430-450 W High Light‑Conversion Solar Power Panel, Anti‑PID Photovoltaic Module For Long‑Term Outdoor Industrial Usage
N Type Monocrystalline 430-450W Black Customized Power System
- N-Type monocrystalline cells with enhanced durability and efficiency
- Anodized aluminum frame and IP68-rated junction box for weather resistance
- Wide operating temperature range (-40°C to +85°C) for extreme climates
- Compatible with MC4 connectors and 1000V/1500V DC systems for scalable installations
- Customizable power output (410W-430W) to meet specific project requirements
Structural Parameters
| Cells |
108pcs 182x93mm Monocrystalline solar cells |
| Module Dimension |
1722x1134x30mm (LxWxH) |
| Module Weight |
20.5kg |
| Frame |
Anodized aluminum profile |
| Junction Box |
Rated current: 25A, IP68, TUV |
| Cable |
Length Negative 400mm / Positive 300mm |
| Connector |
Compatible with MC4 |
STC (Standard Test Conditions)
| Parameter |
410W |
415W |
420W |
425W |
430W |
| Maximum Power (Pmax) |
410W |
415W |
420W |
425W |
430W |
| Maximum Power Voltage (Vmp) |
31.13V |
31.32V |
31.51V |
31.70V |
31.88V |
| Maximum Power Current (Imp) |
13.17A |
13.25A |
13.33A |
13.41A |
13.49A |
| Open-circuit Voltage (Voc) |
37.73V |
37.92V |
38.11V |
38.30V |
38.49V |
| Short-circuit Current (Isc) |
13.91A |
13.99A |
13.99A |
14.15A |
14.23A |
| Module Efficiency STC (%) |
21.00 |
21.25 |
21.51 |
21.76 |
22.02 |
STC: Irradiance 1000W/m², cell temperature 25℃, AM1.5G
Operating Conditions
| Max System Voltage |
1000V/1500V DC |
| Temperature Range |
-40°C to +85°C |
| Series Fuse Rating |
25A |
| NOTC |
45±2℃ |
| Temperature Coefficient of Isc (α-Isc) |
+0.033%/℃ |
| Temperature Coefficient of Voc (β-Voc) |
-0.29%/℃ |
| Temperature Coefficient of Pmax (Y-Pmp) |
-0.39%/℃ |
Key Performance Insights
- Wide Operating Range: The system can function in extreme temperatures from -40°C to +85°C, making it versatile for various environments
- High Voltage Compatibility: Supports 1000V/1500V DC, ideal for large-scale solar installations where higher voltages improve efficiency and reduce energy losses
- Temperature Impact on Performance: The temperature coefficients provide critical insights into system performance under different thermal conditions:
- Power Output (Pmax): Decreases by 0.39% for every 1°C increase in temperature
- Voltage (Voc): Decreases by 0.29% for every 1°C increase in temperature
- Current (Isc): Increases slightly by 0.033% for every 1°C increase in temperature