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IEEE 1573-2021(Redline)

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IEEE Recommended Practice for Electronic Power Subsystems: Parameters, Interfaces, Elements, and Performance (Redline)

Published By Publication Date Number of Pages
IEEE 2021 132
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Revision Standard – Active. A technical basis for implementation of electronic power subsystems is provided in this recommended practice. It is intended for electronic systems engineers and integrators, electronic power subsystem designers and integrators, as well as for power element manufacturers and suppliers. System-level issues in element or subsystem integration, adaptation, and accommodation are addressed, and system interface parameters, test methods, and test conditions are defined. Ac-dc, dc-ac, and dc-dc electronic power subsystems are discussed. The range of electronic power subsystems includes those with dc, single-phase, and three-phase inputs, having power levels from a fraction of a watt up to 20 kW. The voltage range is 600 V and below at a frequency or frequencies of dc 1 kHz. Internal operating frequencies within elements or subsystems may be much higher than 1 kHz. This recommended practice may be used outside the range where applicable. IEEE Std 1515-2000 is built on and supplemented in this document.

PDF Catalog

PDF Pages PDF Title
1 IEEE Std 1573™-2021 Front cover
2 Title page
4 Important Notices and Disclaimers Concerning IEEE Standards Documents
8 Participants
9 Introduction
10 Contents
12 List of Figures
13 List of Tables
15 1. Overview
1.1 Scope
1.2 Purpose
1.3 Word usage
16 1.4 Organization
17 2. Normative references
3. Definitions, acronyms, and abbreviations
3.1 Definitions
19 3.2 Acronyms and abbreviations
22 4. Element-level parameters
4.1 Set point voltage accuracy
4.2 Maximum power dissipation
4.3 Contact resistance
4.4 Input undervoltage protection
23 4.5 Input overvoltage protection
24 4.6 Overtemperature shutdown
25 4.7 Reverse voltage protection
27 4.8 Turn-on time
4.9 Regulation, combined
4.10 Regulation effects due to aging
28 4.11 Lightning
4.12 Surge
4.13 Sag
5. Electronic power subsystems
29 5.1 Interface definition
32 5.2 Requirements definition
5.3 Architectural considerations
39 5.4 System interaction
40 6. Electrical interface parameters
6.1 Status monitoring
6.2 Supervisory control
6.3 Built-in-test
41 6.4 Electromagnetic compatibility/electromagnetic interference
44 7. Mechanical interface parameters
7.1 Packaging
46 7.2 Center of gravity
47 7.3 Cooling or thermal energy dissipation process
48 8. Environmental interface parameters
49 8.1 Thermal
8.2 Resistance to contaminants
8.3 Sand and dust
50 8.4 Explosive atmosphere
8.5 Acoustics
51 8.6 Radiation
53 9. System effectiveness interface parameters
9.1 Qualification requirements
54 9.2 Quality assurance
9.3 Acceptance testing
55 9.4 Compliance information
9.5 Logistics
56 9.6 Configuration management
9.7 Obsolescence
9.8 Discontinuance
9.9 Production line certification
9.10 Warranty
10. System integration
57 10.1 System interaction
61 10.2 Protection and sensing
63 10.3 Output sequencing and clamping
64 10.4 Supervisory/status monitoring, control, and software implementation
66 10.5 System reliability
69 10.6 Logistics
70 11. System adaptation
11.1 Electrical interface adaptations
88 11.2 Mechanical interface adaptation
90 11.3 Environmental interface adaptation
97 11.4 System effectiveness interface adaptation
103 11.5 Adaptation analysis techniques
104 Annex A (informative) Bibliography
107 Annex B (informative) Performance
110 B.1 Electrical interface performance
B.2 Mechanical interface performance
111 B.3 Environmental interface performance
112 B.4 System effectiveness performance
115 Annex C (informative) Parameter index
120 Annex D (informative) Radiation environments
D.1 Radiation environmental/definition
D.2 Definition of terms
123 D.3 Radiation environments
127 D.4 Radiation design considerations
130 D.5 Radiation testing
132 Back cover
IEEE 1573-2021
$99.67