Module – HYSOLAR – NT10/72GDF-600W
| Manufacturer | |
|---|---|
| Model | |
| Power | |
| Frame color | |
| Efficiency | |
| Product warranty | |
| Linear power warranty | |
| Module type | |
| PV cell type | |
| Double glass | |
| Number of busbars | |
| Fire resistance class | |
| Frame thickness | |
| Height | |
| Width | |
| Maximum static load (Pa) | |
| Cable length (+) | |
| Cable length (-) | 300 mm |
| Quantity per pallet | |
| Quantity per container | |
| Weight | 32,1 kg |
| CN | 85414300 |
Gross
Product details
| Manufacturer | |
|---|---|
| Model | |
| Power | |
| Frame color | |
| Efficiency | |
| Product warranty | |
| Linear power warranty | |
| Module type | |
| PV cell type | |
| Double glass | |
| Number of busbars | |
| Fire resistance class | |
| Frame thickness | |
| Height | |
| Width | |
| Maximum static load (Pa) | |
| Cable length (+) | |
| Cable length (-) | 300 mm |
| Quantity per pallet | |
| Quantity per container | |
| Weight | 32,1 kg |
| CN | 85414300 |
HYsolar HT TOPCon Bifacial N-Type 590~610W
The HYsolar HT TOPCon Bifacial N-Type module series represents an advanced solution for harvesting solar energy. Using N-Type TOPCon technology and a bifacial design, these panels deliver high conversion efficiency, excellent performance in low-light conditions, and long-term reliability. They are engineered to maximize energy yield and reduce the levelized cost of energy (LCOE) over the lifetime of the installation.
Key features of the HYsolar HT TOPCon Bifacial N-Type:
- High module efficiency up to 23.6% and a bifaciality factor up to 80±5%.
- N-Type TOPCon technology with reduced LID and excellent low-irradiance performance.
- SMBB+ design and non-destructive cutting to reduce current losses and the impact of microcracks.
- High reliability proven by resistance to salt mist, ammonia, sand and dust, plus Anti-PID protection.
- Low power temperature coefficient (Pmpp) of -0.28%/°C, resulting in better performance at higher temperatures.
- Guaranteed linear power degradation below 0.4% per year and 87.40% after 30 years, with a 15-year product and workmanship warranty.
Who is this a good choice for?
Panels from the HYsolar HT TOPCon Bifacial N-Type series are an ideal choice for installations that require maximum efficiency and long-term stability, such as ground-mounted, commercial, and industrial projects, as well as residential systems seeking high return on investment (ROI). Their bifacial design and resilience to harsh environmental conditions make them particularly suitable where ground-reflected light can be utilized to increase overall energy production.
| Parameter | HY-NT10/72GDF |
|---|---|
| Cell type | N type mono-crystalline |
| Series | TOPCon Bifacial |
| Nominal power (Wp) | 590~610 |
| Module efficiency (%) | 22.8% – 23.6% |
| Power tolerance | 0~+5W |
| Open-circuit voltage (Voc) (V) | 52.10 – 52.95 |
| Short-circuit current (Isc) (A) | 14.13 – 14.37 |
| Voltage at maximum power (Vmpp) (V) | 44.04 – 44.94 |
| Current at maximum power (Impp) (A) | 13.37 – 15.76 |
| Power temperature coefficient (Pmpp) (%/°C) | -0.28 |
| Current temperature coefficient (Isc) (%/°C) | +0.043 |
| Voltage temperature coefficient (Voc) (%/°C) | -0.24 |
| Nominal module operating temperature (NMOT) (°C) | 42±2 |
| Max. system voltage (IEC) (VDC) | 1500 |
| Number of diodes | 3 |
| Junction box protection rating | IP 68 |
| Max. series fuse current (A) | 30 |
| Operating temperature range (°C) | -40 ~ +85 |
| Bifaciality rate (%) | 80±5% |
| External dimensions (L x W x H) (mm) | 2278 x 1134 x 30 |
| Number of cells | 144 (6*24) |
| Frame type | Aluminum, silver anodized |
| Glass thickness (mm) | 2.0+2.0 |
| Cable length (with connectors) | (+)300 mm, (-)300 mm |
| Cable cross-section (IEC) (mm²/AWG) | 4 mm²/12 AWG |
| Maximum mechanical load (Pa) | 5400 (front) / 2400 (rear) |
| Connector type (IEC) | PV-HYC11xyz(standard)/MC4 EVO2(optional) |
| Module weight (kg) | 32.1 |
| Packing unit | 36 pcs/box |
| Packing unit weight (kg) | 1215 |
| Modules per 40′ HQ container | 720 |
Note: Maximum mechanical load = 1.5 × maximum design mechanical load.

