DAS Solar 500W N-Type Bifacial Double Glass Full Black
The DAS-DH108NE is a high-efficiency full black module designed to maximize energy production. This module features N-Type bifacial technology, allowing it to capture sunlight from both its front and rear sides. IP68-rated junction box ensures protection against dust and water.
With new technologies and new production capacities, DAS Solar leads the development and innovation of N-Type technology in the PV industry by offering high-performance products and high-efficiency energy conversions.
KEY FEATURES:
- Module conversion efficiency: 22.5%
- N-Type Bifacial Module
- Full Black Panel
- Glass Thickness: 2.0 mm
- Maximum System Voltage: 1,500V
- Better low irradiance performance - Higher power output even under low irradiance environments like on cloudy or foggy days
- Excellent Rear Side Power Generation - Bifaciality is up to 80%, up to 30% more energy yield than conventional modules
- High Reliability - 3-fold IEC new standard tests passed
- Excellent Appearance and Performance - Bifacial solar cell, symmetrical design, low risk of micro-crack
- Extended load tests - Module certified for maximum static test load on the front (5400 Pascal) and maximum static test load on the rear (2400 Pascal)
- IP68 Rating, 3 bypass diodes
- Standard 15 year product warranty; 30-year performance warranty
| Popular Features | N-Type or Glass-Glass/Dual Glass or Bifacial or All Black Panels |
| Brand | DAS Solar |
| Power Class | 500 W |
| Watts/ m² | 225 |
| Panel Power Range | 455W - 500W |
| Cells | 108 Half Cells |
| Frame Colour | Black |
| Backsheet | Black |
| Connector Type | MC4-EVO2 Original |
| Warranty Period | 15 Years |
| Performance Warranty | 30 Years |
| Module Efficiency (%) | 22.5 |
| Open Circuit Voltage - Voc (V) | 35.11 |
| Short Circuit Current - Isc (A) | 16.01 |
| Length (mm) | 1961 |
| Width (mm) | 1134 |
| Thickness (mm) | 30 |
| Product Weight (Kg) | 27.1 |
| Panels per Pallet | 36 |
| Panels per Container | 864 |
| MCS No | BABT8843-119 |
| Annual Degradation (%) | 0.40 |