Unlocking Solar Power: Tunnel Oxide Passivated Contact (TOPCon) Technology for High-Efficiency Solar Modules
Scroll To The Future
Exploring TOPCon
TOPCon represents a groundbreaking advancement in photovoltaics, overcoming the limitations of traditional solar cells to unlock the sun’s vast energy potential.
This technology involves applying a thin passivation layer, such as silicon dioxide or aluminum oxide, onto a crystalline silicon (c-Si) wafer, followed by a highly doped polycrystalline silicon layer. This innovative structure significantly enhances solar cell efficiency and overall performance.
Balancing Efficiency and Longevity
The sun, an endless, abundant, and cost-free energy source, continuously bathes our planet in its powerful rays. Capturing this immense energy sustainably and efficiently relies on advancements in solar technology. One such emerging innovation making strides is Tunnel Oxide Passivated Contact (TOPCon) technology.
700W
Power (up to)
22.57%
Efficiency (up to)
30 Years
Product warranty (up to)
KEY FEATURES
Advanced Cell Design
The cells are configured in a distinctive layout, with half-cells arranged in twin parallel sub-strings rather than the conventional mirrored design.Advantages: Maximized Performance & Increased Longevity
Superior Resistance to Partial Shading
Thanks to its symmetrical design, the SOLSTICE module experiences only a 36% power loss under partial shading.Advantages: Enables closer string spacing, optimizing land use efficiency.
Eliminates Rear-Side Self-Shading
Smartly designed junction box, cable placement, and frame structure eliminate rear-side self-shading.
Advantages:Maximized bifacial efficiency at the module level, resulting in higher energy output.Improved performance across diverse conditions, including low-light environments.
Exceptional durability under mechanical stress – Outstanding resistance to wind and snow.
Utilizing smaller cells and aligning the longer side of the cells parallel to the module’s longer side.
Advantages: Reduces the risk of fractures by up to 75%.
Eco-Conscious
Minimize your environmental impact and help fight climate change by producing renewable energy.
Unveiling the Depths
An In-Depth Exploration of
Frame Provides foundational support for the solar panel.
Back Cover Safeguards the rear side of the panel.
Rear Encapsulation Offers insulation and protective layering.
Solar Cells Converts sunlight into electrical energy.
Front Encapsulation Protects solar cells and secures the panel.
Front Cover Shields the panel from external environmental factors.
Create Your Own Space
Resilient Performance: Low degradation, high durability
Wide Customization Discover the ideal color pairing to enhance your content with customizable backdrops and frames.
Ideal for varied weather conditions
0
Years Warranity
High-Performance Efficiency Technology
Why choose this module?
DEUTSUN’s Nebula Series modules are built for long-lasting performance and reliability. With dual-glass construction, an anti-reflective front coating, and a float glass back, they maximize efficiency in various conditions. These modules operate effectively in extreme temperatures from -40°C to 85°C, with a low temperature coefficient of -0.29% per °C.
Designed for durability, they are Class 4 hail-resistant and hold a Class A fire rating. As a German-engineered solution, DEUTSUN offers an exceptional 30-year product warranty (terms & conditions apply), ensuring over 87% of the nominal power output even after three decades.
Why choose this module?
DEUTSUN’s Nebula Series modules are built for long-lasting performance and reliability. With dual-glass construction, an anti-reflective front coating, and a float glass back, they maximize efficiency in various conditions. These modules operate effectively in extreme temperatures from -40°C to 85°C, with a low temperature coefficient of -0.29% per °C.
Designed for durability, they are Class 4 hail-resistant and hold a Class A fire rating. As a German-engineered solution, DEUTSUN offers an exceptional 30-year product warranty (terms & conditions apply), ensuring over 87% of the nominal power output even after three decades.