Optical deflector including piezoelectric sensor incorporated into outermost piezoelectric cantilever

US9151947B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9151947-B2
Application numberUS-201313846028-A
CountryUS
Kind codeB2
Filing dateMar 18, 2013
Priority dateMar 23, 2012
Publication dateOct 6, 2015
Grant dateOct 6, 2015

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  1. Title

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  2. Abstract

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  4. Key dates

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  5. First independent claim

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

In an optical deflector including a mirror, a movable frame supporting the mirror, a first piezoelectric actuator for rocking the mirror with respect to a first axis of the mirror, a support body supporting the movable frame, and a second piezoelectric actuator for rocking the mirror through the movable frame with respect to a second axis of the mirror, at least one piezoelectric sensor is provided for sensing rocking vibrations of the mirror caused by the first and second piezoelectric actuators. The second piezoelectric actuator includes a pair of meander-type piezoelectric actuators opposite to each other with respect to the first axis. Each of the second meander-type piezoelectric actuators includes a plurality of piezoelectric cantilevers folded at every cantilever and connected from the support body to the movable frame in parallel with the first axis. The piezoelectric sensor is incorporated into an outermost one of the piezoelectric cantilevers.

First claim

Opening claim text (preview).

The invention claimed is: 1. An optical deflector comprising: a mirror; a movable frame supporting said mirror; a first piezoelectric actuator, connected between said movable flame and said mirror, for rocking said mirror with respect to a first axis of said mirror; a support body supporting said movable frame; a second piezoelectric actuator, connected between said support body and said movable frame, for rocking said mirror through said movable frame with respect to a second axis of said mirror; and only first and second piezoelectric sensors for sensing rocking vibrations of said mirror caused by said first and second piezoelectric actuators, said second piezoelectric actuator comprising a pair of second meander-type piezoelectric actuators opposite to each other with respect to said first axis, each of said second meander-type piezoelectric actuators comprising a plurality of piezoelectric cantilevers folded at every cantilever and connected from said support body to said movable frame, each of said piezoelectric cantilevers being in parallel with said first axis, said first piezoelectric sensor being incorporated into an outermost one of said piezoelectric cantilevers of one of said pair of meander-type piezoelectric actuators said second piezoelectric sensor being incorporated into an outermost one of said piezoelectric cantilevers of another of said pair of meander-type piezoelectric actuators, no piezoelectric sensor being provided in other piezoelectric cantilevers other than said outermost piezoelectric cantilevers, wherein the outermost piezoelectric cantilever comprises: a lower electrode layer; and a first piezoelectric layer formed on said lower electrode, and wherein each of said first and second piezoelectric sensors comprises: a second piezoelectric layer formed on said lower electrode layer; and a second upper electrode layer formed on said second piezoelectric layer, a width ratio of said second piezoelectric layer to said first piezoelectric layer being from 1/4 to 2/3. 2. The optical deflector as set forth in claim 1 , wherein said outermost piezoelectric cantilever further comprises: a first upper electrode layer formed on said first piezoelectric layer, and wherein each of said first and second piezoelectric sensors further comprises: a second upper electrode layer formed on said second piezoelectric layer. 3. The optical deflector as set forth in claim 1 , wherein said second axis is perpendicular to said first axis. 4. The optical deflector as set forth in claim 1 , wherein said first piezoelectric actuator comprises a pair of first meander-type piezoelectric actuators opposite to each other with respect to said second axis, each of said first meander-type piezoelectric actuators comprising a plurality of piezoelectric cantilevers folded at every cantilever and connected from said movable frame to said mirror, each of said piezoelectric cantilevers being in parallel with said second axis. 5. The optical deflector as set forth in claim 1 , further comprising torsion bars connected between said movable frame and said mirror, said first piezoelectric actuator being connected via said torsion bars to said mirror and being adapted to twist said torsion bars to rock said mirror. 6. An optical deflector comprising: a mirror; a support body supporting said mirror; a piezoelectric actuator, connected between said support body and said mirror, for rocking said mirror with respect to an axis of said mirror; and only first and second piezoelectric sensor sensors for sensing a rocking vibration of said mirror caused by said piezoelectric actuator, said piezoelectric actuator comprising a pair of meander-type piezoelectric actuators opposite to each other with respect to said mirror, each of said meander-type piezoelectric actuators comprising a plurality of piezoelectric cantilevers folded at every cantilever and connected from said support body to said mirror, each of said piezoelectric cantilevers being perpendicular to said axis, said first piezoelectric sensor being incorporated into an outermost one of said piezoelectric cantilevers of one of said meander-type piezoelectric actuators: said second piezoelectric sensor being incorporated into an outermost one of said piezoelectric cantilevers of another of said pair of meander-type piezoelectric actuators, no piezoelectric sensor being provided in other piezoelectric cantilevers other than said outermost piezoelectric cantilevers wherein the outermost piezoelectric cantilever comprises: a lower electrode layer; and a first piezoelectric layer formed on said lower electrode, and wherein each of said first and second piezoelectric sensors comprises: a second piezoelectric layer formed on said lower electrode layer; and a second upper electrode layer formed on said second piezoelectric layer, a width ratio of said second piezoelectric layer to said first piezoelectric layer being from 1/4 to 2/3. 7. The optical deflector as set forth in claim 6 , wherein said outermost piezoelectric cantilever comprises: a first upper electrode layer formed on said first piezoelectric layer, and wherein said piezoelectric sensor further comprises: a second upper electrode layer formed on said second piezoelectric layer. 8. An optical deflector comprising: a mirror; a movable frame supporting said mirror; a first piezoelectric actuator, connected between said movable frame and said mirror, for rocking said mirror with respect to a first axis of said mirror; a support body supporting said movable frame; a second piezoelectric actuator, connected between said support body and said movable frame, for rocking said mirror through said movable frame with respect to a second axis of said mirror; and only one piezoelectric sensor for sensing rocking vibrations of said mirror caused by said first and second piezoelectric actuators, said second piezoelectric actuator comprising a pair of second meander-type piezoelectric actuators opposite to each other with respect to said first axis, each of said second meander-type piezoelectric actuators comprising a plurality of piezoelectric cantilevers folded at every cantilever and connected from said support body to said movable frame, each of said piezoelectric cantilevers being in parallel with said first axis, said piezoelectric sensor being incorporated into an outermost one of said piezoelectric cantilevers of one of said pair of meander-type piezoelectric actuators, no piezoelectric sensor being provided in other piezoelectric cantilevers other than said outermost piezoelectric cantilever, wherein the outermost piezoelectric cantilever comprises: a lower electrode layer; and a first piezoelectric layer formed on said lower electrode, and wherein each of said first and second piezoelectric sensors comprises: a second piezoelectric layer formed on said lower electrode layer; and a second upper electrode layer formed on said second piezoelectric layer, a width ratio of said second piezoelectric layer to said first piezoelectric layer being from 1/4 to 2/3. 9. An optical deflector comprising: a mirror; a support body supporting said mirror; a piezoelectric actuator, connected between said support body and said mirror, for rocking said mirror with respect to an axis of said mirror; and only one piezoelectric sensor for sensing a rocking vibration of said mirror caused by said piezoelectric actuator, said piezoelectric actuator comprising a pair of meander-type piezoelectric actuators opposite to each other with respect to said mirror, each of said meander-type piezoelectric actuators comprising a plurality of piezoelectric cantilevers folded at every cantilever and

Assignees

Inventors

Classifications

  • with both horizontal and vertical deflecting means, e.g. raster or XY scanners (colour television using laser beams scanning a display screen H04N9/3129) · CPC title

  • the reflecting means being moved or deformed by piezoelectric means · CPC title

  • G02B26/08Primary

    for controlling the direction of light (in light guides G02B6/35) · CPC title

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What does patent US9151947B2 cover?
In an optical deflector including a mirror, a movable frame supporting the mirror, a first piezoelectric actuator for rocking the mirror with respect to a first axis of the mirror, a support body supporting the movable frame, and a second piezoelectric actuator for rocking the mirror through the movable frame with respect to a second axis of the mirror, at least one piezoelectric sensor is prov…
Who is the assignee on this patent?
Stanley Electric Co Ltd
What technology area does this patent fall under?
Primary CPC classification G02B26/0858. Mapped technology areas include Physics.
When was this patent published?
Publication date Tue Oct 06 2015 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).