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š—”š—°š˜š—¶š˜ƒš—² š—°š—¼š—¼š—¹š—¶š—»š—“: š—„š—²š—±š˜‚š—°š—¶š—»š—“ š—µš—²š—®š˜ š—¶š—» š—Æš—®š˜š˜š—²š—æš˜† š—°š—²š—¹š—¹ š—°š—¼š—»š˜š—®š—°š˜š—¶š—»š—“ šŸ”‹ When battery cells are contacted with high currents, contact resistance becomes a critical factor. One cause is the oxidation of aluminium cell tabs, which can increase contact resistance over time. šŸ’”š“š”šž š¢š¬š¬š®šž: Higher contact resistance means that more power is converted into heat directly at the contact point. Active cooling reduces this heat exactly where it's generated. Beyond active cooling, multi-head contacting solutions, as shown in the video, offer additional benefits: šŸ”¹ Scalable current transmission up to 400 A šŸ”¹ Contact resistance below 1 mĪ© šŸ”¹ Precise voltage measurement via sense contacts šŸ”¹ Temperature monitoring at the contact surface šŸŽ„ Watch how active cooling works directly at the contact interface.

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