DIN ISO 9039-2008 Optics and photonics - Quality evaluation of optical systems - Determination of distortion (ISO 9039 2008)《光学和光子学 光学设备的质量评估 失真的测定》.pdf
《DIN ISO 9039-2008 Optics and photonics - Quality evaluation of optical systems - Determination of distortion (ISO 9039 2008)《光学和光子学 光学设备的质量评估 失真的测定》.pdf》由会员分享,可在线阅读,更多相关《DIN ISO 9039-2008 Optics and photonics - Quality evaluation of optical systems - Determination of distortion (ISO 9039 2008)《光学和光子学 光学设备的质量评估 失真的测定》.pdf(23页珍藏版)》请在麦多课文档分享上搜索。
1、August 2008DEUTSCHE NORM English price group 12No part of this standard may be reproduced without prior permission ofDIN Deutsches Institut fr Normung e. V., Berlin. Beuth Verlag GmbH, 10772 Berlin, Germany,has the exclusive right of sale for German Standards (DIN-Normen).ICS 37.020!$Qw“1462584www.d
2、in.deDDIN ISO 9039Optics and photonics Quality evaluation of optical systems Determination of distortion (ISO 9039:2008)English version of DIN ISO 9039:2008-08Optik und Photonik Qualittsbewertung optischer Systeme Bestimmung der Verzeichnung (ISO 9039:2008)Englische Fassung DIN ISO 9039:2008-08Super
3、sedesDIN 58187:1986-06www.beuth.deDocument comprises 23 pages DIN ISO 9039:2008-08 2 Contents Page National Annex NA (informative) Bibliography 3 Introduction.4 1 Scope 5 2 Terms and definitions .5 3 Classes of application.7 3.1 Infinite object distance, finite image distance7 3.2 Infinite object di
4、stance, infinite image distance.7 3.3 Finite object distance, finite image distance 7 3.4 Finite object distance, infinite image distance.8 4 Test methods8 4.1 General8 4.2 Apparatus .9 5 Procedure 15 5.1 Reference angle of the optical system to be tested 15 5.2 Coordinate origin 15 5.3 Selection of
5、 image heights 15 6 Evaluation 16 6.1 Calculation of the reference quantities a, a, m or 16 6.2 Calculation of the distortion 16 7 Presentation of the results 16 8 Test report . 17 Annex A (informative) Example for a method of shifting the zero point 18 Annex B (informative) Picture-height distortio
6、n value. 21 Bibliography. 23 National foreword 3 3 National foreword This standard has been prepared by Technical Committee ISO/TC 172 “Optics and photonics”, Subcommittee SC 1 “Fundamental standards”. The responsible German body involved in its preparation was the Normenausschuss Feinmechanik und O
7、ptik (Optics and Precision Mechanics Standards Committee), Technical Committee NA 027-01-02 AA Grund-normen der Optik. Attention is drawn to the possibility that some of the elements of this document may be the subject of patent Amendments This standard differs from DIN 58187:1986-06 as follows: a)
8、Annex A (informative) “Example for a method of shifting the zero point”, Annex B (informative) “Picture-height distortion value” and subclause 4.2.2.3 “Nodal slide lens bench method” have been added. b) Some symbols have been modified, e.g. relating to object and image heights, field angles and late
9、ral magnification. c) Previous editions DIN 58187: 1986-06 National Annex NA (informative) Bibliography DIN ISO 9334, Optics and photonics Optical transfer function Definitions and mathematical relationships DIN ISO 9335, Optics and photonics Optical transfer function Principles and procedures of me
10、asurement DIN ISO 15795, Optics and photonics Quality evaluation of optical systems Assessing the image quality degradation due to chromatic aberrations DIN ISO 9039:2008-08 rights. DIN shall not be held responsible for identifying any or all such patent rights. International Standard ISO 9039:2008
11、has been adopted.Introduction Generally, the function of rotationally symmetric optical systems is to form an image that is geometrically similar to the object, except for some particular systems, such as fish-eye lenses and eyepieces, where this condition is deliberately not maintained. Ideally, th
12、is function is accomplished according to the geometry of perspective projection. Departures from the ideal image geometry are called distortion. The distortion is a position-dependent quantity which generally has a vectorial character. In a given image plane (which may also lie at infinity), this ve
13、ctor, representing the difference between theoretical and real image position, has a radial and a tangential component. In optical systems, the tangential component is basically conditioned by imperfect rotational symmetry. The systems manufactured in accordance with the present state of the art hav
14、e a negligible tangential distortion. A tangential component of the distortion appears, however, as primary aberration in the case of electromagnetically focused electro-optical systems. This International Standard deals only with the radial distortion. For special systems, e.g. certain electro-opti
15、cal systems, an expansion may become necessary to include vectorial representation. 4 Optics and photonics Quality evaluation of optical systems Determination of distortion DIN ISO 9039:2008-08 1 Scope This International Standard specifies methods of determining distortion in optical systems for the
16、 purposes of quality evaluation. It applies to optical imaging systems in the optical spectral range from 100 nm to 15 000 nm which, by their design, aim at a rotationally symmetric image geometry. It is applicable to electro-optical imaging systems provided that adequate rotational symmetry of the
17、image is guaranteed. It does not, therefore, apply to anamorphic and fibre optic systems. 2 Terms and definitions For the purposes of this document, the following terms and definitions apply. 2.1 distortion measure of the deviation of the extra-axial image points from the ideal image points in a giv
18、en plane lying parallel to the reference plane of the system NOTE If the image plane is at infinity, the image positions are given in terms of tangents of field angles. 2.2 reference plane plane corresponding to a physical feature of the device under test which is used for alignment, e.g. a mounting
19、 flange or a fixture specially mounted for that purpose 2.3 absolute distortion Vadistance in the radial direction between the observed image point and the ideal image point, expressed in millimetres or micrometres 2.4 relative distortion Vrdistance in the radial direction between the observed image
20、 point and the ideal image point, expressed as a percentage of the ideal image height h0NOTE With the image at infinity, relative distortion is the difference between the tangents of the observed field angle and the ideal field angle, expressed as a percentage of the tangent of the ideal field angle
21、 0. 2.5 object height h distance between an object point and the axis of rotational symmetry of the test specimen, expressed in millimetres 5 DIN ISO 9039:2008-08 2.6 image height h distance between an image point and the axis of rotational symmetry of the test specimen, expressed in millimetres 2.7
22、 object pupil field angle pabsolute value of the angle, expressed in radians or degrees, between the axis of rotational symmetry and the direction of travel of radiation from the object to the entrance pupil of the test specimen 2.8 image pupil field angle pabsolute value of the angle, expressed in
23、radians or degrees, between the axis of rotational symmetry and the direction of travel of radiation from the exit pupil of the test specimen to the image 2.9 object distance a distance between the object plane and the first principal point, expressed in millimetres 2.10 image distance a distance be
24、tween the image plane and the second principal point, expressed in millimetres 2.11 object plane plane parallel to the reference plane containing an object point 2.12 image plane plane parallel to the reference plane containing an image point 2.13 ideal image height h0image height without distortion
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