Interlock and surgical instrument including same
A surgical instrument is disclosed. The instrument includes an end effector comprising a moveable cutting instrument to cut an object and a motor coupled to the end effector. The motor actuates the cutting instrument in response to a current therethrough, causing the cutting instrument to move between a proximal-most position and a distal-most position. The instrument includes an interlock coupled to the end effector and to the motor to prevent actuation of the cutting instrument based on the current through the motor.
1. A handheld surgical instrument, comprising:
a handle;
an elongate shaft extending from said handle;
an end effector extending from said elongate shaft, wherein said end effector comprises:
an anvil;
a channel; and
a cartridge configured to be replaceably positioned in said channel;
a firing assembly, comprising:
a firing member movable from an unfired position to a fired position during a firing stroke; and
a sled movable from a proximal position to a distal position as said firing member is moved through said firing stroke;
a lockout mechanism configured to prevent said firing stroke when said sled is not in said proximal position;
a motor comprising a rotatable output, wherein said rotatable output is operably coupled with said firing member, and wherein said motor is couplable with a supply of current; and
a current sensor configured to detect the current through said motor, wherein when said current through said motor exceeds a threshold value said firing member is prevented from completing said firing stroke, wherein said threshold value corresponds to said current through said motor when said lockout mechanism is activated, and wherein said motor is de-energized when said current through said motor exceeds said threshold value.
2. A handheld surgical instrument, comprising:
a handle;
an elongate shaft extending from said handle;
an end effector extending from said elongate shaft, wherein said end effector comprises:
an anvil jaw;
a staple cartridge jaw comprising a channel; and
a staple cartridge configured to be releasably positioned within said channel;
a firing assembly, comprising:
a firing member movable from an unfired position to a fired position during a firing stroke; and
a sled movable from a proximal position to a distal position;
a lockout mechanism configured to prevent said firing stroke when said sled is not in said proximal position;
a motor comprising a rotatable output, wherein said rotatable output is operably coupled with said firing member, wherein said rotatable output is configured to move said firing member between said unfired position and said fired position, and wherein said motor is couplable with a supply of current; and
a sensing system configured to detect the current through said motor, wherein said firing member is prevented from continuing said firing stroke when said current through said motor exceeds a threshold value, wherein said threshold value corresponds to said current through said motor when said lockout mechanism is activated, and wherein said motor is de-energized when said current through said motor exceeds said threshold value.
3. A handheld surgical instrument, comprising:
a handle;
an elongate shaft extending from said handle;
an end effector extending from said elongate shaft, wherein said end effector comprises:
a longitudinally extending channel;
an anvil pivotally attached to said channel; and
a staple cartridge replaceably positioned in said channel;
a firing assembly, comprising:
a firing member movable from an unfired position to a fired position during a firing stroke; and
a sled movable from a proximal position to a distal position as said firing member is moved through said firing stroke;
a lockout mechanism configured to prevent said firing stroke when said sled is not in said proximal position;
a motor comprising a rotatable output, wherein said rotatable output is operably coupled with said firing member, and wherein said motor is configured to be coupled with a supply of current; and
a lockout circuit configured to sense the current through said motor and prevent the completion of said firing stroke when said current through said motor exceeds a threshold value, wherein said current through said motor exceeding said threshold value is indicative of said lockout mechanism being activated, and wherein said motor is de-energized when said lockout mechanism is activated.