HPhotovoltaic panels generate more electricity, enhancing overall system efficiency to meet increased energy demands across diverse applications
By reducing production and maintenance expenses, the economic viability of solar systems improves, making energy costs more competitive and accessible
Optimized designs minimize the impact of shading on power output and reduce internal resistance, ensuring efficient energy transmission and better overall performance
Robust panel structures can withstand various environmental stresses, such as wind and snow loads, thereby extending the lifespan and reliability of the photovoltaic systems
Electrical Characteristics | |||||||
Model Number | HJ-425M | HJ-430M | HJ-435M | HJ-440M | HJ-445M | HJ-450M | HJ-455M |
Testing Condition | STC | ||||||
Maximum Power(Pmax/W) | 425 | 430 | 435 | 440 | 445 | 450 | 455 |
Open Circuit Voltage (Voc/V) | 48.3 | 48.5 | 48.7 | 48.9 | 49.1 | 49.3 | 49.5 |
Short Circuit Current(Isc/A) | 11.23 | 11.31 | 11.39 | 11.46 | 11.53 | 11.6 | 11.66 |
Voltage at Maximum Power (Vmp/V) | 40.5 | 40.7 | 40.9 | 41.1 | 41.3 | 41.5 | 41.7 |
Current at Maximum Power(Imp/A) | 10.5 | 10.57 | 10.64 | 10.71 | 10.78 | 10.85 | 10.92 |
Module Efficiency(%) | 19.6 | 19.8 | 20 | 20.2 | 20.5 | 20.7 | 20.9 |
STC (Standard Testing Conditions): Irradiance 1000W/m², Cell Temperature25 ℃, Spectra atAM1.5 |
Note: Specifications are subject to change without prior notice for product improvement. Data Sheet
Residential rooftop solar systems
Commercial buildings for sustainable energy integration
Industrial facilities looking to offset electricity costs
Off-grid applications in remote locations requiring reliable power
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