PRIMARY COIL ASSEMBLY FOR TRANSFORMER AND TRANSFORMER INCLUDING THE SAME
20220068544 · 2022-03-03
Assignee
Inventors
Cpc classification
H01F27/29
ELECTRICITY
International classification
H01F27/29
ELECTRICITY
Abstract
The primary coil assembly, which includes a primary coil interposed between a pair of secondary coils and configured to perform electromagnetic mutual induction, and includes: a bonding coil having both ends connected to primary-side terminal pins of the transformer; a first PCB member provided on an upper surface of the bonding coil and configured to constitute an upper-side auxiliary winding of the primary coil; and a second PCB member provided on a lower surface of the bonding coil and configured to constitute a lower-side auxiliary winding of the primary coil.
Claims
1. A primary coil assembly for a transformer, which includes a primary coil interposed between a pair of secondary coils and configured to perform electromagnetic mutual induction, the primary coil assembly comprising: a bonding coil having both ends connected to primary-side terminal pins of the transformer; a first PCB member provided on an upper surface of the bonding coil and configured to constitute an upper-side auxiliary winding of the primary coil; and a second PCB member provided on a lower surface of the bonding coil and configured to constitute a lower-side auxiliary winding of the primary coil.
2. The primary coil assembly according to claim 1, wherein the first PCB member and the second PCB member are each formed of a flexible printed circuit board (FPCB), or a hard printed circuit board (HPCB).
3. The primary coil assembly according to claim 2, wherein the bonding coil is formed of a bonding coil selected from a flat bonding coil, a litz wire (LITZ) bonding coil, a ustc wire (USTC) bonding coil, and a LITZ-USTC bonding coil, and is wound by a winding method of a solenoid winding or an alpha (a) winding.
4. The primary coil assembly according to claim 2, wherein the first PCB member is formed of the hard printed circuit board (HPCB) in which a pair of outer terminal pin connection parts extending outward are formed, and the second PCB member is formed of the flexible printed circuit board (FPCB) in which a pair of outer terminal pin connection parts extending outward are formed and one inner terminal pin connection part extending inward is formed.
5. The primary coil assembly according to claim 1, wherein the first PCB member is formed of one to four winding pattern layers, and when the first PCB member is formed of a plurality of winding pattern layers, neighboring winding pattern layers are formed to be electrically conductive through via holes.
6. The primary coil assembly according to claim 4, wherein the first PCB member is formed of one to four winding pattern layers, and when the first PCB member is formed of a plurality of winding pattern layers, neighboring winding pattern layers are formed to be electrically conductive through via holes.
7. The primary coil assembly according to claim 1, wherein the second PCB member is formed of a single FPCB in which two winding pattern layers are formed.
8. The primary coil assembly according to claim 4, wherein the second PCB member is formed of a single FPCB in which two winding pattern layers are formed.
9. The primary coil assembly according to claim 4, wherein the inner terminal pin connection part is located on the same extension line as one of the pair of outer terminal pin connection parts.
10. The primary coil assembly according to claim 9, wherein the inner terminal pin connection part is formed twice as long as the outer terminal pin connection part.
11. The primary coil assembly according to claim 9, wherein the inner terminal pin connection part is bent around a proximal end to overlap one of the pair of outer terminal pin connection parts, and the overlapping inner terminal pin connection part and outer terminal pin connection part are connected to a terminal pin of the transformer.
12. The primary coil assembly according to claim 1, wherein the first PCB member or the second PCB member is formed of an HPCB or an epoxy HPCB in which one winding pattern layer is formed, and the one winding pattern layer is formed of a winding pattern layer for shield wire or a ground pattern layer.
13. The primary coil assembly according to claim 1, wherein the first PCB member or the second PCB member is formed of an FPCB or an HPCB having two winding pattern layers, and the two winding pattern layers include a first winding pattern layer including one of a winding pattern layer for shield wire and a ground pattern layer or a shield-ground winding pattern layer in which both a winding pattern layer for shield wire and a ground pattern layer are formed on the same layer, and a second winding pattern layer including a winding pattern layer for Vcc.
14. The primary coil assembly according to claim 1, wherein the first PCB member or the second PCB member is formed of an HPCB or an epoxy HPCB having three or four winding pattern layers, and the three or four winding pattern layers are formed by combining a winding pattern layer for Vcc, a winding pattern layer for shield wire, and a shield-ground winding pattern layer in which both a winding pattern layer for shield wire and a ground pattern layer are formed on the same layer.
15. A transformer comprising the primary coil assembly for a transformer according to claim 1.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
[0046] Hereinafter, specific embodiments according to the present disclosure will be described with reference to the accompanying drawings. However, the present disclosure is not intended to be limited to specific embodiments and should be construed to include all modifications, equivalents, and alternatives included in the spirit and scope of the present disclosure.
[0047] Elements having similar configurations and operations throughout the specification are denoted by the same reference numerals. The accompanying drawings of the present disclosure are for convenience of description and the shapes and relative scales may be exaggerated or omitted.
[0048] In describing the embodiments in detail, redundant descriptions or descriptions of technologies that are obvious in the art have been omitted. Furthermore, in the following description, when a part is referred to as “including” another component, it means that the part may further include components in addition to the described component unless otherwise stated.
[0049] Furthermore, a term such as “ . . . unit”, “ . . . or (or . . . er)”, and “ . . . module” described in this specification means a unit for processing at least one function or operation, and this may be implemented with hardware, software, or a combination of the hardware and the software. Furthermore, when a part is referred to as being electrically connected to another part, it may indicate the part is directly connected to the another part or connected to the another part with another configuration interposed therebetween.
[0050] Terms including ordinal numbers such as first and second may be used to describe various components, but the components are not limited by the terms. The terms are used only to distinguish one component from another component. For example, a second component may be referred to as a first component and similarly, the first component may also be referred to as the second component without departing from the scope of the present disclosure.
[0051] Hereinafter, a primary coil assembly for a transformer and a transformer including the same according to preferred embodiments of the present disclosure will be described in detail with reference to the accompanying drawings.
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[0053] As illustrated in
[0054] Specifically, as illustrated in
[0055] The bonding coil 100 is a component for constituting the main winding of the primary coil, is formed by winding with a predetermined number of turns, and is provided on one side thereof with terminal pin connection terminals 110 and 120 for terminal pin connection.
[0056] More specifically, the bonding coil 100 may be formed of a bonding coil selected from a flat bonding coil, a litz wire (LITZ) bonding coil, a ustc wire (USTC) bonding coil, and a LITZ-USTC bonding coil, and may be wound by a winding method of a solenoid winding or an alpha (a) winding.
[0057] The alpha (a) winding has an advantage in that a leader line does not protrude because a start line and an end line are located outside.
[0058] As illustrated in
[0059] Each of the terminal pin connection parts 230 is formed with a connection hole for electrical connection to the terminal pin.
[0060] The first PCB member 210 may be formed of a flexible printed circuit board (FPCB), or a hard printed circuit board (HPCB) (or an epoxy PCB).
[0061] When the first PCB member 210 is formed of the FPCB, it is formed of a single FPCB in which two winding pattern layers are formed.
[0062] When the first PCB member 210 is formed of the FPCB having two winding pattern layers, the two winding pattern layers may include a first winding pattern layer including one of a winding pattern layer for shield wire and a ground pattern layer or a shield-ground winding pattern layer in which the winding pattern layer for shield wire and the ground pattern layer are simultaneously implemented, and a second winding pattern layer including a winding pattern layer for Vcc.
[0063] That is, when the first PCB member 210 is formed of the FPCB having two winding pattern layers, the two winding pattern layers may be selected from the winding pattern layer for Vcc and the winding pattern layer for shield wire (Vcc+Shield wire), the winding pattern layer for Vcc and the ground pattern layer (Vcc+Ground Pattern), and the winding pattern layer for Vcc and the shield-ground winding pattern layer (Vcc+Shield-Ground Pattern).
[0064] For example, the first PCB member 210 may be formed of the FPCB having two winding pattern layers, that is, may be formed of a winding pattern layer for Vcc as illustrated in (A) of
[0065] In (C) of
[0066] When the first winding pattern layer of the first PCB member 210 is formed of the shield-ground winding pattern layer in which the winding pattern layer for shield wire in (B) of
[0067] Furthermore, when the first PCB member 210 is formed of the HPCB or the epoxy PCB, it may be formed of one to four winding pattern layers.
[0068] That is, when the first PCB member 210 is formed of the HPCB or the epoxy PCB, it may be formed of one to four winding pattern layers obtained by using the winding pattern layer for Vcc (Vcc), the winding pattern layer for shield wire (Shield wire), the ground pattern layer (Ground Pattern), and the shield-ground winding pattern layer (Shield-Ground Pattern) either alone or in combination thereof, as illustrated in
[0069] When the first PCB member 210 is formed of two or more winding pattern layers, neighboring respective layers are electrically connected though via holes.
[0070] Specifically, when the first PCB member 210 is formed of the HPCB or the epoxy PCB having one winding pattern layer, the one winding pattern layer may be formed of one of the winding pattern layer for shield wire (Shield wire) and the ground pattern layer (Ground Pattern).
[0071] When the first PCB member 210 is formed of the HPCB or the epoxy PCB having two winding pattern layers, the two winding pattern layers may be formed of the winding pattern layer for Vcc and the ground pattern layer (Vcc+Ground Pattern).
[0072] Furthermore, when the first PCB member 210 is formed of the HPCB or the epoxy PCB having three winding pattern layers, the three winding pattern layers may be formed of the winding pattern layer for Vcc and the winding pattern layer for shield wire (Vcc+Shield wire), the winding pattern layer for Vcc, or the winding pattern layer for shield wire and the ground pattern layer (Vcc+Shield wire+Ground Pattern).
[0073] Of course, the first PCB member 210 may also be formed in the form of the second PCB member 220 to be described below.
[0074] Subsequently, as illustrated in
[0075] The inner terminal pin connection part 240 is located on the same extension line as one of the pair of outer terminal pin connection parts 230. The inner terminal pin connection part 240 is formed twice as long as the outer terminal pin connection part 230.
[0076] The outer terminal pin connection parts 230 and the inner terminal pin connection part 240 are formed with connection holes for electrical connection to terminal pins.
[0077] Preferably, the second PCB member 220 is formed of a flexible printed circuit board (FPCB).
[0078] Accordingly, the inner terminal pin connection part 240 is bent to be connected to the terminal pin while overlapping one of the outer terminal pin connection parts 230.
[0079] Preferably, the second PCB member 220 is formed of a single FPCB in which two winding pattern layers are formed.
[0080] When the second PCB member 220 is formed of the FPCB, the two winding pattern layers may be formed in the same manner as described above with reference to the first PCB member 210.
[0081] Furthermore, the second PCB member 220 may be formed of the HPCB having one to four winding pattern layers. In such a case, the one to four winding pattern layers may be formed in the same manner as described above with reference to the first PCB member 210.
[0082] In the primary coil assembly for a transformer according to the present disclosure as described above, as illustrated in
[0083] On the other side of the bobbin B, that is, the side opposite to the side where the terminal pins P for a primary coil are formed, terminal pins for secondary coils, to which secondary coils SC provided on the upper and lower sides of the primary coil assembly for a transformer according to the present disclosure are connected, are formed.
[0084] In
[0085] In accordance with the primary coil assembly for a transformer and a transformer including the same according to the present disclosure as described above, the auxiliary winding of the flexible printed circuit board and/or the hard printed circuit board is configured in the bonding coil, which is a main winding, which makes it possible to provide a transformer which has a simple structure, can be employed in various electronic appliances with low capacity or high capacity, can minimize noise generation due to vibration, and can maintain designed electromagnetic interference (EMI) characteristics. Furthermore, the inner terminal part can be directly connected to the outer terminal part, which makes it possible to improve assembling efficiency.
[0086] The present disclosure can be variously modified without impairing the basic sprit thereof. That is, all the above embodiments should be construed to be illustrative and is not construed to be limitative. Accordingly, the protection scope of the present disclosure should be defined according to the accompanying claims rather than the above embodiments, and when elements defined in the accompanying claims are replaced with equivalents thereof, this should be deemed to fall within the scope of the present disclosure.