Half-Cut Solar Cells :- Half-cut solar cells are cut into halves (two solar panels fixed in a single frame). The top and bottom portions work independently. One portion is active even if the other is shaded. It is applicable when the area has shade. That improves the solar module's performance. They are also known as "twin cells." Robotic technology is used throughout the manufacturing process by the top ten world-class manufacturers. Here, solar modules are cut into two halves. Each half works as a separate unit. I.e., it works independently and each unit will produce separate current. The main advantage of half-cut solar panels is that they reduce manufacturing costs. Let’s see, a half-cut solar panel with 600 W power requires only 2.2 meters of length and 1 meters of width. We can use the full cut of two panels (300 W x 2 = 600 W panel) instead of the 600 W half cut. Each individual unit has 300 W of power, which requires a space of 1.6 meters in length and 1 meters in width for each panel. This requires space near to double compared to the 600 W half- cut single panel. Manufacturers benefit the most from half-cut solar panels because they reduce their manufacturing costs in a frame, glass, and so on. In this way, customers have only one benefit, which is that they save some of their installation space. If there is any damage to the panel, that will affect the customer. All the benefits are to the manufacturers. In practical experience, full- cut small-wattage solar panels are very useful and more efficient compared to half-cut solar panels. But in the future, the market availability of solar panels will be in the form of half cuts. Muricken's solar products have various top-level international quality certifications and awards. We also use highly efficient solar panels.
We are use world-class top-10 imported solar panels. Those are:Trina Solar Panels, JA Solar Panels, Canadian Solar Panels, Jinko Solar Panels, REC Solar panels, etc. It is a highly efficient ‘A’ grade Mono PERC full and half-cut solar panel manufactured using Advanced Robotic Technology.
Nominal Max. Power (Pmax) | 320 W | 390 w | 440 W | 500W | 550W | 600W | |||
Opt. Operating Voltage (Vmp) | 35.6 V | 40 v | 40.8V | 41 V | 41.47 V | 45.25 V | |||
Opt. Operating Current (Imp) | 9.51 A | 9.75 A | 9.85 A | 11.53 A | 12.90 A | 13.26 A | |||
Open Circuit Voltage (Voc) | 37.70 V | 48.5 V | 42.9 V | 45.5 V | 49.45 V | 55.03 V | |||
Short Circuit Current (Isc) | 19.5 A | 10.30 A | 10.52 A | 12.17 A | 13.79 A | 21.46% A | |||
Module Efficiency | 19.10% | 19.2% | 20.01% | 20.07% | 21.30% | 21.46% | |||
Max. Series Fuse Rating | 20 A | 20 A | 25A | 25 A | 25 A | 30 A | |||
Application Classification | CLASS A | Class A | Class A | Class A | Class A | Class A | |||
M.size | 1685*992*35mm | 2024 *1004 mm | 2063*1026 mm | 2187×1102×35 mm | 2279 mm*1134 MM*35 mm | 2465×1134×35 mm | |||
module weight | 19 Kg | 22 Kg | 23.5 Kg | 28 kg | 30 kg | 34.6 kg | |||
Power Tolerance | 0 ~ + 5 W | 0 ~ + 5 W | 0 ~ + 5 W | 0 ~ + 5 W | 0 ~ + 5 W | 0 ~ + 3 W | |||
Max. System Voltage | 1500V (IEC) or 1000V (IEC) | ||||||||
Operating Temperature | 40°C ~ +85°C | ||||||||
Module Fire Performance | CLASS C (IEC 61730) |
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