Triple Insulated Winding Wire
Specifications
Triple Insulated Winding Wire (UL&VDE Approved) is made up of three insulation layers used in the electronic transformer.
Triple Insulated Winding Wire (UL & VDE Approved) is made up of three insulation layers use the soldering heat-resistant polyester resin and polyamide resins which were developed by our factory.
Meets the safety standard certification: UL, VDE test.
Certification: UL E251775
Certification: VDE 40017563
Environmental Protection: RoHS
1.Production specification range: 0.14 ~ 1.00mm
2.Temperature class XYW-E (E Class 120 °C), XYW-B (B Class 130 °C);
3.Excellent withstand voltage characteristics, breakdown voltage is more than 15KV, access to reinforced insulation (test voltage = 3000Vms, 1min) identification;
4.No need to peel the outer layer that can be soldered directly, Insulating layer developed by the our company's adoption the international leader in nanotechnology, with a direct modification of
solderability heat-resistant which is polyester resin and polyamide resin composition, Therefore, direct soldered does not occur such as the kind of fluorine resin insulating layer exposed copper
jacket shrinkage phenomenon, excellent solderability, solder temperature 410 ° C ≤ 3S;
5.Special wear resistance and surface smoothness, static friction coefficient≤ 0.133;
6.Good performance on resistant to chemical solvents and impregnating varnish Rating Voltage
Rated Voltage (Working Voltage) 1000Vrms, UL
7.In order to distinguish several groups different winding wire coils, our company can provide more colors triple insulated winding wire by needs of customers. The standard wire color is khaki, we have several colors as follows: red, green, blue, brown colors. There is no difference among the colors for using.For example, XYW-B is used for a 20-wat class transformer and the conventional type. Because of saving the insulators and inner baffles, the transformer could be reduced by approximately half the volume and two-thirds of the weight. This could lead to both material and fabrication cost cuts. Significantly reduced leakage inductance and distributed capacitance and improving the high-frequency characteristics of the transformer.