Low distortion lens using double plane symmetric element
A low distortion lens suited for a wide variety of applications uses a double plane symmetry lens as part of a lens system to permit aberration correction to be optimized in the field of view of an associated sensor. Wide angle, Kepler telescopic and Galileo telescopic designs can be implemented. The design can be implemented using existing manufacturing techniques.
1. A lens system having a different effective focal length in an X axis than in a Y axis comprising:
a plurality of lens elements, configured in at least two groups and to have an image plane,
at least one of the lens elements having double plane symmetry in an optically active region wherein the effective focal length in the X axis is different than the effective focal length in the Y axis,
wherein the respective X and Y effective focal lengths are configured to substantially match a ratio calculated from X and Y dimensions of a rectangular sensor positioned at the image plane, and
wherein the lens element having double plane symmetry in an optically active region is the last lens element before light from an object plane is formed at the image plane.
2. The lens system of claim 1 wherein the lens element having double plane symmetry in an optically active region has an effective focal length along the X axis that changes at a different rate such that lines parallel to the X axis in the object plane remain substantially straight in the image plane.
3. The lens system of claim 1 wherein the lens element having double plane symmetry has an effective focal length along the Y axis that changes at a different rate such that lines parallel to the Y axis in the object plane remain substantially straight in the image plane.
4. The lens system of claim 1 wherein the total track is less than forty millimeters.
5. The lens system of claim 1 wherein the X and Y effective focal lengths are configured to substantially optimize the modulation transfer function of the lens system at the corners of the sensor.
6. The lens system of claim 1 wherein the lens system is a wide angle lens.