Thermo-mechanical actuator
US-12117739-B2 · Oct 15, 2024 · US
US9614463B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9614463-B2 |
| Application number | US-201414176741-A |
| Country | US |
| Kind code | B2 |
| Filing date | Feb 10, 2014 |
| Priority date | Feb 10, 2014 |
| Publication date | Apr 4, 2017 |
| Grant date | Apr 4, 2017 |
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A piezoelectric device is provided with a piezoelectric element including a piezoelectric layer exhibiting a polarizability γ smaller than 1×10 −9 (C/(V·m)) in the case where an electric field is applied until polarization is saturated and a circuit having a means to set a minimum value of a drive electric field to become larger than a positive coercive electric field of the above-described piezoelectric layer and a means to set a maximum value of the above-described drive electric field to become smaller than (Pm′(maximum value of polarization)−Pr′(quasi-remanent polarization))/(1×10 −9 ) and, therefore, an object is to drive the piezoelectric element in an electric field range in which maximum piezoelectric characteristics are obtained, improve the characteristics of the piezoelectric device, and enhance the reliability.
Opening claim text (preview).
What is claimed is: 1. A piezoelectric device comprising: a piezoelectric element including a piezoelectric layer and electrode layers configured to sandwich the piezoelectric layer; and a drive circuit that applies an alternating current drive electric field to the piezoelectric layer through the electrode layers, wherein a polarizability γ of the piezoelectric layer in the case where an electric field is applied until polarization is saturated is smaller than 1×10 −9 (C/(V·m)), and the drive circuit sets a minimum value of the drive electric field to become larger than a positive coercive electric field of the piezoelectric layer and sets a maximum value of the drive electric field to become smaller than ( Pm ′(maximum value of polarization)− Pr ′(quasi-remanent polarization))/(1×10 −9 ) (C/(V·m)) where polarizability γ=(Pm (saturation polarization)−Pr (remanent polarization))/Ed (maximum value of applied electric field). 2. The piezoelectric device according to claim 1 , wherein the piezoelectric layer comprises a coercive electric field on each of a positive electric field side and a negative electric field side, and the drive circuit applies a positive electric field in a direction in which an absolute value of the coercive electric field takes on a small value and apply a negative electric field in a direction in which the absolute value of the coercive electric field takes on a large value. 3. The piezoelectric device according to claim 1 , wherein the drive circuit allows the minimum value of the drive electric field to become more than or equal to 5 times the positive coercive electric field of the piezoelectric layer and allows the maximum value of the drive electric field to become less than or equal to 50 times the positive coercive electric field of the piezoelectric layer. 4. The piezoelectric element according to claim 1 , wherein the piezoelectric layer of the piezoelectric device is made from potassium-sodium niobate. 5. A piezoelectric actuator by using the piezoelectric device according to claim 1 . 6. A hard disk drive comprising the piezoelectric actuator according to claim 5 . 7. An ink-jet printer apparatus comprising the piezoelectric actuator according to claim 5 .
Electricity · mapped topic
Electricity · mapped topic
Piezoelectric transducer · CPC title
taken directly from the generator circuit · CPC title
Drive circuits; Control arrangements {or methods} · CPC title
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