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<div class="main"><span class="m2posNm">Location:<a href='index.php'>Home</a> - Technical platform - Safety</span></div>
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	<div class="tt">Testing Requirements and Precautions for Transformers Using FIW Winding as per IEC 62368-1</div>
	<div class="txt2 txtimg"><p><span style="font-size: 16px;">With the continuous development of electronic technology, insulated transformers are gradually moving towards miniaturization, lightweight, and high power density. Compared with traditional Triple Insulated Wire (TIW) and film-covered insulated wire, Fully Insulated Winding Wire (FIW) has the advantage of smaller size. Meanwhile, FIW has better winding performance and soldering performance than TIW, thus showing a trend to replace triple insulated wire and become the first choice for the new generation of insulated transformers. However, the adoption of FIW also means facing stricter international safety standards. In this regard, the third edition of IEC 62368-1 (2018) newly adds the usage conditions and testing requirements for transformers with FIW, as follows:&nbsp;&nbsp;</span></p><ol class=" list-paddingleft-2" style="font-family: Verdana; font-size: 12px; text-wrap-mode: wrap;"><li><p><span style="font-size: 16px;">The FIW used in transformers shall comply &nbsp; &nbsp; &nbsp;with the certifications of IEC 60851-5:2008, IEC 60317-0-7, and IEC &nbsp; &nbsp; &nbsp;60317-56.</span></p></li><li><p><span style="font-size: 16px;">In the transformer structure, the basic &nbsp; &nbsp; &nbsp;insulation, double insulation, or reinforced insulation between windings &nbsp; &nbsp; &nbsp;shall meet the dielectric strength test voltage required by Table G.4. &nbsp; &nbsp; &nbsp;Meanwhile, if mechanical separation is provided between windings, the electrical &nbsp; &nbsp; &nbsp;clearance and creepage distance between windings may not need to be &nbsp; &nbsp; &nbsp;considered.</span></p></li><li><p><span style="font-size: 16px;">Transformers shall be evaluated through &nbsp; &nbsp; &nbsp;thermal cycling tests:<br/>&nbsp; &nbsp; &nbsp;a) Three transformer samples shall undergo 10 cycles of the following &nbsp; &nbsp; &nbsp;temperature cycles:<br/>&nbsp; &nbsp; &nbsp;ⅰ. 68 hours at a temperature 10K higher than the maximum winding &nbsp; &nbsp; &nbsp;temperature measured under normal operation, with a deviation of ±2℃, but &nbsp; &nbsp; &nbsp;not lower than 85℃;<br/>&nbsp; &nbsp; &nbsp;ⅱ. 1 hour at 25℃ ±2℃;<br/>&nbsp; &nbsp; &nbsp;ⅲ. 2 hours at 0℃ ±2℃;<br/>&nbsp; &nbsp; &nbsp;ⅳ. 1 hour at 25℃ ±2℃.<br/>&nbsp; &nbsp; &nbsp;During each temperature cycle test, twice the working voltage shall be &nbsp; &nbsp; &nbsp;applied between the transformer windings.<br/>&nbsp; &nbsp; &nbsp;b) After the thermal cycling treatment for the three samples:<br/>&nbsp; &nbsp; &nbsp;Two of them shall be further evaluated through a damp heat test (48 &nbsp; &nbsp; &nbsp;hours), and then the dielectric strength test shall be conducted;<br/>&nbsp; &nbsp; &nbsp;The other one shall be subjected to the dielectric strength test (with the &nbsp; &nbsp; &nbsp;voltage value referred to Table G.4) immediately at the end of the highest &nbsp; &nbsp; &nbsp;temperature in the last cycle of the thermal cycling test.<br/>&nbsp; &nbsp; &nbsp;c) No insulation breakdown shall occur during the above tests.</span></p></li><li><p><span style="font-size: 16px;">If the peak voltage Ut of the FIW across &nbsp; &nbsp; &nbsp;insulation is greater than 750V, a partial discharge test shall be &nbsp; &nbsp; &nbsp;conducted:<br/>&nbsp; &nbsp; &nbsp;ⅰ. At room temperature, carry out the partial discharge test on the two &nbsp; &nbsp; &nbsp;samples that have undergone the thermal cycling test and damp heat &nbsp; &nbsp; &nbsp;treatment. Apply the measured repetitive peak voltage Ut to the &nbsp; &nbsp; &nbsp;transformer for the partial discharge test, with t1 being 5s and t2 being &nbsp; &nbsp; &nbsp;15s;<br/>&nbsp; &nbsp; &nbsp;ⅱ. The partial discharge at t2 shall be less than or equal to 10pC.</span></p></li></ol><p><br/></p><p><span style="font-size: 16px;">Precautions:</span></p><ol class=" list-paddingleft-2" style="font-family: Verdana; font-size: 12px; text-wrap-mode: wrap;"><li><p><span style="font-size: 16px;">FIW is only applicable to Overvoltage &nbsp; &nbsp; &nbsp;Category (OVC) I or OVC II power systems (equipment), and cannot be used &nbsp; &nbsp; &nbsp;for OVC III or OVC IV.</span></p></li><li><p><span style="font-size: 16px;">FIW shall be incorporated into the U.S. &nbsp; &nbsp; &nbsp;insulation system, such as UL OBJY2, and the FIW insulation system shall &nbsp; &nbsp; &nbsp;comply with relevant requirements.</span></p></li><li><p><span style="font-size: 16px;">The FIW grade (Grade 3 to Grade 9) and wire &nbsp; &nbsp; &nbsp;diameter shall be matched with the withstand voltage requirements and &nbsp; &nbsp; &nbsp;selected according to Table G.5.</span></p></li></ol><p><br/></p><p><span style="font-size: 16px;">BTL currently has the testing capability of Appendix G.5.3.4 of IEC 62368-1, can provide complete testing services for manufacturers, issue test reports with relevant qualification recognition, and provide customers with more efficient one-stop services.</span></p><p><br/></p></div>
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