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Program of Pattern Evaluation of UV Radiometers
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JJF 1765-2019
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Basic data Standard ID | JJF 1765-2019 (JJF1765-2019) | Description (Translated English) | Program of Pattern Evaluation of UV Radiometers | Sector / Industry | Metrology & Measurement Industry Standard | Classification of Chinese Standard | A60 | Classification of International Standard | 17.180 | Word Count Estimation | 38,320 | Date of Issue | 2019 | Date of Implementation | 2019-12-27 | Issuing agency(ies) | State Administration for Market Regulation |
JJF 1765-2019: Program of Pattern Evaluation of UV Radiometers---This is a DRAFT version for illustration, not a final translation. Full copy of true-PDF in English version (including equations, symbols, images, flow-chart, tables, and figures etc.) will be manually/carefully translated upon your order.
(Outline of Type Evaluation of Ultraviolet Radiometer)
National Metrology Technical Specifications of the People's Republic of China
Type Evaluation Outline of Ultraviolet Irradiance Meter
2019-09-27 released
2019-12-27 Implementation
Issued by the State Administration for Market Regulation
Type Evaluation Outline of Ultraviolet Irradiance Meter
Focal point. National Optical Metrology Technical Committee
Main drafting unit. China Institute of Metrology
Beijing Normal University
Participating in the drafting unit. China Institute of Metrology
China Testing Technology Research Institute
Shenzhen Institute of Metrology and Quality Inspection
Xiamen Metrological Verification and Testing Institute
This specification entrusts the National Optical Metrology Technical Committee to be responsible for the interpretation
The main drafters of this specification.
Dai Caihong (China Institute of Metrology)
Wang Yanfei (China Institute of Metrology)
Zhang Baozhou (Beijing Normal University)
Participating drafters.
Wu Zhifeng (China Institute of Metrology)
Zeng Limei (China Testing Technology Research Institute)
Li Xiangzhao (Shenzhen Institute of Metrology and Quality Inspection)
Ruan Yujiao (Xiamen Metrological Inspection and Testing Institute)
table of Contents
Introduction (Ⅱ)
1 scope (1)
2 Reference documents (1)
3 Term (1)
4 Overview (1)
5 Legal management requirements (2)
5.1 Unit of measurement (2)
5.2 Requirements for the marking of measurement legal system and the marking of measuring instruments (2)
6 Measurement requirements (2)
6.1 Spectral response and band division (2)
6.2 Zero error (3)
6.3 Long wave response error (3)
6.4 Cosine characteristic (directional response) error(3)
6.5 Linearity error(3)
6.6 Shift error (3)
6.7 Fatigue error(4)
6.8 Maximum allowable relative indication error (4)
7 General technical requirements (4)
7.1 Appearance and structure (4)
7.2 Electrical safety(4)
7.3 Environmental adaptability (5)
8 Type evaluation item list (5)
9 Provide the number of prototypes and how to use the prototypes (6)
9.1 Number of prototypes provided (6)
9.2 How to use the prototype (7)
10 Test methods and conditions of test items, data processing and qualification criteria (7)
10.1 Measurement requirements(7)
10.2 General technical requirements (14)
11 List of measuring instruments and equipment used in test items (20)
12 Problems that should be paid attention to in type evaluation (21)
13 Judgment of type evaluation results (22)
14 Type evaluation original record format (22)
Appendix A Original Record Format of Type Evaluation of Ultraviolet Irradiance Meter (23)
Introduction
This type evaluation outline is based on JJF 1015-2014 "General Specification for Type Evaluation of Measuring Instruments" and JJF 1016-
The.2014 "Guidelines for the Compilation of the Type Evaluation Outline for Measuring Instruments" was prepared as a basic specification.
The technical indicators of this type evaluation outline refer to the verification regulations of JJG879-2015 "Ultraviolet Irradiance Meter".
This type evaluation outline is released for the first time.
Type Evaluation Outline of Ultraviolet Irradiance Meter
1 Scope
This type evaluation outline is applicable to UV-A, UV-B, UV-C, UV-A1, UV-365, UV-310, UV-
Type evaluation of 254-band ultraviolet illuminance meter.
2 Reference documents
This specification refers to the following documents.
JJG755-2015 UV radiation illuminance working standard device verification regulation
JJG879-2015 UV radiation illuminance meter verification regulations
JJF 1032-2005 Terms and definitions of optical radiation measurement
GB 4793.1 Safety requirements for electrical equipment for measurement, control and laboratory use Part 1.General requirements
GB/T 11606-2007 Environmental test methods for analytical instruments
GB/T 12085.2-2010 Optical and optical instrument environmental test method Part 2.Low temperature, high temperature,
Damp heat
For dated reference documents, only the dated version applies to this specification; for undated references
The latest version (including all amendments) is applicable to this specification.
3 term
3.1 Long-wavelength range response characteristics long-wavelengthrangeresponsecharacteristics
Describe the long-wavelength spectral response characteristics of the ultraviolet radiometer outside the spectral response wavelength range.
3.2 cosine (directional response) characteristics cosine (directional response) characteristics
Describe the response characteristics of the ultraviolet illuminance meter when the angle of the incident light deviates from the normal incidence (the law of cosine).
4 overview
The International Commission on Illumination (CIE) divides ultraviolet radiation into UV-A (315nm~400nm), UV-B
(280nm~315nm) and UV-C (100nm~280nm) three bands. Since 100nm~200nm
Ultraviolet radiation is strongly absorbed in the air, so for the UV-C band, this outline only considers.200nm~280nm
The test in the wavelength range is suitable for the measurement of the UV-C band in the air, but not for the measurement in the vacuum.
Figure 1 Schematic diagram of the general composition structure of the UV illuminance meter detector
Comply with ultraviolet radiation UV-A, UV-B, UV-C, UV-A1, UV-365, UV-310, UV-254 bands
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