Tunable magnetic core structure
10930429 ยท 2021-02-23
Assignee
Inventors
Cpc classification
H01F21/06
ELECTRICITY
H01F27/29
ELECTRICITY
International classification
Abstract
A tunable magnetic assembly includes a bobbin, an outer core, and an inner core. The bobbin has a first and second flanges. The bobbin has a passageway extending between the first and second flange. The passageway has a spiral track defined in a passageway surface. The outer core is positioned around the first and second flanges. The outer core includes an opening positioned near the first flange. The inner core is positioned in the opening and in the cylindrical passageway. The inner core includes at least one protrusion extending from an outer surface and configured to engage the spiral track. A gap distance is defined between the inner core and a portion of the outer core near the second flange. The gap distance is adjustable by moving the protrusion within the spiral track. Adjusting the gap distance modifies the inductance.
Claims
1. A tunable magnetic assembly comprising: a bobbin comprising a first end flange, a second end flange, a cylindrical passageway extending through the bobbin from the first end flange to the second end flange, the passageway having a passageway surface and a passageway length defined between the first end flange and the second end flange, the passageway further having at least one spiral track etched in the passageway surface along a first portion of the passageway length, and at least one straight track etched in the passageway surface, the at least one straight track spanning a second portion of the passageway length, the second portion at least partially overlapping the first portion of the passageway length; an outer core positionable around the first and second end flanges, the outer core having a first end wall having a first inner surface adjacent to the first end flange, the first end wall including an opening, the outer core having a second end wall having a second inner surface adjacent to the second end flange; and a cylindrical inner core positionable in the passageway of the bobbin, the cylindrical inner core having a first end surface, a second end surface, and an outer surface defined between the first end surface and the second end surface, the first end surface accessible through the opening in the first end wall, the second end surface positionable near the second end wall, wherein the cylindrical inner core further includes at least one protrusion extending from the outer surface configured to engage the at least one spiral track, and wherein a gap distance is defined between the second end surface of the cylindrical inner core and the second inner surface of the outer core.
2. The tunable magnetic assembly of claim 1, wherein the gap distance is adjustable.
3. The tunable magnetic assembly of claim 1, further comprising at least one winding wound about the passageway between the first end flange and the second end flange.
4. The tunable magnetic assembly of claim 1, wherein the cylindrical inner core further comprises a drive interface on the first end surface, the drive interface engageable with an engagement tool to selectively move the at least one protrusion within the at least one spiral track.
5. The tunable magnetic assembly of claim 1, wherein the at least one spiral track has a track profile, and wherein the at least one protrusion has a protrusion profile such that the at least one protrusion is configured to move within the at least one spiral track.
6. The tunable magnetic assembly of claim 1, wherein the at least one protrusion of the inner core includes a first protrusion and a second protrusion extending from an opposite side of the outer surface, and wherein the first and second protrusions are offset by an offset distance parallel with an inner core length.
7. The tunable magnetic assembly of claim 6, wherein the offset distance is configured to enable both the first protrusion and the second protrusion to engage the at least one track.
8. The magnetic assembly of claim 1, wherein the first end surface of the cylindrical inner core extends at least partially through the opening of the first end wall of the outer core.
9. The tunable magnetic assembly of claim 1, wherein the opening is configured to extend to a lower surface of the outer core.
10. The tunable magnetic assembly of claim 1, wherein the at least one straight track includes a first straight track and a second straight track positioned diametrically across the passageway from the first straight track.
11. The tunable magnetic assembly of claim 1, the bobbin further comprising at least one crushable flange rib disposed on an outer flange surface of each of the first and second end flanges.
12. The tunable magnetic assembly of claim 11, wherein the at least one crushable flange rib is tapered.
13. The tunable magnetic assembly of claim 11, wherein the outer core is configured to crush and frictionally engage the at least one crushable flange rib to secure the outer core to the bobbin.
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE INVENTION
(13) In the following description, various dimensional and orientation words, such as height, width, length, longitudinal, horizontal, vertical, up, down, left, right, tall, low profile, and the like, may be used with respect to the illustrated drawings. Such words are used for ease of description with respect to the particular drawings and are not intended to limit the described embodiments to the orientations shown. It should be understood that the illustrated embodiments can be oriented at various angles and that the dimensional and orientation words should be considered relative to an implied base plane that would rotate with the embodiment to a revised selected orientation.
(14) Reference will now be made in detail to embodiments of the present disclosure, one or more drawings of which are set forth herein. Each drawing is provided by way of explanation of the present disclosure and is not a limitation. It will be apparent to those skilled in the art that various modifications and variations can be made to the teachings of the present disclosure without departing from the scope of the disclosure. For instance, features illustrated or described as part of one embodiment can be used with another embodiment to yield a still further embodiment.
(15) It is intended that the present disclosure covers such modifications and variations as come within the scope of the appended claims and their equivalents. Other objects, features, and aspects of the present disclosure are disclosed in the following detailed description. It is to be understood by one of ordinary skill in the art that the present discussion is a description of exemplary embodiments only and is not intended as limiting the broader aspects of the present disclosure.
(16) A magnetic assembly 100 is shown in
(17) In the illustrated embodiment, the magnetic assembly 100 includes a bobbin 102 having a first outer flange 104 and a second outer flange 106 opposite the first outer flange 104. The first outer flange 104 may be referred to as a first end flange 104. The second outer flange 106 may be referred to as a second end flange 106. As shown in
(18) As shown in
(19) As shown in
(20) The magnetic assembly 100 includes at least one winding 130 wound about the passageway 108 between the first outer flange 104 and the second outer flange 106. In an alternate embodiment (not shown), the at least one winding 130 includes a first and second winding separated by an intermediate flange. One of skill in the art will appreciate that multiple intermediate flanges may be used.
(21) As shown in
(22) The outer core 132 is configured to crush and frictionally engage the at least one crushable flange rib 126. As described above, the rib preferably includes a tapered upper portion to facilitate insertion of the outer core 132 around the bobbin 102. The interaction between the at least one crushable flange rib 126 and the outer core 132 secures the outer core 132 to the bobbin 102.
(23) As shown in
(24) As shown in
(25) As shown in
(26) In some embodiments, as shown in
(27) As shown in
(28) As shown in
(29) In the illustrated embodiment, the first end surface 156 includes a drive interface 180. The drive interface 180 is shown in
(30) Adjustment of the gap distance 178 adjusts the inductance of the magnetic assembly 100. The magnetic assembly 100 is tuned by increasing or decreasing the gap distance 178. Increasing the gap distance 178 decreases the inductance of the magnetic assembly 100. Decreasing the gap distance 178 increases the inductance of the magnetic assembly 100. In the illustrated embodiment, turning the inner core 154 counterclockwise increases the gap distance 178. Turning the inner core 154 clockwise decreases the gap distance 178.
(31) The tunable magnetic assembly can be used in circuits which require very tight inductance tolerances. They can also be very helpful in the prototyping design stage. The inductance can easily be tuned to maximize the performance of the circuit. The inductance can also be varied to investigate what changes in inductance does to the performance of the circuit.
(32) Particular embodiments of the present invention of a new and useful TUNABLE MAGNETIC STRUCTURE are described herein; however, such references are not to be construed as limitations upon the scope of this invention except as set forth in the following claims.