US2014366672A1PendingUtilityA1

Piezoelectric actuator, robot hand, and robot

Assignee: SEIKO EPSON CORPPriority: Jun 10, 2011Filed: Sep 2, 2014Published: Dec 18, 2014
Est. expiryJun 10, 2031(~4.9 yrs left)· nominal 20-yr term from priority
Inventors:Osamu Urano
B25J 18/00H02N 2/008B25J 15/08H02N 2/103H02N 2/004H02N 2/14Y10T74/20305H02N 2/003B25J 15/0009
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Claims

Abstract

A piezoelectric actuator includes a frequency controller that controls the frequency and power of the driving signal, wherein when the phase difference falls within a predetermined range, the control unit stores the value of the frequency of the driving signal as a first frequency memory value, sets a voltage to a upper limit voltage value, and performs control of adjusting the frequency of the driving signal so that the phase difference is maintained to be within a predetermined range, and when the frequency of the driving signal is changed from the first frequency memory value by an amount exceeding a first value determined in advance, the control unit stores the value of the frequency of the driving signal as a second frequency memory value and sets the voltage to a lower limit voltage value lower than the upper limit voltage value.

Claims

exact text as granted — not AI-modified
1 .- 11 . (canceled) 
     
     
         12 . A piezoelectric actuator comprising:
 a vibrating body that includes a piezoelectric device;   a driving unit that supplies a driving signal to the piezoelectric device;   a phase difference detector that detects a phase difference between the driving signal and a detection signal detected based on vibration of the vibrating body; and   a control unit that controls the frequency and power of the driving signal,   wherein   when the frequency of the driving signal is changed from a first frequency memory value by an amount exceeding a first value determined based on temperature characteristics of the vibrating body, the control unit sets the power of the driving signal to a value smaller than-a predetermined value.   
     
     
         13 . The piezoelectric actuator according to  claim 12 ,
 wherein when the frequency of the driving signal is changed from the first frequency memory value by an amount exceeding the first value, the control unit stores the value of the changed frequency as a second frequency memory value, and   when the frequency of the driving signal is changed from the second frequency memory value by an amount exceeding a second value determined based on the temperature characteristics, the control unit sets the power of the driving signal to zero.   
     
     
         14 . The piezoelectric actuator according to  claim 12 ,
 wherein the control unit changes the frequency of the driving signal from a resonance frequency side where impedance is high toward a resonance frequency side where impedance is low among a resonance frequency of longitudinal vibration in which the vibrating body expands and contracts in a longitudinal direction of the vibrating body and a resonance frequency of flexural vibration in which the vibrating body expands and contracts in the lateral direction of the vibrating body.   
     
     
         15 . A robot hand comprising:
 a vibrating body including a piezoelectric device;   a driving unit that supplies a driving signal to the piezoelectric device;   a phase difference detector that detects a phase difference between the driving signal and a detection signal detected based on vibration of the vibrating body;   a control unit that controls the frequency and power of the driving signal; and   a plurality of finger portions,   wherein when the frequency of the driving signal is changed from the first frequency memory value by an amount exceeding a first value determined based on temperature characteristics of the vibrating body, the control unit sets the power to a value smaller than a predetermined value.   
     
     
         16 . The robot hand according to  claim 15 ,
 wherein when the frequency of the driving signal is changed from the first frequency memory value by an amount exceeding the first value, the control unit stores the value of the changed frequency as a second frequency memory value, and   when the frequency of the driving signal is changed from the second frequency memory value by an amount exceeding a second value determined based on the temperature characteristics, the control unit sets the power of the driving signal to zero.   
     
     
         17 . The robot hand according to  claim 15 ,
 wherein the control unit changes the frequency of the driving signal from a resonance frequency side where impedance is high toward a resonance frequency side where impedance is low among a resonance frequency of longitudinal vibration in which the vibrating body expands and contracts in a longitudinal direction of the vibrating body and a resonance frequency of flexural vibration in which the vibrating body expands and contracts in the lateral direction of the vibrating body.   
     
     
         18 . A robot comprising:
 a vibrating body including a piezoelectric device;   a driving unit that supplies a driving signal to the piezoelectric device;   a phase difference detector that detects a phase difference between the driving signal and a detection signal detected based on vibration of the vibrating body;   a control unit that controls the frequency and power of the driving signal; and   a arm portion,   wherein when the frequency of the driving signal is changed from the first frequency memory value by an amount exceeding a first value determined based on temperature characteristics of the vibrating body, the control unit sets the power to a value smaller than a predetermined value.   
     
     
         19 . The robot according to  claim 18 ,
 wherein when the frequency of the driving signal is changed from the first frequency memory value by an amount exceeding the first value, the control unit stores the value of the changed frequency as a second frequency memory value, and   when the frequency of the driving signal is changed from the second frequency memory value by an amount exceeding a second value determined based on the temperature characteristics, the control unit sets the power of the driving signal to zero.   
     
     
         20 . The robot according to  claim 18 ,
 wherein the control unit changes the frequency of the driving signal from a resonance frequency side where impedance is high toward a resonance frequency side where impedance is low among a resonance frequency of longitudinal vibration in which the vibrating body expands and contracts in a longitudinal direction of the vibrating body and a resonance frequency of flexural vibration in which the vibrating body expands and contracts in the lateral direction of the vibrating body.

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