5 kg

POWER RANGE 

460 - 480 Wp

CERTIFICATIONS 

- IEC 61215:2016 – IEC 61730:2016
- Fire Resistance – Class C

DOWNLOAD 

↓ Data Sheet

MAXIMUM SYSTEM VOLTAGE 

1500 V

Futurasun Velvet Pro Solar Panels

 PERFORMANCE GUARANTEE 

- 99% at the end of first year
- 91% at the end of 20th year
- 88% at the end of 30th year
- Max power decrease from 2nd year 0.4%/year

MECHANICAL SPECIFICATIONS 

- Bifaciality : 80 ± 5 %
- Cells : 144 half-cut bifacial HJT cells 166 x 83 mm
- Junction box : Certified according to IEC 62790, IP67 / IP68 approved, 3 bypass diodes
- Glass : Front - 2.0 mm Solar glass with ARC Back - 2.0 mm Solar glass with white grid
- Mechanical load (snow) : Design load: 3600 Pa 5400 Pa (including safety factor 1.5)
- Mechanical load (wind) : Design load: 1600 Pa 2400 Pa (including safety factor 1.5)
- Cables : Solar cable, length 1300 mm length or customized assembled with 4 mm² compatible connectors

GENERAL FEATURES 

- Up to 85% bifaciality factor
- Improved low light performance-30
- Resistant to LID (Light Induced Degradation)
- Excellent temperature coefficient -0.26 %/°C
-year performance guarantee & 15-year product warranty
- Superior module efficiency up to 22.5% equal to 225.0 Wp/m2
- Better colour uniformity, particularly on the back side, thanks to TCO layers
- Half-cut design in combination with multi-busbar reduces operating current and internal resistance
- Lower LCOE (Levelized Cost Of Energy), reduced BOS (Balance Of System) cost, shorter payback time
- Mechanically strong thanks to the dual glass configuration that moreover reduces the risk of microcracks, snail trails, corrosions caused by moisture, sand and salt mist

PV PANEL

BIFACIAL PV PANEL 

The Velvet series can also convert light reflected to the rear side of the module into energy and thanks to the natural bifacial symmetrical structure of HJT cells a high bifacial factor is reached.

Thanks to this technical benefit the energy yield can increase up to 30% depending on the nature of the reflecting surface, the geographical location and the installation conditions (e.g., the distance from the reflective substrate, the type of substrate and the use of trackers).

Futurasun Velvet Pro Solar Panels

To make greater use of the Albedo factor, the reflective capacity of an object or surface, the standard version of Velvet is characterized by a white grid on the second glass. This increases the power output by approximately 10 Watts per module compared to the version with a transparent second glass, which is offered to those seeking a greater passage of light for architectural applications.