fisico30 said:
I am still not clear on what it means that the entrance pupil is located at infinity (for object-sided telecentric lenses). I know what the entrance pupil is: the image of the aperture stop formed by the lenses to the right of the AS.
But what does it mean that it forms to infinity? That it only accepts rays that are parallel to the optical axis?
What is the difference between the object-sided telecentric lenses and image-sided telecentric lenses? What different effect do we get?
In a non-telecentric system, does a circular ring look like an ellipse? Why? In a telecentric system instead the image is a circle too?
A lot of questions- here we go:
The entrance pupil is the image of the aperture stop in object space, but also, all rays passing through an optical system must enter through the entrance pupil (and exit through the exit pupil). Putting the entrance pupil at infinity does indeed imply that the numerical aperture is very low, but it not zero: AFAIK f/6 is a fast telecentric lens. Another way of thinking about a pupil at infinity means that the 'principal ray' is parallel to the optical axis. Here's a few ray trace diagrams:
http://www.lhup.edu/~dsimanek/3d/telecent.htm
Object vs. image-sided telecentric lenses simply acknowledge that object space and image space are different. There are doubly-telecentric lenses available. The marketing claims of image-sided telecentricity tend to center on the possibility that microlens arrays are sometimes used with a CCD to increase the light gathering efficiency, and "for critical applications, image telecentricity eliminates artifacts from these microlenses"- but I do not know if these claims have ever been objectively evaluated.
Your last question is very interesting, and I may not have the right answer- I think if you had a disk oriented at some angle to the optic axis, the telecentric lens and 'conventional' lens images will be superficially similar- there will be an ellipse in both- but a grid drawn on the disc will still consist of parallel lines in the telecentric system, whereas a conventional lens will show converging lines in one direction.
There's some images here that may help:
http://www.tmworld.com/article/323776-Telecentric_lenses_simplify_noncontact_metrology.php
Even though image 1b was taken with a telephoto rather than a truly telecentric lens, you should get the idea.