The present invention relates to a transformer, and more particularly to a transformer with a hollow pad.
A transformer is a magnetic device that transfers electric energy or magnetic from one circuit to another circuit through coils in order to regulate the voltage to a desired range required for powering an electronic device.
Conventionally, the transformer comprises a bobbin, a magnetic core assembly, a primary winding coil, and a secondary winding coil. The magnetic core assembly comprises two magnetic parts. Each of the tow magnetic parts comprises a middle post and two lateral legs. The two lateral legs are located at bilateral sides of the middle post, respectively. For assembling the magnetic core assembly, a gluing material is firstly coated on the middle post of one of the two magnetic parts, and then the two magnetic parts are fixed on each other through the gluing material. As known, during operations of the transformer, the magnetic core assembly and the winding coils are readily suffered from magnetic vibration. Moreover, during the intermittent operations of the transformer, if the vibration frequency is close to the natural frequencies of the magnetic core assembly and the winding coils, a resonance phenomenon occurs between the magnetic core assembly and the winding coils. Due to the resonance phenomenon, undesired noise is generated. For reducing the noise, the gluing material between the middle posts of the two magnetic parts is helpful to provide a buffering efficacy in order to inhibit the noise.
Generally, the gluing material is made of a thermosetting material. After the gluing material is subjected to a baking process, the two magnetic parts are adhered to each other through the gluing material. However, after the gluing material is baked, the volume of the gluing material is expanded to result in stress. Due to the stress, the middle posts of the two magnetic parts are readily suffered from fracture, or even the magnetic core assembly is damaged. For reducing the influence of the stress from the expanded gluing material, a cushion sheet may be additionally arranged between the two magnetic parts of the magnetic core assembly. Although the cushion sheet is able to reduce the possibility of causing damage of the middle posts of the two magnetic parts, the use of cushion sheet is detrimental to the secure connection between the two magnetic parts. In other words, the noise generated from magnetic vibration fails to be effectively reduced by the cushion sheet.
Therefore, there is a need of providing an improved transformer in order to eliminate the above drawbacks.
The present invention provides a transformer, in which the structural strength of the magnetic core assembly is enhanced and the noise from magnetic vibration is reduced.
In accordance with an aspect of the present invention, there is provided a transformer. The transformer is installed on a system circuit board. The transformer includes a bobbin, a magnetic core assembly, and a hollow pad. The bobbin includes a main body and a channel. The channel runs through the main body. The magnetic core assembly includes a first magnetic part and a second magnetic part. Each of the first magnetic part and the second magnetic part includes a middle post. The middle post is partially inserted into the channel. The hollow pad is arranged between the middle post of the first magnetic part and the middle post of the second magnetic part. The hollow pad has an opening for accommodating a gluing material. The first magnetic part and the second magnetic part are combined together through the gluing material.
The above contents of the present invention will become more readily apparent to those ordinarily skilled in the art after reviewing the following detailed description and accompanying drawings, in which:
The present invention will now be described more specifically with reference to the following embodiments. It is to be noted that the following descriptions of preferred embodiments of this invention are presented herein for purpose of illustration and description only. It is not intended to be exhaustive or to be limited to the precise form disclosed.
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In this embodiment, the primary winding coil 14 and the secondary winding coil 15 wound around the winding section 114 are enameled wires. The enameled wires are conductive wires that are covered with insulation coverings. Moreover, the primary winding coil 14 and the secondary winding coil 15 are isolated from each other by an insulation medium 16 (e.g. an insulation tape). The primary winding coil 14 has at least one first outlet terminal 141. The secondary winding coil 15 has at least one second outlet terminal 151. The first outlet terminal 141 and the second outlet terminal 151 may be extended from opposite sides of the bobbin 11. The numbers of the first outlet terminal 141 and the second outlet terminal 151 may be varied according to the practical requirements. For clearly illustrating the relationship between the primary winding coil 14, the secondary winding coil 15 and the bobbin 11 of the transformer 1 as shown in
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In this embodiment, a notch 117 is located at a rim of the second stopping plate 113 of the bobbin 11. The notch 117 is a concave structure formed in the rim of the second stopping plate 113. In this embodiment, the notch 117 and the at least one second pin 116 of the first stopping plate 112 are located at the same side of the bobbin 11 for limiting the position of the second outlet terminal 151 of the secondary winding coil 15. Consequently, the procedure of assembling the bobbin 11 and the magnetic core assembly 12 is not hindered by the second outlet terminal 151.
Moreover, the first stopping plate 112 of the bobbin 11 further comprises a first positioning part 118a and a second positioning part 118b, and the second stopping plate 113 further comprises a third positioning part 118c and a fourth positioning part 118d. The first positioning part 118a and the second positioning part 118b of the first stopping plate 112 are located at a first side 119a and a second side 119b of the first stopping plate 112, respectively. That is, the first positioning part 118a and the second positioning part 118b of the first stopping plate 112 are extended downwardly from the first stopping plate 112. In addition, the third positioning part 118c and the fourth positioning part 118d of the second stopping plate 113 are aligned with the first positioning part 118a and the second positioning part 118b of the first stopping plate 112, respectively. Moreover, the third positioning part 118c and the fourth positioning part 118d are extended upwardly from the second stopping plate 113. Consequently, the first magnetic part 120 of the magnetic core assembly 12 may be positioned by the first positioning part 118a and the second positioning part 118b, and the second magnetic part 121 may be positioned by the third positioning part 118c and the fourth positioning part 118d. During the first magnetic part 120 and the second magnetic part 121 are combined with the bobbin 11, the uses of the positioning parts 118a, 118b, 118c and 118d may facilitate precise placement of the first magnetic part 120 and the second magnetic part 121 on the bobbin 11. The positioning parts 118a, 118b, 118c and 118d may be bulges or slabs. The profiles of the positioning parts 118a, 118b, 118c and 118d are not restricted as long as the positioning parts 118a, 118b, 118c and 118d are protruded from the first stopping plate 112 and the second stopping plate 113 for positioning the magnetic core assembly 12.
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Moreover, the gluing material 17 is disposed within the opening 130 of the hollow pad 13 corresponding to the middle post 123 of the first magnetic part 120 by a gluing material-dispensing process. In this embodiment, the gluing material 17 is made of a thermosetting and low-fluidity material such as thermosetting resin. After the bobbin 11 and the magnetic core assembly 12 are combined together, the gluing material 17 between the first magnetic part 120 and the second magnetic part 121 is subjected to a baking process. After the gluing material 17 is solidified, the first magnetic part 120 and the second magnetic part 121 are securely adhered to each other. Moreover, due to the low fluidity of the gluing material 17, the possibility of overflowing the gluing material 17 from the opening 130 of the hollow pad 13 during the gluing material-dispensing process will be minimized. In other words, when the gluing material 17 is dispensed into the opening 130 of the hollow pad 13, the gluing material 17 may be directly contacted with the surface of the middle post 123 of the first magnetic part 120. Consequently, the middle post 123 of the second magnetic part 121 and the middle post 123 of the first magnetic part 120 can be fixed on each other through the gluing material 17 more securely. Under this circumstance, the noise generated from magnetic vibration will be effectively inhibited. Moreover, after the gluing material 17 is baked, the volume of the gluing material 17 is expanded to result in stress. The hollow pad 13 is effective to alleviate the stress of the expanded gluing material 17, thereby preventing damage of the middle posts 123 of the magnetic core assembly 12.
From the above descriptions, the present invention provides a transformer. The transformer comprises a bobbin, a magnetic core assembly, and a hollow pad. The hollow pad has an opening The hollow pad is disposed on the middle post of the first magnetic part or the second magnetic part of the magnetic core assembly. Moreover, the gluing material is disposed within the opening of the hollow pad by a gluing material-dispensing process, so that the middle post is directly contacted with the gluing material through the opening In such way, the middle post of the first magnetic part and the middle post of the second magnetic part can be fixed on each other more securely, and the noise generated from magnetic vibration will be effectively inhibited. After the bobbin and the magnetic core assembly are combined together, the gluing material between the first magnetic part and the second magnetic part is subjected to a baking process. After the gluing material is baked, the volume of the gluing material is expanded to result in stress. The hollow pad is effective to alleviate the stress of the expanded gluing material, thereby preventing damage of the middle posts of the magnetic core assembly. In comparison with the conventional transformer, the transformer of the present invention has many benefits. For example, since the middle post of the first magnetic part and the middle post of the second magnetic part can be fixed on each other more securely through the opening of the hollow pad, the noise is inhibited. Moreover, the hollow pad is effective to alleviate the stress of the expanded gluing material, thereby preventing damage of the middle posts of the magnetic core assembly. In other words, the magnetic core assembly of the transformer of the present invention has reduced noise and enhanced structural strength.
While the invention has been described in terms of what is presently considered to be the most practical and preferred embodiments, it is to be understood that the invention needs not be limited to the disclosed embodiment. On the contrary, it is intended to cover various modifications and similar arrangements included within the spirit and scope of the appended claims which are to be accorded with the broadest interpretation so as to encompass all such modifications and similar structures.
Number | Date | Country | Kind |
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201210361519.3 | Sep 2012 | CN | national |