ACTIVATION OF ENERGY DEVICES
Various systems and methods for controlling the activation of energy surgical instruments are disclosed. An advance energy surgical instrument, such an electrosurgical instrument or an ultrasonic surgical instrument, can include one or more sensor assemblies for detecting the state or position of the end effector, arm, or other components of the surgical instrument. A control circuit can be configured to control the activation of the surgical instrument according to the state or position of the components of the surgical instrument.
1 - 20 . (canceled)
21 . A surgical instrument comprising:
an ultrasonic blade;
a transducer assembly coupled to the ultrasonic blade, the transducer assembly comprising at least two piezoelectric elements configured to ultrasonically oscillate the ultrasonic blade;
a sensor disposed on an exterior surface of the surgical instrument, wherein the sensor is configured to sense a force thereagainst; and
a control circuit coupled to the transducer assembly and the sensor, the control circuit configured to activate the transducer assembly based on the force.
22 . The surgical instrument of claim 21 , wherein the sensor comprises a force sensitive resistor.
23 . The surgical instrument of claim 21 , wherein the control circuit is configured to:
compare the force sensed by the sensor to a predetermined threshold force; and
activate the transducer assembly based on the comparison.
24 . The surgical instrument of claim 21 , wherein the ultrasonic blade defines a longitudinal axis, and wherein the exterior surface extends orthogonally to the longitudinal axis.
25 . The surgical instrument of claim 21 , wherein the ultrasonic blade defines a longitudinal axis, and wherein the exterior surface extends along the longitudinal axis.
26 . The surgical instrument of claim 21 , wherein the control circuit is further configured to:
receive an output from the sensor, wherein the output of the sensor varies according to a degree of force applied to the sensor; and
activate the transducer assembly according to the output of the sensor relative to a threshold representative of a predetermined threshold force.
27 . The surgical instrument of claim 21 , wherein the surgical instrument further comprises a deactivation control, wherein upon activation of the deactivation control the control circuit is further configured to ignore an output from the sensor.
28 . A surgical instrument comprising:
an ultrasonic blade;
an arm pivotable relative to the ultrasonic blade between an open position and a closed position;
a transducer assembly coupled to the ultrasonic blade, the transducer assembly comprising at least two piezoelectric elements configured to ultrasonically oscillate the ultrasonic blade;
a touch sensor configured to detect a force thereagainst; and
a control circuit coupled to the transducer assembly and the touch sensor, the control circuit configured to activate the transducer assembly based on the force.
29 . The surgical instrument of claim 28 , wherein the touch sensor comprises a force sensitive resistor.
30 . The surgical instrument of claim 28 , wherein the control circuit is configured to:
compare the force sensed by the touch sensor to a predetermined threshold force; and
activate the transducer assembly based on the comparison.
31 . The surgical instrument of claim 28 , wherein the touch sensor is disposed on an exterior surface of the surgical instrument.
32 . The surgical instrument of claim 31 , wherein the ultrasonic blade defines a longitudinal axis, wherein the exterior surface extends orthogonally to the longitudinal axis.
33 . The surgical instrument of claim 31 , wherein the ultrasonic blade defines a longitudinal axis, wherein the exterior surface extends along the longitudinal axis.
34 . The surgical instrument of claim 28 , wherein the control circuit is further configured to:
receive an output from the touch sensor, wherein the output of the touch sensor varies according to a degree of force applied to the touch sensor; and
activate the transducer assembly according to the output of the touch sensor relative to a threshold representative of a threshold force.
35 . The surgical instrument of claim 28 , wherein the surgical instrument further comprises a deactivation control, wherein upon activation of the deactivation control the control circuit is further configured to deactivate the touch sensor.
36 . A surgical instrument comprising:
a first arm comprising an ultrasonic blade;
a housing coupled to the first arm, wherein the housing defines a longitudinal axis;
a second arm pivotable relative to the first arm between an open position and a closed position;
a transducer assembly coupled to the ultrasonic blade, the transducer assembly comprising at least two piezoelectric elements configured to ultrasonically oscillate the ultrasonic blade;
a sensor disposed on an exterior surface of the housing, wherein the sensor is configured to detect force against the sensor; and
a control circuit coupled to the transducer assembly and the sensor, the control circuit configured to activate the transducer assembly based on the force relative to a predetermined threshold.
37 . The surgical instrument of claim 36 , wherein the exterior surface extends orthogonally to the longitudinal axis.
38 . The surgical instrument of claim 36 , wherein the exterior surface extends along the longitudinal axis.
39 . The surgical instrument of claim 36 , wherein the control circuit is configured to:
compare the force sensed by the sensor to the predetermined threshold force; and
activate the transducer assembly based on the comparison.
40 . The surgical instrument of claim 36 , wherein the surgical instrument further comprises a deactivation control, wherein upon activation of the deactivation control the control circuit is further configured to deactivate the sensor.