Higher Efficiency: Our 310watt solar panel raises the bar on conversion efficiency, reaching heights of up to 24.5%.
Reliable & Durable : This solar panel is made of advanced encapsulation material with multi-layered sheet laminations to protect cells from physical damage or distortion, improving cell performance and providing lasting solar panel durability.
Improved Performance:Adapts easily to dull lighting conditions, maintaining a high power generation rate even on overcast days. Its low-temperature coefficient of -0.30%/°C means you still get outstanding conversion ratings even in high temperatures.
Pre-Drilled Holes for Easy Installation: Comes with pre-drilled holes, including ground mounting holes for fast and convenient installation.Compatible with Z Brackets, Corner Brackets, Pole Mounts and Tilt Mounts.
Rugged Aluminum Frame: Co rrosion-resistant aluminum frame design with sturdy corner supports ensures that it endures the outdoors for an extended period of time without damage or loss of performance.
IP68 Solar Connectors: These IP68 waterproof solar connectors ensure that the water and dust will not enter the connector during extended outdoor use. Effectively preventing water from seeping in. Perfect for your yacht and marine applications.
IP68 Junction Box: Complete protection against environmental particles and low-pressure water jets.
Multiple Application Scenarios:
Great for all off-grid installations on motorhome,house,homeroof,garage,garden,cabin,shed,boats,factory,motel,farm ect.
310W Monocrystalline BC Solar Panel 12V Charging RV Camping Home OffGrid Boat
| Maximum Power(Pmax) |
Open-circuit voltage(Voc) |
Short circuit current(Isc) |
Working voltage(Vmp) |
Working current(lmp) |
Size(MM) |
Weight(KG) |
| 5W |
24.12V |
0.27A |
20.16V |
0.25A |
280*190*17mm |
0.9kg |
| 10W |
24.12V |
0.53A |
20.16V |
0.50A |
400*200*17mm |
1.2kg |
| 20W |
21.12V |
1.21A |
18.56V |
1.08A |
360*390*25mm |
1.9kg |
| 30W |
21.12V |
1.82A |
18.56V |
1.62A |
470*390*25mm |
2.3kg |
| 40W |
21.12V |
2.43A |
18.56V |
2.16A |
660*390*25mm |
3.1kg |
| 50W |
23.76V |
2.70A |
20.88V |
2.39A |
520*590*25mm |
3.6kg |
| 60W |
21.78V |
3.53A |
19.14V |
3.13A |
570*590*25mm |
3.9kg |
| 80W |
21.78V |
4.71A |
19.14V |
4.18A |
740*590*30mm |
5.1kg |
| 100W |
27.72V |
4.63A |
24.36V |
4.11A |
930*580*30mm |
6.2kg |
| 150W |
21.12V |
9.11A |
18.56V |
8.08A |
1040*770*30mm |
8.8kg |
| 160W |
21.12V |
9.71A |
18.56V |
8.62A |
1040*770*30mm |
8.8kg |
| 180W |
23.76V |
9.71A |
20.88V |
8.62A |
1160*770*30mm |
9.7kg |
| 200W |
26.40V |
9.71A |
23.20V |
8.62A |
1280*770*30mm |
10.7kg |
| 250W |
23.76V |
13.49A |
20.88V |
11.97A |
1730*770*30mm |
14.2kg |
| 260W |
23.76V |
14.03A |
20.88V |
12.45A |
1730*770*30mm |
14.2kg |
| 300W |
27.52 |
13.89A |
22.78V |
13.17A |
1910*770*30mm |
15.6kg |
| 310W |
27.72V |
14.34A |
24.36V |
12.73A |
1340*1134*30mm |
15.8kg |
| 320W |
27.72V |
14.80A |
24.36V |
13.14A |
1340*1134*30mm |
15.8kg |
| 370W |
39.60V |
11.98A |
34.80V |
10.63A |
1755*1038*35mm |
19.1kg |
| 410W |
47.52V |
11.84A |
41.76V |
10.78A |
2094*1038*35mm |
22.6kg |
| 450W |
39.60V |
13.69A |
34.80V |
12.93A |
1909*1134*35mm |
22.5kg |
| 580W |
47.52V |
13.62A |
41.76V |
13.17A |
2279*1134*35mm |
26.6kg |



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1.Do these panels have brackets attached to the roof?
The component itself is equipped with a junction box connector output voltage. If you need to access the off-grid system, you need to purchase additional appropriate wiring.
2.Can this solar panel accommodate 12V/24V/36V/48V batteries?
It can be used, but must be connected to a controller. When selecting the controller, it is necessary to adapt the maximum component input power that the controller can access (not exceeding).
3.How many kilowatt hours can this solar panel produce in a day?
In the case of STC, the power generation is the product of standard power and time (W*H).
4.What is the difference between high power modules and low power modules?
The biggest difference is that the efficiency of the cells used is not the same, which will result in different power generation efficiency of the PV modules. At the same time, due to the different efficiency of the cells used, their open voltage will not be the same. In addition, at the installation end, the high power module needs less quantity to meet the customer's demand compared to the low power module, which is also convenient for the wiring and installation at the installation end.