IP Library Granted Patent US 10,842,553
Granted Patent B2
US 10,842,553 · App. 16/887,546 · Granted Nov 24, 2020

Vessel sealer and divider

Inventors: Sean T. Dycus (Zurich, CH); Duane E. Kerr (Loveland, CO); Darion R. Peterson (Longmont, CO)
Assignee: Covidien AG
A61B18/1445A61B18/00A61B18/085A61B18/1482A61B17/32A61B2017/2902A61B2017/294A61B2018/0063A61B2018/00196A61B2018/00202A61B2018/00404A61B2018/00601A61B2018/00916A61B2018/1412A61B2018/1452A61B2018/1455A61B2018/1861A61B2090/034
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Quick Facts
Patent No.
US 10,842,553
App. No.
16/887,546
Granted
Nov 24, 2020
Kind
B2
Abstract

An endoscopic bipolar forceps includes a housing and a shaft affixed to the housing. The shaft includes a longitudinal axis defined therethrough and a pair of jaw members attached to a distal end thereof. The forceps also includes a drive assembly for moving one of the jaw members relative to the other jaw member from a first position wherein the movable jaw members are disposed in spaced relation relative to each other to a second position wherein the jaw members are closer one another for manipulating tissue. A movable handle is included which is rotatable about a pivot to force a drive flange of the movable handle into mechanical cooperation with the drive assembly to move the jaw members from the open and closed positions. The pivot is located a fixed distance from the longitudinal axis and the drive flange is located generally along the longitudinal axis. The forceps is connected to a source of electrosurgical energy connected to each jaw member such that the jaw members are capable of conducting bipolar energy through tissue held therebetween to effect a tissue seal.

Claims (18)

1. A bipolar forceps, comprising:

a housing;

a shaft defining a longitudinal axis, extending distally from the housing, and having a movable jaw member and a fixed jaw member at a distal end thereof, each of the movable and fixed jaw members adapted to connect to a source of electrosurgical energy such that the movable and fixed jaw members are capable of conducting energy through tissue grasped therebetween;

a drive sleeve defining a proximal end and a distal end, the drive sleeve operably coupled to the movable jaw member at the distal end of the drive sleeve and configured to move the movable jaw member relative to the fixed jaw member from a first position wherein the movable jaw member is disposed in spaced relation relative to the fixed jaw member to a second position wherein the movable jaw member is closer to the fixed jaw member;

a movable handle of unitary construction having a curve configured to receive one or more fingers and a locking flange spaced-apart from the curve, the movable handle operably coupled to the drive sleeve towards the proximal end of the drive sleeve such that movement of the movable handle from an open position to a closed position moves the movable jaw member relative to the fixed jaw member from the first position to the second position;

a selectively advanceable knife operable to cut the tissue grasped between the movable and fixed jaw members in a distal direction; and

a selectively actuatable finger actuator operably coupled to the knife,

wherein, when the movable handle is disposed in the open position, the locking flange impedes actuation of the finger actuator and advancement of the knife to cut the tissue grasped between the movable and fixed jaw members.

2. The bipolar forceps according to claim 1 , wherein a drive portion of the movable handle is operably coupled to the drive sleeve.

3. The bipolar forceps according to claim 2 , wherein the drive portion of the movable handle includes a clevis.

4. The bipolar forceps according to claim 3 , wherein the clevis supports a pin extending between flange portions thereof.

5. The bipolar forceps according to claim 2 , wherein the locking flange is positioned at least partially between the drive portion and the curve.

6. The bipolar forceps according to claim 1 , wherein the curve is a closed loop.

7. The bipolar forceps according to claim 1 , wherein the curve includes a proximal segment, a distal segment, and at least one connector segment connecting the proximal and distal segments with one another, wherein the curve is configured to receive at least one of a user's fingers between the proximal and distal segments.

8. The bipolar forceps according to claim 1 , wherein the movable handle further includes a latch extension extending therefrom, the latch extension configured to latch the movable handle in the closed position.

9. The bipolar forceps according to claim 1 , wherein the finger actuator includes a pair of tabs extending therefrom, and wherein the locking flange is configured to abut at least one of the tabs of the finger actuator to impede actuation of the finger actuator and advancement of the selectively advanceable knife.

10. The bipolar forceps according to claim 1 , wherein the finger actuator is positioned distally of at least a portion of the movable handle.

11. The bipolar forceps according to claim 10 , wherein the locking flange protrudes in a distal direction towards the finger actuator.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 29, 2020
From: DYCUS, SEAN T.; KERR, DUANE E.; PETERSON, DARION
To: SHERWOOD SERVICES AG
Reel/Frame 052789/0278 →
CHANGE OF NAME Recorded May 29, 2020
From: SHERWOOD SERVICES AG
To: COVIDIEN AG
Reel/Frame 052789/0340 →
MERGER Recorded May 29, 2020
From: COVIDIEN AG
To: TYCO HEALTHCARE GROUP AG
Reel/Frame 052789/0418 →
CHANGE OF NAME Recorded May 29, 2020
From: TYCO HEALTHCARE GROUP AG
To: COVIDIEN AG
Reel/Frame 052789/0477 →
Continuity (7)
Continuation 16372724 · Apr 2, 2019
Continuation 16053207 · Aug 2, 2018
Continuation 15012265 · Feb 1, 2016
Continuation 14177812 · Feb 11, 2014
Continuation 11588482 · Oct 27, 2006
Continuation 10460926 · Jun 13, 2003
Related Publication 20200289194A1 · Sep 17, 2020