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Transformer without Y capacitor and preparation method thereof

A technology of transformers and capacitors, applied in the manufacture of inductors/transformers/magnets, transformers/inductor coils/windings/connections, preventing/reducing unwanted electrical/magnetic effects, etc., can solve problems such as interference with audio equipment, and achieve Solve the effects of electromagnetic radiation, common mode interference current reduction, and effective capacitance reduction

Inactive Publication Date: 2011-08-24
湖南崧顺科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

In addition, the leakage current of the switching power supply will interfere with audio equipment and produce low-frequency noise. In this case, the switching power supply is also required to remove the Y capacitor.
It is a big challenge for the design technology level and manufacturing capacity of the manufacturer to remove the Y capacitor and meet the relevant standards of electromagnetic radiation.

Method used

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  • Transformer without Y capacitor and preparation method thereof
  • Transformer without Y capacitor and preparation method thereof
  • Transformer without Y capacitor and preparation method thereof

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Embodiment Construction

[0021] In order to make the object, technical solution and advantages of the present invention clearer, the present invention will be further described in detail below in conjunction with the accompanying drawings.

[0022] First of all, starting from the basic principle of capacitance, the realization principle of the present invention is described:

[0023] I=C×(dV / dt)

[0024] In the above formula: I represents the current passing through the capacitor; C represents the capacity passing through the capacitor; dV / dt represents the gradient of the voltage change across the capacitor.

[0025] If there is a way to reduce the parasitic capacitance of the transformer, the current passing through the capacitor can also be reduced, thereby solving the problem of common-mode interference noise.

[0026] The formula for calculating the static capacitance between the primary and secondary of the transformer is as follows:

[0027] Cox=0.0886*Sx*ε / tx (pF)

[0028] Where Sx represen...

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PUM

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Abstract

The invention discloses a transformer without Y capacitor, comprising a magnetic core, a primary main winding, a secondary winding and an auxiliary winding, wherein the primary main winding, the secondary winding and the auxiliary winding are successively winded on the magnetic core. The transformer further comprises a primary shielded winding connected with the primary main winding and a secondary shielded winding connected with the secondary winding, wherein the primary shielded winding and the secondary shielded winding have the same number of loops and the same phase. The invention solvestwo main problems of electromagnetic radiation and electric leakage in a switch power supply at the same time, realizes that the switch power supply can pass an electromagnetic radiation test withoutY capacitor, so the transformer is suitable for products fairly sensitive to leakage current, such as mobile phone chargers.

Description

technical field [0001] The invention relates to a transformer structure, in particular to a Y-capacitor-less transformer capable of reducing electromagnetic radiation. Background technique [0002] The electromagnetic radiation interference source signal is divided into two forms: differential mode and common mode. Selecting an appropriate differential mode inductor to form a JI filter, or adding an X capacitor can solve the problem of differential mode. The problem of common mode is quite difficult, and the cost of simply starting from suppression is too high, and the effect is not obvious. It is necessary to solve the problem from the source. Most of the common-mode interference noise of the switching power supply comes from the transformer, and the primary high-frequency noise inside the transformer passes through the parasitic capacitance (such as Figure 5 C3) in C3) is coupled to the secondary, and then coupled to the conduction receiving instrument through the parasit...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H01F27/28H01F27/36H01F41/00
Inventor 刘佩阳喻德茂范继光
Owner 湖南崧顺科技有限公司
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