TRANSFORMER AND MANUFACTURING METHOD THEREOF
20230007928 ยท 2023-01-12
Inventors
- PAO WEI LIN (HSINCHU, TW)
- WEI LIANG LIN (TAICHUNG CITY, TW)
- PEI WANG (NEW TAIPEI CITY, TW)
- JIA YAO LIN (TAINAN CITY, TW)
- YU TING CHEN (TAICHUNG CITY, TW)
- CHIEN-CHIH LAI (TAICHUNG CITY, TW)
Cpc classification
H01F41/076
ELECTRICITY
International classification
Abstract
A manufacturing method of a transformer includes: winding a first winding wire around a bobbin, wherein two ends of the first winding wire are connected to a first and a second pin of the bobbin respectively; winding a second winding wire around the bobbin, wherein two ends of the second winding wire are connected to a third and a fourth pin of the bobbin respectively; and winding a third and a fourth winding wire in parallel around the bobbin, wherein two ends of the third winding wire are connected to the second and a fifth pin of the bobbin respectively, and two ends of the fourth winding wire are connected to the fifth and a sixth pin respectively. The first, the third and the fourth winding wires form a primary coil, and the second winding wire is a secondary coil.
Claims
1. A manufacturing method of a transformer, comprising the steps of: connecting one end of a first winding wire to a first pin of a bobbin; connecting the other end of the first winding wire to a second pin of the bobbin after winding the first winding wire around the bobbin for at least one turn; connecting one end of a second winding wire to a third pin of the bobbin; connecting the other end of the second winding wire to a fourth pin of the bobbin after winding the second winding wire around the bobbin for at least one turn; connecting one end of a third winding wire to the second pin of the bobbin, and connecting one end of a fourth winding wire to a fifth pin of the bobbin; and connecting the other end of the third winding wire to the fifth pin of the bobbin and connecting the other end of the fourth winding wire to the sixth pin of the bobbin after winding the third winding wire and the fourth winding wire around the bobbin in parallel for at least one turn; wherein the first winding wire, the third winding wire and the fourth winding wire form a primary coil of the transformer, and the second winding wire is a secondary coil of the transformer.
2. The manufacturing method according to claim 1, further comprising: arranging a first insulation material on the first winding wire after completing winding the first winding wire; and arranging a second insulation material on the second winding wire after completing winding the second winding wire.
3. A transformer, comprising: a bobbin, having a first pin, a second pin, a third pin, a fourth pin, a fifth pin and a sixth pin; a first winding wire, wound around the bobbin, wherein one end of the first winding wire is connected to the first pin, and the other end of the first winding wire is connected to the second pin; a second winding wire, wound around the bobbin, wherein one end of the second winding wire is connected to the third pin, and the other end of the second winding wire is connected to the fourth pin; a third winding wire, wound around the bobbin, wherein one end of the third winding wire is connected to the second pin, and the other end of the third winding wire is connected to the fifth pin; and a fourth winding wire, wound around the bobbin, wherein one end of the fourth winding wire is connected to the fifth pin, and the other end of the fourth winding wire is connected to the sixth pin; wherein the third winding wire and the fourth winding wire are wound in parallel around the bobbin simultaneously; wherein the first winding wire, the third winding wire and the fourth winding wire form a primary coil of the transformer, and the second winding wire is a secondary coil of the transformer.
4. The transformer according to claim 3, further comprising: a first insulation material, arranged on the first winding wire for separating the first winding wire from the second winding wire; and a second insulation material, arranged on the second winding wire for separating the second winding wire from the third winding wire and the fourth winding wire.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DESCRIPTION OF THE PREFERRED EMBODIMENTS
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[0018] For the sandwich winding of the present invention, when a coil of a third layer is being formed, the third winding wire 60 and the forth winding wire 62 are firstly wound in parallel, and then the third winding wire 60 and the forth winding wire 62 are connected in series; in the way, the EMI performance of the transformer 50 may be improved. As shown in
[0019] In addition, in the present invention, the method for winding the third winding wire 60 and the forth winding wire 62 in parallel is helpful to manufacturing the transformer. For example, in case of the preset number of turns being 12, the traditional method shown in
[0020] What is described above is only the embodiments of the present invention but does not limit the present invention in any form. The embodiments are used to disclose the present invention as above but not to limit the present invention. Those skilled in the art may utilize the disclosed technical contents to make some alterations and modifications as equivalent embodiments of equal changes without departing form the scope of the technical scheme of the present invention and any simple alterations, equivalent changes and modifications made according to the technical essence of the present invention without departing from the technical contents of the present invention should be contained in the scope of the technical solution of the present invention.