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405W Eclipse Solar PV Panel
【Product introduction】 | |
Cell | Mono 156.75mmx31.2mm High Efficiency Solar Cell |
No. of cells | 408(34×12) |
Rated Maximum Power(Pmax) | 405W |
Junction Box | IP67 |
Maximum System Voltage | 1000V/1500V DC(IEC) |
Operating Temperature | -40℃~+85℃ |
Dimensions | 1941mm×1048mm×40mm |
Weight | 23kg±3% |
【Product description】
5-10% more module power is gain for the 34x12 layout shingled cut cells new design 405W eclipse mono solar Pv panel which is the result of application of conductive paste that enables novel interconnection technologies.
Compared to standard solar module fabrication there are two addinal steps, one is cutting cells into strips (1/5 or 1/6 of standard cells), the other is printing conductive paste on edge of laser cut cell strips and shingle these cells overlapping to form string.
Flexibility of adhesive interconnection of the new design helps to reduce thermal stress in temperature cycling tests. No ribbon required reduces the micro crack potential.
1 KEY FEATURES
2 MECHANICAL DIAGRAMS
3 ELECTRICAL PARAMETERS at STC
Rated Maximum Power(Pmax) [W] | 390 | 395 | 400 | 405 |
Open Circuit Voltage(Voc) [V] | 44.71 | 44.91 | 45.12 | 45.32 |
Maximum Power Voltage(Vmp) [V] | 36.80 | 37.01 | 37.21 | 37.41 |
Short Circuit Current(Isc) [A] | 11.16 | 11.24 | 11.33 | 11.41 |
Maximum Power Current(Imp) [A] | 10.60 | 10.67 | 10.75 | 10.82 |
Module Efficiency [%] | 19.17 | 19.42 | 19.66 | 19.91 |
Power Tolerance | 0~+5W | |||
Temperature Coefficient of Isc(α_Isc) | 0.05%/℃ | |||
Temperature Coefficient of Voc(β_Voc) | -0.275%/℃ | |||
Temperature Coefficient of Pmax(γ_Pmp) | -0.368%/℃ | |||
STC | Irradiance 1000W/m², cell temperature 25℃, AM1.5G |
The direct conversion mode of photo-electricity is to use the photoelectric effect to directly convert solar radiant energy into electric energy. The basic device of the conversion is solar cell. Solar cell is a device that converts solar light energy directly into electric energy due to the photovoltaic effect. It is a semiconductor photodiode. When the solar light shines on the photodiode, the photodiode will change the solar light energy into electric energy and generate electric current. When many cells are connected in series or in parallel, they can become a solar cell array with relatively large output power.