Power module and method for manufacturing the same
US-2016322281-A1 · Nov 3, 2016 · US
US9693489B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9693489-B2 |
| Application number | US-201514929665-A |
| Country | US |
| Kind code | B2 |
| Filing date | Nov 2, 2015 |
| Priority date | Nov 3, 2014 |
| Publication date | Jun 27, 2017 |
| Grant date | Jun 27, 2017 |
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Provided are a cooling flow channel module for a power conversion device, in which a structure of a cooling flow channel for cooling a power conversion device including an inverter or an LDC is simplified to facilitate manufacturing and assembling, and a power conversion device including the same. The cooling flow channel module includes an intake flow channel, a discharge flow channel disposed to be parallel to the intake flow channel, and a cooling pipe configured to connect the intake flow channel and the discharge flow channel and cool the heating element disposed thereabove or therebelow, wherein a plurality of cooling pipes are provided and connect a side portion of the intake flow channel and a side portion of the discharge flow channel disposed to be parallel to each other.
Opening claim text (preview).
What is claimed is: 1. A cooling apparatus, comprising: an intake channel; a discharge channel oriented parallel to the intake channel; a cooling plate comprising recesses and disposed between the intake channel and the discharge channel; cooling pipes connecting the intake channel and the discharge channel, wherein the cooling pipes are disposed inside the recess and are oriented parallel to each other. 2. The cooling apparatus of claim 1 , wherein the cooling pipes are disposed above and below the cooling plate. 3. The cooling apparatus of claim 2 , wherein the cooling pipes each comprise a cross-sectional shape corresponding to a shape of each of the installation recesses. 4. The cooling apparatus of claim 3 , wherein the shape of each of the installation recesses is quadrangular, and surfaces of the cooling pipes opposing the cooling plate and facing the heating element are flat. 5. The cooling apparatus of claim 1 , wherein each of the cooling pipes are welded to the intake channel and the discharge channel. 6. A power conversion device, comprising: an inverter comprising a heating element; a converter comprising a heating element and disposed above or below the inverter; and a cooling channel module disposed between the inverter and the converter, wherein the cooling channel module comprises: an intake channel; a discharge channel oriented parallel to the intake channel; and cooling pipes oriented parallel to each other and connecting the intake channel and the discharge channel. 7. The power conversion device of claim 6 , wherein: the inverter further comprises: a main housing; and a first cover covering any one of an upper portion or a lower portion of the main housing, the converter further comprises a second cover covering the other of the upper portion and the lower portion of the main housing, and the cooling channel module is coupled to the main housing between the first cover and the second cover. 8. The power conversion device of claim 7 , wherein: the main housing comprises a through hole, the cooling channel module is coupled to the main housing in an upper portion of the through hole, and the heating element is in contact with the cooling pipes above and below the cooling pipes. 9. The power conversion device of claim 7 , wherein: the cooling channel module further comprises a cooling plate disposed between the intake channel and the discharge channel, the cooling pipes are disposed above and below the cooling plate, and the cooling plate is coupled to the main housing.
Heat sinks · CPC title
Blocks traversed by passages for heat-exchange media {(F28D7/0008 takes precedence)} · CPC title
with multiple rows of conduits or with multi-channel conduits (F28D1/05391 takes precedence) · CPC title
the means being only outside the tubular element · CPC title
by methods involving deformation of the elements · CPC title
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