INDUCTOR DEVICE
20230055317 · 2023-02-23
Inventors
Cpc classification
H01F2017/0073
ELECTRICITY
International classification
Abstract
An inductor device includes a first trace, a second trace, and a connection member. The first inductor includes a first trace and a second trace. The shape of one of the first trace and the second trace is spiral. The second inductor includes a third trace and a fourth trace. The connection member is configured to couple the first inductor and the second inductor.
Claims
1. An inductor device, comprising: a first inductor, comprising: a first trace; and a second trace, wherein a shape of one of the first trace and the second trace comprises a spiral; a second inductor, comprising: a third trace; and a fourth trace, wherein the third trace and the fourth trace are symmetrical to each other; and a connection portion, configured to couple to the first inductor and the second inductor.
2. The inductor device of claim 1, wherein the first inductor and the second inductor are located on a first layer and a second layer, and the connection portion is located on the first layer and a third layer.
3. The inductor device of claim 2, wherein the first trace comprises a first spiral trace, wherein the first spiral trace is disposed on the first layer and the second layer.
4. The inductor device of claim 3, wherein the first inductor further comprises: a first input/output terminal, disposed on the first layer, and coupled to the first spiral trace which is located on the second layer, wherein the first spiral trace which is located on the second layer is coupled to the first spiral trace which is located on the first layer.
5. The inductor device of claim 4, wherein the first inductor further comprises: a first connection member, disposed on the third layer, wherein the first input/output terminal is coupled to the first spiral trace which is located on the second layer through the first connection member.
6. The inductor device of claim 5, wherein the second trace comprises a second spiral trace, wherein the second spiral trace is disposed on the first layer and the second layer.
7. The inductor device of claim 6, wherein the first inductor further comprises: a second input/output terminal, disposed on the first layer, and coupled to the second spiral trace which is located on the first layer, wherein the second spiral trace which is located on the first layer is coupled to the second spiral trace which is located on the second layer.
8. The inductor device of claim 7, wherein the first inductor further comprises: a second connection member, disposed on the third layer, wherein the second spiral trace which is located on the second layer is coupled to the second spiral trace which is located on the first layer through the second connection member; wherein the connection portion comprises: a first sub-connection portion, configured to couple to the second spiral trace which is located on the first layer and the first spiral trace which is located on the first layer.
9. The inductor device of claim 8, wherein the second inductor further comprises: a third input/output terminal, disposed on the third layer, and coupled to the fourth trace which is located on the second layer.
10. The inductor device of claim 9, wherein the second inductor further comprises: a third connection member, disposed on the third layer, wherein the fourth trace, which is located on the second layer, is coupled through the third connection member to the fourth trace, which is located on the second layer, in an interlaced manner.
11. The inductor device of claim 10, wherein the second spiral trace which is located on the first layer and the fourth trace which is located on the second layer are overlapped to each other partially.
12. The inductor device of claim 11, wherein the second inductor further comprises: a fourth input/output terminal, disposed on the third layer, and coupled to the fourth trace which is located on the second layer.
13. The inductor device of claim 12, wherein the second inductor further comprises: a fourth connection member, disposed on the third layer, wherein the fourth trace, which is located on the second layer, is coupled through the fourth connection member to the fourth trace, which is located on the second layer, in an interlaced manner, wherein the third connection member and the fourth connection member are located at different sides of the second inductor.
14. The inductor device of claim 13, wherein in a central area of the inductor device, the third trace which is located on the second layer is coupled to the fourth trace which is located on the second layer.
15. The inductor device of claim 14, wherein the second inductor further comprises: a fifth connection member, disposed on the third layer, wherein the third trace, which is located on the second layer, is coupled through the fifth connection member to the third trace, which is located on the second layer, in an interlaced manner.
16. The inductor device of claim 15, wherein the first spiral trace which is located on the first layer and the third trace which is located on the second layer are overlapped to each other partially.
17. The inductor device of claim 16, wherein the second inductor further comprises: a center-tapped terminal, disposed on the third layer, and coupled to the third trace which is located on the second layer.
18. The inductor device of claim 17, wherein the center-tapped terminal is disposed symmetrically to the third input/output terminal and the fourth input/output terminal on a basis of the central area.
19. The inductor device of claim 18, wherein the second inductor further comprises: a sixth connection member, disposed on the third layer, wherein the third trace, which is located on the second layer, is coupled through the sixth connection member to the third trace, which is located on the second layer, in an interlaced manner, wherein the fifth connection member and the sixth connection member are located at different sides of the second inductor.
20. The inductor device of claim 19, wherein the connection portion further comprises: a second sub-connection portion, disposed on the first layer, wherein in the central area of the inductor device, the third trace, which is located on the second layer, is coupled through the second sub-connection portion to the fourth trace, which is located on the second layer.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0008] 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,
[0009]
[0010]
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[0017] 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.
DESCRIPTION OF THE EMBODIMENTS
[0018] 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.
[0019] 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 “a” and “an” include the plural reference unless the context clearly indicates otherwise.
[0020]
[0021] For facilitating the understanding of the inductor device 1000 in
[0022] As shown in
[0023] In one embodiment, the portion structure of the inductor device 1000 shown in
[0024] In addition, referring to
[0025] In one embodiment, the first trace 1110 can be the first spiral trace 1110, and the first spiral trace 1110 is disposed on the first layer and the second layer. For example, the portion trace 1112 of the first spiral trace 1110 is disposed on the first layer shown in
[0026] In another embodiment, the first inductor 1100 further includes a first input/output terminal 1130 and a first connection member 1140. The first input/output terminal 1130 is disposed on the first layer shown in
[0027] In one embodiment, the second trace 1120 can be the second spiral trace 1120, and the second spiral trace 1120 is disposed on the first layer and the second layer. For example, the portion trace 1121 of the second spiral trace 1120 is disposed on the first layer shown in
[0028] In another embodiment, the first inductor 1100 further includes a second input/output terminal 1150 and a second connection member 1160. The second input/output terminal 1150 is disposed on the first layer shown in
[0029] Next, the node F of the second connection member 1160 is coupled to the node F which is disposed on the portion trace 1121 of the second spiral trace 1120 shown in
[0030] In one embodiment, the second inductor 1200 further includes a third input/output terminal 1230 and a third connection member 1240. The third input/output terminal 1230 is disposed on the third layer shown in
[0031] In another embodiment, referring to
[0032] In one embodiment, the second inductor 1200 further includes a fourth input/output terminal 1250 and a fourth connection member 1260. The fourth input/output terminal 1250 is disposed on the third layer shown in
[0033] In another embodiment, in the central area (e.g. the center of the structure shown in the figure) of the inductor device 1000, the third trace 1210 which is disposed on the second layer shown in
[0034] In one embodiment, the second inductor 1200 further includes a fifth connection member 1270, and the fifth connection member 1270 is disposed on the third layer shown in
[0035] In another embodiment, referring to
[0036] In one embodiment, the second inductor 1200 further includes a center-tapped terminal 1280, and the center-tapped terminal 1280 is disposed on the third layer shown in
[0037] In another embodiment, referring to
[0038] In one embodiment, the second inductor 1200 further includes a sixth connection member 1290, and the sixth connection member 1290 is disposed on the third layer shown in
[0039] In another embodiment, the connection portion 1300 further includes a second sub-connection portion 1320, and the second sub-connection portion 1320 is disposed on the first layer shown in
[0040]
[0041] Referring to
[0042] Besides, the structure between the second trace 1120A and the fourth trace 1220A of the inductor device 1000A is adjusted, so as to make the fourth connection member 1260A located at the upper-right corner in the figure to be disposed on the first layer, and make the third connection member 1240A located at the lower-right corner in the figure to be disposed on the first layer. It is noted that the element in
[0043]
[0044] Referring to
[0045] Besides, the structure between the second trace 1120B and the fourth trace 1220B of the inductor device 1000B is adjusted, so as to make the fourth connection member 1260B located at the upper-right corner in the figure to be disposed on the first layer, and make the third connection member 1240B located at the lower-right corner in the figure to be disposed on the first layer. It is noted that the element in
[0046]
[0047] Referring to
[0048] Besides, the structure between the second trace 1120C and the fourth trace 1220C of the inductor device 1000C is adjusted, so as to make the fourth connection member 1260C located at the upper-right corner in the figure to be disposed on the first layer, and make the third connection member 1240C located at the lower-right corner in the figure to be disposed on the first layer.
[0049] In addition, the input/output terminals 1230C, 1250C of the inductor device 1000C can be disposed on the first layer, and the input/output terminals 1230C, 1250C are coupled to the third sub-trace 1210C. Furthermore, the center-tapped terminal 1280C of the inductor device 1000C can be disposed on the first layer, and the center-tapped terminal 1280C is coupled to the fourth sub-trace 1220C. It is noted that the element in
[0050]
[0051] 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.
[0052] 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.