0.050mm×37×5 (185 Strands) | 2UEW Self-Bonding Litz Wire | Class F 155°C | Low High-Frequency Loss Professional multi-strand self-bonding litz wire, designed for high-frequency coil winding. It minimizes skin & proximity effect loss, features fast thermal bonding and stable insulation, ideal for ...
Overview This thermally self-bonding solderable polyurethane enameled round copper wire consists of uniform polyurethane primary insulation and an outer heat-activated self-adhesive layer. The wire features reliable dielectric strength, outstanding resistance to thermal shock and softening breakdown...
OVERVIEW FIW (Fully Insulated Wire) is a high-performance winding wire designed to replace conventional TIW triple insulated wire for switching transformer production. It supports a broad selection of finished outer diameters, allowing manufacturers to develop miniaturized transformers with reduced ...
OVERVIEW PIT-3UEW-180 is a high-performance ultra-fine litz wire constructed with 0.04mm polyurethane-insulated copper strands and wrapped with polyimide (PI) film. With a total of 28,750 individual strands, it is designed for high-frequency, high-density, and high-temperature applications up to 180...
Overview FIW stands for Fully Insulated Wire, a Class 180 modified polyurethane enameled copper wire designed to replace traditional triple insulated TIW wire. Produced with multi-layer coating and full online high-voltage testing, it eliminates insulation pinholes to deliver certified reinforced ...
UEW Polyurethane Enameled Rectangular Copper Wire | 0.130×0.150mm Product Overview This 0.130×0.150mm ultra-fine rectangular copper wire features high-purity oxygen-free copper core and premium UEW polyurethane insulation. With precise tiny dimensions and excellent flexibility, it is tailored for ...
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 ...