IP Library Patent Application 13443029
Patent Application
App. No. 13/443,029

FLUID PRESSURE SPIKE ATTENUATION FEATURE FOR PRESSURE SENSING DEVICES

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Quick Facts
Patent No.
US None
App. No.
13/443,029
Filed
Apr 10, 2012
Art Unit
2855
USPC
73/707
Abstract

A fluid pressure spike attenuation device and a method of attenuating a fluid pressure spike are provided. A fluid channel extends through an inlet body from a first open end to a second open end. The inlet body can be connected to a fluid pressure source and receive a fluid from the fluid pressure source. The fluid channel has an increased cross-sectional area to attenuate a fluid pressure spike entering the fluid channel at the first open end. A sensing element is in fluid communication with the second open end. The sensing element senses a property of the fluid in the fluid channel. The method includes providing an inlet body defining a fluid channel. The method also includes attenuating a fluid pressure spike by dissipating a pressure wave as it moves through the increased cross-sectional area of the fluid channel.

Claims (30)

1 . A fluid pressure spike attenuation device including:

an inlet body, wherein the inlet body defines a fluid channel extending through the inlet body from a first open end to a second open end, wherein the inlet body is configured to be connected to a fluid pressure source, the fluid channel receiving a fluid from the fluid pressure source; and

a sensing element in fluid communication with the second open end, the sensing element for sensing a property of the fluid in the fluid channel,

wherein the fluid channel has an increased cross-sectional area between the first open end and the second open end configured to attenuate a fluid pressure spike entering the fluid channel at the first open end.

2 . The fluid pressure spike attenuation device according to claim 1 , wherein the increased cross-sectional area is configured to attenuate fluid pressure spikes of a relatively short duration.

3 . The fluid pressure spike attenuation device according to claim 2 , wherein the relatively short duration is less than about 20 microseconds.

4 . The fluid pressure spike attenuation device according to claim 1 , wherein the amplitude of the pressure spike is less than about 1.38×10 7 Pa (2,000 psi).

5 . The fluid pressure spike attenuation device according to claim 1 , wherein the amplitude of the pressure spike is less than about 2.07×10 7 Pa (3,000 psi).

6 . The fluid pressure spike attenuation device according to claim 1 , wherein the increased cross-sectional area varies over a length of the fluid channel to form a frustoconical cavity in the fluid channel.

7 . The fluid pressure spike attenuation device according to claim 1 , wherein the property of the fluid sensed is a pressure.

8 . The fluid pressure spike attenuation device according to claim 1 , wherein the sensing device includes a piezo-resistive semiconductor die disposed on a surface of the sensing element housing, and wherein the piezo-resistive semiconductor die is responsive to pressure of the fluid in the fluid channel.

9 . The fluid pressure spike attenuation device according to claim 1 , further including a processing device coupled to the sensing element, wherein the processing device is configured to collect and transmit information from the sensing element.

10 . A fluid fitting for sensing a property of a fluid including:

an inlet body, wherein the inlet body defines a fluid channel extending through the inlet body from a first open end to a second open end, wherein the inlet body is configured to be connected to a fluid pressure source, the fluid channel receiving a fluid from the fluid pressure source;

a sensing element housing configured to mate to the inlet body; and

a sensing element, wherein the sensing element is in fluid communication with the second open end, the sensing element for sensing a property of the fluid in the fluid channel

wherein the fluid channel has an increased cross-sectional area between the first open end and the second open end configured to attenuate a fluid pressure spike entering the fluid channel at the first open end.

11 . The fluid fitting according to claim 10 , wherein the increased cross-sectional area is configured to attenuate fluid pressure spikes of a relatively short duration.

12 . The fluid fitting according to claim 11 , wherein the relatively short duration is less than about 20 microseconds.

13 . The fluid fitting according to claim 10 , wherein the amplitude of the pressure spike is between about 1.38×10 7 Pa (2,000 psi) and 2.07×10 7 Pa (3,000 psi).

14 . The fluid, fitting according to claim 10 , wherein the increased cross-sectional area varies over a length of the fluid channel to form a frustoconical cavity in the fluid channel.

15 . The fluid fitting according to claim 10 , wherein the property of the fluid sensed is a pressure.

16 . The fluid fitting according to claim 10 , wherein the sensing device includes a piezo-resistive semiconductor die disposed on a surface of the sensing element housing, and wherein the piezo-resistive semiconductor die is responsive to pressure of the fluid in the fluid channel.

17 . The fluid fitting according to claim 10 , further including a processing device coupled to the sensing element, wherein the processing device is configured to collect and transmit information from the sensing element, the processing device disposed in a cavity of the sensing element housing.

18 . A method of attenuating a fluid pressure spike in a sensing device including:

providing an inlet body, wherein the inlet body defines a fluid channel extending through the inlet body from a first open end to a second open end, wherein the inlet body is configured to be connected to a fluid pressure source, the fluid channel receiving a fluid from the fluid pressure source, wherein the fluid channel has an increased cross-sectional area between the first open end and the second open end;

providing a sensing element in fluid communication with the second open end, the sensing element for sensing properties of the fluid in the fluid channel; and

attenuating a fluid pressure spike entering the fluid channel at the first open end by dissipating a pressure wave as the pressure wave moves through the increased cross-sectional area of the fluid channel, wherein the fluid pressure spike is attenuated before it reaches the second open end.

19 . The method according to claim 18 , wherein the wherein the increased cross-sectional area varies over a length of the fluid channel to form a frustoconical cavity in the fluid channel.

20 . The method according to claim 18 , wherein the sensing device includes a piezo-resistive semiconductor die disposed in an aperture of the sensing element housing, and wherein the piezo-resistive semiconductor die is responsive to pressure of the fluid in the fluid channel.

Assignments (4)
CHANGE OF NAME Recorded Apr 25, 2014
From: GE THERMOMETRICS, INC.
To: AMPHENOL THERMOMETRICS, INC.
Reel/Frame 032763/0141 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 24, 2014
From: AMPHENOL CORPORATION
To: GE THERMOMETRICS, INC.
Reel/Frame 032745/0924 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 23, 2013
From: GENERAL ELECTRIC COMPANY
To: AMPHENOL CORPORATION
Reel/Frame 031842/0049 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 10, 2012
From: WAGNER, CHRIS DANIEL
To: GENERAL ELECTRIC COMPANY
Reel/Frame 028017/0921 →