IP Library Granted Patent US 10,444,054
Granted Patent B2
US 10,444,054 · App. 15/038,807 · Granted Oct 15, 2019

Capacitance-type sensor probe

Inventor: Gregory C. Harper (Delta, CA)
Assignee: WESTPORT POWER INC.
G01F23/268G01F23/263
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Quick Facts
Patent No.
US 10,444,054
App. No.
15/038,807
Granted
Oct 15, 2019
Kind
B2
Abstract

Sensor probes for capacitance-type liquid level sensors do not comprise an acceptable balance between cost, performance and durability for mobile applications. An improved sensor probe is provided. A first electrode comprises two or more first plate sections arranged in angular relationship with respect to each other. A second electrode comprises two or more second plate sections arranged in angular relationship with respect to each other. Spacers are located between the first and second electrodes such that each first plate section is spaced apart in parallel and substantially overlapping relationship with respective second plate sections. Fasteners securely fix the first and second electrodes in position.

Claims (28)

1. An apparatus, comprising:

a sensor probe for a capacitance-type liquid level sensor comprising:

a first electrode comprising two or more first plate sections, each first plate section having an interior plate surface in a plane, adjacent ones of the first plate sections arranged in angular relationship with respect to each other such that the planes of the interior plate surfaces of adjacent ones of the first plate sections intersect;

a second electrode comprising two or more second plate sections, each second plate section having an interior plate surface in a plane, adjacent ones of the second plate sections arranged in angular relationship with respect to each other such that the planes of the interior plate surfaces of adjacent ones of the second plate sections intersect;

spacers located between said first and second electrodes such that each first plate section is spaced apart in parallel and substantially opposing relationship with respective second plate sections, and the interior plate surface of each first plate section is substantially overlapping with, and facing, the interior plate surface of the respective second plate section and extending in a same direction as the interior plate surface of the respective second plate section; and

fasteners for securely fixing said first and second electrodes in position; and

a container for a liquid, wherein said sensor probe is secured with respect to said container and electrically isolated from said container.

2. The sensor probe of claim 1 , wherein electric field lines emanating from a first end of said two or more first plate sections terminate at a second end of said two or more second plate sections.

3. The sensor probe of claim 1 , wherein a thickness of each first and second plate section is less than 10 millimeters.

4. The sensor probe of claim 1 , wherein a thickness of each first and second plate section is less than 5 millimeters.

5. The sensor probe of claim 1 , wherein a thickness of each first and second plate section is within a range of 0.5 millimeters to 4 millimeters.

6. The sensor probe of claim 1 , wherein said spacers comprise washers.

7. The sensor probe of claim 6 , wherein said first and second electrodes comprise bores and said washers comprise shoulders that are mutually engageable with said bores in said first electrode, said fasteners comprising bolts and nuts wherein respective bolts extend through respective bores and washers and engage respective nuts to secure said first and second electrodes in relative position.

8. The sensor probe of claim 1 , wherein said spacers comprise first and second strips, said first strip positioned near corresponding lateral ends of said first and second electrodes and said second strip positioned near opposite corresponding lateral ends, said first and second strips extending from an upper end to a lower end of said first and second electrodes.

9. The sensor probe of claim 8 , wherein said first and second electrodes comprise bores with said first and second strips, said fasteners comprising bolts and nuts wherein respective bolts extend through respective concentric bores and engage respective nuts to secure said first and second electrodes in relative position.

10. An apparatus for providing a variable capacitor comprising:

a sensor probe for a capacitance-type liquid level sensor comprising:

a first electrode comprising two or more first plate sections, each first plate section having an interior plate surface in a plane, adjacent ones of the first plate sections arranged in angular relationship with respect to each other such that the planes of the interior plate surfaces of adjacent ones of the first plate sections intersect;

a second electrode comprising two or more second plate sections, each second plate section having an interior plate surface in a plane, adjacent ones of the second plate sections arranged in angular relationship with respect to each other such that the planes of the interior plate surfaces of adjacent ones of the second plate sections intersect;

spacers located between said first and second electrodes such that each first plate section is spaced apart in parallel and substantially opposing relationship with respective second plate sections, and the interior plate surface of each first plate section is substantially overlapping with, and facing, the interior plate surface of the respective second plate section and extending in a same direction as the interior plate surface of the respective second plate section; and

fasteners for securely fixing said first and second electrodes in position;

a container for holding a variable amount of a liquid; and

first and second electrical wires connected to said first and second electrodes respectively; wherein said first and second electrodes are secured with respect to said container and electrically isolated from said container.

11. A sensor probe for a capacitance-type liquid level sensor comprising:

a first electrode comprising first, second and third plate sections, the first, second, and third plate sections each having an interior plate surface in a plane, the first and second plate sections arranged in angular relationship with respect to each other such that the plane of the interior plate surface of the first plate section intersects with the plane of the interior plate surface of the second plate section, and the second and third plate sections arranged in angular relationship with respect to each other, such that the plane of the interior plate surface of the second plate section intersects with the plane of the interior plate surface of the third plate section;

a second electrode comprising fourth, fifth and sixth plate sections, the fourth, fifth, and sixth plate sections each having an interior plate surface in a plane, the fourth and fifth plate sections arranged in angular relationship with respect to each other such that the plane of the interior plate surface of the fourth plate section intersects with the plane of the interior plate surface of the fifth plate section, and the fifth and sixth plate sections arranged in angular relationship with respect to each other such that the plane of the interior plate surface of the fifth plate section intersects with the plane of the interior plate surface of the sixth plate section;

spacers located between said first and second electrodes such that said first, second and third plate sections are spaced apart in parallel and substantially opposing relationship from said fourth, fifth and sixth plate sections respectively, at least the interior plate surfaces of the first plate section and the fourth plate section extending in a same direction and facing each other, the interior plate surfaces of the second plate section and the fifth plate section extending in a same direction and facing each other, and the interior plate surfaces of the third plate section and the sixth plate section extending in a same direction and facing each other; and

fasteners for securely fixing said first and second electrodes in position, wherein said first, second and third plate sections are substantially equal in length in a lateral direction to said sixth, fifth and fourth plate sections respectively.

Assignments (4)
CHANGE OF NAME Recorded Jan 5, 2026
From: HPDI TECHNOLOGY LIMITED PARTNERSHIP
To: CESPIRA CANADA LIMITED PARTNERSHIP
Reel/Frame 073370/0671 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 25, 2024
From: WESTPORT FUEL SYSTEMS CANADA INC.
To: HPDI TECHNOLOGY LIMITED PARTNERSHIP
Reel/Frame 068088/0781 →
CHANGE OF NAME Recorded May 25, 2021
From: WESTPORT POWER INC.
To: WESTPORT FUEL SYSTEMS CANADA INC.
Reel/Frame 056365/0759 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 24, 2016
From: HARPER, GREGORY C.
To: WESTPORT POWER INC.
Reel/Frame 038700/0215 →
Priority Claims (1)
CA 2835473 · Nov 28, 2013 · national
Continuity (1)
Related Publication 20170030760A1 · Feb 2, 2017