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š— š—¼š—±š—²š—æš—» š—²-š—®š˜…š—¹š—²š˜€ š—±š—²š—ŗš—®š—»š—± š—ŗš—¼š—æš—² š˜š—µš—®š—» š—°š—¼š—ŗš—½š—¼š—»š—²š—»š˜ š˜š—²š˜€š˜š—¶š—»š—“. As e-axles continue to evolve, validation requirements are becoming increasingly complex. Engineers must evaluate electrical, mechanical, and thermal behavior across the entire e-drive unit while keeping development timelines under control. Testing individual components is no longer enough. Comprehensive validation under vehicle-like conditions is essential to ensure performance, reliability, and thermal stability throughout the entire service life. š—”š—©š—Ÿ š—˜-š—”š˜…š—¹š—² š—£š—²š—æš—³š—¼š—æš—ŗš—®š—»š—°š—² š—§š—²š˜€š˜š—¶š—»š—“ š—¦š—¼š—¹š˜‚š˜š—¶š—¼š—»š˜€ support both light- and heavy-duty applications, covering single- and twin-motor configurations. With dedicated test systems, compact designs, fast installation, and short delivery times, AVL helps accelerate e-axle development from concept to validation. 🌐 Explore AVL E-Axle Performance Testing Solutions: https://lnkd.in/dvpaFRGA

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