Wearable device having a micro-electromechanical system (mems) resonator for skin temperature sensing
US-2024315568-A1 · Sep 26, 2024 · US
US10408685B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10408685-B2 |
| Application number | US-201515504409-A |
| Country | US |
| Kind code | B2 |
| Filing date | Aug 17, 2015 |
| Priority date | Aug 27, 2014 |
| Publication date | Sep 10, 2019 |
| Grant date | Sep 10, 2019 |
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Some aspects of the present disclosure feature a sensing device comprising a magnetic bias layer, a resonator, a spacer, and an environmental change receptor. The environmental change receptor is disposed on a surface of the resonator. The mass of the environmental change receptor is changed in response to a change in environment. The resonant frequency of the sensing device shifts in response to the mass change of the environmental change receptor.
Opening claim text (preview).
What is claimed is: 1. A sensing device, comprising: a magnetic bias layer having a first magnetic surface and an opposing second magnetic surface, the magnetic layer comprising a first electromagnetic material, a resonator having a first resonator major surface and an opposing second resonator major surface, the resonator comprising a second magnetic material, the second resonator major surface facing toward the first magnetic surface, a spacer disposed between the magnetic bias layer and the resonator, and an environmental change receptor disposed on the first resonator major surface, wherein the environmental change receptor is disposed proximate to an end of the resonator, wherein the mass of the environmental change receptor is changed in response to a change in environment, wherein resonant frequency of the sensing device shifts in response to the mass change of the environmental change receptor. 2. The sensing device of claim 1 , wherein the first resonator major surface has a predefined channel, wherein the environmental change receptor is disposed on at least part of the predefined channel. 3. The sensing device of claim 2 , wherein the predefined channel comprises a thin layer of material disposed on the first resonator major surface. 4. The sensing device of claim 1 , wherein the environmental change receptor is comprises a material sensitive to temperature, moisture, gas, or a combination thereof. 5. The sensing device of claim 1 , wherein at least part of the environmental change receptor is disposed proximate to an edge of the first resonator major surface. 6. The sensing device of claim 1 , wherein the mass of the environmental change receptor is increased. 7. The sensing device of claim 1 , wherein the mass of the environmental change receptor is reduced. 8. The sensing device of claim 1 , wherein the environmental change receptor includes a plurality of receptor elements. 9. The sensing device of claim 8 , wherein at least part of the plurality of receptor elements are disposed in a pattern. 10. The sensing device of claim 1 , further comprising: a housing, wherein the magnetic bias layer, the resonator, and the spacer are disposed in the housing. 11. The sensing device of claim 10 , wherein the housing comprising one or more openings to allow fluid distribution into the housing. 12. The sensing device of claim 10 , wherein the housing has a plurality of chambers. 13. The sensing device of claim 12 , wherein the magnetic bias layer and the resonator are disposed in a different chamber from each other. 14. A sensing device, comprising: a magnetic bias layer having a first magnetic surface and an opposing second magnetic surface, the magnetic layer comprising a first magnetic material, a resonator having a first resonator major surface and an opposing second resonator major surface, the resonator comprising a second magnetic material, the second resonator major surface facing toward the first magnetic surface, a spacer disposed between the magnetic bias layer and the resonator, an environmental change receptor disposed on the first resonator surface, and a housing with one or more openings, wherein the magnetic bias layer, the resonator, and the spacer are disposed in the housing, wherein the environmental change receptor is disposed proximate to an end of the resonator. 15. The sensing device of claim 14 , wherein the mass of the environmental change receptor is changed in response to a change in environment, and wherein resonant frequency of the sensing device shifts in response to the mass change of the environmental change receptor. 16. The sensing device of claim 14 , wherein the environmental change receptor comprises a plurality of receptor elements, wherein at least one of the plurality of receptor elements is disposed proximate to an end of the resonator. 17. A sensing device, comprising: a magnetic bias layer having a first magnetic surface and an opposing second magnetic surface, the magnetic layer comprising a first magnetic material, a resonator having a first resonator major surface and an opposing second resonator major surface, the resonator comprising a second magnetic material, the second resonator major surface facing toward the first magnetic surface, an environmental change receptor disposed on the first magnetic surface, and a housing comprising a supporting structure to support the resonator, wherein the magnetic bias layer and the resonator are disposed in the housing wherein the environmental change receptor is disposed proximate to an end of the resonator. 18. The sensing device of claim 17 , wherein the environmental change receptor comprises a plurality of receptor elements, wherein at least one of the plurality of receptor elements is disposed proximate to an end of the resonator.
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