IP Library › Granted Patent US 10,036,478
Granted Patent B2
US 10,036,478 · App. 15/194,783 · Granted Jul 31, 2018

Electronic device, wearable device, pressure regulator valve and method for manufacturing pressure regulator valve

Inventors: Hiroshi Katsuda (Kodaira, JP); Hiroki Nishiyama (Fussa, JP); Akihisa Ohmura (Hachioji, JP); Akira Suzuki (Fuchu, JP)
Assignee: CASIO COMPUTER CO., LTD.
F16K15/147F16K17/02F16K99/0015H04R1/04H04R1/086F16K2099/0078F16K2099/0082H04R2499/11
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Quick Facts
Patent No.
US 10,036,478
App. No.
15/194,783
Granted
Jul 31, 2018
Kind
B2
Abstract

An electronic device includes a housing and an internal pressure regulator valve. The internal pressure regulator valve includes a valve body of flexible material. The valve body has a valve hole and a hollow. The hollow is continuous with the valve hole and opens into the housing. Through the valve hole, gas is released to outside.

Claims (65)

1. An electronic device comprising:

a housing; and

an internal pressure regulator valve comprising:

a valve body of flexible material, wherein the valve body includes:

a valve hole through which gas is released to outside; and

a hollow which is continuous with the valve hole and opens into the housing;

a valve case configured to house the valve body; and

a waterproof ring through which the valve case is fitted into a fitting hole formed in the housing.

2. The electronic device according to claim 1 ,

wherein the valve body comprises a projection which projects to the outside, and

wherein the projection includes an outer end of the valve hole.

3. The electronic device according to claim 1 ,

wherein the valve body is configured such that, when an internal pressure of the housing is higher than an external pressure, the internal pressure generates a spreading force that elastically deforms the valve body to spread the hollow to thereby open the valve hole to release the gas to the outside.

4. The electronic device according to claim 3 ,

wherein the valve body is configured such that, when (i) the internal pressure of the housing is higher than the external pressure and (ii) a difference between the internal pressure and the external pressure is equal to or larger than a first predetermined difference, the internal pressure generates the spreading force that elastically deforms the valve body to spread the hollow to thereby open the valve hole to release the gas to the outside.

5. The electronic device according to claim 2 ,

wherein the valve body is configured such that, when an internal pressure of the housing is lower than an external pressure, the external pressure generates a tightening force that elastically deforms the projection to close the outer end of the valve hole to thereby block liquid from entering the housing from the outside.

6. The electronic device according to claim 5 ,

wherein the valve body is configured such that, when (i) the internal pressure of the housing is lower than the external pressure and (ii) a difference between the internal pressure and the external pressure is equal to or larger than a predetermined difference, the external pressure generates the tightening force that elastically deforms the projection to close the outer end of the valve hole to thereby block the liquid from entering the housing from the outside.

7. The electronic device according to claim 2 ,

wherein the valve body is configured such that, when (i) an internal pressure of the housing is higher than an external pressure and (ii) a difference between the internal pressure and the external pressure is equal to or larger than a first predetermined difference, the internal pressure generates a spreading force that elastically deforms the valve body to spread the hollow to thereby open the valve hole to release the gas to the outside, and

wherein the valve body is configured such that, when (i) the internal pressure of the housing is lower than the external pressure and (ii) the difference between the internal pressure and the external pressure is equal to or larger than a second predetermined difference, the external pressure generates a tightening force that elastically deforms the projection to close the outer end of the valve hole to thereby block liquid from entering the housing from the outside.

8. The electronic device according to claim 1 , further comprising a waterproof microphone comprising a waterproof vibration film,

wherein the valve body is configured such that, when an internal pressure of the housing is higher than an external pressure, the internal pressure generates a spreading force that elastically deforms the valve body to spread the hollow to thereby open the valve hole to release the gas to the outside to decrease deformation of the waterproof vibration film by the internal pressure.

9. The electronic device according to claim 1 ,

wherein the internal pressure regulator valve further comprises a fastener configured to prevent the valve case from falling from the fitting hole, and

wherein the fastener is engaged with a groove formed in an outer circumference of the valve case.

10. A wearable device comprising:

a housing;

an electronic circuit arranged in the housing;

a battery arranged in the housing;

a wireless communication member arranged in the housing, wherein operation of one or more of the electronic circuit, the battery and the wireless communication member increases an internal pressure of the housing;

a waterproof microphone provided with a waterproof vibration film, wherein the waterproof microphone is arranged in the housing; and

an internal pressure regulator valve comprising:

a valve body of flexible material, wherein the valve body includes:

a valve hole through which gas is released to outside; and

a hollow which is continuous with the valve hole and opens into the housing, wherein the internal pressure generates a spreading force that elastically deforms the valve body to spread the hollow to thereby open the valve hole to release the gas to the outside to decrease deformation of the waterproof vibration film by the internal pressure;

a valve case configured to house the valve body; and

a waterproof ring through which the valve case is fitted into a fitting hole formed in the housing.

11. A pressure regulator valve comprising:

a valve body of flexible material, wherein the valve body includes:

a valve hole through which gas is released to outside of a housing; and

a hollow which is continuous with the valve hole and opens into the housing;

a valve case configured to house the valve body; and

a waterproof ring through which the valve case is fitted into a fitting hole formed in the housing.

12. The pressure regulator valve according to claim 11 ,

wherein the valve body comprises a projection which projects to the outside, and

wherein the projection includes an outer end of the valve hole.

13. The pressure regulator valve according to claim 12 ,

wherein the valve body is configured such that, when (i) an internal pressure of the housing is higher than an external pressure and (ii) a difference between the internal pressure and the external pressure is equal to or larger than a first predetermined difference, the internal pressure generates a spreading force that elastically deforms the valve body to spread the hollow to thereby open the valve hole to release the gas to the outside, and

wherein the valve body is configured such that, when (i) the internal pressure of the housing is lower than the external pressure and (ii) the difference between the internal pressure and the external pressure is equal to or larger than a second predetermined difference, the external pressure generates a tightening force that elastically deforms the projection to close the outer end of the valve hole to thereby block liquid from entering the housing from the outside.

14. A method for manufacturing a pressure regulator valve, comprising:

molding a valve body having a hollow at a center part from flexible material, the hollow opening to one side;

introducing a needle-shaped member into the center part of the valve body along the hollow; and

performing a hole forming process with the needle-shaped member on the center part of the valve body, thereby forming a valve hole which is continuous with the hollow.

15. An electronic device comprising:

a housing; and

an internal pressure regulator valve comprising:

a valve body of flexible material, wherein the valve body includes a valve hole and is configured such that, when (i) an internal pressure of the housing is higher than an external pressure and (ii) a difference between the internal pressure and the external pressure is equal to or larger than a first predetermined difference, the internal pressure generates a spreading force that elastically deforms the valve body to thereby open the valve hole to release gas to an outside of the housing;

a valve case configured to house the valve body; and

a waterproof ring through which the valve case is fitted into a fitting hole formed in the housing.

16. The electronic device according to claim 15 ,

wherein the valve body is configured such that, when the internal pressure of the housing is lower than the external pressure, the external pressure generates a tightening force that elastically deforms the valve body to close the valve hole to thereby block liquid from entering the housing from the outside.

17. The electronic device according to claim 16 ,

wherein the valve body is configured such that, when (i) the internal pressure of the housing is lower than the external pressure and (ii) the difference between the internal pressure and the external pressure is equal to or larger than a second predetermined difference, the external pressure generates the tightening force that elastically deforms the valve body to close the valve hole to thereby block the liquid from entering the housing from the outside.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 28, 2016
From: KATSUDA, HIROSHI; NISHIYAMA, HIROKI; OHMURA, AKIHISA; SUZUKI, AKIRA
To: CASIO COMPUTER CO., LTD.
Reel/Frame 039027/0103 →
Priority Claims (2)
JP 2015-134195 · Jul 3, 2015 · national
JP 2016-108206 · May 31, 2016 · national
Continuity (1)
Related Publication 20170002939A1 · Jan 5, 2017
Cited By (1)
US 12,445,758