IP Library › Granted Patent US 10,276,954
Granted Patent B2
US 10,276,954 · App. 16/135,247 · Granted Apr 30, 2019

Board-to-board connectors and mounting structure

Inventor: Tim DeAngelo (Edina, MN)
Assignee: Rosemount Aerospace Inc.
H01R12/58H01R12/52H01R43/205H05K1/11H05K1/144H05K3/007H05K3/366H05K3/368H05K3/4644H05K1/145H05K2201/042H05K2201/10189H05K2201/10318H05K2201/10325
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,276,954
App. No.
16/135,247
Granted
Apr 30, 2019
Kind
B2
Abstract

A circuit card assembly includes a first printed wiring board with a first receiving feature and a trace attached to the first printed wiring board. The three dimensional trace is formed by layer-by-layer additive manufacturing. The three dimensional trace includes first and second ends. The first end of the three dimensional trace engages with the first receiving feature of the first printed wiring board. The second end of the three dimensional trace is configured to engage with a second printed wiring board.

Claims (34)

1. A circuit card assembly comprising:

a first printed wiring board with a first receiving feature;

a second printed wiring board with a second receiving feature;

a first three dimensional trace attached to the first printed wiring board, wherein the first three dimensional trace is formed by a layer-by-layer additive manufacturing process, wherein the first three dimensional trace comprises a first end and a second end, wherein the first end of the first three dimensional trace engages with the first receiving feature of the first printed wiring board, wherein the second end of the first three dimensional trace engages with the second printed wiring board;

a support structure; and

a fixture, wherein the support structure is connected to the first three dimensional trace and the fixture is connected to the support structure.

2. The circuit card assembly of claim 1 , wherein the circuit card assembly comprises a second three dimensional trace.

3. The circuit card assembly of claim 2 , further comprising spacing between the first and second three dimensional traces such that at least one of electro-dynamic interference, thermodynamic interference, and arcing is prevented between the first and second three dimensional traces.

4. The circuit card assembly of claim 2 , further comprising a potting material between any two or more of the first three dimensional trace, the second three dimensional trace, the first printed wiring board, and the second printed wiring board, wherein the potting material is configured to electrically insulate the circuit card assembly.

5. The circuit card assembly of claim 2 , further comprising a third printed wiring board attached to at least one of the first and second three dimensional traces.

6. The circuit card assembly of claim 1 , wherein the first receiving feature of the first printed wiring board comprises a solder cup, a socket, a surface mount, or a thru-hole.

7. The circuit card assembly of claim 1 wherein the second end of the first three dimensional trace comprises a pin or a socket.

8. The circuit card assembly of claim 1 and further comprising a structural support, a stop, a chamfer, a heat sink, a test point lead, an electromagnetic shield, a locating feature, or a resilient element with a spring constant.

9. The circuit card assembly of claim 8 , wherein the structural support, stop, chamfer, heat sink, solder cup, test point lead, electromagnetic shield, locating feature, or resilient element is integrally formed with the first three dimensional trace.

10. The circuit card assembly of claim 8 , wherein the first three dimensional trace comprises a non-conductive material.

11. The circuit card assembly of claim 8 , wherein a material or a configuration of the structural support is tuned to match a frequency level of an airborne munition into which the circuit card assembly is configured to be installed.

12. The circuit card assembly of claim 1 , wherein the second printed wiring board is disposed non-parallel to the first printed wiring board.

13. The circuit card assembly of claim 1 , wherein the first three dimensional trace, the support structure, and the fixture are formed during the layer-by-layer additive manufacturing process such that the first three dimensional trace, the support structure, and the fixture are integrally formed as a single piece and of the same material.

14. A circuit card assembly comprising:

a first printed wiring board with a first receiving feature;

a second printed wiring board with a second receiving feature;

a first three dimensional trace attached to the first printed wiring board, wherein the first three dimensional trace is formed by a layer-by-layer additive manufacturing process, wherein the first three dimensional trace comprises a first end and a second end, wherein the first end of the first three dimensional trace engages with the first receiving feature of the first printed wiring board, wherein the second end of the first three dimensional trace engages with the second printed wiring board;

a second three dimensional trace; and

a potting material between any two or more of the first three dimensional trace, the second three dimensional trace, the first printed wiring board, and the second printed wiring board, wherein the potting material is configured to electrically insulate the circuit card assembly.

15. The circuit card assembly of claim 14 , wherein the circuit card assembly comprises a second three dimensional trace.

16. The circuit card assembly of claim 14 , wherein the first receiving feature of the first printed wiring board comprises a solder cup, a socket, a surface mount, or a thru-hole.

17. The circuit card assembly of claim 14 , wherein the second end of the first three dimensional trace comprises a pin or a socket.

18. The circuit card assembly of claim 14 , wherein the second printed wiring board is disposed non-parallel to the first printed wiring board.

19. The circuit card assembly of claim 14 , further comprising a structural support, wherein a material or a configuration of the structural support is tuned to match a frequency level of an airborne munition into which the circuit card assembly is configured to be installed.

20. A circuit card assembly comprising:

a first printed wiring board with a first receiving feature;

a second printed wiring board with a second receiving feature;

a first three dimensional trace attached to the first printed wiring board, wherein the first three dimensional trace is formed by a layer-by-layer additive manufacturing process, wherein the first three dimensional trace comprises a first end and a second end, wherein the first end of the first three dimensional trace engages with the first receiving feature of the first printed wiring board, wherein the second end of the first three dimensional trace engages with the second printed wiring board; and

a structural support, wherein a material or a configuration of the structural support is tuned to match a frequency level of an airborne munition into which the circuit card assembly is configured to be installed.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 19, 2018
From: DEANGELO, TIM
To: ROSEMOUNT AEROSPACE INC.
Reel/Frame 046909/0826 →
Continuity (2)
Division 15601362 · May 22, 2017
Related Publication 20190020130A1 · Jan 17, 2019
Cited By (1)
US 12,325,534