IP Library › Granted Patent US 11,287,292
Granted Patent B2
US 11,287,292 · App. 15/431,403 · Granted Mar 29, 2022

Sensor system

Inventors: Joshua D. Kitain (Orlando, FL); David J. Macannuco (Burlington, MA); Aaron P. Miller (Orlando, FL)
Assignee: LOCKHEED MARTIN CORPORATION
G01D11/30A42B3/042A42B3/0406G02B27/0176H01R12/78H01R13/6581H01R13/6598H01R43/26G02B2027/014G02B2027/0138G02B2027/0156
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Quick Facts
Patent No.
US 11,287,292
App. No.
15/431,403
Granted
Mar 29, 2022
Kind
B2
Abstract

A sensor system is provided. A body includes a first side extension configured to mount to a helmet, a second side extension configured to mount to the helmet, and a processing module support member coupled to the first side extension and the second side extension configured to accommodate a processing module. A first sensor sub-assembly is positioned at least partially in the first side extension. The first sensor sub-assembly includes a first cable that includes a first plug configured to be plugged into the processing module, and a first sensor communicatively coupled to the first plug via the first cable.

Claims (31)

1. A sensor system comprising:

a body, comprising:

a first side extension configured to mount to a helmet;

a second side extension configured to mount to the helmet; and

a processing module support member contiguous with each of the first side extension and the second side extension, and configured to accommodate a processing module; and

a first sensor sub-assembly comprising:

a first cable comprising a first plug configured to be plugged into the processing module; and

a first sensor positioned within the first side extension and communicatively coupled to the first plug via the first cable.

2. The sensor system of claim 1 wherein the first cable comprises a flexible circuit cable.

3. The sensor system of claim 2 further comprising a first overmold material that surrounds at least a portion of a length of the cable, the first overmold material being devoid of conductive particles.

4. The sensor system of claim 3 further comprising a second overmold material that surrounds at least a portion of the first overmold material, the second overmold material comprising a conductive electromagnetic interference (EMI) shielding material.

5. The sensor system of claim 4 wherein the conductive EMI shielding material comprises one of steel, copper or silver.

6. The sensor system of claim 1 further comprising a second sensor sub-assembly positioned at least partially in the second side extension comprising:

a second cable comprising a second plug configured to be plugged into the processing module; and

a second sensor communicatively coupled to the second cable.

7. The sensor system of claim 1 wherein the first side extension comprises a first end portion configured to, when coupled to the helmet, face an environment in front of the helmet, and wherein the first sensor is positioned in the first end portion to sense a characteristic of the environment in front of the helmet.

8. The sensor system of claim 7 wherein the first sensor sub-assembly further comprises a second sensor communicatively coupled to the first plug via the first cable, and wherein the second sensor is positioned in the first end portion to sense a characteristic of the environment in front of the helmet.

9. The sensor system of claim 7 further comprising a second sensor sub-assembly comprising:

a second cable comprising a second plug configured to be plugged into the processing module; and

a second sensor positioned within the second side extension communicatively coupled to the second cable;

wherein the second side extension comprises a second end portion configured to, when coupled to the helmet, face the environment in front of the helmet, and wherein the second sensor is positioned in the second end portion to sense a characteristic of the environment in front of the helmet.

10. The sensor system of claim 1 wherein the first sensor sub-assembly further comprises an external interface configured to detachably couple to a display device, the external interface being in electrical communication with the first plug.

11. The sensor system of claim 1 wherein the first side extension comprises a first rail mount configured to mount to a first helmet rail on a first side of the helmet and the second side extension comprises a second rail mount configured to mount to a second helmet rail on a second side of the helmet.

12. The sensor system of claim 1 wherein the first side extension and the second side extension comprise an overmold material that includes a conductive electromagnetic interference (EMI) shielding.

13. The sensor system of claim 1 wherein the first sensor sub-assembly further comprises a nitrogen-purged sensor capsule, and wherein the first sensor is positioned in the nitrogen-purged sensor capsule.

14. The sensor system of claim 1 wherein the first cable comprises a flexible cable having a first portion and a second portion, and the first sensor sub-assembly further comprises:

a printed circuit board and the first sensor is coupled to the printed circuit board; wherein:

the first portion of the flexible cable extends from the first plug to the printed circuit board;

the second portion extends from the printed circuit board to an external interface that is configured to detachably couple to a display device; and

wherein the printed circuit board is configured to electrically couple the first portion to the second portion so that electrical signals can be communicated between the external interface and the first plug.

15. The sensor system of claim 1 wherein the first side extension forms an opening between the first sensor and an external environment that allows energy in the external environment to be communicated to the first sensor.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 13, 2017
From: KITAIN, JOSHUA D.; MACANNUCO, DAVID J.; MILLER, AARON P.
To: LOCKHEED MARTIN CORPORATION
Reel/Frame 041242/0485 →
Continuity (1)
Related Publication 20180231404A1 · Aug 16, 2018