PANDA series modules have broken barriers and achieved good results Components break through barriers and achieve good results
Innovation platform and technology
Innovation platform and technology
N-type technology pioneer
N-type technology pioneer
Bifacial power generation pacesetter
Bifacial power generation pacesetter
Innovative application explorer
Innovative application explorer
Core Advantages Core Advantages
PANDA series
PANDA series

Adoption of n-Mono technology to meet high-end requirements

Chinese photovoltaic enterprises used to face many restrictions such as technical and trade barriers.
In 2010, the mass production of PANDA modules marked a crushing of monopoly of high-efficiency crystalline silicon technology from foreign photovoltaic companies. PANPA has become one of the three high efficiency cell technologies available for mass production and application, marking that Chinese photovoltaic enterprises began to compete in the global high-end photovoltaic market with efficient N-type mono-crystalline products.

Excellent power generation, excellent reliability and high cost performance: PANDA bifacial series modules, based on the state-of-the-art PANDA N-type monocrystalline silicon cell technology, feature good weak light and longer effective service life than conventional modules. Additionally, the bifacial power generation increases the power generation of modules by up to 30%.

Backside Yield
Backside Yield
Excellent Durability
Excellent Durability
Outstanding Bifaciality
Outstanding Bifaciality
Superior Yield
Superior Yield
Wide Applications
Wide Applications
Science and Technology Technological Dimension
Product Description


The picture on the left shows the highest level (severity level 6) cyclic Salt Mist test for 1 cycle, simulating the state of the module frequently changing between "normally salt-filled environment" and "dry environment". One cycle test takes 7 days, 4 times IEC standard cycle test takes 32 cycles in total, plus other test items, the whole procedure takes 242 days.

After the test, the visual inspection found that there were no corrosion products on the frame and glass, and no defects (pinholes, bubbling or cracking, etc.) in the silicone and film. The IV test results showed that the degradation rates of each parameter of the module were low, the power degradation rate was only 1.9%.

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Honors and Awards Honor Wall
The First Prize of the Science and Technology<br> Award in 2011
Development of High-efficiency Low-cost Bifacial N-type Silicon Solar Cells with an Annual Capacity of 300MW

2011

The First Prize of the Science and Technology
Award in 2011
The Second Prize of National Energy Science and <br>Technology Progress Award in 2011
Research on the Technology of High-efficiency N-Type Monocrystalline
Silicon Solar Cells.

2011

The Second Prize of National Energy Science and
Technology Progress Award in 2011
Innovative Technological Product of the Year 2014.
“Solarbe Awards” 2014 for Photovoltaic Industry

2014

Innovative Technological Product of the Year 2014.
Innovation and Sharing Award in “Double-Glass Plus” <br>Bifacial Power Generation in 2017
The Third Summit of Innovative Design and Application of Cutting-edge Double-Glass Plus Technology .

2017

Innovation and Sharing Award in “Double-Glass Plus”
Bifacial Power Generation in 2017
The Second Prize of the Hebei Science and <br>Technology Award in 2019
Key Technology and Application of Bifacial TOPCon Crystalline Silicon Solar Cells

2019

The Second Prize of the Hebei Science and
Technology Award in 2019
Milestones Development History
Milestones
PANDA N-type TOPCon Series PANDA N-type TOPCon Series
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