Surgical instrument with wireless communication between a control unit of a robotic system and remote sensor
A surgical instrument for use with a robotic system that has a control unit and a shaft portion that includes an electrically conductive elongated member that is attached to a portion of the robotic system. The elongated member is configured to transmit control motions from the robotic system to an end effector.
1. A surgical instrument for use with a robotic system, including:
a drive assembly operatively coupleable to a control unit of the robotic system, the drive assembly comprising:
a first rotatable driver; and
a second rotatable driver;
a shaft comprising an articulation joint;
a rotatable closure driver operably coupleable with and operably decoupleable from the first rotatable driver;
a drive shaft operably coupleable with and operably decoupleable from the first rotatable driver, wherein the drive shaft is rotatable to drive a firing motion;
a shifter, shiftable between:
a first state in which the first rotatable driver is operably coupled with the rotatable closure driver and operably decoupled from the drive shaft; and
a second state in which the first rotatable driver is operably coupled with the drive shaft and operably decoupled from the rotatable closure driver;
an end effector rotatable about the articulation joint, comprising:
a first jaw; and
a second jaw rotatable relative to the first jaw;
a translatable closure driver configured to move the second jaw into a closed position during a full closure stroke, wherein the translatable closure driver is threadably coupled to the rotatable closure driver, wherein the rotatable driver is rotated a first number of rotations to move the translatable closure driver through the full closure stroke, wherein the rotatable driver is rotated a second number of rotations to drive the firing motion, and wherein the second number of rotations is more than the first number of rotations; and
an articulation driver operably coupled to the second rotatable driver, wherein the articulation driver is operable to rotate the end effector about the articulation joint.
2. The surgical instrument of claim 1 , wherein the second number of rotations is at least 10 times the first number of rotations.
3. The surgical instrument of claim 1 , wherein the drive assembly further comprises a third rotatable driver configured to shift the shifter between the first state and the second state.
4. The surgical instrument of claim 1 , wherein the shaft defines a longitudinal axis, and wherein the drive assembly further comprises a third rotatable driver configured to rotate the shaft about the longitudinal axis.
5. The surgical instrument of claim 1 , wherein the articulation driver comprises an articulation bar.
6. A surgical instrument for use with a robotic system, including:
a drive assembly operatively coupleable to a control unit of the robotic system, the drive assembly comprising:
a rotatable driver; and
a second rotatable driver;
a shaft comprising an articulation joint;
a rotatable closure driver operably coupleable with and operably decoupleable from the rotatable driver;
a drive shaft operably coupleable with and operably decoupleable from the rotatable driver, wherein the drive shaft is rotatable to drive a firing motion;
a transmission, transitionable between:
a first state in which the rotatable driver is operably coupled with the rotatable closure driver and operably decoupled from the drive shaft; and
a second state in which the rotatable driver is operably coupled with the drive shaft and operably decoupled from the rotatable closure driver;
an end effector rotatable about the articulation joint, comprising:
a first jaw; and
a second jaw rotatable relative to the first jaw;
a translatable closure driver configured to move the second jaw into a closed position during a full closure stroke, wherein the translatable closure driver is threadably coupled to the rotatable closure driver, wherein the rotatable driver is rotated a first number of rotations to move the translatable closure driver through the full closure stroke, wherein the rotatable driver is rotated a second number of rotations to drive the firing motion, and wherein the second number of rotations is significantly more than the first number of rotations; and
an articulation driver operably coupled to the second rotatable driver, wherein the articulation driver is operable to rotate the end effector about the articulation joint.
7. The surgical instrument of claim 6 , wherein the second number of rotations is at least 10 times the first number of rotations.
8. The surgical instrument of claim 6 , wherein the drive assembly further comprises a third rotatable driver configured to transition the transmission between the first state and the second state.
9. The surgical instrument of claim 6 , wherein the shaft defines a longitudinal axis, and wherein the drive assembly further comprises a third rotatable driver configured to rotate the shaft about the longitudinal axis.
10. The surgical instrument of claim 6 , wherein the articulation driver comprises an articulation bar.
11. A surgical instrument for use with a robotic system, including:
a drive assembly operatively coupled to a control unit of the robotic system, the drive assembly comprising:
a rotatable driver; and
a second rotatable driver;
a shaft comprising an articulation joint;
a rotatable closure driver operably coupleable with and operably decoupleable from the rotatable driver;
a drive shaft operably coupleable with and operably decoupleable from the rotatable driver, wherein the drive shaft is rotatable to drive a sled through a firing stroke;
a shifter, shiftable between:
a first state in which the rotatable driver is operably coupled with the rotatable closure driver and operably decoupled from the drive shaft; and
a second state in which the rotatable driver is operably coupled with the drive shaft and operably decoupled from the rotatable closure driver;
wherein the second rotatable driver is configured to shift the shifter between the first state and the second state; and
an end effector rotatable about the articulation joint, comprising:
a first jaw; and
a second jaw rotatable relative to the first jaw;
a closure driver configured to move the second jaw into a closed position during a full closure stroke, wherein the closure driver is threadably coupled to the rotatable closure driver, wherein the rotatable driver is rotated a first number of rotations to move the closure driver through the full closure stroke, wherein the rotatable driver is rotated a second number of rotations to drive the sled through the firing stroke, and wherein the second number of rotations is more than the first number of rotations.
12. The surgical instrument of claim 11 , wherein the shaft defines a longitudinal axis, and wherein the drive assembly further comprises a third rotatable driver configured to rotate the shaft about the longitudinal axis.
13. The surgical instrument of claim 11 , further comprising an articulation driver configured to rotate the end effector about the articulation joint.
14. The surgical instrument of claim 13 , wherein the drive assembly further comprises a third rotatable driver operably coupled to the articulation driver.