IP Library Granted Patent US 9,113,941
Granted Patent B2
US 9,113,941 · App. 13/860,324 · Granted Aug 25, 2015

Vessel sealer and divider with knife lockout

Inventors: John J. Kappus (Denver, CO); Thomas J. Gerhardt, Jr. (Littleton, CO); Wayne Siebrecht (Golden, CO); Larry Johnson (Bennett, CO)
Assignee: Covidien LP
A61B17/295A61B18/1445A61B18/1447A61B17/32A61B2018/0063A61B2018/1412A61B2018/1455
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Quick Facts
Patent No.
US 9,113,941
App. No.
13/860,324
Granted
Aug 25, 2015
Kind
B2
Abstract

An endoscopic forceps includes a housing having a shaft attached thereto that supports a pair of jaws disposed at a distal end thereof. A drive assembly having a drive shaft with a proximal end is operable to move the jaws relative to one another from an open to closed positions. A knife assembly is operable to advance a knife through tissue disposed between the jaws and includes a flange disposed thereon. A knife lockout is included that has a flange configured to engage the proximal end of the drive shaft and a lockout arm configured to engage the flange of the knife assembly to prevent movement thereof. Movement of the jaws to the closed position causes the proximal end of the drive shaft to engage the flange on the lockout which causes the lockout arm to disengage the flange on the knife assembly to permit advancement of the knife.

Claims (23)

1. An endoscopic forceps, comprising:

a housing having a shaft attached thereto, the shaft including a pair of jaw members disposed at a distal end thereof;

a drive assembly operable to move the jaw members relative to one another between an open position wherein the jaw members are disposed in spaced relation relative to one another and a closed position wherein the jaw members cooperate to grasp tissue therebetween, the drive assembly including a drive shaft having a proximal end;

a knife assembly operable to advance a knife through tissue disposed between the jaw members; and

a knife lockout including a first mechanical interface configured to directly contact a proximal-most face of the proximal end of the drive shaft and a second mechanical interface configured to operably engage the knife assembly and prevent movement thereof, wherein movement of the jaw members to the closed position causes the second mechanical interface to disengage the knife assembly.

2. An endoscopic forceps according to claim 1 , further comprising a pair of handles operatively connected to the drive assembly and movable relative to the housing to actuate the drive assembly to move the jaw members.

3. An endoscopic forceps according to claim 1 , wherein the knife assembly includes a knife shaft that seats within a cap of an elongated knife sleeve supported at a proximal end of the housing, the cap including a flange that extends therefrom that interfaces with the second mechanical interface of the knife lockout.

4. An endoscopic forceps according to claim 1 , wherein engagement of said first mechanical interface with the proximal end of the drive shaft causes rotation of the second mechanical interface out of engagement with the knife assembly.

5. An endoscopic forceps according to claim 1 , wherein the knife lockout includes a spring operable to bias the second mechanical interface of the knife lockout in an engaged position with the knife assembly.

6. An endoscopic forceps according to claim 1 , wherein at least one jaw member is adapted to connect to an electrosurgical energy source for providing electrosurgical energy to tissue disposed between the jaw members.

7. A method of dividing tissue, comprising the steps of:

providing a forceps having:

a housing including a shaft attached thereto, the shaft having a pair of jaw members disposed at a distal end thereof;

a drive assembly operable to move the jaw members relative to one another between an open position wherein the jaw members are disposed in spaced relation relative to one another and a closed position wherein the jaw members cooperate to grasp tissue therebetween, the drive assembly including a drive shaft having a proximal end;

a knife assembly operable to advance a knife through tissue disposed between the jaw members; and

a knife lockout including a first mechanical interface configured to directly contact a proximal-most face of the proximal end of the drive shaft and a second mechanical interface configured to operably engage the knife assembly and prevent movement thereof; and

actuating the drive assembly to move the jaw members to the closed position causing the second mechanical interface to disengage the knife assembly.

8. A method according to claim 7 , further comprising the step of biasing the knife lockout to prevent translation of the knife.

9. A method of separating tissue, comprising the steps of:

positioning a knife lockout to prevent translation of a knife through a knife channel defined between a pair of jaw members;

actuating a drive assembly to close the pair of jaw members about tissue and position a proximal end of a drive shaft of the drive assembly to a proximal-most position; and

engaging the knife lockout with a proximal-most face of the proximal end of the drive shaft to reposition the knife lockout to allow translation of the knife.

10. A method according to claim 9 , further comprising the step of biasing the knife lockout to prevent translation of the knife.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 10, 2013
From: KAPPUS, JOHN J.; GERHARDT, THOMAS J.; SIEBRECHT, WAYNE; JOHNSON, LARRY
To: TYCO HEALTHCARE GROUP LP
Reel/Frame 030190/0744 →
CHANGE OF NAME Recorded Apr 10, 2013
From: TYCO HEALTHCARE GROUP LP
To: COVIDIEN LP
Reel/Frame 030192/0937 →
Continuity (3)
Continuation 13550322 · Jul 16, 2012
Continuation 12548566 · Aug 27, 2009
Related Publication 20130231662A1 · Sep 5, 2013