IP Library › Granted Patent US 12,742,541
Granted Patent B2
US 12,742,541 · App. 18/551,736 · Granted Sep 22, 2026

Heat sink for electronic component and associated manufacturing method

Inventors: Thibaut Menn (Angers, FR); Laurent Vivet (Bobigny, FR); Renan Leon (Le Mesnil Saint Denis Cedex, FR); Jean-Francois Bisson (Creteil, FR); Baptiste Decrouy (Bobigny, FR); Guillaume Bonvallat (Cergy Pontoise, FR)
Assignee: VALEO VISION
F21V29/767B23K26/0622B23K26/3584F21S45/48F21V29/89F28F13/185F21S41/143F21S43/14F21Y2115/10
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Quick Facts
Patent No.
US 12,742,541
App. No.
18/551,736
Granted
Sep 22, 2026
Kind
B2
Abstract

A heat sink for an electronic component and its manufacturing method by applying a nanopulsed laser. The heat sink includes a body provided with an outer layer, including a surface layer having a radiative exposed surface and a layer immediately underlying the surface layer. The underlying layer is made of a material based on a metal and the surface layer is made of an oxide of said material. The outer layer includes juxtaposed nodules. The heat sink originally combines a surface chemical state promoting heat emission and a structure geometrically promoting heat exchange, in order to synergistically improve its heat dissipation capability.

Claims (19)

1 . A heat sink for an electronic component comprising:

a body provided with an outer layer, comprising a surface layer having a radiative exposed surface and a layer immediately underlying the surface layer, wherein:

the underlying layer is made of a material made of a metal or of a metal alloy and the surface layer is made of an oxide of said material;

the outer layer comprises juxtaposed nodules which are separated by an inter-nodular zone; and

a shape of the nodules is generally cylindrical.

2 . The heat sink as claimed in claim 1 , wherein the metal is selected from among magnesium, iron, steel, copper and aluminum.

3 . The heat sink as claimed in claim 2 , wherein the metal is aluminum and the oxide is alumina.

4 . The heat sink as claimed in claim 1 , wherein the surface layer has an average thickness that is greater than or equal to 5 μm.

5 . The heat sink as claimed claim 1 , wherein the surface layer has an average thickness ranging between 5 μm and 30 μm.

6 . The heat sink as claimed claim 1 , wherein the surface layer has a porosity rate by volume of less than 4%.

7 . The heat sink as claimed in claim 1 , wherein each nodule has a variable cross-sectional shape over a height of this nodule.

8 . The heat sink as claimed in claim 1 , wherein the nodules on average have:

a first dimension in a direction parallel to a main extension plane of the outer layer that is less than or equal to 50 μm;

a second dimension in a direction normal to the main extension plane of the outer layer that is less than or equal to 50 μm.

9 . The heat sink as claimed in claim 1 , wherein the nodules are spaced apart from each other by an average distance, in a direction parallel to a main extension plane of the outer layer, that is less than or equal to 50 μm.

10 . The heat sink as claimed in claim 1 , wherein the nodules are formed by a combination of the surface layer and of at least a portion of the underlying layer.

11 . The heat sink as claimed in claim 2 , wherein the surface layer has an average thickness that is greater than or equal to 5 μm.

12 . The heat sink as claimed claim 2 , wherein the surface layer has an average thickness ranging between 5 μm and 30 μm.

13 . The heat sink as claimed in claim 9 , wherein the average distance is approximately 10 μm to approximately 50 μm.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 21, 2023
From: MENN, THIBAUT; VIVET, LAURENT; LEON, RENAN; BISSON, JEAN-FRANCOIS; DECROUY, BAPTISTE; BONVALLAT, GUILLAUME
To: VALEO VISION
Reel/Frame 064984/0708 →
Priority Claims (1)
FR 2103227 · Mar 29, 2021 · national
Continuity (1)
Related Publication 20240183524A1 · Jun 6, 2024
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