Guangzhou Anern Energy Technology Co., Ltd
Guangzhou Anern Energy Technology Co., Ltd
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High Efficiency Shingled Solar Modules Mono Perc

Anern AN-MSP series shingled style solar panel is the hot-selling overlapping monocrystalline solar panel in Anern factory. Compared with the normal module cell technology, the shingle cell solar panel adopts the shingling technology which delivers ultra-high efficiency increasing the performance of the panel in low light conditions, boosting the lifetime power yield of the solar system. Shingled modules cut solar cells into strips and overlap them inside the framed module. Intercell gaps are removed, and more silicon cells can be crammed into one module, increasing power output and module efficiency.


The Details of High Efficiency Shingled Solar Modules Mono Perc

By configuring the solar cells in shingles, they can be wired in groups and configured in parallel which significantly reduces the losses energy caused by shading.

By configuring the solar cells in shingles, the shingled PV modules can be wired in groups and configured in parallel which significantly reduces the losses of energy caused by shading.


Adopting seamless soldering technology to allow the gap between the solar cells to be eliminated increasing the number of solar cells per square metre.

Adopting seamless soldering technology, the shingled solar cells allow the gap between the solar cells to be eliminated, which greatly increases the number of solar cells per square meter.


Shingled solar panels have no visible circuitry which give them clean simple look providing superior street appeal.

Shingled solar panels have no visible circuitry which give them clean simple look providing superior street appeal.


Shingled solar cells do not need to be spaced apart like in conventional solar panels, higher power per square metre, the solar panel area can produce more energy.

Shingled solar cells do not need to be spaced apart like in conventional solar panels, higher power per square metre, the solar panel area can produce more energy.


The Specification Of High Efficiency Shingled Solar Modules Mono Perc

Item No.

PM(w)

Maximum Power Voltage

Maximum Power Current

Open Circuit  Voltage

Short Circuit Current

Size

Weight

Warranty

AN-MSP-550W

550W

38.76V

14.19A

45.74V

15A

2148*1186*35mm

28.1kg

25years

AN-MSP-500W

500W

35.34V

14.14A

41.70V

14.96A

2148*1060*35mm

25kg

25years

AN-MSP-450W

450W

31.92V

14.09A

37.66V

14.90A

2148*990*35mm

23.4kg

25years

AN-MSP-400W

400W

35.34V

11.31A

41.70V

11.96A

1730*1060*35mm

20.2kg

25years


The Key Features of High Efficiency Shingled Solar Modules Mono Perc

Advanced Technology:

Solarshingle technology provides ultra-high efficiency and maximizes installation capacity in limited space.

 

Beautiful Appearance:

Shingled solar modules are evenly arranged, which is very visually pleasing.

 

Enhanced Weather Resistance:

Avoid the microcrack of cells caused by the traditional welding process; Solar shingle systems are flexible and have compressive resistance, which makes them suitable for all harsh environments.

 

Reduce System Cost:

High module efficiency reduces floor space effectively, BOS, transportation, and maintenance costs

 

Strong Compatibility:

The perc shingled cell solar panels can be equipped with a variety of mainstream high efficient (PERC, SHJ) cells.

 

Anti-LID / PID:

Ensure higher actual yield during lifetime.


Shingled PV Modules Efficiency

The power of the shingled PV modules is increased by more than 10%: the higher the cells efficiency, the more advantages the shingled solar panel can gain. Compared with conventional PV modules, the theoretical power of shingled PV modules can be increased by 15%, and for mass production, the power can generally be increased by 10%-12%. Based on the M2 specification monocrystal PERC cells, the power of a 60-size conventional monolithic module can reach 315W, and after adopting the shingle enclosure technology, the module power can reach 345W (the power of the whole level, the actual power may be higher).

The increase in power of shingled solar cells mainly comes from the increase in the number of cells with reduced packaging and blanks, and secondly from the reduction in current consumption caused by the elimination of solder ribbons and the reduction of cells slices. In addition, due to the elimination of the welding ribbon, the frontal shielding of the shingled module is reduced, and a small amount of power is also increased.


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