COIL COMPONENT
20210110963 · 2021-04-15
Assignee
Inventors
- Noritaka Chiyo (Tokyo, JP)
- Takakazu Maruyama (Tokyo, JP)
- Takahiro Ohishi (Tokyo, JP)
- Tomohiro Moriki (Tokyo, JP)
- Shigenu Kaneko (Tokyo, JP)
Cpc classification
H01F2017/0073
ELECTRICITY
H01F27/34
ELECTRICITY
International classification
Abstract
Disclosed herein is a coil component that includes a substrate having a first surface, and a first coil pattern formed on the first surface of the substrate. The first coil pattern includes a plurality of turns having an innermost turn and an outermost turn. Each of the innermost and outermost turns is radially divided into a plurality of lines. The innermost turn is greater in a number of lines than the outermost turn.
Claims
1. A coil component comprising: a substrate having first and second surfaces; a first coil pattern formed on the first surface of the substrate and spirally wound in a plurality of turns; and a second coil pattern formed on the second surface of the substrate and spirally wound in a plurality of turns, wherein the first coil pattern includes a first line and second and third lines positioned on an inner peripheral side than the first line and branching from the first line, wherein the second coil pattern includes a fourth line and fifth and sixth lines positioned on an inner peripheral side than the fourth line and branching from the fourth line, wherein the third line is positioned on an inner peripheral side than the second line, wherein the sixth line is positioned on an inner peripheral side than the fifth line, wherein an inner peripheral end of the second line is connected to an inner peripheral end of the sixth line through a first connection part formed so as to penetrate the substrate, and wherein an inner peripheral end of the third line is connected to an inner peripheral end of the fifth line through a second connection part formed so as to penetrate the substrate.
2. The coil component as claimed in claim 1, wherein the second, third, fifth, and sixth lines are smaller in pattern width than the first and fourth lines.
3. The coil component as claimed in claim 1, wherein the second, third, fifth, and sixth lines are smaller in pattern thickness than the first and fourth lines.
4. The coil component as claimed in claim 1, wherein an outermost turn of the first coil pattern is radially divided into a plurality of lines including the first line by a spiral-shaped slit, and wherein an outermost turn of the second coil pattern is radially divided into a plurality of lines including the fourth line by a spiral-shaped slit.
5. The coil component as claimed in claim 1, wherein the first line is continuously increased in pattern width toward a portion at which the first line branches into the second and third lines, and wherein the fourth line is continuously increased in pattern width toward a portion at which the fourth line branches into the fifth and sixth lines.
6. A coil component comprising: a substrate having a first surface; and a first coil pattern formed on the first surface of the substrate, wherein the first coil pattern includes a plurality of turns having an innermost turn and an outermost turn, wherein each of the innermost and outermost turns is radially divided into a plurality of lines, and wherein the innermost turn is greater in a number of lines than the outermost turn.
7. The coil component as claimed in claim 6, wherein the innermost turn is smaller in pattern thickness than the outermost turn.
8. The coil component as claimed in claim 7, wherein the plurality of turns constituting the first coil pattern further has a first turn positioned between the innermost turn and the outermost turn, wherein the first turn is radially divided into a plurality of lines, wherein the innermost turn is smaller in pattern thickness than the first turn, and wherein the outermost turn is greater in pattern thickness than the first turn.
9. The coil component as claimed in claim 8, wherein a number of lines constituting the first turn is a same as that of the innermost turn.
10. The coil component as claimed in claim 9, wherein the plurality of turns constituting the first coil pattern further has a second turn positioned between the first turn and the outermost turn, wherein the second turn is radially divided into a plurality of lines, wherein the first turn is smaller in pattern thickness than the second turn, and wherein the outermost turn is greater in pattern thickness than the second turn.
11. The coil component as claimed in claim 10, wherein a number of lines constituting the second turn is a same as that of the outermost turn.
12. The coil component as claimed in claim 6, further comprising a second coil pattern formed on a second surface of the substrate opposite to the first surface, wherein the second coil pattern includes a plurality of turns having an innermost turn and an outermost turn, wherein each of the innermost and outermost turns of the second coil pattern is radially divided into a plurality of lines, wherein the innermost turn of the second coil pattern is greater in a number of lines than the outermost turn of the second coil pattern, wherein the plurality of lines constituting the innermost turn of the first coil pattern includes a first line and a second line positioned on an inner peripheral side than the first line, wherein the plurality of lines constituting the innermost turn of the second coil pattern includes a third line and a fourth line positioned on an inner peripheral side than the third line, wherein the first line is connected to the fourth line, and wherein the second line is connected to the third line.
13. A coil component comprising: a substrate; and a first coil pattern formed on the substrate, wherein the first coil pattern includes a plurality of turns having a first turn, a second turn positioned on an inner peripheral side than the first turn, and a third turn positioned on an inner peripheral side than the second turn, wherein the first turn is radially divided into a plurality of lines include first and second lines, wherein the second turn is radially divided into a plurality of lines include a third line connected to the first line and a fourth line connected to the second line, and wherein the third turn is radially divided into a plurality of lines include fifth and sixth lines connected in common to the third line and seventh and eighth lines connected in common to the fourth line.
14. The coil component as claimed in claim 13, wherein the third turn is smaller in pattern thickness than the first turn.
15. The coil component as claimed in claim 13, wherein the plurality of turns constituting the first coil pattern further has a fourth turn positioned on an inner peripheral side than the third turn, and wherein the fourth turn is radially divided into a plurality of lines include ninth, tenth, eleventh, and twelfth lines connected to the fifth, sixth, seventh, and eighth lines, respectively.
16. The coil component as claimed in claim 15, wherein the fourth turn is smaller in pattern thickness than the third turn.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0014] The above features and advantages of the present invention will be more apparent from the following description of certain preferred embodiments taken in conjunction with the accompanying drawings, in which:
[0015]
[0016]
[0017]
[0018]
[0019]
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
[0026]
DETAILED DESCRIPTION OF THE EMBODIMENTS
[0027] Hereinafter, a preferred embodiment of the present invention will be described in detail with reference to the accompanying drawings.
[0028]
[0029] As illustrated in
[0030] There is no particular restriction on the material of the substrate 10, and a transparent or translucent flexible insulating material such as PET resin may be used. Alternatively, the substrate 10 may be a flexible substrate obtained by impregnating glass cloth with epoxy-based resin.
[0031]
[0032] As illustrated in
[0033] The number of divisions changes at the boundary between the turns 130 and 140. Specifically, the line 131 constituting the turn 130 is divided into two lines 141 and 142 at the boundary, and the line 132 constituting the turn 130 is divided into two lines 143 and 144 at the boundary.
[0034] An outer peripheral end 105 of the first coil pattern 100 is radially led out. The first coil pattern 100 has four inner peripheral ends. That is, the first coil pattern 100 has an inner peripheral end 101 which is the end of the line 151, an inner peripheral end 102 which is the end of the line 152, an inner peripheral end 103 which is the end of the line 153, and an inner peripheral end 104 which is the end of the line 154. The above inner peripheral ends 101 to 104 are connected to connection parts 301 to 304, respectively.
[0035] Thus, as illustrated in
[0036] As illustrated in
[0037]
[0038] As illustrated in
[0039] The second coil pattern 200 has a five-turn configuration constituted of turns 210, 220, 230, 240, and 250, in which the turn 210 is the outermost turn positioned at the outermost periphery, and the turn 250 is the innermost turn positioned at the innermost periphery. Of the turns 210, 220, 230, 240, and 250, the turns 210, 220, and 230 positioned on the outer peripheral side are each radially divided into two parts by a spiral-shaped slit. Specifically, the turn 210 is divided into two lines 211 and 212, the turn 220 is divided into two lines 221 and 222, and the turn 230 is divided into two lines 231 and 232. The lines 211, 221, and 231 are positioned outside the lines 212, 222, and 232, respectively. The turns 240 and 250 positioned on the inner peripheral side are each radially divided into four parts by three spiral-shaped slits. Specifically, the turn 240 is divided into four lines 241 to 244, and the turn 250 is divided into four lines 251 to 254. The lines 241 and 251 are each the outermost line positioned on the outermost peripheral side in its corresponding turn, the lines 242 and 252 are each the second outermost line which is the second line counted from the outermost line in its corresponding turn, the lines 243 and 253 are each the second innermost turn which is the second line counted from the innermost line in its corresponding turn, and the lines 244 and 254 are each the innermost line positioned on the innermost peripheral side in its corresponding turn.
[0040] The number of divisions changes at the boundary between the turns 230 and 240. Specifically, the line 231 constituting the turn 230 is divided into two lines 241 and 242 at the boundary, and the line 232 constituting the turn 230 is divided into two lines 243 and 244 at the boundary.
[0041] An outer peripheral end 205 of the second coil pattern 200 is radially led. The second coil pattern 200 has four inner peripheral ends. That is, the second coil pattern 200 has an inner peripheral end 201 which is the end of the line 251, an inner peripheral end 202 which is the end of the line 252, an inner peripheral end 203 which is the end of the line 253, and an inner peripheral end 204 which is the end of the line 254. The above inner peripheral ends 201 to 204 are connected to connection parts 304, 303, 302, and 301, respectively.
[0042] Thus, as illustrated in
[0043] As illustrated in
[0044] The thus configured first and second coil patterns 100 and 200 are formed on the front and back surfaces of the substrate 10 such that the center points C1 and C2 overlap each other and that the virtual lines L1 and L2 overlap each other. As a result, as illustrated in
[0045] Further, in the present embodiment, the lines 141 to 144, 151 to 154, 241 to 244, and 251 to 254 of the turns 140, 150, 240, and 250 positioned on the inner peripheral side and each having the four division lines are smaller in pattern width than the lines 111, 112, 121, 122, 131, 132, 211, 212, 221, 222, 231, and 232 of the turns 110 to 130 and 210 to 230 positioned on the outer peripheral side and each having the two division lines. Thus, in the present embodiment, the number of divisions of the turn on the inner peripheral side is increased to reduce the pattern width of each line, thereby making it possible to reduce a loss on the inner peripheral side having a strong magnetic field and thus having a large heat generation due to eddy current. On the other hand, the number of divisions of the turn on the outer peripheral side is small, making it possible to suppress reduction in the pattern width by the slit required for the division. The term “pattern width” used herein refers to the width of the planar conductor in the radial direction.
[0046] As illustrated in
[0047] Alternatively, as illustrated in
[0048] Further, the division number of one line is not limited to two and, as illustrated in
[0049] Further, as illustrated in
[0050] Further, as illustrated in
[0051] As described above, in the coil component according to the present embodiment, the turns constituting the first and second coil patterns 100 and 200 are each radially divided into a plurality of parts by the spiral-shaped slit (or slits), so that, as compared to a case where such a slit is not formed, uneven distribution of current density can be reduced. As a result, even when the coil component according to the present embodiment constitutes, for example, a power receiving coil of a wireless power transmission device and thus requires a large current, a DC resistance and an AC resistance can be reduced. In addition, the number of divisions of each of the first and second coil patterns 100 and 200 is two on the outer peripheral side and four on the inner peripheral side, so that it is possible to reduce a loss on the inner peripheral side having a strong magnetic field and thus having a large heat generation due to eddy current. On the other hand, the number of divisions on the outer peripheral side is small, making it possible to suppress reduction in the pattern width by the slit.
[0052] It is apparent that the present invention is not limited to the above embodiments, but may be modified and changed without departing from the scope and spirit of the invention.
[0053] For example, in the above embodiment, the turns 110 to 130 and 210 to 230 positioned on the outer peripheral side are each divided into two lines; however, this point is not essential in the present invention, and the turns positioned on the outer peripheral side each may not necessarily be divided into a plurality of lines.