FEARURES • Fine and stable dimensional control with very slight fluctuation: CPK≥1.33. • Finished size: size unilateral deviation ≤ 0.001mm. • High abrasion resistance and excellent scratch resistance: the scratch resistance parame-ter is 1.3 times higher than the standard requirement of the same ...
OVERVIEW This is a 0.22mm diameter AIW (Polyamide-Imide) thermosetting self-bonding enameled copper wire, rated at 220℃ high thermal class. It adopts a dual-layer structure: premium AI main insulation + thermosetting self-adhesive outer coating. Different from common thermoplastic hot-air bonding ...
OVERVIEW LZ2SBUEWZ 0.03*6*6RC is a self-bonding enameled copper stranded wire made from ultra-fine copper conductors. It offers excellent flexibility, conductivity, and winding performance, making it ideal for miniature coils, transformers, inductors, sensors, and wireless charging applications. The ...
OVERVIEW This multifilar parallel wire is composed of two 0.1mm UEW enameled wires fixed in parallel. One wire is red, the other is natural color, with uniform enamel thickness of 2 and thermal class 155°C. The bonded integrated structure avoids strand separation during winding and cutting, ...
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 ...
0.040mm×28000 Strands 3UEW H ETFE Extruded Litz Wire Product Overview This 0.040mm×28000 litz wire is stranded with 3UEW H Class H 180°C self-solderable enameled wires and fully extruded with high-performance ETFE insulation. The ultra-fine multi-strand structure eliminates skin and proximity ...