IP Library Granted Patent US 10,700,538
Granted Patent B2
US 10,700,538 · App. 15/830,347 · Granted Jun 30, 2020

Portable device and method of supplying wireless power to a portable device in a sterile environment

Inventor: David John Reed (Sheffield, GB)
Assignee: PELETON SURGICAL, LLC
H02J7/0044A61B17/1628A61B50/30A61B50/33A61B50/39H02J7/0031H02J7/025H02J50/10A61B17/1622A61B2017/0046A61B2017/00398A61B2017/00429A61B2017/00734A61B2050/0065A61B2090/0813H01M10/4257H02J7/00H02J50/12
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Quick Facts
Patent No.
US 10,700,538
App. No.
15/830,347
Granted
Jun 30, 2020
Kind
B2
Abstract

A portable device and method of supplying power to the portable device may provide a sterile environment that may protect the health and safety of patients on whom the device is employed. The portable device may be charged inside of the sterile environment. The portable device may be charged using at least one chargeable battery that may be arranged internal and/or external to a portion of the portable device, or internal and/or external to the portable device. A power supply may be connected to the at least one chargeable battery and power the portable device for use. The portable device may be charged up to 100% and/or or fully charged prior to opening the sterile environment.

Claims (36)

1. A method for supplying power to a portable device, the method comprising:

sealing the portable device in a sterile environment using a first tray, a first microbial barrier, a second tray, and a second microbial barrier, wherein the first tray is configured to receive and secure the portable device, wherein the first microbial barrier is arranged to seal the first tray and maintain a sterile environment for the portable device, wherein the second tray is configured to receive and secure the first tray in the second tray, and wherein the second microbial barrier is arranged to seal the second tray and maintain a sterile environment for the portable device; and

charging the portable device in the sterile environment, wherein a power supply supplies power to at least one chargeable battery contained in the portable device via a wireless charging station located external to the portable device having a transmitter operable to transmit power wirelessly to a receiver secured in the portable device, and wherein the at least one chargeable battery is operable to power the portable device.

2. The method for supplying power to the portable device powered by the at least one chargeable battery of claim 1 , further comprising:

inducing a magnetic field using the transmitter, wherein the transmitter is a transmitter coil operable to induce a magnetic field using an AC current.

3. The method for supplying power to the portable device powered by the at least one chargeable battery of claim 2 , further comprising:

securing the receiver in a portion of the portable device, wherein the receiver is a receiver coil operable to receive the AC current.

4. The method for supplying power to the portable device powered by the at least one chargeable battery of claim 3 , further comprising:

converting the AC current to a DC current via the receiver coil.

5. The method for supplying power to the portable device powered by the at least one chargeable battery of claim 4 , further comprising:

delivering the DC current to the at least one chargeable battery via a first relay cable secured within the second tray and a second relay cable secured within the first tray, wherein the second relay cable is connected to the charging port at a first end and connected to the first relay cable at a second end opposite the first end and the first relay cable is connected to the receiver.

6. The method for supplying power to the portable device powered by the at least one chargeable battery of claim 1 , further comprising:

maintaining the at least one chargeable battery via a charging system comprising a chip or a PCB operable to control a charge current to the at least one chargeable battery.

7. The method for supplying power to the portable device powered by the at least one chargeable battery of claim 6 , further comprising:

disconnecting the at least one chargeable battery from the power supply via a fuse when a fuse triggering event occurs.

8. The method for supplying power to the portable device powered by the at least one chargeable battery of claim 7 , wherein the fuse triggering event occurs when the at least one chargeable battery receives a power greater than a power threshold.

9. The method for supplying power to the portable device powered by the at least one chargeable battery of claim 8 , wherein the fuse is resettable and reusable.

10. The method for supplying power to the portable device powered by the at least one chargeable battery of claim 9 , further comprising:

authorizing a user to reset the fuse using a trigger operable to prevent fuse resetting without an authorization.

11. A system for supplying power to a portable device provided in a sterile environment, comprising:

securing a portion of the portable device in a first tray, wherein the portion of the portable device includes a wireless receiver for receiving power;

covering the first tray with a first microbial barrier;

securing the first tray in a second tray;

covering the second tray with a second microbial barrier;

connecting the second tray to a package using a third connecting cable;

securing the second tray in the package; and

supplying power to the portable device using at least one chargeable battery via a wireless charging station having a transmitter operable to transmit power wirelessly to the receiver.

12. The system for supplying power to the portable device provided in the sterile environment of claim 11 , wherein the transmitter is a transmitter coil operable to induce a magnetic field using an AC current.

13. The system for supplying power to the portable device provided in the sterile environment of claim 12 , wherein the wireless receiver is a receiver coil secured in the second tray and operable to receive the AC current.

14. The system for supplying power to the portable device provided in the sterile environment of claim 13 , wherein the receiver coil is operable to convert the AC current to a DC current.

15. The system for supplying power to the portable device provided in the sterile environment of claim 14 , further comprising a first relay cable secured within the second tray and a second relay cable secured within the first tray, wherein the second relay cable is connected to the charging port at a first end and connected to the first relay cable at a second end opposite the first end and the first relay cable is connected to the receiver coil.

16. The system for supplying power to the portable device provided in the sterile environment of claim 11 , further comprising a charging system operable to maintain the at least one chargeable battery, the charging system comprising a chip or a PCB operable to control a charge current to the at least one chargeable battery.

17. The system for supplying power to the portable device provided in the sterile environment of claim 16 , further comprising a fuse operable to disconnect the at least one chargeable battery from the power supply when a fuse triggering event occurs.

18. The system for supplying power to the portable device provided in the sterile environment of claim 17 , wherein the fuse triggering event occurs when the at least one chargeable battery receives power greater than a power threshold.

19. The system for supplying power to the portable device provided in the sterile environment of claim 18 , wherein the fuse is resettable and reusable.

20. The system for supplying power to the portable device provided in the sterile environment of claim 18 , further comprising a trigger operable to prevent fuse resetting without an authorization.

Assignments (3)
CORRECTIVE ASSIGNMENT TO CORRECT THE RECEIVING PARTY PREVIOUSLY RECORDED AT REEL: 047710 FRAME: 0360. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Dec 10, 2018
From: ORREX MEDICAL TECHNOLOGIES, LLC
To: PELETON SURGICAL, LLC
Reel/Frame 047761/0988 →
CHANGE OF NAME Recorded Dec 2, 2018
From: ORREX MEDICAL TECHNOLOGIES, LLC
To: PELETON SURGICAL, LLC
Reel/Frame 047710/0360 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 10, 2018
From: REED, DAVID JOHN
To: ORREX MEDICAL TECHNOLOGIES, LLC
Reel/Frame 045488/0405 →
Continuity (2)
Continuation In Part 14987428 · Jan 4, 2016
Related Publication 20180090959A1 · Mar 29, 2018
Cited By (1)
US 12,348,066