IP Library Granted Patent US 11,617,576
Granted Patent B2
US 11,617,576 · App. 16/896,629 · Granted Apr 4, 2023

Motor-driven surgical cutting instrument

Inventors: David C. Yates (Morrow, OH); Frederick E. Shelton, IV (Hillsboro, OH); Bret W. Smith (South Lebanon, OH); Brett E. Swensgard (West Chester, OH); Ryan J. Laurent (Loveland, OH)
Assignee: Cilag GmbH International
A61B17/068A61B17/07207A61B17/105A61B17/32A61B17/3205G16Z99/00A61B2017/00017A61B2017/00154A61B2017/00398A61B2017/00734A61B2017/07271A61B2017/07278A61B2017/07285A61B2017/2923A61B2017/2927A61B2017/320052
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,617,576
App. No.
16/896,629
Filed
Jun 9, 2020
Granted
Apr 4, 2023
Kind
B2
Art Unit
3731
USPC
227/181.1
Abstract

A motor-driven surgical cutting and fastening instrument that comprises an end effector, an electric motor, and a motor control circuit. The motor control circuit is for monitoring a parameter of the electric motor that is indicative of movement of a moveable member of the end effector, and for adjustably controlling the electric motor based on the monitored parameter to thereby adjustably control movement of the moveable member of the end effector during forward rotation of the electric motor.

Claims (94)

1. A surgical system, comprising:

an end effector, comprising:

a first jaw; and

a second jaw rotatable relative to said first jaw between an open position and a closed position;

a firing member movable within said end effector along a firing path between a starting position and an ending position;

a motor comprising a shaft, wherein said motor is configured to drive said firing member toward said ending position based on said shaft rotating in a first rotational direction;

a power supply operably coupled to said motor, wherein said power supply is configured to provide a set voltage to said motor during the operation thereof;

a control circuit operably coupled to said motor, wherein said control circuit is configured to switch between a plurality of operational modes during said rotation of said shaft in said first rotational direction, and wherein said plurality of operational modes comprises:

a first operational mode, wherein a first amount of current is supplied to said motor from said power supply, and wherein said control circuit operates in said first operational mode as said firing member is driven from said starting position toward a predetermined position along said firing path; and

a second operational mode, wherein a second amount of current is supplied to said motor from said power supply, wherein said second amount of current is greater than said first amount of current, and wherein said control circuit operates in said second operational mode as said firing member is driven from said predetermined position toward said ending position; and

a sensing system configured to sense a position of said firing member, wherein said control circuit is configured to transition to said second operational mode based on said sensing system sensing said firing member reaching said predetermined position.

2. The surgical system of claim 1 , wherein said control circuit comprises a power control switch configurable between a first state and a second state, wherein said control circuit is in said first operational mode based on said power control switch being in said first state, and wherein said control circuit is in said second operational mode based on said power control switch being in said second state.

3. The surgical system of claim 1 , wherein said control circuit further comprises a lockout switch, and wherein said lockout switch is configured to prevent said power supply from providing power to said motor absent said second jaw being in said closed position.

4. The surgical system of claim 1 , wherein said end effector further comprises a staple cartridge.

5. A surgical system, comprising:

an end effector, comprising:

a first jaw; and

a second jaw rotatable relative to said first jaw between an open position and a closed position;

a firing member movable within said end effector along a firing path between a starting position and an ending position;

a motor comprising a shaft, wherein said motor is configured to drive said firing member toward said ending position based on said shaft rotating in a first rotational direction;

a power supply operably coupled to said motor, wherein said power supply is configured to provide a set voltage to said motor during the operation thereof; and

a control circuit operably coupled to said motor, wherein said control circuit is configured to switch between a plurality of operational modes during said rotation of said shaft in said first rotational direction, and wherein said plurality of operational modes comprises:

a first operational mode, wherein a first amount of current is supplied to said motor from said power supply, and wherein said control circuit operates in said first operational mode as said firing member is driven from said starting position toward a predetermined position along said firing path; and

a second operational mode, wherein a second amount of current is supplied to said motor from said power supply, wherein said second amount of current is greater than said first amount of current, and wherein said control circuit operates in said second operational mode as said firing member is driven from said predetermined position toward said ending position;

wherein said control circuit comprises a power control switch configurable between a first state and a second state, wherein said control circuit is in said first operational mode based on said power control switch being in said first state, and wherein said control circuit is in said second operational mode based on said power control switch being in said second state;

wherein said surgical system further comprises a position sensor configured to sense a position of said firing member, wherein said power control switch is configured to transition towards said second state based on said position sensor sensing said firing member reaching said predetermined position.

6. The surgical system of claim 5 , wherein said predetermined position is a first predetermined position, wherein said firing path comprises a second predetermined position positioned between said first predetermined position and said ending position, and wherein said power control switch is configured to transition towards said first state based on said position sensor sensing said firing member reaching said second predetermined position.

7. The surgical system of claim 5 , wherein said control circuit further comprises an end-of-stroke switch configurable between an activated state and a deactivated state, and wherein said end-of-stroke switch is configured to transition towards said activated state based on said position sensor sensing said firing member reaching said ending position.

8. The surgical system of claim 7 , wherein said motor is configured to rotate said shaft in a second rotational direction to drive said firing member toward said starting position based on said end-of-stroke switch being in said activated state.

9. A surgical system, comprising:

an end effector, comprising:

a first jaw; and

a second jaw rotatable relative to said first jaw between an open position and a closed position;

a firing member movable within said end effector along a firing path between a starting position and an ending position;

a motor comprising a shaft, wherein said motor is configured to drive said firing member toward said ending position based on said shaft rotating in a first rotational direction;

a power supply operably coupled to said motor, wherein said power supply is configured to provide a set voltage to said motor during the operation thereof; and

a control circuit operably coupled to said motor, wherein said control circuit is configured to switch between a plurality of operational modes during said rotation of said shaft in said first rotational direction, and wherein said plurality of operational modes comprises:

a first operational mode, wherein a first amount of current is supplied to said motor from said power supply, and wherein said control circuit operates in said first operational mode as said firing member is driven from said starting position toward a predetermined position along said firing path; and

a second operational mode, wherein a second amount of current is supplied to said motor from said power supply, wherein said second amount of current is greater than said first amount of current, and wherein said control circuit operates in said second operational mode as said firing member is driven from said predetermined position toward said ending position;

wherein said control circuit comprises a power control switch configurable between a first state and a second state, wherein said control circuit is in said first operational mode based on said power control switch being in said first state, and wherein said control circuit is in said second operational mode based on said power control switch being in said second state;

wherein said control circuit further comprises a resistor, wherein current from said power supply is configured to flow through said resistor based on said power control switch being in said first state, and wherein current from said power supply bypasses said resistor based on said power control switch being in said second state.

10. A surgical system, comprising:

an end effector, comprising:

a first jaw; and

a second jaw movable relative to said first jaw between an open position and a clamped position;

a firing member movable within said end effector along a firing path between a proximal position and a distal position;

a motorized system configured to drive said firing member between said proximal position and said distal position;

a power supply operably coupled to said motorized system, wherein said power supply is configured to provide a substantially constant voltage to said motorized system during the operation thereof;

a control circuit operably coupled to said motorized system, wherein said control circuit is configured to switch between a plurality of operational configurations as said motorized system drives said firing member toward said distal position, and wherein said plurality of operational configurations comprises:

a first operational configuration, wherein a first amount of current is supplied to said motorized system from said power supply, and wherein said control circuit is in said first operational configuration as said firing member is driven from said proximal position toward a predetermined position along said firing path; and

a second operational configuration, wherein a second amount of current is supplied to said motorized system from said power supply, wherein said second amount of current is greater than said first amount of current, and wherein said control circuit is in said second operational configuration as said firing member is driven from said predetermined position toward said distal position; and

a sensing system configured to sense a position of said firing member, wherein said control circuit is configured to transition to said second operation configuration based on said sensing system sensing said firing member reaching said predetermined position.

11. The surgical system of claim 10 , wherein said control circuit comprises a power control switch configurable between a first state and a second state, wherein said control circuit is in said first operational configuration based on said power control switch being in said first state, and wherein said control circuit is in said second operational configuration based on said power control switch being in said second state.

12. The surgical system of claim 10 , wherein said control circuit further comprises a lockout switch, and wherein said lockout switch is configured to prevent said power supply from providing power to said motorized system absent said second jaw being in said clamped position.

13. The surgical system of claim 10 , wherein said end effector further comprises a staple cartridge.

14. A surgical system, comprising:

an end effector, comprising:

a first jaw; and

a second jaw movable relative to said first jaw between an open position and a clamped position;

a firing member movable within said end effector along a firing path between a proximal position and a distal position;

a motorized system configured to drive said firing member between said proximal position and said distal position;

a power supply operably coupled to said motorized system, wherein said power supply is configured to provide a substantially constant voltage to said motorized system during the operation thereof; and

a control circuit operably coupled to said motorized system, wherein said control circuit is configured to switch between a plurality of operational configurations as said motorized system drives said firing member toward said distal position, and wherein said plurality of operational configurations comprises:

a first operational configuration, wherein a first amount of current is supplied to said motorized system from said power supply, and wherein said control circuit is in said first operational configuration as said firing member is driven from said proximal position toward a predetermined position along said firing path; and

a second operational configuration, wherein a second amount of current is supplied to said motorized system from said power supply, wherein said second amount of current is greater than said first amount of current, and wherein said control circuit is in said second operational configuration as said firing member is driven from said predetermined position toward said distal position;

wherein said control circuit comprises a power control switch configurable between a first state and a second state, wherein said control circuit is in said first operational configuration based on said power control switch being in said first state, and wherein said control circuit is in said second operational configuration based on said power control switch being in said second state;

wherein said surgical system further comprises a position sensor configured to sense a position of said firing member, wherein said power control switch is configured to transition towards said second state based on said position sensor sensing said firing member reaching said predetermined position.

15. The surgical system of claim 14 , wherein said predetermined position is a first predetermined position, wherein said firing path comprises a second predetermined position positioned between said first predetermined position and said distal position, and wherein said power control switch is configured to transition towards said first state based on said position sensor sensing said firing member reaching said second predetermined position.

16. The surgical system of claim 14 , wherein said control circuit further comprises an end-of-stroke switch configurable between an activated state and a deactivated state, and wherein said end-of-stroke switch is configured to transition towards said activated state based on said position sensor sensing said firing member reaching said distal position.

17. The surgical system of claim 16 , wherein said motorized system is configured to drive said firing member toward said proximal position based on said end-of-stroke switch being in said activated state.

18. A surgical system, comprising:

an end effector, comprising:

a first jaw; and

a second jaw movable relative to said first jaw between an open position and a clamped position;

a firing member movable within said end effector along a firing path between a proximal position and a distal position;

a motorized system configured to drive said firing member between said proximal position and said distal position;

a power supply operably coupled to said motorized system, wherein said power supply is configured to provide a substantially constant voltage to said motorized system during the operation thereof; and

a control circuit operably coupled to said motorized system, wherein said control circuit is configured to switch between a plurality of operational configurations as said motorized system drives said firing member toward said distal position, and wherein said plurality of operational configurations comprises:

a first operational configuration, wherein a first amount of current is supplied to said motorized system from said power supply, and wherein said control circuit is in said first operational configuration as said firing member is driven from said proximal position toward a predetermined position along said firing path; and

a second operational configuration, wherein a second amount of current is supplied to said motorized system from said power supply, wherein said second amount of current is greater than said first amount of current, and wherein said control circuit is in said second operational configuration as said firing member is driven from said predetermined position toward said distal position;

wherein said control circuit comprises a power control switch configurable between a first state and a second state, wherein said control circuit is in said first operational configuration based on said power control switch being in said first state, and wherein said control circuit is in said second operational configuration based on said power control switch being in said second state;

wherein said control circuit further comprises a resistor, wherein current from said power supply is configured to flow through said resistor based on said power control switch being in said first state, and wherein current from said power supply bypasses said resistor based on said power control switch being in said second state.

19. A surgical system, comprising:

an end effector, comprising:

an anvil; and

an elongate channel, wherein said anvil and said elongate channel are configurable between an open configuration and a closed configuration;

a firing member movable within said end effector along a firing path between a starting position and an ending position;

a motor configured to drive said firing member toward said ending position;

a power source operably coupled to said motor, wherein said power source is configured to provide a substantially constant voltage to said motor during the operation thereof;

a control circuit operably coupled to said motor, wherein said control circuit is configured to switch between a plurality of operational states as said motor drives said firing member toward said ending position, and wherein said plurality of operational states comprises:

a first operational state, wherein a first amount of current is supplied to said motor from said power source, and wherein said control circuit operates in said first operational state as said firing member is driven from said starting position toward a predetermined position along said firing path; and

a second operational state, wherein a second amount of current is supplied to said motor from said power source, wherein said second amount of current is greater than said first amount of current, and wherein said control circuit operates in said second operational state as said firing member is driven from said predetermined position toward said ending position; and

a sensing system configured to sense a position of said firing member, wherein said control circuit is configured to transition to said second operation state based on said sensing system sensing said firing member reaching said predetermined position.

20. The surgical system of claim 19 , further comprising a staple cartridge removably positioned in said elongate channel.

Assignments (3)
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 Aug 25, 2020
From: SWENSGARD, BRETT E.
To: ETHICON LLC
Reel/Frame 053585/0770 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 25, 2020
From: YATES, DAVID C.; SHELTON, FREDERICK E., IV; SMITH, BRET W.; LAURENT, RYAN J.
To: ETHICON LLC
Reel/Frame 053585/0814 →
Continuity (6)
Continuation 16146065 · Sep 28, 2018
Continuation 14847831 · Sep 8, 2015
Continuation 13784957 · Mar 5, 2013
Continuation 13486175 · Jun 1, 2012
Continuation 12235782 · Sep 23, 2008
Related Publication 20200297341A1 · Sep 24, 2020
Cited By (19)
US 12,213,671 US 12,220,126 US 12,232,723 US 12,239,316 US 12,245,901 US 12,262,888 US 12,324,581 US 12,357,309 US 12,383,267 US 12,414,768 US 12,432,790 US 12,440,208 US 12,446,877 US 12,453,557 US 12,458,455 US 12,471,982 US 12,502,171 US 12,527,571 US 12,636,006