IP Library Granted Patent US 10,821,848
Granted Patent B2
US 10,821,848 · App. 16/049,133 · Granted Nov 3, 2020

Charging station for tracked mobile object

Inventors: Julien Colafrancesco (Paris, FR); Simon Tchedikian (Issy-les-moulineaux, FR); Nicolas Schodet (Antony, FR); Stephane Jaubertou (Le Plessis-Robinsson, FR); Oliver Mandine (Le Plessis-Robinsson, FR); Lionel Marty (Issy-les-moulineaux, FR)
Assignee: 7hugs Labs SAS
B60L53/36B60L53/16G05D1/0011G05D1/0225B60L2270/40
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Quick Facts
Patent No.
US 10,821,848
App. No.
16/049,133
Granted
Nov 3, 2020
Kind
B2
Abstract

Methods and systems related to a charging station for a tracked mobile object are disclosed. In one embodiment, a charging station is provided. The charging station comprises a charging port for a remote control, a regulator that provides power from a power source to the charging port, a transceiver that transmits an outbound positioning signal to the remote control, and a non-transitory computer-readable medium storing instructions for a method. The method comprises at least one of generating the outbound positioning signal and receiving an inbound positioning signal.

Claims (81)

1. A charging station comprising:

a charging port for a remote control;

a regulator that provides power from a power source to the charging port;

a transceiver that transmits an outbound positioning signal to the remote control;

a processor that determines a position value for the charging station; and

a non-transitory computer-readable medium storing instructions for a method comprising at least one of: generating the outbound positioning signal; and receiving an inbound positioning signal;

wherein the transceiver communicates with a set of external positioning devices; and

wherein a position value for the remote control is determined using the position value for the charging station.

2. The charging station of claim 1 , wherein:

the method further comprises processing a controller input from the remote control;

the transceiver receives a controller input signal from the remote control;

the controller input signal includes the controller input; and

the controller input and the outbound positioning signal are wirelessly transmitted using the same wireless protocol.

3. The charging station of claim 1 , further comprising:

a user interface;

wherein the method further comprises generating a locate-assist signal in response to a command from the user interface;

wherein the transceiver transmits the locate-assist signal to the remote control; and

wherein the locate-assist signal and the outbound positioning signal are wirelessly transmitted using the same wireless protocol.

4. The charging station of claim 1 , wherein:

the charging port is also a data port for the remote control.

5. The charging station of claim 4 , wherein:

the charging port is a modified USB connector; and

the modified USB connector has a holding force that is less than a weight of the charging station.

6. The charging station of claim 1 , the method further comprising:

receiving an inbound auto-positioning signal from a dedicated positioning device;

determining a position value for the charging station;

wherein the inbound auto-positioning signal is received by the transceiver; and

wherein a position value for the remote control is determined using the position value for the charging station.

7. The charging station of claim 6 , further comprising:

a base for supporting the charging station;

wherein the transceiver is positioned to transmit the outbound positioning signal and receive the inbound auto-positioning signal at an angle above the base.

8. A charging station comprising:

a charging port configured to connect with a remote control;

a regulator for providing power from a power source to the charging port;

a transceiver that transmits and receives positioning signals to and from the remote control; and

a processor that determines a position value for the charging station;

wherein the transceiver communicates with a set of external positioning devices; and

wherein a position value for the remote control is determined using the position value for the charging station.

9. The charging station of claim 8 , further comprising:

a base for supporting the charging station;

wherein the transceiver is positioned to transmit and receive the positioning signals at an angle above the base.

10. The charging station of claim 8 , wherein:

the charging port is also a data port for the remote control.

11. The charging station of claim 10 , wherein:

the charging port is a modified USB connector; and

the modified USB connector has a holding force that is less than a weight of the charging station.

12. The charging station of claim 8 , further comprising:

a user interface;

wherein the transceiver transmits a locate-assist signal to the remote control in response to a command from the user interface; and

wherein the locate-assist signal and the positioning signals use the same wireless protocol and share the transceiver.

13. The charging station of claim 8 , wherein:

the transceiver receives controller input signal includes a controller input;

the processor processes the controller input; and

wherein the controller input and the positioning signals are wirelessly transmitted using the same wireless protocol.

14. A positioning system for generating a position value comprising:

a remote control for which the positioning system generates the position value;

a set of positioning devices that transmit a set of positioning signals to the remote control; and

a charging station comprising:

a charging port for the remote control;

a regulator that provides power from a power source to the charging port; and

a transceiver that transmits an outbound positioning signal to the remote control;

wherein the positioning system generates the positioning value using: (i) the set of positioning signals from the set of positioning devices; and (ii) the outbound positioning signal.

15. The positioning system of claim 14 , wherein:

the charging station further comprises a base for supporting the charging station;

the set of positioning devices are configured to be wall mounted; and

the transceiver is positioned to transmit the outbound positioning signal and communicate with the set of positioning devices at an angle above the base.

16. The positioning system of claim 14 , wherein:

the charging port is also a data port for the remote control.

17. The positioning system of claim 14 , wherein:

the charging port is a modified USB connector; and

the modified USB connector has a holding force that is less than a weight of the charging station.

18. The positioning system of claim 14 , wherein:

the charging station further comprises a user interface;

the charging station generates a locate-assist signal in response to a command from the user interface;

the transceiver transmits the locate-assist signal to the remote control; and

the locate-assist signal and the outbound positioning signal are wireless transmitted using the same wireless protocol.

19. The positioning system of claim 14 , wherein:

the transceiver receives a controller input signal from the remote control;

the controller input signal includes a controller input;

the charging station processes the controller input from the remote control; and

the controller input and the outbound positioning signal are wirelessly transmitted using the same wireless protocol.

Assignments (2)
CHANGE OF NAME Recorded Jul 2, 2025
From: 7HUGS LABS SAS
To: QORVO PARIS
Reel/Frame 071907/0914 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 31, 2018
From: COLAFRANCESCO, JULIEN; TCHEDIKIAN, SIMON; SCHODET, NICOLAS; JAUBERTOU, STEPHANE; MANDINE, OLIVER; MARTY, LIONEL
To: 7HUGS LABS SAS
Reel/Frame 046670/0400 →
Continuity (1)
Related Publication 20200031237A1 · Jan 30, 2020