JA Solar 455W N-Type Bifacial Double Glass Solar Panel (Black Frame)
Part No: JAM54D-40-455-LB-TSLC-MC4
Efficiency: 22.8% | Warranty: 25-Year Product, 30-Year Linear Power Output
Product Overview
The JA Solar 455W N-Type Bifacial Double Glass Panel is a high-performance solar module engineered for durability, traceability, and maximum energy output. Featuring n-type half-cell technology, bifacial generation, and a robust double-glass design, this panel is ideal for residential, commercial, and industrial solar systems.
With a power rating of 455W and an industry-leading efficiency of 22.8%, it ensures optimal performance even under low-light conditions and elevated temperatures.
Key Features
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High Power Output: 455W output for more power per square meter.
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N-Type Cell Technology: Lower LID (Light-Induced Degradation), better low-light performance, and longer lifespan.
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Bifacial Design: Captures sunlight from both front and rear surfaces for increased yield.
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Double Glass Construction: Superior resistance to environmental stress (moisture, heat, dust).
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Low Carbon, Traceable Technology: Supports sustainability goals with integrated tracking.
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Premium Connectors: Includes Staubli MC4-EVO2A connectors for secure and reliable installation.
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Long-Term Warranty: 25 years product warranty and 30 years linear power output guarantee.
Technical Specifications
| Specification | Value |
|---|---|
| Rated Power (Pmax) | 455W |
| Module Efficiency | 22.8% |
| Cell Type | N-type monocrystalline, half-cell |
| Glass Type | Double glass (bifacial) |
| Open Circuit Voltage (Voc) | 39.5 V |
| Short Circuit Current (Isc) | 14.56 A |
| Voltage at Max Power (Vmp) | 33.0 V |
| Current at Max Power (Imp) | 13.79 A |
| Dimensions (L x W x D) | 1762 x 1134 x 30 mm |
| Weight | 22 kg |
| Connector | Staubli MC4-EVO2A |
| Clamp Position | Long and short side |
| Temperature Coefficient (Pmax) | -0.29%/°C |
| System Voltage | Up to 1500V DC |
| Warranty | 25 Years Product, 30 Years Performance |
This module is ideal for rooftop or ground-mounted systems, especially in environments with reflective surfaces or space constraints where higher energy density is essential.





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