Product Introduction
In the solar technology field, the N-type monocrystalline solar cell is a leading option. It excels thanks to its conversion efficiency of over 26%, beating traditional cells by 3-5% in energy production. What's more, its N-type semiconductor structure gets rid of light-induced degradation (LID). This means it has a 30-year service life, with power attenuation staying below 20%. All of this makes it a cost-effective choice for large-scale solar farms and rooftop setups.We offer high-performance N type monocrystalline solar cells. They come with strong points like high conversion efficiency, a low temperature coefficient, and great weak-light response. We've got years of experience in renewable energy, and our products are sold in Europe, Asia, and North America. We hope to be your reliable long-term partner.
Product Parameter (specification)
|
Open-circuit voltage (Voc) [V] |
STC |
NOCT |
|
Maximum power (Pmax) [W] |
670 |
505 |
|
Operating voltage at maximum power point (Vmp) [V] |
58.92 |
55.64 |
|
Short-circuit current (Isc) [A] |
48.79 |
46.08 |
|
Operating current at maximum power point (Imp) [A] |
14.42 |
11.66 |
|
Module efficiency |
13.74 |
0.96 |
|
Test conditions |
24.0% |
|
|
Number of battery cells |
156(6*26) |
|
|
Dimensions |
2465*1134*30mm |
|
|
Battery type |
N-type IBC |
|
|
Framework |
Anodized aluminum alloy frame |
|
|
Weight |
34.7kg±3% |
|
Product feature and application
Key Features:
- High-purity monocrystalline silicon material for low resistance and high conductivity.
- Anti-reflective coating to enhance light absorption in low-light conditions (e.g., cloudy days).
- Resistance to extreme weather (moisture, high temperature, and UV radiation).
Applications:
- Residential and commercial rooftop solar systems.
- Utility-scale solar power plants.
- Off-grid systems (remote areas, RVs, boats).
Production details
Our N type monocrystalline solar cells undergo strict manufacturing processes:
1.High-purity silicon ingot casting (99.999% purity).
2.Precision slicing using diamond wire cutting to ensure uniform thickness.
3.Diffusion and passivation layers to reduce electron recombination.
4.Laser scribing for efficient current collection.
FAQ
Q: What is the difference between N type and P type solar cells?
A: N type cells use phosphorus-doped silicon, offering higher efficiency and lower degradation compared to P type (boron-doped) cells.
Q: Can the cells be used in cold climates?
A: Yes, they operate stably in temperatures as low as -40℃, with minimal performance loss.
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