IP Library Granted Patent US 12,723,998
Granted Patent B2
US 12,723,998 · App. 18/293,787 · Granted Sep 1, 2026

Humidity sensor with improved contaminant sealing

Inventor: Jason Robert Berry (Michigan City, IN)
Assignee: DWYER INSTRUMENTS, LLC
G01N27/226G01N27/225
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Quick Facts
Patent No.
US 12,723,998
App. No.
18/293,787
Granted
Sep 1, 2026
Kind
B2
Abstract

An apparatus for measuring humidity of air flowing in a conduit includes a probe comprising a probe arm configured to be inserted into the conduit. A humidity sensor element is disposed at a distal end of the probe arm. A filter is connectable with the probe arm to enclose the humidity sensor element. The filter includes a filter housing that defines an interior in which the humidity sensor element is disposed, and an opening that provides fluid communication between the interior and exterior of the filter housing. The filter further includes a filter membrane that spans the opening. The filter membrane is constructed of a hydrophobic material that allows air and water vapor to pass freely through its structure from the exterior to the interior, and that blocks liquid water and particulates from passing through its structure from the exterior to the interior.

Claims (28)

1 . An apparatus for measuring humidity of air flowing in a conduit, comprising:

a probe comprising a probe arm configured to be inserted into the conduit;

a humidity sensor element disposed at a distal end of the probe arm; and

a filter connectable with the probe arm to enclose the humidity sensor element, the filter comprising a filter housing that defines an interior in which the humidity sensor element is disposed, and an opening that provides fluid communication between the interior and exterior of the filter housing;

wherein the filter further comprises a filter membrane constructed of a hydrophobic material that allows air and water vapor to pass freely through its structure from the exterior to the interior, and that blocks liquid water and particulates from passing through its structure from the exterior to the interior,

wherein the filter housing is cylindrical and comprises a distal portion with an annular recess comprising an internal annular shoulder portion that helps define the opening, the filter membrane being positioned in the recess against the annular shoulder and spanning across the opening, wherein the filter further comprises an O-ring that engages the filter membrane and urges the filter membrane against the shoulder portion so that the filter membrane is secured in the distal portion of the filter housing between the O-ring and the annular shoulder portion.

2 . The apparatus recited in claim 1 , wherein the filter membrane is constructed of a porous, sintered PTFE membrane material.

3 . The apparatus recited in claim 1 , wherein the opening is circular and the filter membrane has a flat, disc-shaped configuration.

4 . The apparatus recited in claim 1 , wherein the filter housing is configured so that installation of the O-ring requires the O-ring to be deflected radially inward and so that, once installed, resilient material qualities of the O-ring causes the O-ring to deflect radially outward to engage the annular edge portion of the filter membrane and urge the filter membrane against the shoulder portion of the filter housing.

5 . The apparatus recited in claim 1 , wherein the O-ring is constructed of a hydrophobic material so as to form a hydrophobic seal that extends from the filter housing, across the O-ring and the interface between the O-ring and the filter membrane, and across the filter membrane itself.

6 . The apparatus recited in claim 5 , wherein the O-ring and filter membrane are constructed of a PTFE material.

7 . The apparatus recited in claim 1 , wherein the annular shoulder of the annular recess comprises an annular end surface against which an annular edge portion of the filter membrane is positioned, an inner surface of the filter housing intersecting the end surface at an acute angle to form an annular corner of the shoulder portion, wherein the filter membrane, in an assembled condition of the filter, is urged into engagement with the annular corner and deflected to bend at the annular corner so that the annular edge portion of the filter membrane engages the end surface of the shoulder portion.

8 . The apparatus recited in claim 7 , wherein the O-ring engages the filter membrane and urges the membrane into engagement with the annular corner.

9 . The apparatus recited in claim 7 , wherein the engagement between the filter membrane and the annular corner and the deformation of the filter membrane around the annular corner locks the membrane in place on the shoulder portion and enhances the sealing of the membrane against the annular end surface.

10 . The apparatus recited in claim 1 , wherein the distal portion of the filter comprises a collar portion for receiving the filter membrane, the collar portion comprising the annular recess and the annular shoulder portion.

11 . The apparatus recited in claim 1 , wherein the filter is configured to orient the filter membrane in the recess with its planar surface parallel to the airstream when installed in the conduit.

12 . The apparatus recited in claim 1 , wherein the recess is configured so that the airflow in the conduit creates a vacuum at an outer surface of the filter membrane.

13 . The apparatus recited in claim 1 , wherein the filter is constructed to have IP ratings of IP64, IP65, and IP68.

14 . An apparatus for measuring humidity of air flowing in a conduit, comprising:

a probe comprising a probe arm configured to be inserted into the conduit;

a humidity sensor element disposed at a distal end of the probe arm; and

a filter connectable with the probe arm to enclose the humidity sensor element, the filter comprising a filter housing that defines an interior in which the humidity sensor element is disposed, and an opening that provides fluid communication between the interior and exterior of the filter housing;

wherein the filter further comprises a filter membrane that spans the opening, the filter membrane being constructed of a hydrophobic material that allows air and water vapor to pass freely through its structure from the exterior to the interior, and that blocks liquid water and particulates from passing through its structure from the exterior to the interior, wherein:

the filter comprises an end-cap for enclosing the sensor element at the end of the probe arm;

the filter housing further comprises a socket with an internal tapered bore configured to permit the insertion of the terminal end of the probe arm, the filter housing comprising internal threads adjacent the socket;

the probe arm comprises external threads on a terminal end of the probe arm;

an O-ring is fitted into an annular groove in the probe arm adjacent the external threads;

the internal threads of the filter housing engaging external threads on the probe arm, which permits the filter to be screwed onto the probe arm, the O-ring being compressed by the tapered bore to form a seal between the filter housing and the probe arm when the filter is screwed onto the probe arm.

Assignments (2)
SECURITY INTEREST Recorded Jul 27, 2026
From: DWYER INSTRUMENTS, LLC; AUTOMATION COMPONENTS, LLC; MILJOCO-WEISS, LLC; OMEGA ENGINEERING, INC.; FLUID COMPONENTS INTERNATIONAL LLC; MACURCO, INC.; LAKE SHORE CRYOTRONICS, LLC
To: BARCLAYS BANK PLC, AS COLLATERAL AGENT
Reel/Frame 076066/0728 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 15, 2024
From: BERRY, JASON ROBERT
To: DWYER INSTRUMENTS, LLC
Reel/Frame 068293/0439 →
Continuity (2)
Provisional Application 63137792 · Jan 15, 2021
Related Publication 20240230574A1 · Jul 11, 2024
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