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Headquarters
Warsaw, Poland
Email Address
[email protected]
Contact Number
+48 22 848 92 03

Warsaw module double glass 580 parameters

580W N-Type Bifacial TOPCON Double Glass

The TOPCon solar cell structure consists of a thin tunnel oxide layer sandwiched between a transparent conductive oxide (TCO) layer and a p

Double Glass Bi-facial High Efficiency N-type

Nominal bi-facial module gain coefficient can run from 5% to 30% or more, depending on the installation height and the amount of indirect irradiance. It is recommended to design the

MONOCRYSTALLINE DOUBLE GLASS 580-600W

Maximum power test Common Standard Test Environment (STC) irradiance 1000W/㎡, atmospheric quality AM1.5, module temperature 25 ° C Nominal operating battery temperature

6BB HALF-CUT BIFACIAL DOUBLE GLASS MODULE

Excellent temperature performance The temperature of HC module is 1.6 °C lower than that of the conventional module under the same working condition, which results less power loss.

Datasheet PS

Improved light trapping and current collection technology enhance module power output and reliability. Better temperature coe half-cell design. Values at Standard Test Conditions STC

580W-600W 182 N-TOPCon Bifacial Module

Double sides power output to reach higher comprehensive efficiency and get more profit. Higher power output even under low-light environments like on cloudy or foggy days. Higher power

TOPCon Dual Glass 570W 580W 585W Solar Panels Supplier

Yes, the TOPCon BiMAX5N solar module features a robust double-glass construction for long-lasting performance. This design also protects the modules from a variety of weather

JAM72D40 555-580 GB 16BB

DEEP BLUE 4.0 C Mono 580W n-type Bifacial Double Glass High Efficiency Mono Module JAM72D40 555-580/GB Series

Evo 5N N-type HJT Bifacial Dual Glass 144 Half Cells 580

Electrical Parameters (STC*) Module Type: SE5-72HBD Maximum power (Pmax/W) Open Circuit Voltage (Voc/V) Short Circuit Current (Isc/A)

580W N-Type Bifacial TOPCON Double Glass Solar Module

The TOPCon solar cell structure consists of a thin tunnel oxide layer sandwiched between a transparent conductive oxide (TCO) layer and a p-doped crystalline silicon layer. The TCO