IP Library Granted Patent US 11,553,971
Granted Patent B2
US 11,553,971 · App. 16/458,112 · Granted Jan 17, 2023

Surgical RFID assemblies for display and communication

Inventors: Frederick E. Shelton, IV (Hillsboro, OH); Taylor W. Aronhalt (Loveland, OH)
Assignee: Cilag GmbH International
A61B34/30A61B17/072A61B18/1206A61B34/20A61B34/25A61B34/70A61B90/361A61B90/37A61B90/98A61B17/00234A61B46/10A61B90/96A61B2017/00367A61B2017/07214A61B2018/126A61B2018/1253
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Quick Facts
Patent No.
US 11,553,971
App. No.
16/458,112
Granted
Jan 17, 2023
Kind
B2
Abstract

A control system for a surgical instrument for use with a surgical system. The surgical system includes a first device and a second device, which can include a surgical hub, a visualization system, or a robotic system. The control system includes an RFID scanner and a control circuit coupled to the RFID scanner. The control circuit is configured to receive data from RFID tags associated with the devices, determine a communication protocol for communicating with the devices, and accordingly cause the surgical instrument to utilize the determined communication protocol to establish a communication link between the surgical instrument and the devices.

Claims (45)

1. A control system for a surgical instrument, wherein the surgical instrument is separate from, and is communicably coupleable to, a first device and a second device, wherein the first device comprises a first RFID tag and the second device comprises a second RFID tag, the control system comprising:

an RFID scanner; and

a control circuit coupled to the RFID scanner, the control circuit configured to:

receive a first datum from the first RFID tag via the RFID scanner;

receive a second datum from the second RFID tag via the RFID scanner;

determine a communication protocol suitable for the first device and the second device according to the first datum and the second datum; and

cause the surgical instrument to utilize the determined communication protocol for communicating with the first device and the second device.

2. The control system of claim 1 , wherein each of the first device and the second device is selected from the group consisting of a surgical hub, a visualization system, and a robotic surgical system.

3. The control system of claim 1 , wherein the surgical instrument is selected from the group consisting of a surgical stapler, an electrosurgical instrument, an ultrasonic surgical instrument, a surgical clip applier, and a trocar.

4. The control system of claim 1 , wherein the control circuit is configured to receive an operational setting for the surgical instrument from at least one of the first device or the second device via the determined communication protocol.

5. The control system of claim 1 , wherein the control circuit is configured to transmit an operational setting to at least one of the first device or the second device via the determined communication protocol.

6. A surgical instrument, comprising:

an RFID scanner; and

a control circuit coupled to the RFID scanner, wherein the control circuit is configured to:

receive first data indicative of a first device in an operating room from a first RFID tag by way of the RFID scanner, wherein the surgical instrument is spaced apart from the first device in the operating room;

receive second data indicative of a second device in the operating room from a second RFID tag by way of the RFID scanner, wherein the surgical instrument is spaced apart from the second device in the operating room;

identify a communication protocol for use between the first device and second device and the surgical instrument based on the first data and the second data;

utilize the identified communication protocol for communicating between the surgical instrument and the first device; and

utilize the identified communication protocol for communicating between the surgical instrument and the second device.

7. The surgical instrument of claim 6 , wherein the communication protocol defines a communication encryption technique.

8. The surgical instrument of claim 6 , wherein the communication protocol defines a communication packet size.

9. The surgical instrument of claim 6 , wherein the communication protocol defines a communication transmission speed.

10. The surgical instrument of claim 6 , wherein the communication protocol defines a communication handshake technique.

11. The surgical instrument of claim 6 , wherein each of the first device and the second device is selected from a group comprising of a surgical hub, a visualization system, and a robotic surgical system.

12. The surgical instrument of claim 6 , wherein the surgical instrument is selected from a group comprising a surgical stapler, an electrosurgical instrument, an ultrasonic surgical instrument, a surgical clip applier, and a trocar.

13. The surgical instrument of claim 6 , wherein the control circuit is further configured to receive an operational setting for the surgical instrument from at least one of the first device or the second device by way of the identified communication protocol.

14. The surgical instrument of claim 6 , wherein the control circuit is further configured to transmit an operational setting to at least one of the first device or the second device by way of the identified communication protocol.

15. A surgical instrument, comprising:

an RFID scanner; and

a control circuit coupled to the RFID scanner, wherein the control circuit is configured to:

receive data indicative of a device in an operating room from an RFID tag by way of the RFID scanner, wherein the surgical instrument is spaced apart from the device in the operating room;

identify a communication protocol for use between the device and the surgical instrument based on the data; and

utilize the communication protocol in communicating between the surgical instrument and the device.

16. The surgical instrument of claim 15 , wherein the communication protocol defines a communication encryption technique.

17. The surgical instrument of claim 15 , wherein the communication protocol defines a communication packet size.

18. The surgical instrument of claim 15 , wherein the communication protocol defines a communication transmission speed.

19. The surgical instrument of claim 15 , wherein the communication protocol defines a communication handshake technique.

20. The surgical instrument of claim 15 , wherein the device is selected from a group consisting of a surgical hub, a visualization system, and a robotic surgical system.

21. The surgical instrument of claim 15 , wherein the surgical instrument is selected from a group consisting of a surgical stapler, an electrosurgical instrument, an ultrasonic surgical instrument, a surgical clip applier, and a trocar.

22. A surgical instrument, comprising:

an RFID scanner; and

a control circuit coupled to the RFID scanner, wherein the control circuit is configured to:

receive data from a RFID tag by way of the RFID scanner, the data indicative of a device mechanically coupleable to the surgical instrument;

identify a communication protocol for use between the device and the surgical instrument based on the data; and

utilize the communication protocol in communicating between the device and the surgical instrument.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 27, 2021
From: ETHICON LLC
To: CILAG GMBH INTERNATIONAL
Reel/Frame 056601/0339 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 9, 2019
From: SHELTON, FREDERICK E., IV; ARONHALT, TAYLOR W.
To: ETHICON LLC
Reel/Frame 050310/0243 →
Continuity (2)
Provisional Application 62868457 · Jun 28, 2019
Related Publication 20200405409A1 · Dec 31, 2020
Cited By (41)
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