IP Library › Granted Patent US 11,231,331
Granted Patent B2
US 11,231,331 · App. 16/122,535 · Granted Jan 25, 2022

Temperature sensing tape

Inventors: Boris Golubovic (San Francisco, CA); Martin G. Pineda (Fremont, CA); Yuriy Borisovich Matus (Pleasanton, CA); Jianhua Chen (Sunnyvale, CA)
Assignee: Littelfuse, Inc.
G01K7/22C09J7/20C09J9/02G01K1/143H01B7/04H01C1/1406H01C1/1413H01C7/027H01C7/049H01M10/482H01M10/486C09J2203/326C09J2301/314
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Quick Facts
Patent No.
US 11,231,331
App. No.
16/122,535
Granted
Jan 25, 2022
Kind
B2
Abstract

A temperature sensing tape including a flexible, electrically insulating substrate, a plurality of temperature sensing elements disposed on the substrate, each temperature sensing element including a first electrode and a second electrode arranged in a confronting, spaced-apart relationship to define a gap therebetween, and a variable resistance material disposed within the gap and connecting the first electrode to the second electrode, wherein the first electrode of at least one of the temperature sensing elements is connected to the second electrode of an adjacent temperature sensing element by a flexible electrical conductor.

Claims (19)

1. A temperature sensing tape comprising:

an electrically insulating substrate;

a first conductor disposed on the electrically insulating substrate and terminating in a first electrode, the first electrode comprising a first plurality of tines;

a second conductor disposed on the electrically insulating substrate and terminating in a second electrode, the second electrode comprising a second plurality of tines;

a variable resistance material comprising a curable compound; and

an adhesive material for facilitating adhesion of the electrically insulating substrate to an electrical device;

wherein the temperature sensing tape is made by:

forming the electrically insulating substrate on a strip of dielectric material, the dielectric material having the adhesive material on one or both sides;

disposing the first conductor and the first electrode on the electrically insulated substrate, the first conductor and the first electrode being formed from a single, contiguous piece of electrically conductive material;

disposing the second conductor and the second electrode on the electrically insulated substrate, the second conductor and the second electrode being formed from a single, contiguous piece of electrically conductive material, wherein the first electrode and the second electrode are disposed in a confronting, spaced-apart relationship and the first plurality of tines is disposed in an interdigitated relationship with the second plurality of tines to define a gap therebetween;

curing the compound of the variable resistance material to form a solid mass; and

depositing the solid mass on the first plurality of tines and the second plurality of tines such that the variable resistance material partially bridges the gap, the first conductor, the second conductor, and the variable resistance material defining a temperature sensing element, wherein the temperature sensing tape comprises a plurality of temperature sensing elements disposed on the electrically insulated substrate and electrically connected to one another in series, the temperature sensing tape being capable of being rolled and stored as a conventional roll of tape.

2. The temperature sensing tape of claim 1 , wherein the substrate, the first conductor, and the second conductor are formed of flexible materials.

3. The temperature sensing tape of claim 1 , wherein the first and second conductors are formed of at least one of an electrically conductive wire, mesh, ribbon, epoxy, and ink.

4. The temperature sensing tape of claim 1 , wherein the temperature sensing elements are evenly spaced apart from one another along a length of the substrate.

5. The temperature sensing tape of claim 1 , wherein the variable resistance material is a positive temperature coefficient (PTC) material.

6. The temperature sensing tape of claim 5 , wherein the variable resistance material is a polymeric positive temperature coefficient (PTC) material.

7. The temperature sensing tape of claim 1 , wherein the variable resistance material is a negative temperature coefficient (NTC) material.

8. The temperature sensing tape of claim 1 , wherein the temperature sensing elements are not evenly spaced apart from one another along a length of the substrate.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 13, 2019
From: GOLUBOVIC, BORIS; PINEDA, MARTIN G.; MATUS, YURIY BORISOVICH; CHEN, JIANHUA
To: LITTELFUSE, INC.
Reel/Frame 048588/0337 →
Continuity (2)
Provisional Application 62554088 · Sep 5, 2017
Related Publication 20190072436A1 · Mar 7, 2019