OVERVIEW 0.210 mm Class 155 Ultra-Thin Film Polyurethane Enameled Copper Wire is designed for compact winding applications that require excellent space utilization and reliable electrical performance. Featuring an ultra-thin polyurethane insulation layer and a 155°C thermal rating, it enables higher ...
Overview This Class 220 AI Enameled Flat Copper Wire is our top-grade ultra-high temperature resistant winding wire, professionally developed for extreme working conditions of high-load, high-power and long-term continuous operating precision equipment. Adopting premium Polyamide-imide (AI) pure ...
OVERVIEW The 0.025 × 0.26mm Self-Bonding Polyamideimide Flat Magnet Wire is designed for compact, high-performance winding applications requiring excellent thermal endurance and efficient space utilization. Featuring a Class 220 polyamideimide insulation system and self-bonding capability, it ...
Ultra Fine Nickel Enameled Wire Ultra fine nickel enameled wire features excellent heat resistance, oxidation resistance, and stable electrical performance. With its extremely small diameter and uniform insulation coating, it is suitable for precision coils, micro motors, sensors, magnetic ...
Overview This self-bondable 2UEW polyurethane litz wire consists of multiple fine 2UEW enameled strands twisted together, coated with a thermally fusible adhesive outer layer. It features direct solderability without stripping enamel, greatly boosting coil production efficiency. The wire exhibits ...
0.290mm*7 | 2UEW Litz Wire | Class F 155°C This Litz wire consists of 7 strands of 0.290mm polyurethane enameled copper wire with 155°C F-class temperature resistance. The stranded structure reduces high-frequency skin effect to lower power loss and heat generation. It features consistent insulation ...
Custom Served Litz Wire High-Performance Served Litz Wire with Flexible Customization HUAYE specializes in the development and manufacturing of custom Served Litz Wire solutions for high-frequency, high-efficiency, and precision winding applications. By combining multiple individually insulated ...