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Huasun - HS-210-B132 DS680-700 Solar Module Series
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𝐃𝐞𝐬𝐜𝐫𝐢𝐩𝐭𝐢𝐨𝐧:
● Ultra-high-efficient N-type silicon heterojunction solar cells - higher efficiency and power output than conventional crystalline silicon cells
● HJT guarantee a higher energy yield of up to 700W from its front surface alone at an excellent efficiency of up to 22.53%
● N-type monocrystalline silicon wafer sandwiched between two thin layers of micro-crystalline silicon or micro-crystalline oxygen silicon carbide and amorphous silicon combines the advantages of two different technologies into a single cell
● Doped micro-crystalline silicon material reduces the doped layer resistance, increases the passivation and also lifts the light transmission performance
● The use of phosphorus-doped N-type cells further reduce power loss while also providing greater resistance to adverse phenomena such as potential- and light-induced degradation
● The use of larger-sized 210-millimetre wafers and single-sided micro-crystalline silicon technology ensures more power yield per module
● Combining half-cut cells with superior multi-busbar design further improves module performance while also lowering the risk of hot-spots and micro-cracks
● Bifacial design allows for power generation from both sides of the module with a maximum power output of 772 watts
𝐊𝐞𝐲 𝐋𝐢𝐧𝐤𝐬:
#SolarModule #HJT #Huasun #Bifacial
● Ultra-high-efficient N-type silicon heterojunction solar cells - higher efficiency and power output than conventional crystalline silicon cells
● HJT guarantee a higher energy yield of up to 700W from its front surface alone at an excellent efficiency of up to 22.53%
● N-type monocrystalline silicon wafer sandwiched between two thin layers of micro-crystalline silicon or micro-crystalline oxygen silicon carbide and amorphous silicon combines the advantages of two different technologies into a single cell
● Doped micro-crystalline silicon material reduces the doped layer resistance, increases the passivation and also lifts the light transmission performance
● The use of phosphorus-doped N-type cells further reduce power loss while also providing greater resistance to adverse phenomena such as potential- and light-induced degradation
● The use of larger-sized 210-millimetre wafers and single-sided micro-crystalline silicon technology ensures more power yield per module
● Combining half-cut cells with superior multi-busbar design further improves module performance while also lowering the risk of hot-spots and micro-cracks
● Bifacial design allows for power generation from both sides of the module with a maximum power output of 772 watts
𝐊𝐞𝐲 𝐋𝐢𝐧𝐤𝐬:
#SolarModule #HJT #Huasun #Bifacial