This application claims priority to Taiwan Application Serial Number 108120536, filed Jun. 13, 2019, which is herein incorporated by reference.
The present disclosure relates to an electronic device. More particularly, the present disclosure relates to an inductor device.
In the prior art, the winding method of a symmetrical inductor device causes a large amount of parasitic capacitance between the first coil and the second coil in the inductor device, which seriously affects the quality factor (Q) and self-resonant frequency (FSR) of the inductor device.
For the foregoing reason, there is a need to solve the above-mentioned problem by providing an inductor device.
The foregoing presents a simplified summary of the disclosure in order to provide a basic understanding to the reader. This summary is not an extensive overview of the disclosure and it does not identify key/critical elements of the present disclosure or delineate the scope of the present disclosure. Its sole purpose is to present some concepts disclosed herein in a simplified form as a prelude to the more detailed description that is presented later.
One objective of the present disclosure is to provide an inductor device so as to resolve the problem of the prior art. The means of solution are described as follows.
One aspect of the present disclosure is to provide an inductor device. The inductor device comprises a first coil and a second coil. The first coil is wound into a plurality of first circles, and the second coil is wound into a plurality of second circles. At least two of the second circles are interlaced with at least two of the first circles on a first side. The at least two of the second circles are disposed adjacent to each other on the first side. At least one of the first circles is only interlaced with at least one of the second circles on a second side. At least another one of the first circles is only interlaced with at least another one of the second circles on the second side.
Therefore, based on the technical content of the present disclosure, the inductor device according to the embodiments of the present disclosure can effectively reduce the parasitic capacitance between the coils of the inductor device to allow the inductor device to have a superior quality factor (Q) and operating range of self-resonant frequency.
It is to be understood that both the foregoing general description and the following detailed description are by examples, and are intended to provide further explanation of the invention as claimed.
The accompanying drawings are included to provide a further understanding of the invention, and are incorporated in and constitute a part of this specification. The drawings illustrate embodiments of the invention and, together with the description, serve to explain the principles of the invention. In the drawings,
According to the usual mode of operation, various features and elements in the figures have not been drawn to scale, which are drawn to the best way to present specific features and elements related to the disclosure. In addition, among the different figures, the same or similar element symbols refer to similar elements/components.
To make the contents of the present disclosure more thorough and complete, the following illustrative description is given with regard to the implementation aspects and embodiments of the present disclosure, which is not intended to limit the scope of the present disclosure. The features of the embodiments and the steps of the method and their sequences that constitute and implement the embodiments are described. However, other embodiments may be used to achieve the same or equivalent functions and step sequences.
Unless otherwise defined herein, scientific and technical terminologies employed in the present disclosure shall have the meanings that are commonly understood and used by one of ordinary skill in the art. Unless otherwise required by context, it will be understood that singular terms shall include plural forms of the same and plural terms shall include the singular. Specifically, as used herein and in the claims, the singular forms βaβ and βanβ include the plural reference unless the context clearly indicates otherwise.
As for the structure, at least two of the second circles are interlaced with at least two of the first circles on a first side (such as an upper side of the figure). For example, two circles of the first circles and two circles of the second circles are doubly crossed (such as a double-crossing configuration) on the upper side of the figure. Additionally, the at least two of the first circles are disposed adjacent to each other on the first side, and the at least two of the second circles are disposed adjacent to each other on the first side. For example, the above two of the first circles are arranged next to each other without any other circle therebetween. The above two of the second circles are also arranged next to each other, and similarly, without any other circle therebetween.
In addition to that, at least one of the first circles is only interlaced with at least one of the second circles on a second side (such as a lower side of the figure), and at least another one of the first circles is only interlaced with at least another one of the second circles on the second side. For example, the first circle and the second circle only adopt a single-crossing configuration rather than a double-crossing configuration on the lower side of the figure.
In one embodiment, the at least two of the second circles cross the at least two of the first circles on the first side. For example, the first circles and the second circles are so disposed at a double-crossing portion that the second circles crosses the first circles. In addition, the at least one of the first circles crosses the at least one of the second circles on the second side, and the at least another one of the first circles crosses the at least another one of the second circles on the second side. For example, the first circle and the second circle are so disposed at a single-crossing portion that the first circle crosses the second circle. However, the present disclosure is not limited in this regard. In other embodiments, the crossing method of the first circle(s) and the second circle(s) may be configured depending on practical needs.
In another embodiment, the second coil 1200 has a first opening, a second opening, a first connecting element 1210, and a second connecting element 1220. The first connecting element 1210 and the second connecting element 1220 cross the at least two of the first circles on the first side, and connect the first opening and the second opening, respectively. In one embodiment, the first opening and the second opening are arranged adjacent to each other on the first side, and the first connecting element 1210 and the second connecting element 1220 are disposed adjacent to each other on the first side. For example, the first opening and the second opening are arranged next to each other without any other opening therebetween. The first connecting element 1210 and the second connecting element 1220 are also arranged next to each other, and similarly, without any other connecting element therebetween.
In other embodiments, the first opening includes two end points 1211, 1213, and the second opening includes two end points 1221, 1223. As shown in
In one embodiment, the first coil 1100 has a third opening and a third connecting element 1110. The third connecting element 1110 crosses the at least one of the second circles on the second side, and connects the third opening. Additionally, the first coil has a fourth opening and a fourth connecting element 1120. The fourth connecting element 1120 crosses the at least another one of the second circles on the second side, and connects the fourth opening.
In another embodiment, the third opening includes two end points 1111, 1113, and the fourth opening includes two end points 1121, 1123. As shown in
In other embodiments, the first connecting element 1210 and the second connecting element 1220 are located on a different layer from the first circles. In addition to that, the third connecting element 1110 and the fourth connecting element 1120 are located on a different layer from the second circles.
In one embodiment, the inductor device 1000 further includes a center point 1300. The center point 1300 is located on the first side. The first coil 1100 and the second coil 1200 are coupled at the center point 1300. A description is provided with reference to
A description is provided with reference to
As for the structure, the first coil 1100 is wound clockwise along the first turn 1410 from the second side to the first side, and is wound to the third turn 1430 on the first side. The first coil 1100 is then wound along the third turn 1430 from the first side to the second side, and is wound to the second turn 1420 on the second side. The first coil 1100 is thereafter wound along the second turn 1420 from the second side to the first side, and is wound to the fourth turn 1440 on the first side. The first coil 1100 is next wound along the fourth turn 1440 from the first side to the second side, and is wound to the fifth turn 1450 on the second side. The first coil 1100 is then wound along the fifth turn 1450 from the second side to the center point 1300 on the first side.
In addition, the second coil 1200 is wound counterclockwise along the first turn 1410 from the second side to the first side, and is wound to the third turn 1430 on the first side. The second coil 1200 is then wound along the third turn 1430 from the first side to the second side, and is wound to the second turn 1420 on the second side. The second coil 1200 is thereafter wound along the second turn 1420 from the second side to the first side, and is wound to the fourth turn 1440 on the first side. The second coil 1200 is next wound along the fourth turn 1440 from the first side to the second side, and is wound to the fifth turn 1450 on the second side. The second coil 1200 is then wound along the fifth turn 1450 from the second side to the center point 1300 on the first side.
As shown in
It can be understood from the embodiments of the present disclosure that application of the present disclosure has the following advantages. The inductor device according to the embodiments of the present disclosure can effectively reduce the parasitic capacitance between the coils of the inductor device to allow the inductor device to have a superior quality factor (Q) and operating range of self-resonant frequency.
Although the present invention has been described in considerable detail with reference to certain embodiments thereof, other embodiments are possible. Therefore, the spirit and scope of the appended claims should not be limited to the description of the embodiments contained herein.
It will be apparent to those skilled in the art that various modifications and variations can be made to the structure of the present invention without departing from the scope or spirit of the invention. In view of the foregoing, it is intended that the present invention cover modifications and variations of this invention provided they fall within the scope of the following claims and their equivalents.
Number | Date | Country | Kind |
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108120536 | Jun 2019 | TW | national |
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Entry |
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China Patent Office, the office action of the corresponding Chinese application No. 201910530437.9 dated May 7, 2021. |
Number | Date | Country | |
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20200395166 A1 | Dec 2020 | US |