IP Library › Granted Patent US 10,495,702
Granted Patent B2
US 10,495,702 · App. 15/705,579 · Granted Dec 3, 2019

Sensor

Inventors: Yoshihiro Higashi (Ishikawa, JP); Michiko Hara (Kanagawa, JP); Tomohiko Nagata (Kanagawa, JP); Shiori Kaji (Kanagawa, JP); Yoshihiko Fuji (Kanagawa, JP); Akiko Yuzawa (Kanagawa, JP); Kenji Otsu (Kanagawa, JP); Kazuaki Okamoto (Kanagawa, JP); Shotaro Baba (Kanagawa, JP)
Assignee: Kabushiki Kaisha Toshiba
G01R33/093
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Quick Facts
Patent No.
US 10,495,702
App. No.
15/705,579
Granted
Dec 3, 2019
Kind
B2
Abstract

According to one embodiment, a sensor includes a first film, a first sensor portion, a driving portion, and a processor. The first sensor portion is provided at the first film. The first sensor portion includes a first magnetic layer, a second magnetic layer, and a first intermediate layer. The second magnetic layer is provided between the first film and the first magnetic layer. The first intermediate layer is provided between the first magnetic layer and the second magnetic layer. The driving portion causes the first film to deform at a first frequency. The processor outputs a third signal based on a first signal and a second signal. The first signal relates to the first frequency. The second signal is output from the first sensor portion.

Claims (43)

1. A sensor, comprising:

a first film;

a first sensor portion provided at the first film, the first sensor portion including

a first magnetic layer,

a second magnetic layer provided between the first film and the first magnetic layer, and

a first intermediate layer provided between the first magnetic layer and the second magnetic layer;

a driving portion configured to cause the first film to deform at a first frequency; and

a processor configured to output a third signal based on a first signal and a second signal, the first signal being supplied by the processor and relating to the first frequency, the second signal being output from the first sensor portion,

wherein

the second signal is a signal modulated by the deforming of the first film, and

the processor outputs the third signal by demodulating the second signal.

2. The sensor according to claim 1 , wherein the driving portion applies stress to the first film.

3. The sensor according to claim 2 , wherein the driving portion emits a pressure wave of the first frequency toward the first film.

4. The sensor according to claim 3 , wherein the first film is provided between the driving portion and the first sensor portion.

5. The sensor according to claim 2 , further comprising a support portion supporting the first film,

the support portion being fixed to the driving portion,

the driving portion being configured to vibrate at the first frequency.

6. The sensor according to claim 1 , wherein

the processor supplies the first signal to the driving portion, and

the driving portion causes the first film to deform based on the first signal.

7. The sensor according to claim 1 , wherein the processor acquires the first signal from the driving portion.

8. The sensor according to claim 1 , further comprising a first sensor conductive layer and a second sensor conductive layer,

the first sensor portion being provided between the first sensor conductive layer and the first film,

the second sensor conductive layer being provided between the first sensor portion and the first film.

9. The sensor according to claim 1 , wherein the deforming of the first film includes a component in a first direction, the first direction being from the first magnetic layer toward the second magnetic layer.

10. The sensor according to claim 1 , wherein the first frequency is not less than 1 kilohertz and not more than 100 kilohertz.

11. The sensor according to claim 1 , wherein the first sensor portion is fixed to the first film.

12. The sensor according to claim 1 , second magnetic layer is fixed to the first film.

13. A sensor, comprising:

a first film;

a first sensor portion provided at the first film, the first sensor portion including

a first magnetic layer,

a second magnetic layer provided between the first film and the first magnetic layer, and

a first intermediate layer provided between the first magnetic layer and the second magnetic layer;

a driving portion configured to cause the first film to deform at a first frequency; and

a processor configured to output a third signal based on a first signal and a second signal, the first signal being supplied by the processor and relating to the first frequency, the second signal being output from the first sensor portion,

wherein

a magnetic field vibrating at a second frequency is applied to the first sensor portion, and

the third signal includes a component of the second frequency.

14. The sensor according to claim 13 , wherein the second frequency is lower than the first frequency.

15. The sensor according to claim 13 , wherein the second frequency is not less than 1 hertz and not more than 1000 hertz.

16. The sensor according to claim 13 , wherein the first sensor portion is fixed to the first film.

17. The sensor according to claim 13 , second magnetic layer is fixed to the first film.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 18, 2017
From: HIGASHI, YOSHIHIRO; HARA, MICHIKO; NAGATA, TOMOHIKO; KAJI, SHIORI; FUJI, YOSHIHIKO; YUZAWA, AKIKO; OTSU, KENJI; OKAMOTO, KAZUAKI; BABA, SHOTARO
To: KABUSHIKI KAISHA TOSHIBA
Reel/Frame 043890/0733 →
Priority Claims (1)
JP 2017-026023 · Feb 15, 2017 · national
Continuity (1)
Related Publication 20180231621A1 · Aug 16, 2018