IP Library Granted Patent US 10,042,053
Granted Patent B2
US 10,042,053 · App. 15/246,182 · Granted Aug 7, 2018

Ultrasonic charge port detector

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Quick Facts
Patent No.
US 10,042,053
App. No.
15/246,182
Granted
Aug 7, 2018
Kind
B2
Abstract

A charge port detector system may include a charger arm, a set of ultrasonic sensors carried by the charger arm, and one or more physical processors. The set of ultrasonic sensors may receive ultrasonic signals from one or more ultrasonic emitters of a charging target. Times at which the set of ultrasonic sensors received the ultrasonic signals may be obtained. The charger arm may be moved based on the times at which the set of ultrasonic sensors received the ultrasonic signals. The movement of the charger arm may align the charger arm to a charge port of the charging target.

Claims (57)

1. A charge port detector system comprising:

a charger arm;

a set of ultrasonic sensors carried by the charger arm, the set of ultrasonic sensors configured to receive ultrasonic signals from an ultrasonic emitter of a charging target, the set of ultrasonic sensors including a first ultrasonic sensor, a second ultrasonic sensor, and a third ultrasonic sensor, wherein the first, second, and third ultrasonic sensors are separated from each other by a distance; and

one or more physical processors configured by machine-readable instructions to:

obtain times at which the set of ultrasonic sensors received the ultrasonic signals; and

effectuate the movement of the charger arm based on the times at which the set of ultrasonic sensors received the ultrasonic signals, the movement of the charger arm aligning the charger arm to a charge port of the charging target.

2. The charge port detector system of claim 1 , wherein the set of ultrasonic sensors is arranged in an L configuration.

3. The charge port detector system of claim 1 , wherein the set of ultrasonic sensors generates analog response signals in response to receiving the ultrasonic signals.

4. The charge port detector system of claim 3 , further comprising an analog-to-digital converter configured to convert the analog response signals to digital response signals.

5. The charge port detector system of claim 4 , wherein the analog-to-digital converter includes a Schmitt trigger.

6. The charge port detector system of claim 1 , wherein effectuating the movement of the charger arm based on the times at which the set of ultrasonic sensors received the ultrasonic signals includes:

comparing the times at which the set of ultrasonic sensors received the ultrasonic signals;

determining which of the first ultrasonic sensor, the second ultrasonic sensor, and the third ultrasonic first received the ultrasonic signals; and

effectuating the movement of the charger arm in a direction of at least one of the first ultrasonic sensor, the second ultrasonic sensor, and the third ultrasonic sensor that first received the ultrasonic signals.

7. The charge port detector system of claim 1 , wherein effectuating the movement of the charger arm based on the times at which the set of ultrasonic sensors received the ultrasonic signals includes:

effectuating the movement of the charger arm along a lateral axis based on the times at which the first ultrasonic sensor and the second ultrasonic sensor received the ultrasonic signals; and

effectuating the movement of the charger arm along a vertical axis based on the times at which the first ultrasonic sensor and the third ultrasonic sensor received the ultrasonic signals.

8. The charge port detector system of claim 1 , wherein effectuating the movement of the charger arm based on the times at which the set of ultrasonic sensors received the ultrasonic signals includes:

determining a distance to the ultrasonic emitter based on the times at which the set of ultrasonic sensors received the ultrasonic signals; and

effectuating the movement of the charger arm based on the distance.

9. The charge port detector system of claim 1 , wherein effectuating the movement of the charger arm based on the times at which the set of ultrasonic sensors received the ultrasonic signals includes:

determining a relative location of the charge port relative to the charger arm; and

effectuating the movement of the charger arm based on the relative location.

10. The charge port detector system of claim 1 , wherein:

the one or more physical processors are further configured by machine-readable instructions to effectuate the movement of the charger arm along a longitudinal axis based on the times at which the set of ultrasonic sensors received the ultrasonic signals, the movement of the charger arm along the longitudinal axis mating the charger arm with the charge port of the charging target.

11. The charge port detector system of claim 1 , wherein the charging target includes a vehicle.

12. A charge port detection method comprising:

receiving ultrasonic signals from an ultrasonic emitter of a charging target, the ultrasonic signals received by a set of ultrasonic sensors carried by a charger arm, the set of ultrasonic sensors including a first ultrasonic sensor, a second ultrasonic sensor, and a third ultrasonic sensor, wherein the first, second, and third ultrasonic sensors are separated from each other by a distance;

obtaining times at which the set of ultrasonic sensors received the ultrasonic signals; and

effectuating the movement of the charger arm based on the times at which the set of ultrasonic sensors received the ultrasonic signals, the movement of the charger arm aligning the charger arm to a charge port of the charging target.

13. The method of claim 12 , wherein effectuating the movement of the charger arm based on the times at which the set of ultrasonic sensors received the ultrasonic signals includes:

comparing the times at which the set of ultrasonic sensors received the ultrasonic signals;

determining which of the first ultrasonic sensor, the second ultrasonic sensor, and the third ultrasonic first received the ultrasonic signals; and

effectuating the movement of the charger arm in a direction of at least one of the first ultrasonic sensor, the second ultrasonic sensor, and the third ultrasonic sensor that first received the ultrasonic signals.

14. The method of claim 12 , wherein effectuating the movement of the charger arm based on the times at which the set of ultrasonic sensors received the ultrasonic signals includes:

effectuating the movement of the charger arm along a lateral axis based on the times at which the first ultrasonic sensor and the second ultrasonic sensor received the ultrasonic signals; and

effectuating the movement of the charger arm along a vertical axis based on the times at which the first ultrasonic sensor and the third ultrasonic sensor received the ultrasonic signals.

15. The method of claim 12 , wherein effectuating the movement of the charger arm based on the times at which the set of ultrasonic sensors received the ultrasonic signals includes:

determining a distance to the ultrasonic emitter based on the times at which the set of ultrasonic sensors received the ultrasonic signals; and

effectuating the movement of the charger arm based on the distance.

16. The method of claim 12 , wherein effectuating the movement of the charger arm based on the times at which the set of ultrasonic sensors received the ultrasonic signals includes:

determining a relative location of the charge port relative to the charger arm; and

effectuating the movement of the charger arm based on the relative location.

17. The method of claim 12 , further comprising:

effectuating the movement of the charger arm along a longitudinal axis based on the times at which the set of ultrasonic sensors received the ultrasonic signals, the movement of the charger arm along the longitudinal axis mating the charger arm with the charge port of the charging target.

18. The method of claim 12 , wherein the charging target includes a vehicle.

19. A vehicle charge port detector system comprising:

an ultrasonic emitter carried by a vehicle;

a charge port carried by the vehicle;

a charger arm;

a set of ultrasonic sensors carried by the charger arm, the set of ultrasonic sensors configured to receive ultrasonic signals from the ultrasonic emitter of the vehicle, the set of ultrasonic sensors including a first ultrasonic sensor, a second ultrasonic sensor, and a third ultrasonic sensor, wherein the first, second, and third ultrasonic sensors are separated from each other by a distance; and

one or more physical processors configured by machine-readable instructions to:

obtain times at which the set of ultrasonic sensors received the ultrasonic signals; and

effectuate the movement of the charger arm based on the times at which the set of ultrasonic sensors received the ultrasonic signals, the movement of the charger arm aligning the charger arm to the charge port of the vehicle.

20. The vehicle charge port detector system of claim 19 , wherein effectuating the movement of the charger arm based on the times at which the set of ultrasonic sensors received the ultrasonic signals includes:

effectuating the movement of the charger arm along a lateral axis based on the times at which the first ultrasonic sensor and the second ultrasonic sensor received the ultrasonic signals; and

effectuating the movement of the charger arm along a vertical axis based on the times at which the first ultrasonic sensor and the third ultrasonic sensor received the ultrasonic signals.

Assignments (10)
SECURITY INTEREST Recorded Sep 25, 2024
From: FARADAY&FUTURE, INC.
To: SENYUN INTERNATIONAL LTD.
Reel/Frame 069048/0676 →
SECURITY INTEREST Recorded Aug 15, 2022
From: FARADAY&FUTURE INC.
To: FF SIMPLICY VENTURES LLC
Reel/Frame 061176/0756 →
RELEASE OF SECURITY INTEREST RECORDED AT REEL/FRAME 050234/0069 Recorded Jun 8, 2022
From: ARES CAPITAL CORPORATION, AS SUCCESSOR COLLATERAL AGENT
To: CITY OF SKY LIMITED; EAGLE PROP HOLDCO LLC; FARADAY & FUTURE INC.; FARADAY FUTURE LLC; FF EQUIPMENT LLC; FF HONG KONG HOLDING LIMITED; FF INC.; FF MANUFACTURING LLC; ROBIN PROP HOLDCO LLC; SMART KING LTD.; SMART TECHNOLOGY HOLDINGS LTD.; FARADAY SPE, LLC
Reel/Frame 060314/0263 →
ACKNOWLEDGEMENT OF SUCCESSOR COLLATERAL AGENT UNDER INTELLECTUAL PROPERTY SECURITY AGREEMENT Recorded Jul 29, 2021
From: BIRCH LAKE FUND MANAGEMENT, LP, AS RETIRING AGENT
To: ARES CAPITAL CORPORATION, AS SUCCESSOR AGENT
Reel/Frame 057019/0140 →
SECURITY INTEREST Recorded Oct 14, 2020
From: ROYOD LLC
To: BIRCH LAKE FUND MANAGEMENT, LP
Reel/Frame 054076/0157 →
ACKNOWLEDGEMENT OF SUCCESSOR COLLATERAL AGENT UNDER INTELLECTUAL PROPERTY SECURITY AGREEMENT Recorded Mar 5, 2020
From: BIRCH LAKE FUND MANAGEMENT, LP, AS RETIRING AGENT
To: ROYOD LLC, AS SUCCESSOR AGENT
Reel/Frame 052102/0452 →
SECURITY INTEREST Recorded May 1, 2019
From: CITY OF SKY LIMITED; EAGLE PROP HOLDCO LLC; FARADAY FUTURE LLC; FE EQUIPMENT LLC; FF HONG KONG HOLDING LIMITED; FF INC.; FF MANUFACTURING LLC; ROBIN PROP HOLDCO LLC; SMART KING LTD.; SMART TECHNOLOGY HOLDINGS LTD.; FARADAY SPE, LLC; FARADAY & FUTURE INC.
To: BIRCH LAKE FUND MANAGEMENT, LP
Reel/Frame 050234/0069 →
RELEASE OF SECURITY INTEREST Recorded Jan 14, 2019
From: SEASON SMART LIMITED
To: FARADAY&FUTURE INC.
Reel/Frame 048069/0704 →
SECURITY INTEREST Recorded Dec 28, 2017
From: FARADAY&FUTURE INC.
To: SEASON SMART LIMITED
Reel/Frame 044969/0023 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 24, 2016
From: SLINDEE, RICHARD EDWARD; PEDERSON, MITCHELL PAUL
To: FARADAY&FUTURE INC.
Reel/Frame 039530/0939 →