For a bifacial PERC cell, the Al back surface field is replaced by Al grid, hence render the majority of rear side transparent
which enable the cell to absorb light and generate electricity from both sides.
Solar Panel Module Mono 425W 9bb Panels Solar 450W 460W 144 Cell Pv Panel Factory Price
Solar Panel Module Mono 425W 9bb Panels Solar 450W 460W 144 Cell Pv Panel Factory Price
Produktbeschreibung
Product Description

Front side performance equivalent to conventional low LID mono PERC:
-High module conversion efficiency (up to 20.9%).
-Better energy yield with excellent low irradiance performance and temperature coefficient.
-First year power degradation<2%.
Bifacial technology enables additional energy harvesting from rear side(up to 25%).
Glass/glass lamination ensures 30 year product lifetime ,with annual power degradation <0.45%,
1500v compatible to reduce BOS cost.
Solid PID resistance ensures by solar cell process optimization and careful module BOM selection .
Reduced resistive loss with lower operating temperature.
Higher energy yield with lower operating temperature.
Reduced hot spot risk with optimized electrical design and lower operating current.


Cell efficiency>22%,anti-LID,anti-PID,1st year degradation≤2%
Design for short frame without C side can reduce the shading caused by frame

Electrical Characteristics Test uncertainty for Pmax:±3% | ||||||||||||
Model Number | LR4-72HBD-425M | LR4-72HBD-430M | LR4-72HBD-435M | |||||||||
Testing Condition | STC | NOCT | STC | NOCT | STC | NOCT | ||||||
Maximum Power(Pmax/W) | 425 | 317.4 | 430 | 321.1 | 435 | 324.9 | ||||||
Open Circuit Voltage(Voc/V) | 48.7 | 45.6 | 48.9 | 45.8 | 49.1 | 45.9 | ||||||
Short Circuit Current(Isc/A) | 11.22 | 9.06 | 11.30 | 9.13 | 11.36 | 9.18 | ||||||
Voltage at Maximum Power(Vmp/V) | 40.4 | 37.7 | 40.6 | 37.9 | 40.8 | 38.0 | ||||||
Current at Maximum Power (Imp/A) | 10.52 | 8.42 | 10.60 | 8.49 | 10.66 | 8.54 | ||||||
Module Efficiency(%) | 19.6% | 19.8% | 20.0% | |||||||||
STC(Standard Testing Conditions):Irradiance 1000w/m²,Cell Temperature 25℃,Spectra at AM1.5. NOCT(Nominal Operating Cell Temperature):Irradiance 800w/m²,Cell Temperature 20℃, Spectra at AM1.5.Wind at 1m/S | ||||||||||||
Pmax/W | Voc/V | Isc/A | Vmp/V | Imp/A | Pmax gain | |||||
467 | 49.4 | 12.09 | 41.2 | 11.34 | 5% | |||||
490 | 49.4 | 12.67 | 41.2 | 11.88 | 10% | |||||
512 | 49.5 | 13.24 | 41.3 | 12.42 | 15% | |||||
534 | 49.5 | 13.82 | 41.3 | 12.96 | 20% | |||||
556 | 49.5 | 14.40 | 41.3 | 13.50 | 25% | |||||
Electrical characteristics with different rear side power again (reference to 445W front) | ||||||||||



Bifacial Power Generation:
The energy yield of bifacial module can be influenced by albedo, height of module, GCR and DHI etc. Installation height of
bifacial module is recommended to be higher than 1m. Shading from bracket and junction box should be avoided. At present, the power generation of bifacial module on fixed brackets and single axis tracker can be simulated with PVsyst. Investors can determine the DC/AC ratio of bifacial module system to minimize the LCOE.
bifacial module is recommended to be higher than 1m. Shading from bracket and junction box should be avoided. At present, the power generation of bifacial module on fixed brackets and single axis tracker can be simulated with PVsyst. Investors can determine the DC/AC ratio of bifacial module system to minimize the LCOE.

Packing & Delivery




Contact
Lieferfähigkeit
Verpackung und Versand
- Vorlaufzeit:
- Hafen:
- Verpackungsdetails:
>=68250 Watt(e)
US 0.25
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