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Details Specification
- Item-No.: JKM435N-54HL4R-V-BF
- Availability: In stock
- Dimensions (LxHxW): 1762x1134x30mm
- Plug type: MC4
- Watt peak: 435
- Manufacturer:
- Country of manufacture: China
- Frame: Black Frame (BF)
- Solar type: Glass film
- Weight (kg): 22
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Details Product information 435W Jinko Tiger Neo N-Type Black Frame JKM435N-54HL4R-V
Jinko Tiger Neo N-Type 435W Solar Module Monocrystalline Black Frame
Jinko Tiger Neo N-Type JKM435N-54HL4R-V
15 year product warranty
30 year linear performance warranty
The Jinko Tiger Neo N-Type is a powerful solar module with N-type technology and monocrystalline cells that generates an output of 435 watts.These solar cells rely on the innovative super multi-busbar technology, which efficiently reduces microcracks, shortens the current transmission path by 50% and increases cell efficiency.The module is also equipped with advanced Hot 2.0 technology.
Features:
- Super multi-busbar technology that minimises shading and reduces resistance in the modules.
- PID resistance for an excellent performance guarantee.
- Positive power tolerance of 0~+3%.
- High efficiency of 21.77%.
- Manufacturer product guarantee of 15 years.
- Hot 2.0 technology for improved mechanical resistance and performance in low light.
The Jinko solar module is characterised by its high load-bearing capacity under wind and snow loads in the range of 2400-5400 pascals and offers excellent protection against salt and ammonia.It has a low-iron, hardened front glass with high light transmission and a thickness of 3.2 mm as well as an anti-reflective coating.The frame is made of anodised aluminium alloy.
N-type technology: Compared to conventional P-type products, the N-type technology of the cells offers better performance in terms of power consumption, increases the bifacial factor and optimises the operating temperature, resulting in higher LCOE.
HOT 2.0 technology: HOT 2.0 technology improves the passivation contact technology and helps to increase cell efficiency and power generation performance.The N-type HOT2.0 cell achieves a maximum efficiency of over 21% in mass production and offers promising application possibilities for the future.
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