مقاله انگلیسی سیستم های اندازه گیری
مقاله انگلیسی سیستم های اندازه گیری |
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دسته بندی | پژوهش |
فرمت فایل | doc |
حجم فایل | 549 کیلو بایت |
تعداد صفحات فایل | 11 |
مقاله انگلیسی سیستم های اندازه گیری
Auto-collimators
The Auto-collimator
is a single instrument combining the functions of a collimator and a
telescope to detect small angular displacements of a mirror by means of
its own collimated light.
The two reticles are positioned in the
focal plane of the corrected objective lens, so that the emerging beam
is parallel. This usual configuration is known as infinity setting, i.e
the auto-collimators are focused at infinity.
When moving the
reticles out of the focal plane of the objective lens, the
auto-collimator can be focused at finite distances, and the beam becomes
divergent (producing a virtual image) or convergent (real image). This
results in a focusing auto-collimator. The shape of the beam -convergent
or divergent- depend on the direction in which the reticles are moved
The main components of a standard auto-collimator i.e. focused at infinity are:
• Tube mounted objective lens
• Beam splitter mount which contains two reticles
• Eyepiece
• Illumination device
The
illuminated reticle projected over the beam splitter towards the lens
is known as collimator reticle. The second reticle placed iin the focus
of the eyepiece is the eyepiece reticle.
The beamsplitter mount together with the eyepiece and the illumination device form a main unit called: Auto-collimator head.
A
focusing auto-collimator (finite distance setting) is similary built.
The auto-collimator head containing the two reticles is now mounted on a
draw out tube for focusing adjustment.
Auto-collimation is an
optical technique of projecting an illuminated reticle to infinity and
receiving the reticle image after reflection on a flat mirror. The
reflected image is brought to the focus of the objective lens in which
the eyepiece reticle is located. Thus the reflected image of the
collimator (illuminated) reticle and the eyepiece reticle can be
simultaneously observed.