IP Library › Granted Patent US 10,724,572
Granted Patent B2
US 10,724,572 · App. 15/684,075 · Granted Jul 28, 2020

Electronically-releasable suction cup assembly secured to an appliance

Inventor: Todd H. Becker (Ridgefield, CT)
F16B47/00E05B73/00
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Quick Facts
Patent No.
US 10,724,572
App. No.
15/684,075
Granted
Jul 28, 2020
Kind
B2
Abstract

An electronically-releasable suction cup assembly is designed to releasably secure an object to a surface. The suction cup assembly includes a suction cup secured to the object. The suction cup has a cavity and is configured to be releasably secured to the surface. The suction cup assembly further includes a gas generating cell coupled to the suction cup. The gas generating cell is configured to selectively eject fluid into the cavity of the suction cup to release the suction cup from the surface.

Claims (18)

1. An electronically-releasable suction cup assembly to releasably secure an object to a surface, the suction cup assembly comprising:

a suction cup secured to the object, the suction cup having a cavity and being configured to be releasably secured to the surface, the suction cup including a center head that is secured to the object and a base that defines the cavity, the center head having an opening in fluid communication with the cavity, the base being configured to be releasably secured to the surface by forming a vacuum with the surface; and

a button-sized gas generating cell coupled to the suction cup, the gas generating cell including at least one ejection port configured to selectively eject fluid into the cavity of the suction cup to release the suction cup from the surface, the gas generating cell being positioned within the opening and contained entirely within the suction cup.

2. The suction cup assembly of claim 1 , wherein the base of the suction cup is fabricated from elastic, flexible material, and includes a flat or curved surface.

3. The suction cup assembly of claim 1 , wherein the gas generating cell is connected to an electronic circuit to control the ejection of fluid from at least one ejection port of the gas generating cell.

4. The suction cup assembly of claim 3 , wherein the electronic circuit includes a resistor and a switch, the switch being configured to take the resistor in and out of contact with positive and negative ends of the gas generating cell.

5. The suction cup assembly of claim 4 , wherein the gas generating cell is inserted into the opening of the center head of the suction cup to enable electrical contact on both sides of the gas generating cell to the resistor placed in parallel to the gas generating cell.

6. The suction cup assembly of claim 4 , wherein the resistor is configured with a resistance value to cause the gas generating cell to eject sufficient hydrogen from the at least one ejection port to alleviate or otherwise relieve a vacuum in the cavity of the suction cup to release the base of the suction cup from the surface.

7. The suction cup assembly of claim 4 , wherein the switch controls when the circuit is closed and the gas generating cell is on to eject fluid from the at least one ejection port.

8. A method of releasably securing an object to a surface, the method comprising:

securing a suction cup of an electronically-releasable suction cup assembly to the object, the suction cup having a cavity and being configured to be releasably secured to the surface, the suction cup including a center head that is secured to the object and a base that defines the cavity, the center head having an opening in fluid communication with the cavity, the base being configured to be releasably secured to the surface by forming a vacuum with the surface; and

selectively ejecting gas from a button-sized gas generating cell coupled to the suction cup, the gas generating cell including at least one ejection port configured to selectively eject fluid into the cavity of the suction cup to release the suction cup from the surface, the gas generating cell being positioned within the opening and contained entirely within the suction cup.

9. The method of claim 8 , wherein the base of the suction cup is fabricated from elastic, flexible material, and includes a flat or curved surface.

10. The method of claim 8 , further comprising connecting the gas generating cell to an electronic circuit to control the ejection of fluid from the at least one ejection port.

11. The method of claim 10 , wherein the electronic circuit includes a resistor and a switch, the switch being configured to take the resistor in and out of contact with positive and negative ends of the gas generating cell.

12. The method of claim 11 , wherein the gas generating cell is inserted into the opening of the center head of the suction cup to enable electrical contact on both sides of the gas generating cell to the resistor placed in parallel to the gas generating cell.

13. The method of claim 11 , wherein the resistor is configured with a resistance value to cause the gas generating cell to eject sufficient hydrogen from the at least one ejection port to alleviate or otherwise relieve a vacuum in the cavity of the suction cup to release the base of the suction cup from the surface.

14. The method of claim 11 , wherein the switch controls when the circuit is closed and the gas generating cell is on to eject fluid from the at least one ejection port.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 19, 2023
From: BECKER, TODD H.
To: TWO TON TECHNOLOGY, LLC
Reel/Frame 064343/0397 →
Continuity (1)
Related Publication 20190063488A1 · Feb 28, 2019
Cited By (2)
US 12,305,692 US 12,655,660