Combined U-core magnetic structure
11049643 · 2021-06-29
Assignee
Inventors
Cpc classification
H01F2005/043
ELECTRICITY
H01F2005/046
ELECTRICITY
H01F27/26
ELECTRICITY
H01F27/29
ELECTRICITY
H01F27/40
ELECTRICITY
International classification
Abstract
A magnetic connector assembly has two independent magnetic components sharing a common core structure. The magnetic assembly includes first and second bobbins, and includes a magnetic core. The magnetic core includes first and second core halves, each half including a main core body, a first outer leg, a second outer leg, and a middle leg. The first outer leg fits within a passageway of the first bobbin. The second outer leg fits within a passageway of the second bobbin. The middle leg fits between the two bobbins.
Claims
1. A magnetic assembly having two independent magnetic components sharing a common core structure, the magnetic assembly comprising: a first bobbin including a first respective winding surrounding a respective first passageway, the first passageway having a respective first end and a respective second end, the first bobbin further including a respective first end flange and a respective second end flange positioned at opposite ends positioned at the first end of the first passageway and a respective second flange positioned at the second end of the first passageway, the first passageway having a respective first passageway length defined between a respective outer surface of the first end flange of the first bobbin and a respective outer surface of the second end flange of the first bobbin; a second bobbin including a second respective winding surrounding a respective second passageway, the second passageway having a respective first end and a respective second end, the second bobbin further including a respective first end flange and a respective second end flange positioned at opposite ends positioned at the first end of the second passageway and a respective second end flange positioned at the second end of the second passageway, the second passageway having a respective second passageway length defined between a respective outer surface of the first end flange of the second bobbin and a respective outer surface of the second end flange of the second bobbin; and a first core half and a second core half, each of the first core half and second core half including: a main core body of the first core half extending between a first end surface of the main core body of the first core half and a second end surface of the main core body of the first core half, the main core body of the first core half having a respective outer surface, a respective first inner surface and a respective second inner surface; a first outer leg of the first core half extending perpendicularly from the first inner surface of the main core body of the first core half, the first outer leg of the first core half positioned proximate to the first end surface of the main core body of the first core half, the first outer leg of the first core half having a first outer leg cross-sectional profile configured to fit within the passageway of the first bobbin, the first outer leg cross-sectional profile defining a first outer leg cross-sectional area, the first outer leg positioned within the first passageway of the first bobbin via the first end of the first passageway; a second outer leg of the first core half extending perpendicularly from the second inner surface of the main core body of the first core half, the second outer leg of the first core half positioned proximate to the second end surface of the main core body of the first core half, the second outer leg of the first core half having a second outer leg cross-sectional profile configured to fit within the passageway of the second bobbin, the second outer leg cross-sectional profile defining a second outer leg cross-sectional area, the second outer leg cross-sectional profile different from the first outer leg cross-sectional profile, the second outer leg cross-sectional area greater than the first outer leg cross-sectional area, the second outer leg positioned within the second passageway of the second bobbin via the first end of the second passageway; and a middle leg of the first core half extending perpendicularly from the first and second inner surface surfaces of the main core body of the first core half to a first middle leg end surface, the middle leg of the first core half positioned between the first outer leg of the first core half and the second outer leg of the first core half, the middle leg of the first core half spaced apart from the first outer leg of the first core half by a first window width, the middle leg of the first core half spaced apart from the second outer leg of the first core half by a second window width, the middle leg having a middle leg end surface, the middle leg of the first core half having a middle leg cross-sectional profile defining a middle leg cross-sectional area, the middle leg cross-sectional area being at least as great as a sum of the first outer leg cross-sectional area and the second outer leg cross-sectional area; and a second core half, the second core half including: a main core body of the second core half extending between a first end surface of the main core body of the second core half and a second end surface of the main core body of the second core half, the main core body of the first core half having a respective outer surface, a respective first inner surface and a respective second inner surface; a first outer leg of the second core half extending perpendicularly from the first inner surface of the main core body of the second core half, the first outer leg of the second core half positioned proximate to the first end surface of the main core body of the second core half, the first outer leg of the second core half having the first outer leg cross-sectional profile and the first outer leg cross-sectional area, the first outer leg of the second core half positioned within the first passageway of the first bobbin via the second end of the first passageway; a second outer leg of the second core half extending perpendicularly from the second inner surface of the main core body of the second core half, the second outer leg of the second core half positioned proximate to the second end surface of the main core body of the second core half, the second outer leg of the second core half having the second outer leg cross-sectional profile and the second outer leg cross-sectional area, the second outer leg of the second core half positioned within the second passageway of the second bobbin via the second end of the second passageway; and a middle leg of the second core half extending perpendicularly from the first and second inner surfaces of the main core body of the second core half to a second middle leg end surface, the middle leg of the second core half positioned between the first outer leg of the second core half and the second outer leg of the second core half, the middle leg of the second core half spaced apart from the first outer leg of the second core half by the first window width, the middle leg of the second core half spaced apart from the second outer leg of the second core half by the second window width, the middle leg of the second core half having the middle leg cross-sectional profile and the middle leg cross-sectional area, the second middle leg end surface of the middle leg of the second core half positioned to abut the first middle leg end surface of the middle leg of the first core half, wherein the winding of the first bobbin positioned on the first outer legs of the first and second core halves and the winding of the second bobbin positioned on the second outer legs of the first and second core halves are the only windings of the magnetic assembly, wherein: the main core body of each of the first core half and second core half includes a main core outer surface, a first main core inner surface, and a second main core inner surface, the first and second main core inner surfaces positioned opposite to the main core outer surface, the respective first main core inner surface of the main body of each core half is defined between the respective first outer leg and the respective middle leg, of each core half; the respective second main core inner surface of the main body of each core half is defined between the respective middle leg and the respective second outer leg of each core half; the respective middle leg of each of the first core half and the second core halves half includes a middle leg end surface, a respective first common length, and a respective second common length, the respective first common length defined between the respective first main core inner surface of the respective main body and the respective middle leg end surface, the respective second common length defined between the respective second main core inner surface of the respective main body and the respective middle leg end surface; the respective first outer leg of each of the first core half and the second core halves half includes a respective first outer leg end surface and a respective third common length, the respective third common length defined between the respective first main core inner surface and the respective first outer leg end surface; the respective second outer leg of each of the first core half and the second core halves half includes a respective second outer leg end surface and a respective fourth common length, the respective fourth common length defined between the respective second main core inner surface and the respective second outer leg end surface; a total of the respective first common length of the respective middle leg of the first core half and the respective first common length of the respective middle leg of the second core half is greater than a total of the respective third common length of the respective first outer leg of the first core half and the respective third common length of the respective first outer leg of the second core half by one-half of a first gap distance; and a total of the respective second common length of the respective middle leg of the first core half and the respective second common length of the respective middle leg of the second core half is greater than a total of the respective fourth common length of the respective second outer leg of the first core half and the respective fourth common length of the respective second outer leg of the second core half by one-half of a second gap distance.
2. The magnetic assembly of claim 1, wherein: each of the first and second end flanges of the first bobbin includes a first bobbin flange width defined between the passageway and a lateral outer periphery of the respective end flange, the first bobbin flange width being less than the first window width; and each of the first and second end flanges of the second bobbin includes a second bobbin flange width defined between the passageway and a lateral outer periphery of the respective end flange, the second bobbin flange width being less than the second window width.
3. The magnetic assembly of claim 1, wherein the main core body, the first outer leg, the second outer leg, and the middle leg of each of the first and second core halves have a selected common height.
4. The magnetic assembly of claim 1, wherein: the first outer legs and the middle legs of the first and second core halves define a first winding window having the first window width and a first window length, the first window length defined between a respective the first main core inner surface of the main core body of the first core half and a respective the first main core inner surface of the main core body of the second core half; and a second winding window between the middle legs and the second outer legs of the first and second core halves, the second winding window including the second window width and a second window length, the second window length defined between a respective the second main core inner surface of the main core body of the first core half and a respective the second main core inner surface of the main core body of the second core half.
5. The magnetic assembly of claim 4, wherein: the first window length is at least as great as the passageway length of the first bobbin; the second window length is at least as great as the passageway length of the second bobbin; and one of the first window length and the second window length is greater than another of the first window length and the second window length.
6. The magnetic assembly of claim 1, wherein one of the first gap distance and the second gap distance is greater than another of the first gap distance and the second gap distance.
7. The magnetic assembly of claim 1, wherein one of the first window width and the second window width is greater than another of the first window width and the second window width.
8. The magnetic core of claim 1, wherein: the respective main core body of each of the first core half and the second core half has a respective first main body thickness defined between the respective outer surface of the respective main core body and the respective first inner surface of the respective main core body, the first main body thickness being at least as great as a width of the respective first outer leg of the respective core half; and the respective main core body of each of the first core half and the second core half has a respective second main body thickness defined between the respective outer surface of the respective main core body and the respective inner surface of the respective main core body.
9. The magnetic core of claim 1, wherein: the respective main core body of each of the first core half and the second core half has a respective first main core body cross-sectional area defined between the respective outer surface of the respective main core body and the respective first inner surface of the respective main core body, the respective first main core body cross-sectional area being at least as great as the respective first outer leg cross-sectional area of the respective core half; and the respective main core body of the first core half and the second core half has a respective second main core body cross-sectional area defined between the respective outer surface of the respective main core body and the respective second inner surface of the respective main core body, the respective second main core body cross-sectional area being at least as great as the respective second outer leg cross-sectional area of the respective core half.
10. The magnetic core of claim 1, wherein the first outer leg end surface of the first core half is spaced apart from the first outer leg end surface of the second core half by a first gap distance; the second outer leg end surface of the first core half is spaced apart from the second outer leg end surface of the second core half by a second gap distance; and one of the first gap distance and the second gap distance is greater than another of the first gap distance and the second gap distance.
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWINGS
(1)
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(3)
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DETAILED DESCRIPTION
(14) 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.
(15) 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.
(16) 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.
(17)
(18) As shown in
(19) As shown in
(20) A first outer leg 250 of the first core half 220 extends perpendicularly from the inner surface 238 of the main body portion 230 near the first end surface 232 of the main body portion. As shown in
(21) A second outer leg 260 of the first core half 220 extends perpendicularly from the inner surface 238 of the main body portion 230 near the second end surface 234 of the main body portion. The second outer leg has a second outer leg end surface 262. The second outer leg has an outer lateral surface 264 and an inner lateral surface 266. In the illustrated embodiment, the outer lateral surface of the second outer leg is coplanar with the second end surface 234 of the main body portion. The inner lateral surface of the second outer leg is parallel to the outer lateral surface of the second outer leg. The second outer leg further includes a second outer leg cross-sectional profile 268 defined by the second outer leg end surface 262. The second outer leg cross-sectional profile has a second leg cross-sectional area. In the illustrated embodiment, the second outer leg has a lower surface coplanar with the lower surface 240 of the main body portion and has an upper surface coplanar with the upper surface 242 of the main body portion.
(22) A middle leg 270 of the first core half 220 extends perpendicularly from the inner surface 238 of the main body portion 230 between the first end surface 232 and the second end surface 234 of the main body portion. The middle leg has a middle leg end surface 272. The middle leg end surface may be positioned at least as far as each of the first and second outer leg end surfaces 252, 262 are from the outer surface 236 of the main body portion 230. The middle outer leg has a first lateral surface 274 and a second lateral surface 276. The first lateral surface faces toward the first end surface of the main body portion. The second lateral surface faces toward the second end surface of the main body portion. The first lateral surface and the second lateral surface are parallel to each other and parallel to the first and second end surfaces of the main body portion. The middle leg further includes a middle leg cross-sectional profile 278 defined by the middle leg end surface 272. The middle leg cross-sectional profile has a middle leg cross-sectional area. The middle leg cross-sectional area is greater than or equal to a sum of the first outer leg cross-sectional area and the second outer leg cross-sectional area. In the illustrated embodiment, the middle leg has a lower surface coplanar with the lower surface 240 of the main body portion and has an upper surface coplanar with the upper surface 242 of the main body portion.
(23) As further shown in
(24) When the two core halves 220, 222 of the core structure 216 are mated as shown in
(25) In the illustrated embodiment, the main body portion 230 and the three legs 250, 260, 270 extending from the main body portion of each core half 220, 222 have a common height H (
(26) In the illustrated embodiment, the middle leg 270 of each core half 220, 222 has a first common selected length L1 (
(27) In the illustrated embodiment, the first outer legs 250 of the two core halves 220, 222 have a third common selected length L3 (
(28) In the illustrated embodiment, the second outer legs 260 of the two core halves 220, 222 have a fourth common selected length L4 (
(29) In the illustrated embodiment, the gap width G1 of the first gap 300 and the gap width G2 of the second gap 310 are shown as being approximately the same width; however, the first, second, third, and fourth common lengths may be selected such that the gap widths are different. For example, in one embodiment, the difference between the first common selected length of the middle legs 270 and the third common selected length of the first outer legs 250 may differ from the difference between the second common length of the middle legs 270 and the fourth common selected length of the second outer legs 260 such that the first gap width G1 and the second gap width G2 may be different. The first gap width G1 may be greater or smaller than the second gap width G2. Alternatively, the difference between the first common selected length of the middle legs 270 and the third common selected length of the first outer legs 250 may be equal to the difference between the second common length of the middle legs 270 and the fourth common selected length of the second outer legs 260 such that the first gap width G1 and the second gap width G2 may be the same. It should be understood that the gap widths illustrated in the figures may be exaggerated so that the gaps may be visualized. In certain embodiments, the gap widths may be a small percentage of the lengths of the respective legs. For example, a gap may have a width of less than 0.001 inch or may have a width of more than 0.01 inch.
(30) As further shown in
(31) A second winding window 360 is formed between the juxtaposed second outer legs 260 and the juxtaposed middle legs 270. The second winding window has a width W2 determined by the leg spacing between the respective inner lateral surfaces 266 of the second outer legs and the respective second lateral surfaces 376 of the middle legs. The second winding window has a respective length determined by two times the second common length L2.
(32) In the illustrated embodiment, the main body portion 230 of each core half 220, 222, has a width from the first end 232 to the second end 234 of approximately 1.128 inches. The main body portion and the three legs 250, 260, 270 extending from the main body portion have a common height from the lower surface 240 to the upper surface 242 of approximately 0.283 inch. The first outer leg 250 has a width of approximately 0.229 inch and the second outer leg 260 has a width of approximately 0.175 inch. The middle leg 270 has a width of approximately 0.404 inch. The width of the middle is equal to at least the sum of the width of the first outer leg and the width of the second outer leg.
(33) The inner lateral surface 256 of the first outer leg 250 and the first lateral surface 274 of the middle leg 270 are spaced apart by a leg spacing of approximately 0.21 inch, which corresponds to the width W1 of the first winding window 350. The inner lateral surface 266 of the second outer leg 260 and the second lateral surface 276 of the middle leg 270 are spaced apart by a leg spacing of approximately 0.11 inch, which corresponds to the width W2 of the second winding window 360. In the illustrated embodiment, the two winding window widths differ; however, in other embodiments, the widths of the two winding windows may be the same or substantially the same.
(34) Each of the core halves 220, 222 has a maximum length from the outer surface 236 of the main core body 230 to the end surface 272 of the middle leg 270. In the illustrated embodiment, the maximum length is approximately 0.493 inch.
(35) The main body portion 230 has a thickness from the outer surface 236 to the inner surface 238 that differs in accordance with the location. In the illustrated embodiment, the main body portion has a thickness of approximately 0.229 inch in a first region between the inner lateral surface 256 of the first outer leg 250 and the first lateral surface 274 of the middle leg 270, which corresponds to the first winding window 350. The main body portion has a thickness of approximately 0.175 inch in a second region between the second lateral surface 276 of the middle leg and the inner lateral surface 266 of the second outer leg 260, which corresponds to the second winding window 360.
(36) When the first core half 220 and the second core half 222 are mated as illustrated in
(37) As shown in
(38) A first pin (or terminal) rail 430 extends from the first end flange 420. A second pin (or terminal) rail 432 extends from the second end flange 422. Each pin rail supports a plurality of pins (or terminals) 434. Selected ones of the pins are electrically connected to the first winding 410 (
(39) As shown, for example, in the cross-sectional view in
(40) As shown in
(41) A first pin (or terminal) rail 480 extends from the first end flange 470. A second pin (or terminal) rail 482 extends from the second end flange 472. Each pin rail supports a plurality of pins (or terminals) 484. Selected ones of the pins are electrically connected to the second winding 460 (
(42) As shown, for example, in the cross-sectional view in
(43) As further shown in
(44)
(45) Similarly, the flux generated by the second winding 460 follows a second flux path 510, which passes through the second outer legs 260 positioned within the passageway 476 of the second bobbin 450 onto which the second winding is wound, including the second gap 310. The second flux path passes through a region of the body portion 230 of the first core half 220 to the middle legs 270; passes through the middle legs; passes through a region of the body portion 230 of the second core half 222; and passes back to the second outer legs positioned within the second winding. Accordingly, the second flux path encompasses the second winding window 360.
(46) As illustrated in
(47) One benefit of the magnetic assembly 200 disclosed herein is illustrated pictorially in
(48) The previous detailed description has been provided for the purposes of illustration and description. Thus, although there have been described particular embodiments of a new and useful invention, it is not intended that such references be construed as limitations upon the scope of this invention except as set forth in the following claims.