IP Library › Granted Patent US 10,199,753
Granted Patent B2
US 10,199,753 · App. 15/581,913 · Granted Feb 5, 2019

Multi-pin connector block assembly

Inventor: Thomas Edmond Flaherty, IV (Surprise, AZ)
Assignee: Corning Optical Communications RF LLC
H01R9/26H01R9/2691H01R12/714H01R12/91H01R13/646
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Quick Facts
Patent No.
US 10,199,753
App. No.
15/581,913
Granted
Feb 5, 2019
Kind
B2
Abstract

A radio frequency (RF) connector block assembly having a plurality of connector pin assemblies mounted within a multi-connector block is disclosed. Each connector pin assembly has a dielectric and a contact pin positioned in a housing. Multiple housings may be independently removably mounted in the multi-connector block with independently movable contact pins. A first end of each contact pin is adapted to provide electrical continuity with an external component, for example, a connector, and a second end of each contact pin terminates distally in a connection feature, which may be connected to an external structure, for example, a printed circuit board (PCB). Each contact pin moves axially in response to movement of the connection feature by engagement with the PCB.

Claims (23)

1. A radio frequency (RF) connector block assembly, comprising:

a multi-connector block comprising a plurality of housing ports, wherein the multi-connector block is attachable to an external structure;

a plurality of housings, wherein each of the plurality of housings is removably mounted in one of the plurality of housing ports, and wherein a housing of the plurality of housings is independently removably mounted from another housing of the plurality of housings;

a contact pin movably disposed in each of the plurality of housings, wherein the contact pin in a housing of the plurality of housings is independently axially movable in a first direction and a second direction from the contact pin in another housing of the plurality of housings; and

a first dielectric positioned in each of the plurality of housings, the first dielectric comprising a first through-passage extended through the first dielectric.

2. The RF connector block assembly of claim 1 , wherein the contact pin comprises a first pin section adapted to be electrically continuous with an external component, and a second pin section distally terminated in a connection feature.

3. The RF connector block assembly of claim 2 , wherein when the contact pin is extended at a second direction travel limit, the connection feature is extended through an open distal end of the plurality of housings.

4. The RF connector block assembly of claim 3 , wherein the connection feature is extended out of the multi-connector block when extended through the open distal end of the plurality of housings.

5. The RF connector block assembly of claim 2 , wherein the contact pin moves axially in response to movement of the connection feature by engagement with the external structure.

6. The RF connector block assembly of claim 2 , wherein the external structure is a printed circuit board (PCB).

7. The RF connector block assembly of claim 6 , wherein the connection feature is adapted for connection to the PCB.

8. The RF connector block assembly of claim 7 , wherein the connection feature is adapted to be soldered to the PCB.

9. The RF connector block assembly of claim 8 , wherein the connection feature is adapted to be soldered to a conductive trace of the PCB.

10. The RF connector block assembly of claim 1 , further comprising a second dielectric positioned in each of the plurality of housings, the second dielectric comprising a second through-passage extended through the second dielectric, wherein the second through-passage is aligned with the first through-passage, and wherein the first dielectric and the second dielectric define a gap therebetween.

11. The RF connector block assembly of claim 10 , wherein the contact pin comprises an annular collar movably disposed within the gap.

12. The RF connector block assembly of claim 11 , wherein the annular collar radially extends from the contact pin, and wherein an outside diameter “A OD ” of the annular collar is greater than an inside diameter “F ID ” of the first through-passage and an inside diameter “S ID ” of the second through-passage.

13. The RF connector block assembly of claim 1 , wherein the contact pin comprises a first pin section and a second pin section, wherein a portion of the second pin section is extended at an angle to the first pin section.

14. The RF connector block assembly of claim 13 , wherein the second pin section is extended at a right angle to the first pin section.

15. The RF connector block assembly of claim 13 , wherein each housing of the plurality of housings comprises a first segment and a second segment separated from the first segment by a partition, wherein the partition comprises an access opening extended between the first segment and the second segment.

16. The RF connector block assembly of claim 15 , wherein the first segment comprises a socket with a receiving port adapted to receive a connector.

17. The RF connector block assembly of claim 16 , wherein the first pin section is electrically continuous with the connector received by the receiving port of the socket.

18. The RF connector block assembly of claim 15 , wherein the second segment comprises an open distal end opposite the partition.

19. The RF connector block assembly of claim 1 , wherein each housing of the plurality of housings is adapted to provide grounding continuity with the external structure.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 18, 2018
From: FLAHERTY, THOMAS EDMOND, IV
To: CORNING OPTICAL COMMUNICATIONS RF LLC
Reel/Frame 047802/0004 →
Continuity (1)
Related Publication 20180316103A1 · Nov 1, 2018