IP Library Granted Patent US 12,506,296
Granted Patent B2
US 12,506,296 · App. 17/572,555 · Granted Dec 23, 2025

Electrical connector with magnetic ball and planar spring retainer

Inventors: Semyon Olegovich Orlov (Nizhniy Novgorod, RU); Ilya Viktorovich Osipov (Sarasota, FL)
Assignee: Cubios, Inc.
H01R13/6205H01R13/2407H01R13/639
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Quick Facts
Patent No.
US 12,506,296
App. No.
17/572,555
Granted
Dec 23, 2025
Kind
B2
Abstract

An electrical connector includes a connector body, including a cavity and a contact aperture providing an opening to the cavity through a connector surface. An electrical contact is situated in the cavity, which includes a magnetic ball, and a retainer that includes a planar spiral spring portion and a ring portion.

Claims (23)

1 . An electrical connector, comprising:

a connector body, including a cavity and defining a contact aperture that provides an opening to the cavity through a connector surface;

an electrical contact situated in the cavity, the electrical contact comprising:

a ball comprising magnetic material; and

a retainer that includes a planar spiral spring portion and a ring portion, wherein:

the retainer comprises an electrically-conductive material;

the ring portion has a ring diameter that is smaller than a diameter of the magnetic ball and is arranged to circumferentially contact the magnetic ball;

the planar spiral spring portion is arranged to cause the ring portion to press the magnetic ball into the cavity and away from the contact aperture in an absence of magnetic interaction between the magnetic ball and a second magnetic ball of a peer electrical contact; and

during interaction between the magnetic ball and the second magnetic ball, the planar spiral spring portion is strained and the magnetic ball protrudes partially from the connector body while maintaining electrical contact with the second magnetic ball.

2 . The electrical connector of claim 1 , wherein the retainer comprises a diamagnetic material.

3 . The electrical connector of claim 1 , wherein the retainer comprises a ferromagnetic material.

4 . The electrical connector of claim 1 , wherein in the presence of the interaction between the magnetic ball and the second magnetic ball, the magnetic ball rotates into magnetic alignment with the second magnetic ball.

5 . The electrical connector of claim 4 , wherein when the magnetic ball rotates into the magnetic alignment, the magnetic ball rubs against the ring portion.

6 . An electrical connection including two electrical connectors, each of which includes a connector body with a contact aperture, each connector body defining a cavity in which an electrical contact is situated, the electrical contact comprising a magnetic ball and a retainer comprising a current-conducting material;

wherein the retainer in each electrical connector is made as a spring shaped planar spiral and having a ring portion;

wherein the ring portion has an internal diameter that is smaller than a diameter of the magnetic ball;

wherein the retainer is arranged to bias the magnetic ball inward into the cavity and away from the contact aperture in an absence of interaction between the magnetic balls of the two electrical connectors; and

wherein in a presence of an interaction between the magnetic balls of the two electrical connectors, each spring portion is strained and the respective magnetic ball of each of the two connectors protrudes from its corresponding connector body while remaining in electrical contact with the other magnetic ball of the other electrical connector.

7 . The electrical connection of claim 6 , wherein each retainer comprises a diamagnetic material.

8 . The electrical connection of claim 6 , wherein each retainer comprises a ferromagnetic material.

9 . The electrical connection of claim 6 , wherein each ring portion is arranged to circumferentially contact its respective magnetic ball.

10 . The electrical connection of claim 6 , wherein in the presence of the interaction between the magnetic balls of the two electrical connectors, the magnetic balls rotate into magnetic alignment.

11 . The electrical connection of claim 10 , wherein when the magnetic balls rotate into magnetic alignment, each of the magnetic balls rubs against its respective ring portion.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 26, 2022
From: ORLOV, SEMYON OLEGOVICH; OSIPOV, ILYA VIKTOROVICH
To: CUBIOS, INC.
Reel/Frame 058779/0046 →
Priority Claims (1)
RU RU2019121376 · Jul 9, 2019 · national
Continuity (2)
Continuation In Part PCTRU2020050148 · Jul 3, 2020
Related Publication 20220131314A1 · Apr 28, 2022
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