Selection of photovoltaic ribbon<\/strong><\/p>\nThe thickness of the photovoltaic ribbon is determined by the thickness of the battery and the size of the short-circuit current. The width of the photovoltaic ribbon should be the same as the width of the battery's main grid line. The softness and hardness of the photovoltaic ribbon generally depend on the thickness of the battery and the welding tools.
\nGenerally, we divide photovoltaic welding ribbons into interconnecting strips (connected to the battery. We weld it on the grid line with the battery). And busbars (connected to the battery string and junction box), according to different uses.<\/p>\n
The main raw materials of photovoltaic ribbons are copper and tin. The base material and the surface coating constitute them. The base material is copper of different sizes, which requires precise specifications, good conductivity, and a certain strength. The surface coating is a tin alloy. It can be coated with tin alloy and other coating materials according to a certain composition ratio. And special processes such as electroplating, vacuum deposition, spraying or hot dipping are used to evenly coat the surface of the copper substrate with a certain thickness. Since the copper substrate itself does not have good welding properties. The main function of the tin alloy layer is to make the tabulation line meet the weldability and firmly weld the photovoltaic ribbon to the main grid of the battery, so as to play a good current conduction role.<\/p>\n
Interconnect and Bus Bars<\/strong><\/p>\nNormally, we connect the cells in series with interconnecting ribbons and weld them to the main grid of the cell. It has the function of collecting and transmitting the current of the photovoltaic cells.
\nThe busbar is a strip that connects the photovoltaic cell string and the junction box, and does not directly contact the cell. Its function is to transmit the current of the photovoltaic cell string.<\/p>\n
In a typical silicon solar cell, both are required. And the interconnect bar is what we actually solder to the silicon crystal, connecting the solar cells in the solar panel to each other. And the interconnect bar carries the current generated by the solar cell to the photovoltaic bus. This is a hot-dip tinned copper conductor that is installed around the perimeter of the solar panel. It connects the interconnect bars together.<\/p>","protected":false},"excerpt":{"rendered":"
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