IP Library Granted Patent US 11,829,829
Granted Patent B2
US 11,829,829 · App. 17/468,645 · Granted Nov 28, 2023

Wireless vibration monitoring sensor device with flexible form factor

Inventors: Hendrik J Volkerink (Palo Alto, CA); Ajay Khoche (West San Jose, CA)
G06K19/0776G06K19/025G06K19/0717G06K19/0719G06K19/0723
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Quick Facts
Patent No.
US 11,829,829
App. No.
17/468,645
Granted
Nov 28, 2023
Kind
B2
Abstract

A flexible sensor device includes a device layer including at least a first sensor configured to measure sensor data relevant to an object of interest, a flexible electronics layer including flexible circuit connected to the first sensor, a flexible substrate located between the flexible electronics layer and a first adhesive layer, a flexible tape cover that is on the device layer opposite the flexible substrate, the flexible tape cover covering the device layer, and a coupling element, located in a first aperture, the coupling element coupling the first sensor to the object of interest when the sensor device is attached to the object of interest. The first aperture is in one of the flexible substrate and the flexible substrate, overlapping the first sensor and exposing the coupling element to the object of interest.

Claims (54)

1. A sensor device comprising:

a device layer including at least a first sensor configured to measure sensor data relevant to an object of interest, the first sensor comprising a vibration sensor;

an electronics layer including an electronic circuit connected to the first sensor;

a flexible substrate located between the electronics layer and a first adhesive layer

a flexible tape cover that is on the device layer opposite the flexible substrate, the flexible tape cover covering the device layer; and

a coupling element, located in a first aperture, the coupling element coupling the first sensor to the object of interest when the sensor device is attached to the object of interest, wherein

the coupling element has a first damping capacity that is lower than a second damping capacity of a material of the first substrate or that is lower than a third damping capacity of a material of the flexible cover layer, and

the first aperture is in one of the flexible substrate and the flexible tape cover, overlapping the first sensor and exposing the coupling element to the object of interest.

2. The sensor device of claim 1 , wherein the first sensor further comprises a temperature sensor, the coupling element further comprises a material with a first thermal conductivity that is higher than a thermal conductivity of a material of the flexible substrate or a thermal conductivity of the flexible tape cover, and the coupling element forms a thermally conductive pathway between the object of interest and the first sensor.

3. The sensor device of claim 1 , further comprising:

a flexible planarizing layer in between the device layer and the flexible cover layer that planarizes a top surface of the device layer; and

another adhesive layer between the electronics layer and the substrate.

4. The sensor device of claim 1 , the device layer further comprising:

a processor;

a memory;

one or more antennas;

one or more communication interfaces connected to the one or more antennas; and

one or more energy storage components that supply power to components of the device layer, wherein

the electronic circuit is connected to the one or more antennas, the one or more communication interfaces, the processor, the one or more energy storage components, and the memory.

5. The sensor device of claim 1 , wherein the vibration sensor is one of an accelerometer-based vibration sensor, a velocity-based vibration sensor, a capacitive-based vibration sensor, and a strain-based vibration sensor.

6. The sensor device of claim 1 , further comprising a second aperture in the first adhesive layer at least partially aligned with the first aperture, wherein

the first aperture is in the flexible substrate,

the coupling element extends from the device layer to a bottom surface of the flexible substrate through the first aperture and the second aperture, and

a first surface of the rigid element directly contacts the object of interest when the sensor device is attached to the object of interest.

7. The sensor device of claim 1 , wherein the first sensor further comprises an array of sensors, and a surface of the coupling element physically contacts at least one of the vibration sensor and a sensor in the array of sensors.

8. The sensor device of claim 7 , wherein the coupling element comprises an array of coupling elements, each coupling element physically contacting a corresponding sensor in the array of sensors.

9. The sensor device of claim 1 , the coupling element comprising a flange that extends from a base of the coupling element and is configured to be fastened to a portion of one or more of the electronic circuit, the device layer, the flexible substrate, and the flexible cover layer.

10. The sensor device of claim 1 , coupling element having one or more of a length less than 2 cm, a width less than 2 cm., and a thickness less than 1 cm.

11. The sensor device of claim 1 , wherein the coupling element comprises a material that has a first electrical conductivity that is higher than an electrical conductivity of a material of the flexible substrate or is higher than an electrical conductivity of a material of the flexible cover layer.

12. The sensor device of claim 1 , wherein the coupling element is at least partially optically transparent.

13. The sensor device of claim 1 , wherein the sensor device further comprises at least a second sensor comprising at least one of a group comprising: an optical sensor, an infrared light sensor, an inductance sensor, an electrical current or voltage sensor, an electrical resistance sensor, a time of flight sensor, a depth sensor, a distance sensor, a sensor that is configured to detect moisture, a water sensor, a motion sensor, and an accelerometer.

14. A sensor device comprising:

a flexible substrate comprising:

a substrate layer,

a first adhesive layer on the substrate layer;

a device layer on the flexible substrate comprising:

at least a first sensor configured to measure sensor data relevant to an object of interest, the first sensor at least partially aligned with an aperture in the substrate layer;

a rigid element beneath the device layer and at least partially aligned with the aperture in the substrate layer, wherein a first surface of the rigid element is configured to directly contact the object of interest when the sensor device is attached to the object of interest, a second surface of the rigid element is configured to physically contact the first sensor, and the aperture exposes the first surface of the rigid element to the object of interest when the sensor device is attached to the object of interest

an electronics layer, the electronics layer comprising an electronic circuit connected to the first sensor; and

a flexible cover layer on the device layer, the flexible cover layer covering the device layer and the flexible substrate.

15. The sensor device of claim 14 , wherein the first sensor comprises a plurality of sensors and is configured to collect sensor data relevant to the object of interest, each of the plurality of sensors overlapping the aperture in the substrate layer and configured to directly contact the surface of the object of interest when the sensor device is attached to the object of interest.

16. The sensor device of claim 14 , wherein the first sensor extends from the device layer to the flexible substrate through the aperture in the substrate layer.

17. The sensor device of claim 14 , wherein a surface of the first sensor is at a same height as or is at a height below a lower surface of the flexible substrate.

18. The sensor device of claim 14 , wherein a protective cover covers the aperture in the substrate layer.

19. A sensor device comprising:

a flexible substrate comprising:

a substrate layer,

a first adhesive layer on the substrate layer;

a device layer on the flexible substrate comprising:

at least a first sensor configured to measure sensor data relevant to an object of interest, the first sensor at least partially aligned with an aperture in the substrate layer exposing a portion of the first sensor, wherein the portion of the first sensor is configured to directly contact the object of interest when the sensor device is attached to the object of interest;

an electronics layer, the electronics layer comprising an electronic circuit connected to the first sensor; and

a flexible cover layer on the device layer, the flexible cover layer covering the device layer and the flexible substrate, wherein

the first sensor extends from the device layer to the flexible substrate through the aperture in the substrate layer.

20. The sensor device of claim 19 , wherein a protective cover covers the aperture in the substrate layer.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 19, 2021
From: KHOCHE, AJAY
To: TRACKONOMY SYSTEMS, INC.
Reel/Frame 057840/0188 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 19, 2021
From: VOLKERINK, HENDRIK J
To: TRACKONOMY SYSTEMS, INC.
Reel/Frame 058014/0642 →
Continuity (3)
Provisional Application 63081887 · Sep 22, 2020
Provisional Application 63075135 · Sep 5, 2020
Related Publication 20220076091A1 · Mar 10, 2022