Side spring micro-mirror
First Claim
1. A micro-mirror for use in a MEMS mirror array comprising:
- a generally flat mirror body member including a light reflective surface and having a plurality of rectilinear side edges defining width and length dimensions of the mirror body member, said body member being suspended above a substrate only on one width dimension side edge by a pair of equal length spring members which comprise an integral portion of said body member and which are equally spaced from the length dimension side edges and extend inwardly of said body member a distance between about one-half and one-quarter of the length dimension of the side edges and operates to provide a restoring force to the mirror body member to a substantially flat OFF state when tilted along said side edge to an ON state by an electrostatic pull down force generated by an actuation electrode located on the substrate forwardly adjacent an inner end portion of said spring members.
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Accused Products
Abstract
A micro-electrical mechanical system (MEMS) mirror assembly including an array of micro-mirrors formed on a substrate and having springs on one side and which angularly tilt between ON and OFF states in response to an electrostatic force generated by a voltage applied to an electrode located on the substrate. At least one, but preferably two springs in the form of two thin strips of metal attach to post(s) at the side edge of the mirror and act as springs which provide a restoring force when the mirror is tilted between an OFF state which occurs when the mirror is flat relative to the substrate with no voltage applied, and in the ON state when the mirror is tilted when a voltage is applied.
10 Citations
27 Claims
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1. A micro-mirror for use in a MEMS mirror array comprising:
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a generally flat mirror body member including a light reflective surface and having a plurality of rectilinear side edges defining width and length dimensions of the mirror body member, said body member being suspended above a substrate only on one width dimension side edge by a pair of equal length spring members which comprise an integral portion of said body member and which are equally spaced from the length dimension side edges and extend inwardly of said body member a distance between about one-half and one-quarter of the length dimension of the side edges and operates to provide a restoring force to the mirror body member to a substantially flat OFF state when tilted along said side edge to an ON state by an electrostatic pull down force generated by an actuation electrode located on the substrate forwardly adjacent an inner end portion of said spring members. - View Dependent Claims (23, 24, 25, 26, 27)
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2. (canceled)
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3. (canceled)
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4. (canceled)
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6. (canceled)
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8. (canceled)
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9. A deflectable mirror element for an array of mirror elements, comprising:
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a generally rectangular planar mirror body having a light reflective surface, and side edges defining a width dimension and a length dimension, and additionally including a plurality of substantially equal length and equal width finger members formed in mutually parallel relationship along one of said width dimension side edges of said body above a substrate and having a length between about one-half and about one-quarter of a length dimension side edge; and
wherein a pair of said finger-like members are-attached to a respective post adjacent said width dimension side edge, and the remaining finger-like members of said plurality of finger-like members are located on either side of said pair of finger-like members, said pair of finger-like members for maintaining said mirror body in a first position substantially parallel to said substrate in an unactuated OFF state and for acting as a springs so as to provide a restoring force to said mirror body back to said first position when tilted at a predetermined angle along said one width dimension side edge to a second position in an actuated ON state. - View Dependent Claims (10, 16, 17, 22)
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11. (canceled)
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12. (canceled)
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13. (canceled)
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14. (canceled)
- 15. (canceled)
Specification