IP Library › Granted Patent US 11,605,986
Granted Patent B2
US 11,605,986 · App. 16/765,264 · Granted Mar 14, 2023

Systems and methods for wireless power and data transfer for connectors

Inventors: Ramabhadran Sampath (Karnataka, IN); Vijay Tippanna Talikoti (Karnataka, IN); Gautham Ramamurthy (Karnataka, IN)
Assignee: Colder Products Company
H02J50/80F16L25/01F16L29/04H02J50/10
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Quick Facts
Patent No.
US 11,605,986
App. No.
16/765,264
Granted
Mar 14, 2023
Kind
B2
Abstract

A system and a method for wireless power and data transfer for connectors. The connector system is adapted for coupling two devices and for wirelessly transferring power and/or data from a first device to a second device. At the transmitting end, the system comprises of a power source, a self-resonating sinewave oscillator, a tuning circuit a, and a transmitter coil for processing and transmitting the power and/or data. At the receiving end, the system comprises a receiver coil, a proximity sensor, a signal modulator, a signal de-modulator, a bridge rectifier, a DC-DC regulator for processing and providing the power and/or date to a load.

Claims (43)

1. A coupling system, comprising:

a first signal generator configured to translate a first input to a first generated signal;

a second signal generator configured to translate a second input to a second generated signal;

a first baseband modulator configured to provide a first frequency channel signal based on the first generated signal;

a second baseband modulator configured to provide a second frequency channel signal based on the second generated signal;

a channel combiner configured to combine the first frequency channel signal and the second frequency channel signal into a combined signal;

a radio frequency carrier signal generator configured to provide a carrier signal;

a mixer configured to provide a radio frequency signal based on the combined signal and the carrier signal;

a first coupling comprising a first fluid tube and a first antenna configured to transmit the radio frequency signal; and

a second coupling that is releasably coupleable with the first coupling and that comprises a second fluid tube and a second antenna,

wherein, when the first and second couplings are coupled together, the first and second tubes are joined to define a pathway for transmitting fluid through the coupling system, and

wherein the first and second couplings are configured to use the first and second antennas to wirelessly transmit the radio frequency signal therebetween when the first and second couplings are coupled together.

2. The coupling system of claim 1 , wherein each of the first and second couplings include a respective fluid valve that blocks and seals the pathway when the first and second couplings are uncoupled.

3. The coupling system of claim 1 , wherein the first and second couplings are configured to wirelessly transmit multiple electrical data signals therebetween when the first and second couplings are coupled together.

4. The coupling system of claim 1 , wherein the first and second couplings are further configured to use the first and second antennas to wirelessly transmit electrical power therebetween when the first and second couplings are coupled together.

5. A coupling system, comprising:

a first signal generator configured to translate a first input to a first generated signal;

a second signal generator configured to translate a second input to a second generated signal;

a first baseband modulator configured to provide a first frequency channel signal based on the first generated signal;

a second baseband modulator configured to provide a second frequency channel signal based on the second generated signal;

a channel combiner configured to combine the first frequency channel signal and the second frequency channel signal into a combined signal;

a radio frequency carrier signal generator configured to provide a carrier signal;

a mixer configured to provide a radio frequency signal based on the combined signal and the carrier signal;

a first coupling comprising a first fluid tube and a first antenna configured to transmit the radio frequency signal; and

a second coupling that is releasably coupleable with the first coupling and that comprises a second fluid tube and a second antenna,

wherein, when the first and second couplings are coupled together, the first and second tubes are joined to define a pathway for transmitting fluid through the coupling system, and

wherein the first and second couplings are configured to use the first and second antennas and the radio frequency signal to wirelessly transmit electrical power therebetween when the first and second couplings are coupled together.

6. The coupling system of claim 5 , wherein each of the first and second couplings include a respective fluid valve that blocks and seals the pathway when the first and second couplings are uncoupled.

7. The coupling system of claim 5 , the first and second couplings are further configured to wirelessly transmit one or more electrical data signals therebetween when the first and second couplings are coupled together.

8. A coupling system, comprising:

a first signal generator configured to translate a first input to a first generated signal;

a second signal generator configured to translate a second input to a second generated signal;

a first baseband modulator configured to provide a first frequency channel signal based on the first generated signal;

a second baseband modulator configured to provide a second frequency channel signal based on the second generated signal;

a channel combiner configured to combine the first frequency channel signal and the second frequency channel signal into a combined signal;

a radio frequency carrier signal generator configured to provide a carrier signal;

a mixer configured to provide a radio frequency signal based on the combined signal and the carrier signal;

a first coupling comprising a first fluid tube and a first antenna configured to transmit the radio frequency signal; and

a second coupling that is releasably coupleable with the first coupling and that comprises a second fluid tube and a second antenna,

wherein, when the first and second couplings are coupled together, the first and second tubes are joined to define a pathway for transmitting fluid through the coupling system, and

wherein the first and second couplings are configured to use the first and second antennas to wirelessly transmit: (i) the radio frequency signal therebetween when the first and second couplings are coupled together and (ii) electrical power therebetween when the first and second couplings are coupled together.

9. The coupling system of claim 8 , wherein the first coupling further comprises a first valve and the second coupling further comprises a second valve, wherein the first and second valves open to define the pathway for transmitting the fluid when the first and second couplings are coupled together, and wherein each of the first and second valves block and seal the pathway when the first and second couplings are uncoupled.

10. The coupling system of claim 8 , wherein the first and second couplings are configured to wirelessly transmit multiple electrical data signals therebetween when the first and second couplings are coupled together.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 16, 2022
From: SAMPATH, RAMABHADRAN; TALIKOTI, VIJAY TIPPANNA; RAMAMURTHY, GAUTHAM
To: COLDER PRODUCTS COMPANY
Reel/Frame 061114/0852 →
Priority Claims (1)
IN 201741045525 · Dec 19, 2017 · national
Continuity (1)
Related Publication 20200373790A1 · Nov 26, 2020
Cited By (1)
US 12,341,355