MEMS-based levers and their use for alignment of optical elements
A MEMS based alignment technology based on mounting an optical component on a released micromechanical lever configuration that uses multiple flexures rather than a single spring. The optical component may be a lens. The use of multiple flexures may reduce coupling between lens rotation and lens translation, and reduce effects of lever handle warping on lens position. The device can be optimized for various geometries.
1. A mechanism for positioning an optical component, comprising:
a first flexure coupling a structure to a base;
the structure generally in the form of a quadrilateral, the structure including a first pair of flexures having a first direction of orientation, a second pair of flexures having a second direction of orientation, a first member coupling first ends of the first pair of flexures, a second member coupling first ends of the second pair of flexures, and a mount for an optical component; and
an elongate arm extending generally from the structure.
2. The mechanism of claim 1 wherein the structure generally in the form of a quadrilateral is a structure generally in the form of a parallelogram.
3. The mechanism of claim 1 wherein the mount for the optical component is on the first member.
4. The mechanism of claim 1 wherein the first direction is substantially orthogonal to the second direction.
5. The mechanism of claim 4 wherein each flexure of the pairs of flexures constrains relative motion of its ends in a third direction, the third direction being substantially orthogonal to the first direction and the second direction.
6. The mechanism of claim 5 wherein each flexure of the first pair of flexures constrains relative motion of its ends in the first direction and each flexure of the second pair of flexures constrains relative motion of its ends in the second direction.
7. The mechanism of claim 1 wherein the first flexure is coupled to the second member.
8. The mechanism of claim 1 wherein the mount for the optical component is coupled to the first member.
9. The mechanism of claim 1 wherein the elongate arm is connected to an end of one of the flexures of the first pair of flexures and to an end of one of the flexures of the second pair of flexures.