IP Library › Granted Patent US 11,362,448
Granted Patent B2
US 11,362,448 · App. 16/995,628 · Granted Jun 14, 2022

Connector having latching pins that change angle for mounting to a circuit board

Inventors: Neil Stanley Sherman (San Bruno, CA); Ryan R. Hopkins (Reno, NV)
Assignee: Tag-Connect, LLC
H01R12/714H01R12/75H01R13/2407H01R13/629
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Quick Facts
Patent No.
US 11,362,448
App. No.
16/995,628
Granted
Jun 14, 2022
Kind
B2
Abstract

Described herein are connector components for selectively connecting to a PCB or other type of secondary device. Such a connector component comprises a body, electrically conductive contact pins, and latching pins. The body includes opposing sides at which are located pinch tabs. The electrically conductive contact pins and the latching pins each includes a portion thereof also extending from the bottom of the body. The pinch tabs are configured to normally bias the latching pins in a first position where the latching pins are angled relative to a central axis of the connector component when the pinch tabs are not being pinched inwards towards one another. Additionally, the pinch tabs are configured to bias the latching pins in a second position where the latching pins are substantially parallel to the central axis of the connector component when the pinch tabs are being pinched inward towards one another.

Claims (58)

1. A connector component for selectively connecting to a printed circuit board (PCB), the connector component comprising:

a body including opposing sides at which are located pinch tabs;

one or more electrically conductive contact pins each of which includes a portion thereof extending from a bottom of the body; and

latching pins each of which includes a portion thereof also extending from the bottom of the body;

the pinch tabs configured to bias one or more of the latching pins in a first position where the one or more of the latching pins is/are angled relative to a central axis of the connector component when the pinch tabs are not being pinched inwards towards one another; and

the pinch tabs configured to bias the one or more of the latching pins in a second position where the one or more of the latching pins is/are substantially parallel to the central axis of the connector component when the pinch tabs are being pinched inward towards one another.

2. The connector component of claim 1 , wherein:

each of the latching pins includes an upper portion and a lower portion, the upper portion located within the body, and the lower portion extending from the bottom of the body;

each of the pinch tabs engages the upper portion of at least one of the latching pins to normally bias the at least one of the latching pins in the first position when the pinch tabs are not being pinched inwards towards one another, and to bias the at least one of the latching pins in the second position where the latching pins are substantially parallel to the central axis of the connector component when the pinch tabs are being pinched inward towards one another.

3. The connector component of claim 1 , wherein:

the latching pins are configured to be inserted into respective holes in the PCB while the pinch tabs are being pinched inwards towards one another to bias the one or more of the latching pins into the second position where the latching pins are substantially parallel to the central axis of the connector component.

4. The connector component of claim 3 , wherein:

the one or more of the latching pins attempt to return to the first position, where the one or more of the latching pins are angled relative to the central axis of the connector component, after the latching pins are inserted into the respective holes in the PCB and the pinch tabs are no longer being pinched inwards towards one another, which causes at least a portion of an outer peripheral surface of each of the latching pins to apply a tangential force against at least a portion of an inner peripheral surface of a respective one of the holes in the PCB.

5. The connector component of claim 4 , wherein:

the electrically conductive contact pins are configured to come into contact with respective electrically conductive contact points on the PCB after the latching pins are inserted into the respective holes in the PCB.

6. The connector of claim 4 , wherein:

after the latching pins have been inserted into the respective holes in the PCB, the latching pins are removable from the respective holes in the PCB by biasing the one or more of the latching pins in the second position where the one or more of the latching pins are substantially parallel to the central axis of the connector component responsive to the pinch tabs being pinched inward towards one another.

7. The connector component of claim 1 , further comprising:

at least one spring configured to bias at least one of the contact pins against a respective contact point on the PCB.

8. The connector component of claim 1 , wherein:

each of the electrically conductive contact pins is electrically coupled to a respective wire that is included within a cable that extends from a top of the body; and

the cable is configured to be selectively electrically connected to, or is permanently electrically connected to, a device to allow for at least one of powering, programing, debugging, configuring, monitoring, or testing of the PCB by the device, or to allow for at least one of powering, programing, debugging, configuring, monitoring, or testing of the device by the PCB.

9. The connector component of claim 1 , wherein:

at least one of the latching pins includes a circumferential groove proximal to a distal end of the latching pin and configured to further secure the connector component to the PCB by providing a flange that engages a portion of an underside of the PCB after the latching pins are inserted into the respective holes in the PCB and the pinch tabs are no longer being pinched inwards towards one another.

10. The connector component of claim 1 , wherein:

a distal portion of at least one of the latching pins includes a flange that engages a portion of an underside of the PCB after the latching pins are inserted into the respective holes in the PCB and the pinch tabs are no longer being pinched inwards towards one another.

11. A connector component for selectively connecting a printed circuit board (PCB) to a device that is distinct from the PCB, wherein the PCB includes a plurality of holes and a plurality of electrically conductive contact points, the connector component comprising:

a body including opposing sides at which are located pinch tabs;

a cable including a plurality of electrically conductive wires extending from a first portion of the body;

electrically conductive contact pins each of which includes a portion thereof extending from a second portion of the body and each of which is electrically coupled to a respective one of the wires in the cable; and

latching pins each of which includes a portion thereof also extending from the second portion of the body;

the pinch tabs configured to normally bias one or more of the latching pins in a first position where the latching pins are angled relative to the contact pins when the pinch tabs are not being pinched inwards towards one another;

the pinch tabs configured to bias the one or more of the latching pins in a second position where the one or more of the latching pins is/are substantially parallel to the contact pins when the pinch tabs are being pinched inward towards one another;

the latching pins configured to be inserted into respective holes in the PCB while the pinch tabs are being pinched inwards towards one another to bias the one or more of the latching pins into the second position where the latching pins are substantially parallel to the contact pins; and

the electrically conductive contact pins configured to come into contact with respective ones of the electrically conductive contact points on the PCB after the latching pins are inserted into respective holes in the PCB.

12. The connector component of claim 11 , wherein:

the cable is permanently or selectively electrically connected to the device that is distinct from the PCB to allow for at least one of powering, programing, debugging, configuring, monitoring, or testing of the PCB by the device, or to allow for at least one of powering, programing, debugging, configuring, monitoring, or testing of the device by the PCB.

13. The connector component of claim 11 , wherein:

the one or more of the latching pins attempt to return to the first position, where the one or more of the latching pins is/are angled relative to the contact pins, after the latching pins are inserted into the respective holes in the PCB and the pinch tabs are no longer being pinched inwards towards one another, which causes at least a portion of each of the one or more of the latching pins to apply a tangential force against at least a portion of a respective one of the holes in the PCB.

14. The connector component of claim 11 , further comprising:

springs configured to bias the contact pins against respective ones of the electrically conductive contact points on the PCB.

15. The connector component of claim 11 , wherein:

each of the latching pins includes an upper portion and a lower portion, the upper portion located within the body, and the lower portion extending from the second portion of the body; and

each of the pinch tabs engages the upper portion of at least one of the latching pins to normally bias the at least one of the latching pins in the first position when the pinch tabs are not being pinched inwards towards one another, and to bias the at least one of the latching pins in the second position where the latching pins are substantially parallel to the contact pins when the pinch tabs are being pinched inward towards one another.

16. The connector component of claim 11 , wherein:

each of the latching pins includes a circumferential groove configured to further secure the connector component to the PCB by providing flanges that engages portions of an underside of the PCB after the latching pins are inserted into the respective holes in the PCB and the pinch tabs are no longer being pinched inwards towards one another.

17. A connector component for selectively connecting to a secondary device, the connector component comprising:

a body;

a cable including a plurality of electrically conductive wires extending from a first portion of the body;

electrically conductive contact pins that are parallel to one another, each of the electrically conductive contact pins including a portion thereof that extends from a second portion of the body, and each of the electrically conductive contact pins electrically coupled to a respective one of the wires in the cable;

latching pins that are normally biased such that they are normally angled relative to the electrically conductive contact pins, each of the latching pins including a portion thereof that also extends from the second portion of the body; and

a pair of opposing tabs that are configured to assert a force on the latching pins, when the pair of opposing tabs are moved towards one another, to thereby cause the latching pins to become substantially parallel to the electrically conductive contact pins while the force is being asserted.

18. The connector component of claim 17 , wherein:

the latching pins are configured to be inserted into respective holes in the secondary device while the pair of opposing tabs are being moved towards one another to thereby cause the latching pins to be substantially parallel to the electrically conductive contact pins.

19. The connector component of claim 18 , wherein:

after the latching pins are inserted into the respective holes in the secondary device and the tabs are no longer being moved towards one another, the latching pins attempt to return to being angled relative to the electrically conductive contact pins, which causes each of the latching pins to apply a tangential force against a respective one of the holes in the secondary device.

20. The connector component of claim 17 , wherein:

after the latching pins have been inserted into the respective holes in the secondary device, the latching pins are removable from the respective holes in the secondary by moving the opposing tabs towards one another to thereby cause the latching pins to be substantially parallel to the electrically conductive contact pins.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 16, 2020
From: SHERMAN, NEIL STANLEY; HOPKINS, RYAN R.
To: TAG-CONNECT, LLC
Reel/Frame 053794/0351 →
Continuity (2)
Provisional Application 63033132 · Jun 1, 2020
Related Publication 20210376505A1 · Dec 2, 2021
Cited By (7)
US 12,537,324 US 12,548,950 US 12,597,724 US 12,597,725 US 12,646,876 US 12,712,301 US 12,738,678