IP Library Granted Patent US 7,701,115
Granted Patent B2
US 7,701,115 · App. 12/111,247 · Granted Apr 20, 2010

Drive unit

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Quick Facts
Patent No.
US 7,701,115
App. No.
12/111,247
Granted
Apr 20, 2010
Kind
B2
Abstract

A drive unit includes a control unit for controlling an ultrasonic actuator. The control unit performs switching between a normal operation mode in which the piezoelectric element unit vibrates at a frequency close to a resonance frequency of longitudinal vibration in the lengthwise direction of the piezoelectric element unit and a resonance frequency of bending vibration to let the ultrasonic actuator output a driving force and a heating mode in which the piezoelectric element unit vibrates at a frequency close to a resonance frequency of longitudinal vibration in the thickness direction of the piezoelectric element unit to heat the piezoelectric element.

Claims (25)

1. A drive unit including a vibration actuator using a piezoelectric element comprising:

a control section for controlling the vibration actuator switchably between a normal operation mode in which the piezoelectric element vibrates at a predetermined frequency to let the vibration actuator output a driving force, and a heating mode in which the piezoelectric element vibrates at a frequency different from the frequency in the normal operation mode to heat the piezoelectric element; and

a condensation detector for detecting whether or not condensation has occurred on the vibration actuator,

wherein the control section enters the heating mode when the condensation is detected by the condensation detector.

2. The drive unit of claim 1 , wherein the control section enters the heating mode when it is started.

3. A drive unit including a vibration actuator using a piezoelectric element comprising:

a control section for controlling the vibration actuator switchably between a normal operation mode in which the piezoelectric element vibrates at a predetermined frequency to let the vibration actuator output a driving force, and a heating mode in which the piezoelectric element vibrates at a frequency different from the frequency in the normal operation mode to heat the piezoelectric element;

a temperature detector for detecting a value related to the temperature of the piezoelectric element, wherein the control section allows heating of the piezoelectric element in a temperature range not higher than a predetermined temperature based on the detection result of the temperature detector in the heating mode; and

a condensation detector for detecting whether or not condensation has occurred on the vibration actuator,

wherein the control section enters the heating mode when the condensation is detected by the condensation detector.

4. A drive unit including a vibration actuator using a piezoelectric element comprising:

a control section for controlling the vibration actuator switchably between a normal operation mode in which the piezoelectric element vibrates at a predetermined frequency to let the vibration actuator output a driving force, and a heating mode in which the piezoelectric element vibrates at a frequency different from the frequency in the normal operation mode to heat the piezoelectric element,

wherein the control section in the normal operation mode allows the vibration actuator to vibrate in a predetermined vibration mode such that the vibration actuator outputs the driving force, and

the control section in the heating mode allows the vibration actuator to vibrate in a vibration mode different from that in the normal operation mode such that the piezoelectric element is heated while the vibration actuator does not output the driving force, and

further comprising a condensation detector for detecting whether or not condensation has occurred on the vibration actuator,

wherein the control section enters the heating mode when the condensation is detected by the condensation detector.

5. A drive unit including a vibration actuator using a piezoelectric element comprising:

a control section for controlling the vibration actuator switchably between a normal operation mode in which the piezoelectric element vibrates at a predetermined frequency to let the vibration actuator output a driving force, and a heating mode in which the piezoelectric element vibrates at a frequency different from the frequency in the normal operation mode to heat the piezoelectric element;

wherein the control section in the normal operation mode allows the vibration actuator to vibrate in a predetermined vibration mode such that the vibration actuator outputs the driving force,

the control section in the heating mode allows the vibration actuator to vibrate in a vibration mode different from that in the normal operation mode such that the piezoelectric element is heated while the vibration actuator does not output the driving force,

the vibration actuator is shaped to have a lengthwise direction, a widthwise direction and a thickness direction orthogonal to the lengthwise and widthwise directions,

the control section allows the vibration actuator to make longitudinal vibration in the lengthwise direction and bending vibration in the widthwise direction to let the vibration actuator output the driving force in the normal operation mode, and

the control section allows the vibration actuator to make longitudinal vibration in the thickness direction without outputting the driving force such that the piezoelectric element is heated in the heating mode, and

further comprising a condensation detector for detecting whether or not condensation has occurred on the vibration actuator,

wherein the control section enters the heating mode when the condensation is detected by the condensation detector.

Assignments (2)
CHANGE OF NAME Recorded Nov 21, 2008
From: MATSUSHITA ELECTRIC INDUSTRIAL CO., LTD.
To: PANASONIC CORPORATION
Reel/Frame 021897/0570 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 2, 2008
From: HIGASHIONJI, MASARU; MUKAE, HIDEAKI; ADACHI, YUSUKE; NAGAOKA, EIICHI
To: MATSUSHITA ELECTRIC INDUSTRIAL CO., LTD.
Reel/Frame 021469/0622 →