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Atmospheric radiation effects -- Accommodation of atmospheric radiation effects via single event effects within avionics electronic equipment
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GB/T 34956-2017
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Basic data | Standard ID | GB/T 34956-2017 (GB/T34956-2017) | | Description (Translated English) | Atmospheric radiation effects -- Accommodation of atmospheric radiation effects via single event effects within avionics electronic equipment | | Sector / Industry | National Standard (Recommended) | | Classification of Chinese Standard | V04 | | Classification of International Standard | 49.060 | | Word Count Estimation | 82,824 | | Date of Issue | 2017-11-01 | | Date of Implementation | 2018-05-01 | | Regulation (derived from) | National Standard Announcement 2017 No. 29 | | Issuing agency(ies) | General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China, Standardization Administration of the People's Republic of China |
GB/T 34956-2017: Atmospheric radiation effects -- Accommodation of atmospheric radiation effects via single event effects within avionics electronic equipment ---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.
Atmospheric radiation effects-Accommodation of atmospheric radiation effects via single event effects within avionics electronic equipment
ICS 49.060
V04
National Standards of People's Republic of China
Atmospheric radiation effects
Avionics single particle effect protection design guide
Atmospheric radiation effects-Accommodation of atmosphericradiation
(IEC 62396-1.2016, Process managementforavionics-Atmospheric
radiation effects-Part 1. Accommodation of atmosphericradiation
equipment, IDT)
2017-11-01 Release.2018-05-01 implementation
General Administration of Quality Supervision, Inspection and Quarantine of People's Republic of China
China National Standardization Administration released
Directory
Foreword Ⅲ
Introduction IV
1 Scope 1
2 Normative references 1
3 Terms and definitions 1
4 Abbreviations 8
5 Atmospheric radiation environment 11
Effect of atmospheric radiation on avionics 18
System Design Guide
Calculation of avionics SEE rate
Single particle effect compliance verification
Appendix A (Informative) Thermal Neutron Evaluation 39
Appendix B (Informative) Calculation of SEE rate of avionics 40
Appendix C (informative) test equipment available abroad 45
Appendix D (informative) atmospheric neutron fluence rate change in latitude and longitude Table 52
Appendix E (informative) SEE impact analysis above 18.3km 54
Appendix F (Informative) Heavy ion SEE rate prediction method
Appendix G (Informative) SEE Section Data for Atmospheric Neutron Environments (~.2014) 60
Appendix NA (informative) domestic 14MeV neutron source test unit example 68
Appendix NB (informative) Non-white neutron (different from the atmospheric spectrum) cross-section calculation SEE rate of small feature size devices 69
References 71
Foreword
This standard was drafted in accordance with the rules given in GB/T 1.1-2009.
This standard uses the translation method is equivalent to using IEC 62396-1.2016 "Avionics process management atmospheric radiation effects Part 1. Air
Airborne electronic equipment single particle effect protection design guide. "
This standard compared with IEC 62396-1.2016, mainly made the following editorial changes.
--- The standard name changed to "Atmospheric radiation affect avionics single particle effect protection design guide";
--- Increased information appendix NA, NB.
This standard is proposed by China Aviation Industry Corporation.
This standard by the National Avionics Process Management Standardization Technical Committee (SAC/TC427) centralized.
This standard was drafted unit. China Aviation Institute of Integrated Technology, Beijing Shengtao Ping Experimental Engineering Technology Co., Ltd., China Aviation
Industry First Aircraft Design and Research Institute.
The main drafters of this standard. Li Ming, Chen Dongmei, Wang Qun Yong, Xue Haihong, Chen Yu, Zhang Feng, Li Gang.
Introduction
Aircrew and passengers are exposed to atmospheric radiation (neutrons and protons) during flight, which also affects avionics
Prepared and induced single particle effect (SEE). In the past few years, domestic and international air crews affected the crew and passengers
A great deal of research has been carried out and great achievements have been made. The standardization of atmospheric neutron radiation effects for avionics has been
It has received great attention from the aviation manufacturing industry and is a further extension of ongoing work related to atmospheric radiation by aircraft crews and passengers.
Atmospheric radiation effect is one of the influencing factors of the avionics soft and hard failure rate. From the system security point of view, in use
When calculating the failure rate, the method described in the ARP4754A (Common Method for Calculating Hard Failure Rates and Soft Failure Rates) also applies to atmospheric radiation
Shot failure rate.
In addition, the standard reference JEDEC (Joint Electron Device Engineering Council) standard JESD89A, the standard is
Electronic equipment suffers from ground-level (below 3040m) atmospheric emissions that produce soft errors in the reference standard.
This standard determines the potential impact of the aircraft on its electronic products exposed to atmospheric ionizing radiation and the disposal of these effects
The general method of sound, adapted to avionics system designers, electronic equipment or components of the development and production and application of units can also refer to
use.
Atmospheric radiation effects
Avionics single particle effect protection design guide
1 Scope
This standard mainly for 18.3km flight aircraft in the airborne electronic equipment to provide protection against atmospheric radiation design guidance, but also
It provides a reference for the design of atmospheric radiation effect protection of avionics in aircraft flying above 18.3km.
This standard defines the radiation environment and its radiation in the avionics environment effects, proposed in the avionics system defense
Control the design requirements of these effects.
This standard is intended to guide the development of avionics equipment manufacturers and designers in the avionics single-particle effect to form a standard design
Process and method.
This standard provides a detailed radiation environment to identify the avionics radiation problems required to provide electronic devices single-particle effect rate
Quantitative calculation method. A comprehensive system safety analysis approach should consider the single-particle effect rate and consider both device-level and system-level proofs
After the particle effect rate avionics meet the application requirements.
2 Normative references
The following documents for the application of this document is essential. For dated references, only the dated version applies to this article
Pieces. For undated references, the latest edition (including all amendments) applies to this document.
GB/T 34955-2017 atmospheric radiation effects avionics single particle effect test guide (IEC 62396-2.2012, IDT)
IEC 62239-1-2015 Avionics process management - Part 1. Preparation and maintenance of electronic component management plans
managementfotavionicsmanagementplan-Part 1.Preparationandmaintenanceofanelectroniccom-
ponentsmanagementplan)
IEC 62396-3, Avionics process management, effects of atmospheric radiation - Part 3. Single-particle effects of atmospheric radiation in avionics systems
Prevention and control optimization system design [Processmanagementforavionics-Atmosphericradiationeffects-Part 3.Optis-
misingsystemdesigntoaccommodatethesingleeventeffects (SEE) ofatmosphericradiation]
IEC 62396-4-2013, Avionics process management, effects of atmospheric radiation - Part 4. High-voltage avionics and its potential
Process design guidelines for single-particle effects (Process managementforavionics-Atmosphericradiationeffects-Part 4.
Guidelines for designing with high voltage electrical products and potentialsingle effect)
IEC 62396-5 Avionics Process Management Atmospheric Radiation Effects Part 5. Thermal Neutron Fluence Rates and Their Applications in Avionics Systems
Process evaluation guideline (Process managementforavionics-Atmosphericradiationeffects-Part 5.Guide-
linesforassessingtherneuneufluxesandeffectsinavionicssystems)
EIA4899 electronic device management plan preparation standards (Standardforprearinganelectroniccomponentsman-
agementplan
3 Terms and definitions
The following terms and definitions apply to this document.
Note. Users of this standard may adopt additional definitions of terms that are consistent with the customary practices within their organization.
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