ELECTRONIC ASSEMBLY HAVING SEALING RETAINER COUPLING AN ELECTRONIC MODULE AND ASSOCIATED METHOD
20230363103 ยท 2023-11-09
Inventors
Cpc classification
H05K7/1422
ELECTRICITY
International classification
Abstract
An electronic assembly includes a chassis having electronic module mounting positions, each having an electronic module received therein. A module recess is adjacent a first end of the electronic module and a module roller is adjacent a second end. A sealing retainer is coupled between the chassis and each electronic module, and includes a cooling gas passageway aligned with a chassis cooling gas passageway and a module cooling gas passageway. The sealing retainer includes a rigid retainer body having a retainer recess adjacent a first end to receive the module roller when the electronic module is in an inserted position. A retainer roller is received in a module recess and a compressible retainer body is between the rigid retainer body and the chassis.
Claims
1. An electronic assembly comprising: a chassis having a plurality of electronic module mounting positions, each electronic module mounting position having a chassis cooling gas passageway; a respective electronic module received in each electronic module mounting position and having a module cooling gas passageway, the electronic module having a module recess adjacent a first end thereof and a module roller adjacent a second end thereof opposite the first end; and a respective sealing retainer coupled between the chassis and each electronic module, the sealing retainer having a cooling gas passageway therethrough aligned with the chassis cooling gas passageway and the module cooling gas passageway, the sealing retainer comprising a rigid retainer body having a retainer recess adjacent a first end thereof to receive the module roller when the electronic module is in an inserted position, a retainer roller carried by the rigid retainer body adjacent a second end thereof opposite the first end, the retainer roller received in the module recess when the electronic module is in the inserted position, and a compressible retainer body between the rigid retainer body and the chassis.
2. The electronic assembly of claim 1 comprising a respective sealing gasket carried by the rigid retainer body on a side thereof opposite the compressible retainer body.
3. The electronic assembly of claim 1 wherein the module roller comprises a module shaft and module tubular roller rotatably carried thereby.
4. The electronic assembly of claim 1 wherein the retainer roller comprises a retainer shaft and retainer tubular roller rotatably carried thereby.
5. The electronic assembly of claim 1 wherein the chassis cooling gas passageway comprises a chassis cooling gas inlet passageway.
6. The electronic assembly of claim 1 wherein the chassis cooling gas passageway comprises a chassis cooling gas outlet passageway.
7. The electronic assembly of claim 1 comprising at least one cooling gas manifold coupled to the chassis.
8. The electronic assembly of claim 7 wherein the at least one cooling gas manifold comprises an inlet cooling gas manifold and an outlet cooling gas manifold.
9. The electronic assembly of claim 1 wherein each electronic module comprises a circuit board having a cooling gas path associated therewith, and an electrical connector carried by a first end of the circuit board.
10. A sealing retainer to be coupled between a chassis and an electronic module, the chassis having a plurality of electronic module mounting positions and each electronic module mounting position having a chassis cooling gas passageway, the electronic module having a module cooling gas passageway, a module recess adjacent a first end thereof, and a module roller adjacent a second end thereof opposite the first end, the sealing retainer comprising: a rigid retainer body having a retainer recess adjacent a first end thereof to receive the module roller when the electronic module is in an inserted position, the rigid retainer body having a first cooling gas passageway to be aligned with the module cooling gas passageway; a retainer roller carried by the rigid retainer body adjacent a second end thereof opposite the first end, the retainer roller received in the module recess when the electronic module is in the inserted position; and a compressible retainer body between the rigid retainer body and the chassis and having a second cooling gas passageway to be aligned with the chassis cooling gas passageway.
11. The sealing retainer of claim 10 comprising a sealing gasket carried by the rigid retainer body on a side thereof opposite the compressible retainer body.
12. The sealing retainer of claim 10 wherein the module roller comprises a module shaft and module tubular roller rotatably carried thereby.
13. The sealing retainer of claim 10 wherein the retainer roller comprises a retainer shaft and retainer tubular roller rotatably carried thereby.
14. The sealing retainer of claim 10 wherein the electronic module comprises a circuit board having a cooling gas path associated therewith, and an electrical connector carried by a first end of the circuit board.
15. A method of mounting an electronic module in an electronic module mounting position of a chassis, the electronic module mounting position having a chassis cooling gas passageway, and the electronic module having a module cooling gas passageway, a module recess adjacent a first end thereof, and a module roller adjacent a second end thereof opposite the first end, the method comprising: coupling a sealing retainer between the chassis and the electronic module, the sealing retainer comprising a rigid retainer body having a retainer recess adjacent a first end thereof to receive the module roller when the electronic module is in an inserted position, the rigid retainer body having a first cooling gas passageway to be aligned with the module cooling gas passageway, a retainer roller carried by the rigid retainer body adjacent a second end thereof opposite the first end, the retainer roller received in the module recess when the electronic module is in the inserted position, and a compressible retainer body between the rigid retainer body and the chassis and having a second cooling gas passageway to be aligned with the chassis cooling gas passageway.
16. The method of claim 15 wherein the sealing retainer comprises a sealing gasket carried by the rigid retainer body on a side thereof opposite the compressible retainer body.
17. The method of claim 15 wherein the module roller comprises a module shaft and module tubular roller rotatably carried thereby.
18. The method of claim 15 wherein the retainer roller comprises a retainer shaft and retainer tubular roller rotatably carried thereby.
19. The method of claim 15 wherein the electronic module comprises a circuit board having a cooling gas path associated therewith, and an electrical connector carried by a first end of the circuit board.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0011] Other objects, features and advantages of the present invention will become apparent from the detailed description of the invention which follows, when considered in light of the accompanying drawings in which:
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DETAILED DESCRIPTION
[0022] The present description is made with reference to the accompanying drawings, in which exemplary embodiments are shown. However, many different embodiments may be used, and thus, the description should not be construed as limited to the particular embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete. Like numbers refer to like elements throughout.
[0023] Referring initially to
[0024] Each electronic module 38 has a module cooling gas passageway 40 (
[0025] As best shown in the exploded isometric view of
[0026] A respective sealing gasket 62 is carried by the rigid retainer body 52 on a side opposite the compressible retainer body 60 (
[0027] The compressible retainer body 60 includes a longitudinally configured oval opening 64 (
[0028] As best shown in
[0029] The chassis cooling gas passageway 30 as noted before includes a chassis cooling gas inlet passageway 30a and a chassis cooling gas outlet passageway 30b as shown in the exploded view of
[0030] Each electronic module 38 includes a circuit board 76 having a cooling gas path 78 associated therewith, and an electrical connector 80 carried by a first end 76a of the circuit board as shown in
[0031] In the illustrated embodiment, opposing sides of the electronic module 38 are parallel rather than tapered overcoming the disadvantages of some electronic modules that are designed with a taper to meet the VITA 48.8 AFT standard. The second end 44b of the electronic module 38 adjacent the electrical connector 80 of the circuit board 76 includes upper and lower module guides 84 shaped like posts to facilitate and guide the electronic module into a clean connection with a female connector (not shown) on the chassis 24 when the electronic module is fully inserted within the chassis. The module guides 84 are illustrated schematically in the sectional drawings of
[0032] As shown in
[0033] (
[0034] The electronic module 38 may be locked in this fully inserted position by a locking mechanism 86 located at the first end 44a of the electronic module, such as the finger clamp as shown in
[0035] The electronic assembly 20 incorporates the chassis 24 and sealing retainer 48 for air-flow-through (AFT), cooled plug-in electronic modules 38 in both the 3U and 6U form factor, for example. Cooling capabilities may be increased because the gas flow may be confined to the electronic module 38 near the circuit board 76 and its cooling gas path 78 associated therewith.
[0036] It is also possible to provide for heat conduction into a wall of the chassis 24 using a thermally conductive material positioned at the top of the electronic module 38. The electronic assembly 20 incorporating the sealing retainer 48 provides an efficient design without the necessity for a taper on the electronic module, such as required with other state-of-the-art VITA 48.8 AFT compliant designs. The only gasket compression occurs when the compressible retainer body 60 between the rigid retainer body 52 and the chassis 24 is compressed upon insertion or removal of the electronic module 38. There are no moving parts that exert sliding forces against that compressible retainer body 52 during insertion or removal of the electronic module 38 from the chassis 24. The module roller 46 passes over the top surface of the rigid retainer body 52 without damaging the electronic module 38 or damaging the compressible retainer body 60 and the respective sealing gasket 62 carried by the rigid retainer body 52 on a side opposite the compressible retainer body, thus ensuring an adequate gas seal after repeated cycles of insertion and removal of the electronic module.
[0037] Referring now to
[0038] This method is advantageous as described because as the electronic module 38 is inserted within the chassis 24, the compressible retainer body 60 is compressed and the only wear interface is on the module roller 46 and retainer roller 58. When fully inserted, the locking mechanism such as the finger clamp 86 or other fastener secures the electronic module 38 within the chassis 24.
[0039] Many modifications and other embodiments of the invention will come to the mind of one skilled in the art having the benefit of the teachings presented in the foregoing descriptions and the associated drawings. Therefore, it is understood that the invention is not to be limited to the specific embodiments disclosed, and that modifications and embodiments are intended to be included within the scope of the appended claims.