Hybrid Pvt Solar Panel
      
                Key Advantages:
1. Superior Overall Efficiency: Achieves significantly higher total energy conversion efficiency by utilizing both sunlight spectrums (PV for electricity, thermal collector for waste heat).
2. Reduced Energy Costs: Simultaneously offsets electricity bills and heating/hot water costs (for space heating, domestic hot water, pool heating, industrial processes).
3. Simplified Installation & Aesthetics: One integrated system replaces two, simplifying roof mounting, wiring, and piping. Offers a cleaner, more unified appearance.
Product Introduction:
Our Hybrid Pvt Solar Panel are the next generation of solar technology, intelligently combining proven photovoltaic (PV) electricity generation with efficient solar thermal energy collection within a single, robust module.
Dual Energy Output: Produces electricity (PV) AND usable thermal energy (hot water/air) from the same panel surface area.
Hybrid Pvt Solar Panel is Generate Electricity and Harvest Heat Simultaneously, maximize Your Solar Energy Yield.
PVT Component Product Parameter Table:
Specification of PVT
| Item | Liquid circulation | Liquid circulation | liquid circulation | |
| Dimension(mm) | 2279×1134×37 | 2279×1134×37 | 1762×1134×37 | |
| Dimension of Glass (mm) | 2273×1128 | 2273×1128 | 1756×1128 | |
| Weight(kg) | 39.0 | 39.0 | 34.6 | |
| Electricity | Peak Rate/W | 580 | 540 | 450 | 
| Component type | Single crystal/multiple main gate/N type TOPCon | Single crystal/multiple main gate /P type PERC | Single crystal/multiple main gate /N type TOPCon | |
| Component structure | 144(6×24)cells | 144(6×24)cells | 108(6×18)cells | |
| Operating Temperature /℃ | -40~85 | -40~85 | -40~85 | |
| Max system voltage/V | 1500V(TUV) | 1500V(TUV) | 1500V(TUV) | |
| Open Circuit voltage (Voc)/V | 51.1 | 49.73 | 39.78 | |
| Max power point operating voltage (Vmp)/V | 44.45 | 41.13 | 33.21 | |
| Short Circuit Current (Isc)/A | 14.31 | 13.89 | 14.00 | |
| Max power operating current (Imp)/A | 13.05 | 13.13 | 13.55 | |
| Module efficiency | 22.44% | 20.9% | 22.5% | |
| Thermal | Thermal peak efficiency(W) | 1180 | 1180 | 910 | 
| liquid capacity(L) | 1.2 | 1.2 | 0.95 | |
| Medium type | Propylene glycol /glycol /water | |||
| Work pressure(MPa) | 0.6 | |||
| How it works | Indirect expansion type | |||
| Interface /Quantity | G1/2 male thread / 2 | G1/2 male thread / 2 | G1/2 male thread / 2 | |
| Heat transfer structure | Tube plate | Tube plate | Tube plate | |
| Heat transfer material | Red copper | Red copper | Red copper | |
| Back sheet material | Color-coated sheet | Color-coated sheet | Color-coated sheet | |
| Quantity for 40HQ | 28 pcs/pallet,560pcs/40HQ | 28 pcs/pallet,560pcs/40HQ | 28 pcs/pallet,700pcs/40HQ | |
| Application Scenario | Low temperature radiant heating/pool heating/interseasonal heat storage/Combined with heat pump | |||
Remark:
1. Integrated, high income: photoelectric, photothermal integrated coupling design, make full use of solar energy resources, the same area of more income.
2. Reliable and long life: reduce the working temperature of the surface of the solar module, improve the working condition, extend the service life and obtain more power generation
3. Precision, high performance: The use of half a single crystal multi-main gate N-type TOPCon battery, partition temperature and no hidden crack laminated heat transfer process, close-packed heat exchange runner layout, two EL detection, two air tightness detection, one insulation resistance test, excellent process stability.
Technical Features & Specifications
1. Integrated Design: Monocrystalline or Polycrystalline PV cells laminated directly onto a high-efficiency thermal absorber plate.
2. Efficient Heat Transfer: Optimized thermal contact between PV layer and absorber ensures maximum heat extraction and PV cooling.
3. Selective Absorber Coating: Advanced coating on the thermal absorber plate maximizes solar absorption while minimizing infrared heat radiation loss.
4. Durable Construction: Tempered, anti-reflective glass cover; Robust aluminum frame (anodized for corrosion resistance).
5. Backsheet designed for thermal stability.
6. Fluid Channels: Integrated copper or aluminum channels/pipes for efficient heat transfer to the liquid or air.
7. High-Performance Insulation: Thick insulation on the back and sides minimizes thermal losses.
8. Electrical Specifications: Standard PV ratings per panel, compatible with common string/micro-inverters.
Factory & Manufacturing Advantages:
1. State-of-the-Art Production: Automated manufacturing lines ensuring precision, consistency, and high throughput.
2. Vertical Integration: Control over key components (PV cells, absorber coating, lamination) for quality assurance and cost efficiency.
3. Stringent Quality Control (QC): Rigorous in-line testing at every stage (electrical performance, thermal efficiency, insulation resistance, Hi-Pot, leak testing, visual inspection).
4. Advanced R&D: Dedicated team continuously improving efficiency, durability, and cost-effectiveness. Partnerships with research institutions.
5. Material Science Expertise: Selection of high-grade, durable materials (glass, encapsulants, absorbers, insulation) optimized for long-term PVT performance.
6. Efficient Thermal Bonding: Proprietary processes ensuring optimal thermal contact between PV laminate and absorber plate.
7. Scalable Production: Capacity to meet large-scale project demands reliably.
Why Choose Hybrid PVT Solar Panel?
Superior Overall Efficiency: Achieves significantly higher total energy conversion efficiency by utilizing both sunlight spectrums (PV for electricity, thermal collector for waste heat).
Optimal Space Utilization: Ideal for rooftops or areas with limited space where maximizing energy production per square foot is critical.
Enhanced PV Electrical Output: Active cooling of the PV cells by the thermal collector increases PV electrical efficiency (especially in hot climates) and improves long-term panel lifespan by reducing thermal stress.
Reduced Energy Costs: Simultaneously offsets electricity bills and heating/hot water costs (for space heating, domestic hot water, pool heating, industrial processes).
Faster Return on Investment (ROI): Higher total energy yield and value per panel accelerates payback periods compared to installing separate PV and thermal systems.
All-Weather Performance: Thermal collection can still function effectively in diffuse light or lower irradiance conditions where PV output drops.
Environmental Benefits: Maximizes clean energy generation per unit area, leading to a larger reduction in carbon footprint compared to standalone PV or thermal.
Simplified Installation & Aesthetics: One integrated system replaces two, simplifying roof mounting, wiring, and piping. Offers a cleaner, more unified appearance.
Outputs: Delivers DC electricity (connected to an inverter) and heated fluid (connected to a heat exchanger/storage tank).
Application Scenarios (Where Hybrid PVT Solar Panel Excels)
Residential:
1. Combined DHW & Electricity: Power your home AND provide all domestic hot water needs.
2. Space Heating Support: Pre-heat water for radiators or underfloor
heating systems (especially effective with heat pumps).
3. Pool Heating: Extend swimming seasons efficiently.
Commercial & Institutional:
1. Hotels, Spas, Gyms: High demand for hot water and electricity – significant savings.
2. Hospitals & Care Homes: Reliable hot water and power, critical for operations.
3. Laundries & Car Washes: Ideal for high hot water demand businesses.
4. Restaurants & Catering: Hot water for kitchens and sanitation.
Certifications:
We have CE Certifications, ISO 9001 (Quality Management), ISO 14001 (Environmental Management), OHSAS 18001 / ISO 45001 (Occupational Health & Safety) certified manufacturing.


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