IP Library Granted Patent US 10,375,859
Granted Patent B2
US 10,375,859 · App. 14/418,150 · Granted Aug 6, 2019

Ganged shielding cage with thermal passages

Inventor: Christopher D. Wanha (Dublin, CA)
Assignee: Molex, LLC
H05K7/205G06F1/183G06F1/20H01L23/3675H01L23/40H01L23/467H05K7/20409H05K7/20436H05K7/20509H05K9/002H01L23/473H01L2924/0002
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Quick Facts
Patent No.
US 10,375,859
App. No.
14/418,150
Granted
Aug 6, 2019
Kind
B2
Abstract

A ganged shielding cage assembly include a plurality of passageways that allows modules to be inserted into the assembly. Walls between the passageways have a heat transfer passages that extends between the front and back ends and allows for coolant to flow through the assembly. Because of the dimensions, heat can be transferred from an inserted module to the walls and then to the coolant flowing through the heat transfer passages.

Claims (22)

1. A shielding cage assembly with improved thermal transfer characteristics, the assembly comprising:

a cage body configured to be mounted on a horizontal circuit board, the cage body including a plurality of vertical walls defining at least two horizontally adjacent openings in the cage body, the adjacent openings providing a ganged cage, the openings extending lengthwise therewithin between opposing front and rear ends of the cage body and being separated by and partly defined by an intervening wall; and

each opening being dimensioned to receive an electronic module therein such that sidewalls of two adjacent electronic modules inserted into the openings are in heat transfer proximity to the intervening wall;

wherein the intervening wall includes a heat transfer passage therein, the heat transfer passage defining a lengthwise space between the two adjacent electronic modules, the heat transfer passage having a front opening adjacent the front end of the cage body and a rear opening adjacent the rear end of the cage body, the heat transfer passage permitting cooling fluid to flow therethrough and through the front and rear openings, wherein the cage body is die-cast from a conductive material, wherein the intervening wall includes a wall member separate from the cage body, which is inserted into the cage body, wherein the wall member includes two leg members interconnected by an interposer body that defines a contact surface interposed between a module inserted into the opening and a heat sink, wherein one of the leg members includes at least one bend therein that directs a portion of the leg member away from a side surface of a module inserted into the cage assembly to define a space therebetween.

2. The shielding cage assembly of claim 1 , wherein the heat sink member is configured to fit on top of the cage body.

3. The shielding cage assembly of claim 2 , wherein the heat sink member includes a plurality of upraised fins spaced apart from each other, the fins extending perpendicularly to the cage body openings and the heat transfer passage.

4. The shielding cage assembly of claim 2 , wherein the heat sink member has a plurality of upraised fins spaced apart from each other, the fins extending parallel to the cage body openings and the heat transfer passages.

5. The shielding cage assembly of claim 1 , wherein the intervening wall is formed as part of the cage body.

6. A shielding cage assembly with improved thermal transfer characteristics, the assembly comprising:

a cage body configured to be mounted on a horizontal circuit board, the cage body including a plurality of vertical walls defining at least two horizontally adjacent openings in the cage body, the adjacent openings providing a ganged cage, the openings extending lengthwise therewithin between opposing front and rear ends of the cage body and being separated by and partly defined by an intervening wall; and

each opening being dimensioned to receive an electronic module therein such that sidewalls of two adjacent electronic modules inserted into the openings are in heat transfer proximity to the intervening wall;

wherein the intervening wall includes a heat transfer passage therein, the heat transfer passage defining a lengthwise space between the two adjacent electronic modules, the heat transfer passage having a front opening adjacent the front end of the cage body and a rear opening adjacent the rear end of the cage body, the heat transfer passage permitting cooling fluid to flow therethrough and through the front and rear openings, wherein the cage body is die-cast from a conductive material, wherein the heat transfer passage includes a plurality of longitudinal bores spaced apart from each other, disposed at ends of the heat transfer passage.

7. The shielding cage assembly of claim 1 , wherein the heat transfer passage includes a single slot disposed at each end thereof.

8. The shielding cage assembly of claim 1 , further including second cage body openings defined by the cage body walls, the second openings being separated from each other and the openings by second intervening walls, each second wall member including a heat transfer passage disposed therein.

9. A shielding cage assembly with improved thermal transfer characteristics, the assembly comprising:

a cage body, the cage body including a plurality of walls defining at least two adjacent openings in the cage body, the openings extending lengthwise therewithin between opposing front and rear ends of the cage body and being separated by and partly defined by an intervening wall; and

each opening being dimensioned to receive an electronic module therein such that sidewalls of two adjacent electronic modules inserted into the openings are in heat transfer proximity to the intervening wall;

wherein the intervening wall includes a heat transfer passage therein, the heat transfer passage defining a lengthwise space between the two adjacent electronic modules, the heat transfer passage permitting cooling fluid flow therethrough, wherein the intervening wall member is formed from a piece of sheet metal folded over upon itself to define an inverted U-shaped configuration with an interior passage.

10. The shielding cage assembly of claim 9 , wherein the intervening wall member includes a plurality of bores disposed therein along at least one end thereof.

11. The shielding cage assembly of claim 9 , further including a heat sink member configured to fit on top of the cage body.

12. The shielding cage assembly of claim 11 , wherein the heat sink member includes a plurality of upraised fins spaced apart from each other, the fins extending perpendicularly to the cage body openings and the heat transfer passage.

13. The shielding cage assembly of claim 11 , wherein the heat sink member has a plurality of upraised fins spaced apart from each other, the fins extending parallel to the cage body openings and the heat transfer passages.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 31, 2016
From: WANHA, CHRISTOPHER D.
To: MOLEX INCORPORATED
Reel/Frame 038753/0450 →
CHANGE OF NAME Recorded May 31, 2016
From: MOLEX INCORPORATED
To: MOLEX, LLC
Reel/Frame 038851/0957 →
Continuity (3)
Provisional Application 61839412 · Jun 26, 2013
Provisional Application 61839414 · Jun 26, 2013
Related Publication 20160106001A1 · Apr 14, 2016
Cited By (1)
US 12,244,084