IP Library › Granted Patent US 11,877,414
Granted Patent B2
US 11,877,414 · App. 17/451,282 · Granted Jan 16, 2024

Electronic component mounting

Inventors: Bradford Adam Gill (Tomball, TX); Tony Seokhwa Moon (Spring, TX); Derek Lee Goode (Spring, TX)
Assignee: HEWLETT-PACKARD DEVELOPMENT COMPANY, L.P.
H05K7/1417G06F1/185H01R12/721H01R13/639H05K1/141H05K1/144H05K7/12
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Quick Facts
Patent No.
US 11,877,414
App. No.
17/451,282
Granted
Jan 16, 2024
Kind
B2
Abstract

In some examples, a tool-less electronic component retention apparatus includes a bracket to affix to a circuit board, and a spring-loaded arm attached to the bracket. The spring-loaded arm has an engagement tab that is angled downwardly to engage an upper surface of an electronic component to mount the electronic component to the circuit board. The spring-loaded arm is pivotable between an engaged position and a release position by a user without use of a tool.

Claims (33)

1. A circuit board assembly comprising:

a circuit board;

a bracket affixed to the circuit board;

a spring-loaded arm attached to the bracket, the spring-loaded arm having an angled tab to engage an upper surface of a first electronic component at a first end of the first electronic component that is to mount to the circuit board, the bracket and the spring-loaded arm arranged to stay clear of side portions of the first electronic component that extend between the first end and a second end with an electrical connector of the first electronic component; and

a stop that blocks further rotation of the spring-loaded arm in a direction from a release position to an engaged position when the spring-loaded arm pivots from the release position to the engaged position, and wherein the stop blocks further rotation of the spring-loaded arm from the engaged position to the release position.

2. The circuit board assembly of claim 1 , wherein the circuit board includes electrically conductive traces in a region between a first location of the first electronic component and a second location of a second electronic component,

wherein the bracket is affixed to the circuit board at a location that is outside the region with the electrically conductive traces.

3. The circuit board assembly of claim 1 , wherein the spring-loaded arm is actuatable between the engaged position and the release position by a user without use of a tool, wherein in the engaged position the angled tab is engaged to the upper surface of the first electronic component, and wherein in the release position the angled tab is disengaged from the upper surface of the first electronic component.

4. The circuit board assembly of claim 3 , wherein the spring-loaded arm is pivotable between the engaged position and the release position.

5. The circuit board assembly of claim 1 , wherein the spring-loaded arm comprises a hook protrusion to engage the stop when the spring-loaded arm is pivoted from the engaged position to the release position.

6. The circuit board assembly of claim 3 , wherein the angled tab is angled downwardly with respect to the upper surface of the first electronic component.

7. The circuit board assembly of claim 3 , wherein in the release position the first electronic component is pivotable downwardly where a release of the spring-loaded arm by the user allows the spring-loaded arm to move from the release position to the engaged position.

8. The circuit board assembly of claim 1 , wherein the bracket is over-molded onto a portion of the spring-loaded arm.

9. The circuit board assembly of claim 8 , wherein the spring-loaded arm is formed of a first material that is elastic, and the bracket is formed of a different second material that is rigid.

10. The circuit board assembly of claim 1 , further comprising:

a surface-mount boss adhered to a surface of the circuit board,

wherein the bracket is attached to the surface-mount boss by a fastener.

11. An electronic device comprising:

a circuit board comprising a first electrical connector;

an M.2 electronic component mounted to the circuit board and comprising a second electrical connector to connect to the first electrical connector;

a bracket affixed to the circuit board;

a spring-loaded arm attached to the bracket, the spring-loaded arm having an angled tab to engage an upper surface of the M.2 electronic component at a first end of the M.2 electronic component when the second electrical connector of the M.2 electronic component is connected to the first electrical connector, and

a stop that blocks further rotation of the spring-loaded arm in a direction from a release position to an engaged position when the spring-loaded arm pivots from the release position to the engaged position, and wherein the stop blocks further rotation of the spring-loaded arm from the engaged position to the release position.

12. The electronic device of claim 11 , wherein the spring-loaded arm is pivotable between the engaged position and the release position by a user without use of a tool, wherein in the engaged position the angled tab is engaged to the upper surface of the M.2 electronic component, and wherein in the release position the angled tab is disengaged from the upper surface of the M.2 electronic component, and wherein the angled tab is angled downwardly with respect to the upper surface of the M.2 electronic component.

13. A tool-less electronic component retention apparatus, comprising:

a bracket to affix to a circuit board;

a spring-loaded arm attached to the bracket, the spring-loaded arm having an engagement tab that is angled downwardly to engage an upper surface of an electronic component to mount the electronic component to the circuit board, wherein the spring-loaded arm is pivotable between an engaged position and a release position by a user without use of a tool, wherein in the engaged position the engagement tab is engaged to the upper surface of the electronic component, and wherein in the release position the engagement tab is disengaged from the upper surface of the electronic component, and

a stop that blocks further rotation of the spring-loaded arm in a direction from the release position to the engaged position when the spring-loaded arm pivots from the release position to the engaged position, and wherein the stop blocks further rotation of the spring-loaded arm from the engaged position to the release position.

14. The tool-less electronic component retention apparatus of claim 13 ,

wherein the spring-loaded arm comprises a protrusion to engage the stop when the spring-loaded arm is pivoted from the engaged position to the release position.

15. The circuit board assembly of claim 1 , wherein a portion of the stop is received within a portion of the spring-loaded arm.

16. The electronic device of claim 11 , wherein a portion of the stop is received within a portion of the spring-loaded arm.

17. The tool-less electronic component retention apparatus of claim 13 , wherein a portion of the stop is received within a portion of the spring-loaded arm.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 2, 2022
From: GILL, BRADFORD ADAM; MOON, TONY SEOKHWA; GOODE, DEREK LEE
To: HEWLETT-PACKARD DEVELOPMENT COMPANY, L.P.
Reel/Frame 058868/0298 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 18, 2021
From: GILL, BRADFORD ADAM; MOON, TONY SEOKHWA; GOODE, DEREK LEE
To: HEWLETT-PACKARD DEVELOPMENT COMPANY, L.P.
Reel/Frame 057824/0183 →
Continuity (1)
Related Publication 20230121074A1 · Apr 20, 2023
Cited By (1)
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