N35 光学测试仪器 标准查询与下载



共找到 105 条与 光学测试仪器 相关的标准,共 7

本文件描述了大功率LED(HP-LED)的光度、辐射度和色度参数等光学参数的测量方法。 本文件适用于以结温为参考温度的HP-LED的实验室光学测量。 本文件适用于可见光HP-LED的光学测量,非可见光LED的光学测量可参考本文件。 本文件适用于直流供电的单芯、多芯HP-LED[诸如高压LED(HV-LED)和基板式LED(COB)]的光学测量。LED本文件不适用于交流驱动型LED、有机发光二极管(OLED)、LED模组、LED光引擎、LED灯和LED灯具等LED产品的光学测量。

Optical measurement of high-power LED

ICS
29.140.40
CCS
N35
发布
2022-12-30
实施
2023-07-01

本文件规定了使用拉曼光谱测量石墨烯相关二维材料的层数的方法。 本文件适用于利用机械剥离法制备的、横向尺寸不小于2μm 的石墨烯薄片的层数测量。化学气相沉积(CVD:chemi c a lvapo rdepo s i t i on)法制备的以AB堆垛或ABC堆垛的石墨烯薄片可参照本方法执行。 注1:测量石墨烯薄片的层数时,可单独或者综合几种方法联合测量并相互验证。 注2:第5 章给出了基于2D模的线型(A法)。第6 章给出了基于SiO2/Si衬底的硅拉曼模峰高(B法)进行石墨烯薄片层数测量的拉曼光谱法。 附录A给出了拉曼光谱法测量石墨烯薄片层数的各种方法概要一览表。 附录B给出了基于石墨烯薄片G模的峰高(C法)进行石墨烯薄片层数测量的拉曼光谱法。

Nanotechnologies—Measurement of the number of layers of graphene-related two-dimensional (2D) materials—Raman spectroscopy method

ICS
17.180.30
CCS
N35
发布
2021-05-21
实施
2021-12-01 00:00:00.0

Nanotechnologies—Raman shift correction value for spectrometer calibration

ICS
17.180.30
CCS
N35
发布
2019-08-30
实施
2020-03-01 00:00:00.0

Measuring method of spatial distribution of color characteristics for LED products

ICS
29.140.40
CCS
N35
发布
2018-12-28
实施
2019-07-01 00:00:00.0

本标准规定了拉此频移校准则线的术语和定义,校准条件 ,拉剖频移校准和不确定度评定。 本标准适用于拉部光谱仪的拉 HR BS EE

Nanotechnologies—Raman shift standard curve for spectrometer calibration

ICS
CCS
N35
发布
2018-03-15
实施
2018-10-01

本标准规定了激光共聚焦显微拉曼光谱仪的术语和定义、仪器结构、技术要求、测试方法等。 本标准适用于以连续激光为激发光源,具有单级、二级或三级光谱仪的色散型共聚焦显微拉曼光谱仪(以下简称仪器)。 本标准不适用于傅立叶变换拉曼光谱仪等非色散型拉曼光谱仪和基于脉冲激光光源的拉曼光谱仪。

Nanotechnology—Performance testing for laser confocal microscope Raman spectrometers

ICS
17.180.30
CCS
N35
发布
2016-12-13
实施
2017-07-01

本标准规定了星敏感器通用技术要求、检验规则、标志、包装、装箱、运输和贮存。本标准适用于星敏感器的设计、制造、检验、验收、运输及贮存。

General specification for star sensor

ICS
17.180.30
CCS
N35
发布
2013-12-17
实施
2014-05-15

本标准规定了光学系统焦距、视场、放大率和孔径四项光学参数的测量方法、测量装置和测量的基本要求。 适用于在可见光谱区应用的显微镜、望远镜及照相、投影、制版物镜等光学参数的测量。

Optical systems.Determination of parameters

ICS
37.020
CCS
N35
发布
2009-09-30
实施
2009-12-01

本标准规定了光功率计的术语和定义、分类及技术要求、规定了试验方法、检验规则及包装、运输、标志、贮存。 本标准适用于光通信中测量光功率的光电型光功率计,其他领域测量的光功率的光电型光功率计可参照执行。

Specifications of optical power meter

ICS
CCS
N35
发布
2008-10-07
实施
2009-04-01

本标准规定了单模光纤色散测试仪(以下简称色散仪)的术语和定义、要求、试验方法、检验规则和标志、包装、运输、贮存。 本标准适用于1310nm、1550nm和1625nm波段使用的光纤色散测试仪。

Specifications for optical fibre chromatic dispersion measuring set

ICS
17.180.99
CCS
N35
发布
2008-10-07
实施
2009-04-01

本标准规定了单模光纤色散测试仪(以下简称仪器)的技术要求、试验方法、检验规则和标志、包装、运输、贮存。 本标准适用于单模1.3μm、1.55μm光纤色散测试仪。

Specifications for optical fiber chromatic dispersion measuring set

ICS
17.180.30
CCS
N35
发布
1993-02-03
实施
1993-07-01

本标准规定了光学系统焦距、视场、放大率和孔径(相对孔径和数值孔径)四项光学参数的测量方法、测量装置和测量的基本要求。 本标准适用于在可见光谱区应用的显微镜、望远镜以及照相、投影、制版物镜等光学参数的测量。

Optical systems--Determination of parameters

ICS
17.180.20
CCS
N35
发布
1989-03-31
实施
1990-01-01

This document specifies the position of the indexes for hydraulic expansion chucks. These are used for mounting of raw lenses into optical maschines for processing.

Production in optical engineering - Indexing of hydraulic expansion chucks

ICS
CCS
N35
发布
2021-03-00
实施

5.1 Optical tracking systems are used in a wide range of fields including: video games, film, neuroscience, biomechanics, flight/medical/industrial training, simulation, robotics, and automotive applications. 5.2 This standard provides a common set of metrics and a test procedure for evaluating the performance of optical tracking systems and may help to drive improvements and innovations in optical tracking systems.4 5.3 Potential users often have difficulty comparing optical tracking systems due to the lack of standard performance metrics and test methods, and must therefore rely on the vendor claims regarding the system’s performance, capabilities, and suitability for a particular application. This standard makes it possible for a user to assess and compare the performance of optical tracking systems, and allows the user to determine if the measured performance results are within the specifications with regard to the application requirements. 1.1 Purpose—This test method presents metrics and a procedure for measuring, analyzing, and reporting the system latency of an optical tracking system (OTS) that computes the pose of a rigid object. 1.2 Usage—System vendors may use this test method to determine or validate the system latency in their tracking systems. This test method provides a uniform way to measure and report the system latency along with the uncertainty in the system latency. System users may use this test method to verify that the system latency performance is within the user’s specific requirements and within the system’s rated performance. 1.3 This standard does not measure the display latency of graphical representations of the tracked objects. Display latency is external to the optical tracking system. 1.4 Test Location—The procedures defined in this test method shall be performed in an environment conforming to the manufacturer’s rated conditions. 1.5 The values stated in SI units are to be regarded as standard. No other units of measurement are included in this standard. 1.6 This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety, health, and environmental practices and determine the applicability of regulatory limitations prior to use. 1.7 This international standard was developed in accordance with internationally recognized principles on standardization established in the Decision on Principles for the Development of International Standards, Guides and Recommendations issued by the World Trade Organization Technical Barriers to Trade (TBT) Committee.

Standard Test Method for Measuring System Latency Performance of Optical Tracking Systems that Measure Six Degrees of Freedom (6DOF) Pose

ICS
17.180.30
CCS
N35
发布
2017
实施

Calibration of optical time-domain reflectometers (OTDR) - Part 2 : OTDR for multimode fibres

ICS
33.180.01
CCS
N35
发布
2016-08-20
实施
2016-08-20

Calibration of wavelength/optical frequency measurement instruments. Optical spectrum analyzers

ICS
33.140;33.180.01
CCS
N35
发布
2016-06-30
实施
2016-06-30

Measuring method for refractive index of optical glass -- Part 1: Minimum deviation method

ICS
37.020
CCS
N35
发布
2015-12-21
实施

Diese Internationale Norm legt Verfahren zur Messung der Leistungs-[Energie-]dichteverteilung fest und definiert Parameter zur Charakterisierung der räumlichen Eigenschaften von Laserleistungs-[Energie-]dichteverteilungsfunktionen in einer gegebenen Ebene. Die in dieser Internationalen Norm beschriebenen Prüfverfahren sind zur Prüfung und Charakterisierung der Strahlen von Dauerstrichlasern wie auch von Pulslasern in der Optik und optischen Elementen bestimmt.

Optics and photonics - Lasers and laser-related equipment - Test methods for laser beam power (energy) density distribution

ICS
31.260
CCS
N35
发布
2015-12
实施

This European Standard specifies the reference method for the testing of spectacle frames, ready-to-wear spectacles, sunglasses and other items for eye and face protection for nickel release. The reference method supports the demonstration of conformity with the limit value for nickel release of 0,5 µg/cm2/week set forth by European Regulation. The reference method involves the procedural steps shown in Figure 1 and described in Clause 4. This document applies to those parts of metal spectacle frames and those metal parts of combination spectacle frames that are intended to come into direct and prolonged contact with the skin of the wearer. This document also applies to those relevant metal parts of ready-to-wear spectacles, sunglasses and other items for eye and face protection. NOTE The reference method for articles apart from spectacle frames, ready-to-wear spectacles, sunglasses and other items for eye and face protection is specified in EN 1811.

Ophthalmic optics - Reference method for the testing of spectacle frames and sunglasses for nickel release

ICS
11.040.70
CCS
N35
发布
2015-11
实施

이 표준은 좌우의 독립된 결상(結像) 광학계를 가지며, 입체 시관찰(視觀察)이 가능한 쌍안 실체 현미경(이하 실체 현미경이라 한다. )에 대하여 규정한다.

Stereo microscopes

ICS
37.02
CCS
N35
发布
2013/12/31
实施
2013/12/31



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