The half-cell design splits traditional full-size cells into two, effectively reducing the internal resistance loss of the cells. This allows current to flow more smoothly during transmission, minimizing power loss. Especially in low-light conditions, they can still maintain excellent power generation performance, significantly increasing the overall electricity output of the module.
In terms of core design, the product optimizes the structural mechanics model and adopts high-strength alloy materials and precision forging processes, enabling the key load-bearing components to have an anti-deformation capacity that is more than 30% higher than that of traditional versions. Whether it is continuous static load or high-frequency dynamic load, it can maintain a stable operating state, effectively avoiding problems such as component wear and fracture caused by overload, and significantly extending the service life of the equipment.
In practical applications, this advantage can easily meet the needs of diverse scenarios. For example, in industrial production lines, it can stably carry the handling and processing of heavy workpieces, ensuring the continuous and efficient operation of the production process; in logistics and transportation equipment, it can easily handle the loading, unloading and transportation of large-tonnage goods, improving the efficiency of logistics operations.
MODEL | HY-P10/156H-440 | HY-P10/156H-445 | HY-P10/156H-450 | HY-P10/156H-455 | HY-P10/156H-460 | |||||
STC | NOCT | STC | NOCT | STC | NOCT | STC | NOCT | STC | NOCT | |
Power Output-Pmax(W) | 440 | 332 | 445 | 336 | 450 | 340 | 455 | 344 | 460 | 348 |
Maximum Power Voltage-Vmp(V) | 41.93 | 40.37 | 42.23 | 40.68 | 42.53 | 40.99 | 42.83 | 41.3 | 43.13 | 41.61 |
Maximum Power Current-Imp(A) | 10.47 | 8.22 | 10.52 | 8.26 | 10.57 | 8.29 | 10.62 | 8.33 | 10.67 | 8.37 |
Open-Circuit Voltage-Voc(V) | 51.03 | 48.41 | 51.33 | 48.63 | 51.63 | 48.89 | 51.93 | 49.15 | 52.23 | 49.41 |
Short-Circuit Current-Isc(A) | 11.06 | 8.77 | 11.11 | 8.81 | 11.16 | 8.85 | 11.21 | 8.89 | 11.26 | 8.93 |
Module Efficiency-ηm(%) | 18.7 | / | 18.9 | / | 19.1 | / | 19.4 | / | 19.6 | / |
Power Tolerance(W) | (0,+5W) | |||||||||
Maximum System Voltage(V) | 1500Vdc (IEC / UL) | |||||||||
Max Series Fuse Rating(A) | 20A | |||||||||
*Standard Test Conditions (STC): Irradiance 1000 W/m², Cell Temperature 25°C, Air Mass AM 1.5 | *NOCT Testing Conditions: Irradiance 800 W/m², Cell Temperature 20°C, Wind Speed 1 m/s |
Cell Arrangement | Mono-Crystalline 166mm (12x13pcs) |
Dimensions of Module L*W*H | 2264x1038x30mm |
weight | 25.5kg |
Glass | 3. 2mm Tempered Glass |
Frame | Anodized aluminium alloy |
Junction Box | IP68 |
Cables | 3 diodes,4.0mm²,30cm,length can be customized |
Mechanical load | Front Side Max.5400Pa, Rear Side Max.2400Pa |
Connector | MC Compatible |
2264x1038x30mm | |
Container | 40’HQ |
Module per box | 36 |
Module per 40′ Container | 780 |
Nominal Operating Cell Temperature (NOCT) | 43±2℃ |
Temperature Coefficient of Pmax | -0.340%C |
Temperature Coefficient of Voc | -0.250%摄氏度 |
Temperature Coefficient of lsc | +0.040%摄氏度 |
Operational Temperature | -40~+85℃ |
·The unit is millimeter.
·The picture below is a schematic diagram of the product, if you need detailed drawings, please contact HonorSolar