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General specifications for lunar and planetary in-situ detection cameras
General specification for spaceborne opto-electronic tracking and imaging system
本標準規(guī)定了工業(yè)制造用激光器光束質(zhì)量的評價和測試方法。 本標準適用于各種連續(xù)和準連續(xù)激光器光束質(zhì)量的評價和測試。
Evaluation and measurement method for beam quality of high power laser system for industry manufacturing
This document applies to cylindrical connections between the spindle and the workpiece chuck, workpiece carrier or tool. The connection is intended for all optical machines which allow the technically required processing speeds.
Production in optical engineering - Fitting dimensions for tools and workpiece chucks with cylindrical fitting
Production in optical engineering - Sintered diamond abrasive body - Part 2: Pellets and grinding pins
Production in optical engineering - Surfacing pins for optics processing machines - Part 1: Without ball point cemented metal carbide
Optics and photonics. Interferometric measurement of optical elements and optical systems. Interpretation and evaluation of tolerances specified in ISO 10110
Production in optical engineering - Small lenses - Carriages and supporting mounts
Optics and photonics. Optical materials and components. Test method for refractive index of infrared optical materials
This International Standard provides a standard method for measuring the relative refractive index to the air of infrared materials used in the infrared spectral range from 0,78 μm to 25 μm. The scope of this International Standard excludes methods for measuring the refractive index of birefringent materials and methods for measuring the complex refractive index.
Optics and photonics - Optical materials and components - Test method for refractive index of infrared optical materials
Optics and photonics - Wavefront sensors for characterising optical systems and optical components
This part of ISO 9022 specifies methods for the testing of optical instruments, including additional assemblies from other fields (e.g. mechanical, chemical and electronic devices) under equivalent conditions, for their ability to resist combined bump or random vibration, in cold, dry heat or temperature change. The purpose of testing is to investigate to what extent the optical, thermal, chemical and electrical performance characteristics of the specimen are affected by combined cold, dry heat or temperature change with bump or random vibration.
Optics and photonics - Environmental test methods - Part 22: Combined cold, dry heat or temperature change with bump or random vibration
This part of ISO 25297 specifies the information requirements for optical systems and parts, and provides an information model to support the processes of optical design, optical evaluation and analysis for these optical systems and parts when using computers with CAD and CAE. NOTE Generally, an optical system means an optical unit as an optical product, which performs optical functions, and is composed of optical elements and the barrels in which these elements are mounted. In this part of ISO 25297, an optical system is a collection of optical parts and optical assemblies, e.g. the viewfinder system or the taking lens system of a leaf shutter camera. This information model adds the data peculiar to optical design specification based on STEP to ISO 10303 (all parts). The additional information is product specification information, optical design information, optical evaluation information and analysis information. This part of ISO 25297 is generically called the Neutral Optical Data Interchange Format (NODIF). The following are within the scope: — information on product specification, optical design, optical evaluation and analysis; — optical systems and parts in imaging systems, such as cameras and copiers, viewing systems for telescopes and microscopes and the other optical systems, such as projectors and pick-up lenses; — multiple-configuration optical systems, including zoom lenses and inner focusing systems; — optical path definition, including ray-path sequence and optical surface arrangement; — optical assemblies, including cemented parts and dynamic parts; — mathematical description of the optical surface form; — description of diffractive surfaces; — machining process designation, such as polishing, moulding or replicating; — optical material specifications, such as material names, lot numbers and measured refractive indices; — optical tolerances for the shape and material property of each optical part; — assembly tolerances, such as separation, parallelism, displacement and tilt; — effective diameters, coatings and protective surface treatment; — paraxial evaluation, such as focal length, back focal length, principal points and f-number; — ray-tracing evaluation, such as geometrical ray-tracing results (i.e. ray directions and intersection points on each surface and optical path lengths), aberrations and wavefront aberration; — OTF evaluation based on geometrical and/or physical optics; — illuminance distribution on a detection surface or a projection surface; — spectral characteristics; ? 1 — ghost image evaluation; — thermal analysis accompanying optical surface deformation and material property value change; — stress analysis accompanying optical surface deformation and material property value change; — veiling glare and surface imperfections. The following are outside the scope of this part of ISO 25297: — mechanical design, electronic design and embedded software design; — optical systems in which the optical path is changeable, e.g. beam splitters or variable magnification converters; — tolerances for mechanical parts; — parts with a diameter less than 10 times the wavelength of light; — parts made from materials whose dielectric constant, σ, electric permittivity, ε, and magnetic permittivity, μ, are uninfluenced by interaction between the materials and the light; — graphical documents resulting from design, evaluation and analysis of products; — optical wave guide for optical communications; — product planning information concerning market research and customer analysis; — product definition and configuration control information irrelevant to design, evaluation and analysis; — analysis information, except thermal and stress analysis, e.g. vibration analysis; — information on trial production, production process including production planning and production control, and processes after production, such as shipment and repair; — ophthalmic optics.
Optics and photonics - Electronic exchange of optical data - Part 1: NODIF information model
Optics and photonics. Electronic exchange of optical data. Mapping to the classes and properties defined in ISO 23584
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Agricultural equipment-Mechanical connections between towed and towing vehicles-Implement hitch rings and attachment to tractor drawbars
Optics and photonics - Electronic exchange of optical data - Part 2: Mapping to the classes and properties defined in ISO 23584
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Optics and photonics-Telescopic systems-Specifications for night vision devices
Optics and photonics. Preparation of drawings for optical elements and systems. Surface texture; roughness and waviness
This part of ISO 25297 specifies the information requirements for optical systems and parts, and provides an information model to support the processes of optical design, optical evaluation and analysis for these optical systems and parts when using computers with CAD and CAE.
Optics and photonics - Electronic exchange of optical data - Part 1: NODIF information model
Optics and photonics - Optical coatings - Part 2 : optical properties.
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