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340W Half Cut Mono Solar Panels Black

340W Half Cut Mono Solar Panels Black

SKU编号: FS9100388
Photo panel with a power of 340W in Half Cut technology, protecting against energy losses
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340W Half Cut Mono Solar Panels Black

Description
340W half cut mono solar panels Black
Photo panel with a power of 340W in Half Cut technology, protecting against energy losses
In this dimension of the panel and 340W power, it is the most effective development of the roof space for a prosumer photovoltaic installation at a reasonable price. The standard 35mm black bezel matches the roof color well.

Advantages:
Higher generated energy and lower power loss
Mechanisms against point overheating and no PID degradation
Less influence of shading, and in combination with the Sofar inverter, which has two MPPT regulators (possibility to separate the installation into 2 strings), it allows to maximize the yield.
Suitable for 1500V systems
Less installation cost

Specification
Power: 340W
Module type: monocrystalline
120 cells (6x20)
HALF CUT manufacturing technology
Frame: black frame
Size: 1684 x 1002 x 35 mm
Glass: 3.2 mm thick toughened glass resistant to hail
Minimum period of guaranteed linear performance: 30 years (this means that the panels will maintain the stated specification for the declared period, in particular the performance)
HALF CUT technology
The module made of HC (Half Cut), i.e. with links cut in half, instead of the classic 60 links with dimensions of 156 × 156 mm, it has 120 links with dimensions of 156 × 78 mm.

The use of cells cut in half allows you to increase the power (5-10 Wp) from the PV module. This is because the power loss is the resistance multiplied by the squared current. Moreover, a cell cut in half has half the current, as the current value is directly proportional to the cell surface.

Why panels in HALF CUT technology?
The offered HALF CUT panels, in addition to their higher power, also have:
Better PV module fill factor and about 1.5-3% higher module efficiency. In a half-cut cell, each busbar carries half the current, and a decrease in electrical resistance causes an overall increase in efficiency, especially during periods of high solar radiation.
greater resistance to the "hot spot" effect
better parameters in partial shading
better efficiency when the module is dirty