IP Library › Granted Patent US 9,270,055
Granted Patent B2
US 9,270,055 · App. 14/249,426 · Granted Feb 23, 2016

Connector with vibratory connection feedback

Inventors: Jeffrey Scott Campbell (West Bloomefield, MI); Rangarajan Sundarakrishnamachari (Chennai, IN)
Assignee: Delphi Technologies, Inc.
H01R13/641H01R13/6272H01R43/26H01R13/639H01R2201/26
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Quick Facts
Patent No.
US 9,270,055
App. No.
14/249,426
Filed
Apr 10, 2014
Granted
Feb 23, 2016
Kind
B2
Art Unit
2833
USPC
439/352
Abstract

A connector having a connector body defining a first protrusion and a connector position assurance (CPA) device in the form of a sleeve axially surrounding the connector body that is moveable along a mating axis. The sleeve defines a second protrusion configured to engage the first protrusion when a first force is applied to the sleeve as the connector is mated with a corresponding mating connector. The second protrusion is configured to slide over the first protrusion and then disengage the first protrusion when a second force is applied to the sleeve, thereby producing a vibratory response in the sleeve. The vibratory response is a tactile vibration or an audible vibration. The second force applied to the sleeve is greater than the first force and the second force may be applied to the sleeve in the same direction as the first force or in the opposite direction.

Claims (28)

1. A connector comprising:

a connector body that defines a first protrusion; and

a sleeve axially surrounding the connector body and moveable relative to the connector body along a mating axis, wherein said sleeve defines a second protrusion, wherein the second protrusion is configured to engage the first protrusion when a first force is applied to the sleeve as the connector is mated with a corresponding mating connector, wherein the second protrusion is configured to slide over the first protrusion and then disengage the first protrusion when a second force, distinct from the first force, is applied to the sleeve, thereby moving the sleeve from an initial position to a final position and producing a vibratory response in the sleeve, and wherein the second force is greater than the first force.

2. A method of interconnecting a connector with a corresponding mating connector, the connector having a connector body that defines a first protrusion and a sleeve axially surrounding the connector body and moveable relative to the connector body along a mating axis and defining a second protrusion, the method comprising the steps of:

applying a first force to the sleeve as the connector is mated with the corresponding mating connector, thereby engaging the first protrusion with the second protrusion; and

applying a second force, distinct from the first force, to the sleeve after the connector is fully mated with the corresponding mating connector, thereby moving the sleeve from an initial position to a final position, sliding the second protrusion over the first protrusion, and producing a vibratory response in the sleeve, wherein the second force is greater than the first force.

3. The connector according to claim 1 , wherein the second force is applied to the sleeve in the same direction as the first force.

4. The connector according to claim 1 , wherein the second force is applied to the sleeve in a direction opposite from the first force.

5. The connector according to claim 1 , wherein the vibratory response is a tactile vibration.

6. The connector according to claim 1 , wherein the vibratory response is an audible vibration.

7. The connector according to claim 1 , wherein the sleeve defines a resilient cantilevered beam and a free end of the cantilevered beam defines the second protrusion.

8. A connector comprising:

a connector body that defines a first protrusion; and

a sleeve axially surrounding the connector body and moveable relative to the connector body along a mating axis, wherein said sleeve defines a second protrusion, wherein the second protrusion is configured to engage the first protrusion when a first force is applied to the sleeve as the connector is mated with a corresponding mating connector, wherein the second protrusion is configured to slide over the first protrusion and then disengage the first protrusion when a second force, distinct from the first force, is applied to the sleeve, thereby moving the sleeve from an initial position to a final position and producing a vibratory response in the sleeve, and wherein the sleeve defines a sleeve lock configured to hold the sleeve in the initial position until the connector is fully mated with the corresponding mating connector.

9. A connector comprising:

a connector body that defines a first protrusion; and

a sleeve axially surrounding the connector body and moveable relative to the connector body along a mating axis, wherein said sleeve defines a second protrusion, wherein the second protrusion is configured to engage the first protrusion when a first force is applied to the sleeve as the connector is mated with a corresponding mating connector, wherein the second protrusion is configured to slide over the first protrusion and then disengage the first protrusion when a second force, distinct from the first force, is applied to the sleeve, thereby moving the sleeve from an initial position to a final position and producing a vibratory response in the sleeve, and wherein the connector defines a connector lock arm configured to engage a connector latch defined by the corresponding mating connector and the sleeve is configured to inhibit disengagement of the connector lock arm from the connector latch when the sleeve is in the final position.

10. The connector according to claim 9 , wherein the sleeve defines a lock stop configured to inhibit disengagement of the connector lock arm from the connector latch when a release button defined by the connector lock arm is pressed.

11. The connector according to claim 9 , wherein the vibratory response is an audible vibration.

12. The connector according to claim 9 , wherein the sleeve defines a resilient cantilevered beam and a free end of the cantilevered beam defines the second protrusion.

13. The method according to claim 2 , wherein the second force is applied to the sleeve in the same direction as the first force.

14. The method according to claim 2 , wherein the second force is applied to the sleeve in a direction opposite from the first force.

15. The method according to claim 2 , wherein the vibratory response is a tactile vibration.

16. The method according to claim 2 , wherein the vibratory response is an audible vibration.

17. The connector according to claim 8 , wherein the vibratory response is a tactile vibration.

18. The connector according to claim 8 , wherein the vibratory response is an audible vibration.

19. The connector according to claim 8 , wherein the sleeve defines a resilient cantilevered beam and a free end of the cantilevered beam defines the second protrusion.

20. The connector according to claim 9 , wherein the vibratory response is a tactile vibration.

Assignments (5)
MERGER Recorded Feb 11, 2024
From: APTIV TECHNOLOGIES (2) S.À R.L.
To: APTIV MANUFACTURING MANAGEMENT SERVICES S.À R.L.
Reel/Frame 066566/0173 →
ENTITY CONVERSION Recorded Feb 11, 2024
From: APTIV TECHNOLOGIES LIMITED
To: APTIV TECHNOLOGIES (2) S.À R.L.
Reel/Frame 066746/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 11, 2024
From: APTIV MANUFACTURING MANAGEMENT SERVICES S.À R.L.
To: APTIV TECHNOLOGIES AG
Reel/Frame 066551/0219 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 25, 2018
From: DELPHI TECHNOLOGIES INC.
To: APTIV TECHNOLOGIES LIMITED
Reel/Frame 047143/0874 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 10, 2014
From: CAMPBELL, JEFFREY SCOTT; SUNDARAKRISHNAMACHARI, RANGARAJAN
To: DELPHI TECHNOLOGIES, INC.
Reel/Frame 032643/0661 →
Continuity (1)
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