Transformer and power conversion device

US2020350116A1 · US · A1

Patent metadata
FieldValue
Publication numberUS-2020350116-A1
Application numberUS-201716758625-A
CountryUS
Kind codeA1
Filing dateNov 8, 2017
Priority dateNov 8, 2017
Publication dateNov 5, 2020
Grant date

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A transformer includes: a base that is a plate-like member and has a first surface and a second surface, a core attached to the first surface of the base, coils wound around the core, coil terminals attached to the second surface of the base, and a cooling unit that is thermally connected to the core and is to release heat transferred from the core. The coil terminals are disposed on the second surface of the base opposite to the first surface of the base to which the core is attached. The cooling unit is disposed on a side of the core opposite to the base.

First claim

Opening claim text (preview).

1 . A transformer comprising: a base that is a plate-like member and has a first surface and a second surface; a core attached to the first surface of the base; coils wound around the core; and coil terminals that are each electrically connected to one end of a corresponding coil of the coils and are disposed on the second surface opposite to the first surface of the base to which the core is attached. 2 - 8 . (canceled) 9 . The transformer according to claim 1 further comprising: a cooling unit that is disposed on a side of the core opposite to the base, is thermally connected to the core, and is to release heat transferred from the core. 10 . The transformer according to claim 9 , wherein the core is a plurality of cores, the transformer further comprises a fixing frame disposed on a side of the cores opposite to the base, the cores being fixed to the fixing frame, and the cooling unit is attached to the fixing frame and is to release heat transferred from the cores via the fixing frame. 11 . The transformer according to claim 10 , wherein the first surface of the base extends in a vertical direction, and the fixing frame is a plate-like member extending in the vertical direction and includes a slide portion that (i) extends away from the base at a vertically lower end of the fixing frame and (ii) has an edge located at a position, in the vertical direction, higher than a position of the vertically lower end of the fixing frame. 12 . The transformer according to claim 10 , wherein the cooling unit is directly attached to the core and releases heat transferred from the core. 13 . The transformer according to claim 9 , wherein the cooling unit has a fin-like shape. 14 . The transformer according to claim 10 , wherein the cooling unit has a fin-like shape. 15 . The transformer according to claim 11 , wherein the cooling unit has a fin-like shape. 16 . The transformer according to claim 12 , wherein the cooling unit has a fin-like shape. 17 . The transformer according to claim 9 , wherein the cooling unit has a lattice-like shape. 18 . The transformer according to claim 10 , wherein the cooling unit has a lattice-like shape. 19 . The transformer according to claim 11 , wherein the cooling unit has a lattice-like shape. 20 . The transformer according to claim 12 , wherein the cooling unit has a lattice-like shape. 21 . The transformer according to claim 9 , wherein the cooling unit comprises a heat pipe in which refrigerant is enclosed. 22 . The transformer according to claim 10 , wherein the cooling unit comprises a heat pipe in which refrigerant is enclosed. 23 . The transformer according to claim 11 , wherein the cooling unit comprises a heat pipe in which refrigerant is enclosed. 24 . The transformer according to claim 12 , wherein the cooling unit comprises a heat pipe in which refrigerant is enclosed. 25 . A power conversion device comprising: the transformer according to claim 1 ; an electronic circuit electrically connected to the coil terminals; and a housing to accommodate the transformer and the electronic circuit, wherein an interior of the housing is divided by a partition into (i) an open section through which an ambient air flow passes and (ii) a closed section through which an ambient air flow does not pass, the partition has an opening, the electronic circuit is accommodated in the closed section, the transformer is accommodated in the housing such that (i) the core and the coils are located in the open section and (ii) the coil terminals are located in the closed section, and the base of the transformer covers the opening of the partition. 26 . A power conversion device comprising: the transformer according to claim 9 ; an electronic circuit electrically connected to the coil terminals; and a housing to accommodate the transformer and the electronic circuit, wherein an interior of the housing is divided by a partition into (i) an open section through which an ambient air flow passes and (ii) a closed section through which an ambient air flow does not pass, the partition has an opening, the electronic circuit is accommodated in the closed section, the transformer is accommodated in the housing such that (i) the core, the coils, and the cooling unit are located in the open section and (ii) the coil terminals are located in the closed section, and the base of the transformer covers the opening of the partition. 27 . A power conversion device comprising: the transformer according to claim 10 ; an electronic circuit electrically connected to the coil terminals; and a housing to accommodate the transformer and the electronic circuit, wherein an interior of the housing is divided by a partition into (i) an open section through which an ambient air flow passes and (ii) a closed section through which an ambient air flow does not pass, the partition has an opening, the electronic circuit is accommodated in the closed section, the transformer is accommodated in the housing such that (i) the core, the coils, and the cooling unit are located in the open section and (ii) the coil terminals are located in the closed section, and the base of the transformer covers the opening of the partition.

Assignees

Inventors

Classifications

  • Cooling by heat conduction through solid or powdered fillings · CPC title

  • H01F27/025Primary

    Constructional details relating to cooling · CPC title

  • H01F27/29Primary

    Terminals; Tapping arrangements {for signal inductances} · CPC title

  • Cooling by ambient air · CPC title

  • Cooling (cooling transformers and inductances in general H01F27/08) · CPC title

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What does patent US2020350116A1 cover?
A transformer includes: a base that is a plate-like member and has a first surface and a second surface, a core attached to the first surface of the base, coils wound around the core, coil terminals attached to the second surface of the base, and a cooling unit that is thermally connected to the core and is to release heat transferred from the core. The coil terminals are disposed on the second…
Who is the assignee on this patent?
Mitsubishi Electric Corp
What technology area does this patent fall under?
Primary CPC classification H01F27/025. Mapped technology areas include Electricity.
When was this patent published?
Publication date Thu Nov 05 2020 00:00:00 GMT+0000 (Coordinated Universal Time) (A1). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).