Surgical instrument having force feedback capabilities
A surgical instrument. The surgical instrument has a force delivery system which communicates a changing force to a user of the surgical instrument when a limit of a surgical function is reached. A sensor senses position of a moving element to communicate a signal to the force delivery system. In various embodiments, the system generates a vibratory force to signal the user.
1. A surgical instrument configured to deliver a surgical function, the surgical instrument comprising:
a handle comprising a force delivery system, wherein the force delivery system is configured to operably delivery a changing force to a user holding the handle;
a shaft;
an end effector extending from the shaft;
an articulation joint positioned intermediate the end effector and the shaft, wherein the articulation joint permits the end effector to rotate relative to the shaft about an articulation axis;
a moving element configured to move between a plurality of positions relative to the end effector, wherein the plurality of positions comprises a position indicative of an articulation limit of the surgical function; and
a sensor configured to detect when the moving element reaches the position indicative of the articulation limit of the surgical function, wherein the sensor operably communicates with the force delivery system, and wherein the sensor signals the force delivery system to deliver the changing force when the moving element reaches the position indicative of the articulation limit of the surgical function.
2. The surgical instrument of claim 1 , wherein the changing force comprises a vibratory force.
3. The surgical instrument of claim 2 , wherein the force delivery system comprises a motor that generates the vibratory force.
4. The surgical instrument of claim 1 , wherein the sensor signals the force delivery system with one of the group consisting of a square wave signal and a sine wave signal.
5. The surgical instrument of claim 1 , wherein the moving element comprises a translating actuator.
6. The surgical instrument of claim 1 , wherein the moving element comprises a rotating actuator.
7. A surgical instrument configured to deliver a surgical function, the surgical instrument comprising:
a handle comprising a tactile feedback generator, wherein the tactile feedback generator is configured to deliver tactile feedback to a user;
an end effector operably linked to the handle;
an articulation joint positioned intermediate the end effector and the handle, wherein the articulation joint permits the end effector to rotate relative to the handle about an articulation axis;
an actuation element configured to move between a plurality of positions relative to the end effector, wherein the plurality of positions comprises a position indicative of an articulation limit of the end effector; and
a sensor configured to detect the position of the actuation element, wherein the sensor operably communicates with the tactile feedback generator, and wherein the tactile feedback generator delivers the tactile feedback to the user when the actuation element reaches the position indicative of the articulation limit of the end effector.
8. The surgical instrument of claim 7 , wherein the tactile feedback delivered by the tactile feedback generator comprises a variable force.
9. The surgical instrument of claim 8 , wherein the variable force is a vibratory force.
10. The surgical instrument of claim 9 , wherein the vibratory force is produced by a motor that is driving the articulation of the end effector.
11. A surgical instrument, comprising:
a handle comprising a force delivery system, wherein the force delivery system is configured to operably delivery a vibratory force to a user holding the handle;
a shaft;
an end effector extending from the shaft;
an articulation joint positioned intermediate the end effector and the shaft, wherein the articulation joint permits the end effector to rotate relative to the shaft about an articulation axis;
a moving element configured to move between a plurality of positions within the end effector to rotate the end effector about the articulation axis between an un-articulated position and articulated positions; and
a position sensor configured to detect the position of the moving element, wherein the sensor operably communicates with the force delivery system, and wherein the sensor signals the force delivery system to deliver the vibratory force based on the position of the moving element.