IP Library › Granted Patent US 12,620,836
Granted Patent B2
US 12,620,836 · App. 17/766,320 · Granted May 5, 2026

Two-way secure interface for an optical wireless power system

Inventors: Ortal Alpert (Ness Ziona, IL); Yoav Biderman (Tel Aviv, IL); Ran Sagi (Tel Aviv, IL)
Assignee: Wi-Charge Ltd.
H02J50/30G06F21/44H02J50/40H02J50/80
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Quick Facts
Patent No.
US 12,620,836
App. No.
17/766,320
Granted
May 5, 2026
Kind
B2
Abstract

Methods and systems for enabling secure communication between a wireless charging system and at least one external device. The wireless charging system comprises at least one transmitter for supplying receiver(s) with wireless power. The external device may be used to control the wireless charging system by updating configuration files, instructing the transmitter as to which receiver to supply power to, and to supply billing information to enable receiver(s) to pay for wireless charging. The wireless charging system may provide the external device with data, such as receiver details, or images of the vicinity around the transmitter or receiver. The system only carries out the above if a key is presented to the wireless charging system. The key may be a physical key inserted into a component of the wireless charging system, such as into the transmitter, or a numeric key received by the wireless charging system.

Claims (74)

1 . A system for distributing power from a transmitter to at least one receiver, the transmitter comprising:

a laser adapted to emit a beam;

a beam deflection unit adapted to scan the beam in a vicinity of the transmitter in order to identify at least one receiver;

a transmitter control unit, configured to control the power of the laser beam and to control the direction of deflection of the laser beam by the beam deflection unit; and

at least one communication port, providing connection to an external control unit, for at least one of receiving and transmitting data;

wherein the at least one receiver comprises a photovoltaic cell adapted to convert the laser beam into electrical power,

and wherein, access is gained to at least one instruction comprising at least one of the following commands:

(i) modify a configuration file of the system;

(ii) modify a software code in the system;

(iii) modify a firmware code in the system; and

(iv) send any of the following data through the communication port between the transmitter and the external control unit:

(a) an image of the vicinity of the transmitter;

(b) an image of the vicinity of the at least one receiver; or

(c) identification of the at least one receiver,

the access being gained via the at least one communication port, after the transmitter control unit verifies that there is an indication of at least one of:

the presence of a hardware key associated with the transmitter, or

a numeric key received through the at least one communication port.

2 . The system according to claim 1 wherein the modification of configuration files, software code or firmware code are performed after causing the laser to turn off or to emit a beam below a predetermined power level.

3 . The system according to claim 2 wherein the numeric key is obtained through a signature of the configuration file, software code or firmware code.

4 . The system according to claim 3 , wherein the transmitter control unit is adapted to verify the signature, either prior to emitting the laser beam, or prior to modifying a configuration file, software code, or firmware code in the system.

5 . The system according to claim 3 wherein the transmitter control unit is adapted to verify the signature of the configuration file after modifying a configuration file, software code, or firmware code in the system.

6 . The system according to claim 1 , wherein the data further comprises at least one of billing information, information regarding charging time of the at least one receiver, information regarding charging power of the at least one receiver and payment details of the at least one receiver.

7 . The system according to claim 1 , wherein the hardware key creates a communication channel, such that in the absence of use of the key, the data is physically isolated from the communication port.

8 . The system according to claim 1 , wherein the configuration files comprise any of (i) software updates, (ii) firmware updates, (iii) updates regarding the calibration parameters of the beam emitter or of a power meter in the receiver.

9 . The system according to claim 1 , wherein the wireless power supply system is adapted to (i) generate an image of the field of view of the transmitter and (ii) identify receivers in the field of view of the transmitter, using either the laser to scan the field of view, or a scanning device, for identification of the direction of receiver devices.

10 . The system according to claim 1 , wherein the data comprises at least one of (i) the image of the field of view, or (ii) data determined from the identification.

11 . The system according to claim 1 , wherein after the modification of the configuration file, the control unit is adapted to perform a safety check of at least one configuration parameter of the system, and if the at least one configuration parameter is outside predetermined criteria, wireless power supply to the receiver device is not resumed.

12 . The system according to claim 1 , wherein the numeric key is an authentication code.

13 . A method for supplying wireless power from a transmitter device to at least one receiver, the method comprising:

(a) performing a scan of the vicinity of the transmitter device, to generate an image of the vicinity;

(b) identifying the location of at least one receiver within the vicinity;

(c) supplying the at least one identified receiver with energy; and

(d) ensuring the integrity of the system by requiring a transmitter control unit to execute sensitive instructions received from a control device external to the transmitter, following at least one of:

the connecting or presenting of a hardware key to the system, such that a communication channel is enabled; or

an indication of a digital authentication key,

wherein the sensitive instructions comprise at least one of the following commands:

(i) modification of at least one digital file of the transmitter device; and

(ii) transmission over a communication port connecting the transmitter device with the external device, at least one of:

(a) the image of the vicinity,

(b) information regarding the at least one identified receiver, or

(c) information regarding the energy supplied to the at least one identified receiver device.

14 . A wireless charging system for distributing power from a transmitter to at least one receiver, the transmitter comprising:

a laser adapted to emit a beam into a field of view;

a beam deflection unit capable of deflecting the laser beam into at least one direction in the field of view; and

a control unit, configured to control the power of the laser beam and to control the direction of deflection of the laser beam by the beam deflection unit; and

wherein the at least one receiver comprises a photovoltaic cell adapted to convert the laser beam into electrical power, and

wherein the wireless charging system further comprises:

a hardware key configured to be connected or presented to the wireless charging system, the hardware key adapted to enable at least one of:

(a) execution of at least one instruction received at the control unit, from a device external to the control unit; and

(b) a connection between the at least one device external to the transmitter and the control unit; and

wherein if the system is not presented with said hardware or digital key, then the system is precluded from (a) executing received instructions and (b) connecting with said device external to the control unit.

15 . A system according to claim 14 wherein the at least one instruction comprises a command to modify a software code in the system.

16 . A system according to claim 14 wherein the at least one instruction comprises a command to send an image of the vicinity of the transmitter, through the communication port.

17 . The system according to claim 14 wherein the at least one instruction comprises at least one of the commands to:

(i) modify a configuration file of the system

(ii) modify a software code in the system

(iii) modify a firmware code in the system

(iv) send any of the following data through the communication port:

(a) an image of the vicinity of the transmitter;

(b) an image of the vicinity of the at least one receiver; or

(c) identification of the at least one receiver.

18 . The system according to claim 14 wherein the connection enables the control unit to execute at least one of the commands to:

(i) modify a configuration file of the system

(ii) modify a software code in the system

(iii) modify a firmware code in the system

(iv) send any of the following data through the communication port:

(a) an image of the vicinity of the transmitter;

(b) an image of the vicinity of the at least one receiver; or

(c) identification of the at least one receiver.

19 . The system according to claim 17 , wherein the modification of configuration files, software code and firmware code are performed after the laser is turned off or configured to emit a beam below a predetermined power level.

20 . The system according to claim 17 , wherein the data further comprises at least one of billing information, information regarding charging time of the at least one receiver, information regarding charging power of the at least one receiver and payment details of the at least one receiver.

21 . The system according to claim 14 , wherein the hardware key creates a communication channel, such that in the absence of use of the key, the transmitter is physically isolated and does not receive the instructions.

22 . The system according to claim 14 , wherein the wireless power supply system is adapted to (i) generate an image of the field of view of the transmitter and (ii) identify receivers in the field of view of the transmitter, using either the laser to scan the field of view, or a scanning device, for identification of the direction of receiver devices.

23 . The system according to claim 22 , wherein the data comprises at least one of (i) the image of the field of view, or (ii) data determined from the identification.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 21, 2022
From: ALPERT, ORTAL; BIDERMAN, YOAV; SAGI, RAN
To: WI-CHARGE LTD.
Reel/Frame 062176/0176 →
Continuity (2)
Provisional Application 62910581 · Oct 4, 2019
Related Publication 20240055903A1 · Feb 15, 2024
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