Transformer and method of manufacturing the same
RE049317 · 2022-11-29
Assignee
Inventors
- Hyun Paek (Suwon-si, KR)
- Yoo Sam Na (Seoul, KR)
- Hyeon Seok Hwang (Seoul, KR)
- Gyu Suck Kim (Suwon-si, KR)
- Su Gyeong Kim (Seoul, KR)
- Shin Hwan Hwang (Suwon-si, KR)
- Moon Suk Jeong (Suwon-si, KR)
Cpc classification
H01F19/04
ELECTRICITY
International classification
Abstract
Disclosed herein are a transformer and a method of manufacturing the same. The transformer includes: a primary side winding having a loop shape; a secondary side winding formed on the same plane as that of the primary side winding in a remaining section except for at least a section at which it intersects with the primary side winding and having the same loop shape as that of the primary side winding so as to be electromagnetically coupled to the primary side winding; and an intersecting section formed so that the primary side and secondary side windings having the sum of the turn numbers of 3 or more intersect with each other in a two-layer structure, wherein the intersecting section includes at least one point of intermediate node having one side connected in a first layer and the other side connected in a second layer.
Claims
1. A transformer comprising: a primary side winding having a loop shape; a secondary side winding .[.formed on the same plane as that of the primary side winding in a remaining section except for at least a section at which it intersects with the primary side winding and.]. having the same loop shape as that of the primary side winding so as to be electromagnetically coupled to the primary side winding; and an intersecting section formed so that the primary side and secondary side windings having the sum of the turn numbers of 3 or more intersect with each other in a two-layer structure, wherein the intersecting section includes at least one point of intermediate node having one side connected in a first layer and the other side connected in a second layer.Iadd., wherein the secondary side winding intersects with the primary side winding, wherein the secondary side winding is formed on the same plane as that of the primary side winding in a remaining section except for at least a section of the intersecting section at which it intersects with the primary side winding.Iaddend..
2. The transformer according to claim 1, wherein at least one pair of outermost lines facing each other in a diagonal direction in the intersecting section among the three or more winding turns are connected to each other in the first or second layer in the diagonal direction.
3. The transformer according to claim 1, wherein at least one sub-outermost line among the three or more winding turns is connected to the intermediate node in the first or second layer in the intersecting section.
4. The transformer according to claim 1, wherein the sum of the turn numbers of the primary and secondary side windings is an odd number, at least one pair of outermost lines facing each other in a diagonal direction in the intersecting section among the odd winding turns are connected to each other in the first or second layer in the diagonal direction, and a pair of sub-outermost lines facing each other normally directly or obliquely in the intersecting section among the odd winding turns are connected to each other through the intermediate node so as not to contact a connection line of the pair of outermost lines in the intersecting section, one of the pair of sub-outermost lines being connected to the intermediate node in the first layer and the other thereof being connected to the intermediate node in the second layer.
5. The transformer according to claim 4, wherein the sum of the turn numbers of the primary and secondary side windings is an odd number of 5 or more, and one of the pair of sub-outermost lines facing each other obliquely in the intersecting section among the odd winding turns is connected to the intermediate node in the first layer and the other thereof is connected to the intermediate node in the second layer, remaining lines among the odd winding turns being obliquely connected to each other in the other layer unlike that of the connection line of the pair of outermost lines so as to intersect with the connection line on a floor plane in the intersecting section.
6. The transformer according to claim 1, wherein the sum of the turn numbers of the primary and secondary side windings is an even number, the intermediate nodes are two points and face each other based on the center of the intersecting section, at least one pair of outermost lines facing each other in a diagonal direction in the intersecting section among the even winding turns are connected to each other in the first or second layer in the diagonal direction, and at least one pair of sub-outermost lines facing each other normally directly or obliquely in the intersecting section among the even winding turns are connected to each other through the intermediate node so as not to contact a connection line of the pair of outermost lines in the intersecting section, one of the pair of sub-outermost lines being connected to the intermediate node in the first layer and the other thereof being connected to the intermediate node in the second layer.
7. The transformer according to claim 6, wherein the sum of the turn numbers of the primary and secondary side windings is an even number of 6 or more, one of the pair of sub-outermost lines facing each other obliquely in the intersecting section among the even winding turns is connected to one intermediate node in the first layer and the other thereof is connected to one intermediate node in the second layer, and one of another pair of lines facing each other normally directly or obliquely in the intersecting section among the even winding turns is connected to the other intermediate node in the first layer and the other thereof is connected to the other intermediate node in the second layer, remaining lines among the even winding turns being obliquely connected to each other in the other layer unlike that of the connection line of the pair of outermost lines so as to intersect with the connection line on a floor plane in the intersecting section.
8. The transformer according to claim 1, wherein any one of the primary and secondary side windings is a balanced signal line and the other thereof is an unbalanced signal line.
9. The transformer according to claim 2, wherein any one of the primary and secondary side windings is a balanced signal line and the other thereof is an unbalanced signal line.
10. The transformer according to claim 3, wherein any one of the primary and secondary side windings is a balanced signal line and the other thereof is an unbalanced signal line.
11. The transformer according to claim 4, wherein any one of the primary and secondary side windings is a balanced signal line and the other thereof is an unbalanced signal line.
12. The transformer according to claim 5, wherein any one of the primary and secondary side windings is a balanced signal line and the other thereof is an unbalanced signal line.
13. The transformer according to claim 6, wherein any one of the primary and secondary side windings is a balanced signal line and the other thereof is an unbalanced signal line.
14. The transformer according to claim 7, wherein any one of the primary and secondary side windings is a balanced signal line and the other thereof is an unbalanced signal line.
15. A method of manufacturing a transformer including a primary side winding having a loop shape and a secondary side winding formed on the same plane as that of the primary side winding and having the same loop shape as that of the primary side winding so as to be electromagnetically coupled to the primary side winding, the method comprising: forming an intersecting section so that the primary side and secondary side windings having the sum of the turn numbers of 3 or more intersect with each other in a two-layer structure, wherein the intersecting section includes at least one point of intermediate node having one side connected in a first layer and the other side connected in a second layer.
16. The method according to claim 15, wherein at least one pair of outermost lines facing each other in a diagonal direction in the intersecting section among the three or more winding turns are connected to each other in the first or second layer in the diagonal direction.
17. The method according to claim 15, wherein at least one sub-outermost line among the three or more winding turns is connected to the intermediate node in the first or second layer in the intersecting section.
18. The method according to claim 15, wherein the sum of the turn numbers of the primary and secondary side windings is an odd number, at least one pair of outermost lines facing each other in a diagonal direction in the intersecting section among the odd winding turns are connected to each other in the first or second layer in the diagonal direction, and a pair of sub-outermost lines facing each other normally directly or obliquely in the intersecting section among the odd winding turns are connected to each other through the intermediate node so as not to contact a connection line of the pair of outermost lines in the intersecting section, one of the pair of sub-outermost lines being connected to the intermediate node in the first layer and the other thereof being connected to the intermediate node in the second layer.
19. The method according to claim 15, wherein the sum of the turn numbers of the primary and secondary side windings is an even number, the intermediate nodes are two points and face each other based on the center of the intersecting section, at least one pair of outermost lines facing each other in a diagonal direction in the intersecting section among the even winding turns are connected to each other in the first or second layer in the diagonal direction, and at least one pair of sub-outermost lines facing each other normally directly or obliquely in the intersecting section among the even winding turns are connected to each other through the intermediate node so as not to contact a connection line of the pair of outermost lines in the intersecting section, one of the pair of sub-outermost lines being connected to the intermediate node in the first layer and the other thereof being connected to the intermediate node in the second layer.
.Iadd.20. The transformer according to claim 1, wherein the intersecting section comprises a first winding of the primary and secondary side windings on the first layer of the two-layer structure crossing a second winding of the primary and secondary side windings on the second layer of the two-layer structure and the one side of the at least one point of intermediate node connects to a third winding of the primary and secondary side windings in the first layer crossing the second winding and the other side of the at least one point of intermediate node connects to the third winding in the second layer crossing the first winding..Iaddend.
.Iadd.21. The transformer according to claim 20, wherein the third winding is disposed between the first winding and the second winding on the same plane in the remaining section..Iaddend.
.Iadd.22. The transformer according to claim 21, wherein the at least one point of intermediate node is disposed innermost to the first and second windings in the intersecting section..Iaddend.
.Iadd.23. The method according to claim 15, wherein the intersecting section comprises a first winding of the primary and secondary side windings on the first layer of the two-layer structure crossing a second winding of the primary and secondary side windings on the second layer of the two-layer structure and the one side of the at least one point of intermediate node connects to a third winding of the primary and secondary side windings in the first layer to crossing the second winding and the other side of the at least one point of intermediate node connects to the third winding in the second layer to cross the first winding..Iaddend.
.Iadd.24. The method according to claim 23, wherein the third winding is disposed between the first winding and the second winding on the same plane in the remaining section..Iaddend.
.Iadd.25. The method according to claim 24, wherein the at least one point of intermediate node is disposed innermost to the first and second windings in the intersecting section..Iaddend.
.Iadd.26. A transformer comprising: a primary side winding having a loop shape; a secondary side winding having the same loop shape as that of the primary side winding so that the primary and the secondary side windings electromagnetically couple, wherein the secondary side winding intersects with the primary side winding, wherein the secondary side winding is formed on the same plane as that of the primary side winding in a remaining section except for at least a section of the intersecting section at which it intersects with the primary side winding, wherein the intersecting section includes plural windings, of the primary and secondary side windings, intersecting each other with respect to different layers of a corresponding two-layer structure, wherein the intersecting section includes at least one point of intermediate node having respective sides connected in the different layers, and wherein the plural windings of the primary and secondary side windings in the intersecting section include a total of 3 or more turns, so as to include at least a first, a second, and a third winding..Iaddend.
.Iadd.27. The transformer according to claim 26, wherein the transformer includes plural primary side windings alternatingly formed with plural secondary side windings except in corresponding intersecting sections..Iaddend.
.Iadd.28. The transformer according to claim 26, wherein respective sides of the at least one point of intermediate node are connected to the third winding in a first layer to cross the second winding and in the second layer to cross the first winding, and wherein the third winding is disposed between the first winding and the second winding on the same plane in the remaining section..Iaddend.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4)
(5)
(6)
DESCRIPTION OF THE PREFERRED EMBODIMENTS
(7) Exemplary embodiments of the present invention for accomplishing the above-mentioned objects will be described with reference to the accompanying drawings. In describing exemplary embodiments of the present invention, the same reference numerals will be used to describe the same components and an additional description that is overlapped or allow the meaning of the present invention to be restrictively interpreted will be omitted.
(8) In the specification, it will be understood that unless a term such as ‘directly’ is not used in a connection, coupling, or disposition relationship between one component and another component, one component may be ‘directly connected to’, ‘directly coupled to’ or ‘directly disposed to’ another element or be connected to, coupled to, or disposed to another element, having the other element intervening therebetween. In addition, this may also be applied to terms including the meaning of contact such as ‘on’, ‘above’, ‘below’, ‘under’, or the like. In the case in which a standard element is upset or is changed in a direction, terms related to a direction may be interpreted to including a relative direction concept.
(9) Although a singular form is used in the present description, it may include a plural form as long as it is opposite to the concept of the present invention and is not contradictory in view of interpretation or is used as clearly different meaning. It should be understood that “include”, “have”, “comprise”, “be configured to include”, and the like, used in the present description do not exclude presence or addition of one or more other characteristic, component, or a combination thereof.
(10) The accompanying drawings referred in the present description may be ideal or abstract examples for describing exemplary embodiments of the present invention. In the accompanying drawings, a shape, a size, a thickness, and the like, may be exaggerated in order to effectively describe technical characteristics.
(11) First, a transformer according to a first exemplary embodiment of the present invention will be described in detail with reference to the accompanying drawings.
(12)
(13) The transformer according to the first exemplary embodiment of the present invention will be described with reference to
(14) The transformer according to the present embodiment is configured to include a primary side winding and a secondary side winding, wherein the primary side winding has a loop shape, and the secondary side winding formed on the same plane as that of the primary side winding in a remaining section except for at least a section at which it intersects with the primary side winding and having the same loop shape as that of the primary side winding so as to be electromagnetically coupled to the primary side winding. The present invention relates to a transformer in the case in which the sum of the turn numbers of primary side and secondary side windings on the same plane is 3 or more.
(15) Here, the transformer according to the present embodiment includes an intersecting section 10 at which the primary side winding and the secondary side winding intersect with each other. Referring to
(16) Further, referring to
(17) In the present embodiment, the intersecting section 10 includes at least one point of intermediate node 1, such that the intersecting section 10 may have a two-layer structure unlike the case according to the related art even though the primary side and the secondary side have three or more winding turns. Two points of intermediate nodes 1 and 1′ are shown in
(18) For example, the intermediate nodes 1 and 1′ may be positioned at an edge portion of the intersecting section 10 rather than a central portion thereof. In this case, the intermediate nodes 1 and 1′ may be positioned on extension lines of outermost lines of primary and secondary sides.
(19) In addition, referring to
(20) According to the present embodiment, a transformer generally connected to an output terminal of a power amplifier is improved to reduce power loss, thereby making it possible to improve an output of the power amplifier.
(21) As an example, any one of winding lines of the primary side and the secondary side windings may be a balanced signal line and the other thereof may be an unbalanced signal line.
(22) In addition, referring to
(23) Referring to
(24) Further referring to
(25) Further, in the case in which the sum of the turn numbers of the primary and secondary side windings is an odd number, for example, in the case in which the sum of the turn numbers of the primary and secondary side windings is 3, one of the primary and secondary side forms a single line, and the other thereof forms two lines to have the turn number of 2. In the case in which the sum of the turn numbers of the primary and secondary side windings is 5, one of the primary or secondary side may form two lines to have the turn number of 2, and the other thereof may form three lines to have the turn number of 3. In the case in which the sum of the turn numbers of the primary and secondary side windings is 5, any one side having the turn number of 2 may be disposed between lines having the turn number of 3. For example, referring to
(26) Referring to
(27) Further referring to
(28) Further, at least one pair of sub-outermost lines facing each other normally directly or obliquely in the intersecting section 10 among the even winding turns may be connected to each other through the intermediate node 1 so as not to contact a connection line of the pair of outermost lines in the intersecting section 10. Here, one of the pair of sub-outermost lines may be connected to the intermediate node 1 in the first layer, and the other thereof may be connected to the intermediate node 1 in the second layer.
(29) Further referring to
(30) Hereinafter, a method of manufacturing a transformer according to a second exemplary embodiment of the present invention will be described.
(31) In describing the present embodiment, the transformer according to the first exemplary embodiment of the present invention described above and
(32) Referring to
(33) Referring to
(34) As an example, any one of the primary and secondary side windings may be a balanced signal line and the other thereof may be an unbalanced signal line.
(35) Further referring to
(36) In addition, further referring to
(37) Referring to
(38) Further referring to
(39) As set forth above, according to the exemplary embodiments of the present invention, the line intersecting structure of the transformer including three or more lines of the primary and secondary sides becomes a two-layer structure, making it possible to improve efficiency of the transformer.
(40) According to the exemplary embodiment of the present invention, a transformer generally connected to an output terminal of a power amplifier is improved to reduce power loss, thereby making it possible to improve an output of the power amplifier.
(41) It is obvious that various effects directly stated according to various exemplary embodiment of the present invention may be derived by those skilled in the art from various configurations according to the exemplary embodiments of the present invention.
(42) The accompanying drawings and the above-mentioned exemplary embodiments have been illustratively provided in order to assist in understanding of those skilled in the art to which the present invention pertains rather than limiting a scope of the present invention. In addition, exemplary embodiments according to a combination of the above-mentioned configurations may be obviously implemented by those skilled in the art. Therefore, various exemplary embodiments of the present invention may be implemented in modified forms without departing from an essential feature of the present invention. In addition, a scope of the present invention should be interpreted according to claims and includes various modifications, alterations, and equivalences made by those skilled in the art.