Coil component
11328860 ยท 2022-05-10
Assignee
Inventors
- Shuhei Someya (Tokyo, JP)
- Tasuku Mikogami (Tokyo, JP)
- Yuichi Anzai (Tokyo, JP)
- Hideomi Takahashi (Tokyo, JP)
Cpc classification
H01F17/045
ELECTRICITY
H01F2017/046
ELECTRICITY
H01F27/06
ELECTRICITY
International classification
H01F27/06
ELECTRICITY
H01F27/34
ELECTRICITY
Abstract
Disclosed herein is a coil component that includes: a first core having a mounting surface and a coil placing surface positioned opposite to the mounting surface; a lower coil placed on the coil placing surface such that a coil axis of the lower coil extends substantially perpendicular to the coil placing surface; an upper coil substantially coaxially stacked on the lower coil; and a second core disposed through inner diameter areas of the lower and upper coils. The number of turns of one of the lower and upper coils is larger by less than one turn than other one of the lower and upper coils. The diameter of the second core is larger at a first section surrounded by the other one of the lower and upper coils than at a second section surrounded by the one of the lower and upper coils.
Claims
1. A coil component comprising: a first core having a mounting surface and a coil placing surface positioned opposite to the mounting surface; a lower coil placed on the coil placing surface such that a coil axis of the lower coil extends substantially perpendicular to the coil placing surface, the lower coil having one end drawn to a first area of the mounting surface and other end drawn to a second area of the mounting surface; an upper coil substantially coaxially stacked on the lower coil, the upper coil having one end drawn to a third area of the mounting surface and other end drawn to a fourth area of the mounting surface; and a second core disposed through inner diameter areas of the lower and upper coils, wherein a number of turns of the lower coil is larger by less than one turn than a number of turns of the upper coil, and wherein a diameter of the second core is larger at a first section surrounded by the upper coil than at a second section surrounded by the lower coil.
2. The coil component as claimed in claim 1, wherein the first and second areas are arranged in a first direction substantially perpendicular to the coil axis, wherein the third and fourth areas are arranged in the first direction, wherein the first and third areas are arranged in a second direction substantially perpendicular to the coil axis and first direction, wherein the second and fourth areas are arranged in the second direction, and wherein a winding direction from the one end of the lower coil to the other end of the lower coil as viewed in a coil axis direction is the same as a winding direction from the one end of the upper coil to the other end of the upper coil as viewed in the coil axis direction.
3. A coil component comprising: a magnetic core having first and second sections arranged in a first direction; a first coil wound around the first section of the magnetic core; and a second coil wound around the second section of the magnetic core, and another magnetic core arranged such that the first section of the magnetic core is located between the second section of the magnetic core and the another magnetic core, wherein both ends of the first and second coils are fixed to the another magnetic core, wherein a diameter of the first section is smaller than a diameter of the second section, and wherein a number of turn of the first coil is greater than a number of turns of the second coil.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) 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:
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DETAILED DESCRIPTION OF THE EMBODIMENTS
(10) Preferred embodiments of the present invention will be explained below in detail with reference to the accompanying drawings.
(11)
(12) As illustrated in
(13) The mounting surface 11a constitutes the xy-plane, and end parts 21, 22 of the lower coil 20 and end parts 31, 32 of the upper coil 30 are disposed at mutually different areas (first to fourth areas) of the mounting surface 11a. The mounting surface 11a faces a circuit board in a mounted state. When the coil component 10 according to the present embodiment is mounted on the circuit board, a land pattern on the circuit board and the end parts 21, 22, 31, and 33 are connected through solders. The end parts 21 and 22 are arranged in the y-direction, the end parts 31 and 32 are arranged in the y-direction, the end parts 21 and 31 are arranged in the x-direction, and the end parts 22 and are arranged in the x-direction. Although, in the present embodiment, the end parts 21 and 31 are provided along the same side extending in the x-direction, and the end parts 22 and 32 are provided along the same side extending in the x-direction, the present invention is not limited to this. For example, the end parts 21 and 22 may be provided along the same side extending in the y-direction, and the end parts 31 and 32 are provided along the same side extending in the y-direction.
(14) As illustrated in
(15)
(16) As illustrated in
(17) Further, as illustrated in
(18) When the configuration in which the number of turns is increased by less than one turn is assigned to the lower coil 20, the inductance of the upper coil 30 becomes smaller than that of the lower coil 20 due to the slight difference in the number of turns. In order to reduce the difference in inductance, in the present embodiment, as illustrated in
(19) Conversely, when the configuration in which the number of turns is increased by less than one turn is assigned to the upper coil 30, the inductance of the upper coil 30 becomes larger than that of the lower coil 20 due to the slight difference in the number of turns. In this case, as illustrated in
(20) Further, it is possible to reduce the difference between the line lengths of the lower and upper coils 20 and 30 by assigning the configuration in which the number of turns is increased by less than one turn to the lower coil 20. This arrangement is made considering that the line length of the upper coil 30 becomes larger than that of the lower coil 20 because the upper coil 30 is more distant from the mounting surface 11a. That is, by assigning the configuration in which the number of turns is increased by less than one turn to the lower coil 20, the difference in the line length can be reduced.
(21) Further, in the example illustrated in FIG.
(22) In either case, a difference of less than one turn occurs between the number of turns of the lower coil 20 and that of the upper coil 30 as long as the winding directions of the lower and upper coils 20 and 30 are the same, and the end parts 21, 22, 31, and 32 are laid out so as not to allow polarity reversal. Thus, as illustrated in
(23) 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.