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Inchworm motor

 

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Inchworm motor



 
 
The inchworm motor is a device that uses piezoelectric actuator
Actuator

An actuator is a mechanical device for moving or controlling a mechanism or system....
s to move a shaft with nanometer precision
Precision

Precision has the following meanings:Concepts* Accuracy and precision, measurement deviation from true value and its scatter* arithmetic precision, the number of digits from which a value is expressed...
. In its simplest form, the inchworm motor uses three piezo-actuators (2 and 3, see Figure 1.) mounted inside a tube (1) and electrified in sequence to grip a shaft (4) which is then moved in a linear direction. Motion of the shaft is due to the extension of the lateral piezo (2) pushing on two clutching piezos (3).

actuation process of the inchworm motor is a six step cyclical process after the initial relaxation and initialization phase.






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Encyclopedia


The inchworm motor is a device that uses piezoelectric actuator
Actuator

An actuator is a mechanical device for moving or controlling a mechanism or system....
s to move a shaft with nanometer precision
Precision

Precision has the following meanings:Concepts* Accuracy and precision, measurement deviation from true value and its scatter* arithmetic precision, the number of digits from which a value is expressed...
. In its simplest form, the inchworm motor uses three piezo-actuators (2 and 3, see Figure 1.) mounted inside a tube (1) and electrified in sequence to grip a shaft (4) which is then moved in a linear direction. Motion of the shaft is due to the extension of the lateral piezo (2) pushing on two clutching piezos (3).

Operation

The actuation process of the inchworm motor is a six step cyclical process after the initial relaxation and initialization phase. Initially, all three piezos are relaxed and unextended. To initialize the inchworm motor the clutching piezo closest to the direction of desired motion (which then becomes the forward clutch piezo) is electrified first then the six step cycle begins as follows (see Figure 2.):

Step 1. Extension of the lateral piezo.

Step 2. Extension of the aft clutch piezo.

Step 3. Relaxation of the forward clutch piezo.

Step 4. Relaxation of the lateral piezo.

Step 5. Extension of the forward clutch piezo.

Step 6. Relaxation of the aft clutch piezo.

Electrification of the piezo actuators is accomplished by applying a high bias voltage to the actuators in step according to the "Six Step" process described above.

Uses

Scanning Tunneling Microscopy
The inchworm motor is commonly used in scanning tunneling microscopes
Scanning tunneling microscope

Scanning tunneling microscope is a powerful technique for viewing surfaces at the atomic level. Its development in 1981 earned its inventors, Gerd Binnig and Heinrich Rohrer , the Nobel Prize in Physics in 1986....
 (STM's). An STM requires nanometer scale control of its scanning tip near the material it is observing. This control can be accomplished by connecting the scanning tip to the shaft of the inchworm motor. The inchworm motor, in turn, allows control in a direction normal to the plane of the observed material's surface. Movement across the surface is commonly referred to as movement in the x-y plane, whereas movement normal to the surface is commonly referred to as movement in the z-direction. Movement of the scanning tip by the inchworm motor is either manually controlled or automatically controlled by connecting the motor to a feedback
Feedback

Feedback describes the situation when output from an event or phenomenon in the past will influence the same event/phenomenon in the present or future....
 system.

Patch Clamping
The inchworm motor can be used in the patch clamping
Patch clamp

The patch clamp technique is a laboratory technique in electrophysiology that allows the study of single or multiple ion channels in cell . The technique can be applied to a wide variety of cells, but is especially useful in the study of excitable cells such as neurons, cardiac cells, muscle fibers and the beta cells of the pancreas....
 of cells. This technique is most often performed with an optical microscope and requires micro-manipulation of a glass pipette. The inchworm motor is particularly ideal in patch clamping because it provides the operator with virtually an instantaneous, precise, smooth and predictable motion without drift.

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