IP Library Patent Application 18153209
Patent Application
App. No. 18/153,209

DESICCANT ASSEMBLY FOR HUMIDITY CONTROL WITHIN A SENSOR HOUSING

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Quick Facts
Patent No.
US None
App. No.
18/153,209
Abstract

In some implementations, a desiccant assembly within a sensor housing may include a desiccant chamber configured to hold a desiccant element; a transfer window positioned between the desiccant chamber and a sensor chamber of the sensor housing; and a permeable membrane covering the transfer window and configured to allow water vapor to transfer from the sensor chamber to the desiccant chamber.

Claims (32)

1 . A desiccant assembly within a sensor housing, comprising:

a desiccant chamber configured to hold a desiccant element;

a transfer window positioned between the desiccant chamber and a sensor chamber of the sensor housing; and

a permeable membrane covering the transfer window and configured to allow water vapor to transfer from the sensor chamber to the desiccant chamber.

2 . The desiccant assembly of claim 1 , wherein the desiccant chamber comprises a pocket defined in a surface of a desiccant assembly body, the desiccant assembly body configured to separate the desiccant chamber from the sensor chamber.

3 . The desiccant assembly of claim 2 , wherein the pocket comprises a recess defined in the surface of the desiccant assembly body, the recess comprising a transfer wall within which the transfer window is defined.

4 . The desiccant assembly of claim 3 , wherein the recess is configured to receive the desiccant element.

5 . The desiccant assembly of claim 3 , wherein the desiccant element comprises an adhesive material adhered to at least one side of the transfer wall.

6 . The desiccant assembly of claim 1 , wherein the desiccant chamber is configured to hold at least one additional desiccant element.

7 . The desiccant assembly of claim 1 , further comprising at least one additional transfer window positioned between the desiccant chamber and the sensor chamber.

8 . The desiccant assembly of claim 1 , further comprising an access component configured to isolate the desiccant chamber from an environment external to the sensor chamber.

9 . The desiccant assembly of claim 8 , wherein the access component comprises a removable chamber cover.

10 . The desiccant assembly of claim 1 , wherein the permeable membrane is configured so that a leak rate corresponding to a transfer of water vapor from the sensor chamber to the desiccant chamber causes prevention of condensation of water within the sensor chamber.

11 . The desiccant assembly of claim 1 , wherein the permeable membrane is configured to prevent a transfer of liquid water and particulate matter from the desiccant chamber to the sensor chamber.

12 . The desiccant assembly of claim 11 , wherein the permeable membrane comprises a material selected so that a leak rate corresponding to a transfer of water vapor from the sensor chamber to the desiccant chamber facilitates maintaining a relative humidity level within the sensor chamber at or below a humidity threshold.

13 . The desiccant assembly of claim 11 , wherein a set of dimensions of the transfer window is configured so that a leak rate corresponding to a transfer of water vapor from the sensor chamber to the desiccant chamber facilitates maintaining a relative humidity level within the sensor chamber at or below a humidity threshold.

14 . The desiccant assembly of claim 1 , wherein the permeable membrane comprises a polymer material.

15 . The desiccant assembly of claim 14 , wherein the polymer material comprises expanded polytetrafluoroethylene.

16 . The desiccant assembly of claim 1 , wherein the desiccant element is removeable.

17 . The desiccant assembly of claim 1 , wherein the desiccant assembly is disposed within the sensor housing at a location that is selected so that a mass balance associated with the sensor housing facilitates a mechanical operation of a sensor within the sensor housing.

18 . A lidar system comprising:

a sensor housing including a sensor chamber;

a sensor disposed within the sensor chamber; and

a desiccant assembly disposed within the sensor housing, the desiccant assembly comprising:

a desiccant chamber configured to hold a desiccant element; and

a permeable membrane positioned between the desiccant chamber and the sensor chamber and configured to allow water vapor to transfer from the sensor chamber to the desiccant chamber.

19 . The lidar system of claim 18 , wherein the permeable membrane is configured so that a leak rate corresponding to a transfer of water vapor from the sensor chamber to the desiccant chamber causes prevention of condensation of water within the sensor chamber.

20 . An equipment housing, comprising:

an equipment chamber configured to hold electronic equipment; and

a desiccant assembly, comprising:

a desiccant chamber configured to hold a desiccant element; and

a transfer assembly positioned between the desiccant chamber and the equipment chamber, wherein the transfer assembly is configured to allow water vapor to transfer from the equipment chamber to the desiccant chamber and to prevent particulate matter from transferring from the desiccant chamber to the equipment chamber.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 12, 2023
From: ARGO AI, LLC
To: LG INNOTEK CO., LTD.
Reel/Frame 063311/0079 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 21, 2023
From: GARDINEER, BAYARD G.; TROWBRIDGE, CHRISTOPHER JOHN; XIANG, YING
To: ARGO AI, LLC
Reel/Frame 063047/0134 →