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AS/NZS 3947.5.3:2000

Superseded

Superseded

A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.

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superseded

A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.

Low-voltage switchgear and controlgear Control circuit devices and switching elements - Requirements for proximity devices with define behaviour under fault conditions

Available format(s)

Hardcopy , PDF 1 User , PDF 3 Users , PDF 5 Users , PDF 9 Users

Superseded date

30-06-2017

Language(s)

English

Published date

30-05-2000

Preview

1 - AS/NZS 3947.5.3:2000 LOW-VOLTAGE SWITCHGEAR AND CONTROLGEAR - CONTROL CIRCUIT DEVICES AND SWITCHING ELEMENTS-REQUIREMENTS FOR...
4 - PREFACE
6 - CONTENTS
7 - 1 General
7 - 1.1 Scope
7 - 1.2 Normative references
9 - 2 Definitions
9 - 2.1 Basic definitions
10 - 2.2 Parts of a PDF
11 - 2.3 Operation of a PDF
12 - 3 Classification
12 - 3.7 Classification according to defined behaviour
12 - 4 Characteristics
12 - 4.5 Constructional characteristics
12 - 4.5.1 Proximity device with defined behaviour
12 - 4.5.2 Specified target
12 - 5 Product information
12 - 5.1 Nature of information
13 - 5.1.1 Identification
13 - 5.2 Marking
13 - 5.2.1 General
13 - 5.2.2 Terminal identification and marking
13 - 5.3 Instructions for installation, operation and maintenance
13 - 6 Normal service, mounting and transport conditions
13 - 6.1 Normal service conditions
13 - 6.2 Conditions during transport and storage
13 - 6.3 Mounting
14 - 7 Constructional and performance requirements
14 - 7.1 Constructional requirements
14 - 7.1.1 Materials
14 - 7.1.2 Current-carrying parts and their connections
14 - 7.1.3 Clearances and creepage distances
14 - 7.1.4 Vacant
14 - 7.1.5 Vacant
14 - 7.1.6 Vacant
14 - 7.1.7 Terminals
15 - 7.1.8 Vacant
15 - 7.1.9 Provisions for protective earthing
15 - 7. 1. 10 IP degree of protection
15 - 7.1.11 OSSD( s)
16 - 7.1.12 Design of the control and monitoring device
17 - 7.2 Performance requirements
17 - 7.2.1 Operating conditions
18 - 7.2.2 Temperature rise
18 - 7.2.3 Dielectric properties
18 - 7.2.4 Ability to make and break under normal and abnormal load conditions
18 - 7.3 Physical dimensions
18 - 7.4 Shock and vibration
18 - 7.5 Functional requirements
18 - 7.5.1 PDF
19 - 7.5.2 Switching function
19 - 8 Tests
19 - 8.1 Kind of tests
19 - 8.1.1 General
19 - 8.1.2 Type tests
19 - 8.1.3 Routine tests
20 - 8.1.4 Sampling tests
20 - 8.2 Compliance with constructional requirements
20 - 8.3 Performances
20 - 8.3.1 Test sequences
20 - 8.3.2 General test conditions
20 - 8.3.3 Performance under no load, normal load and abnormal load conditions
20 - 8.3.4 Performance under short- circuit current conditions
21 - 8.4 Verification of operating distances
21 - 8.5 Verification of resistance to vibration and shock
21 - 8.6 Verification of electromagnetic compatibility
21 - 8.7 Verification of the defined behaviour under fault conditions
21 - 8.7.1 General
22 - 8.7.2 PDF-D
22 - 8.7.3 PDF-T
22 - 8.7.4 PDF-S
22 - 8.7.5 PDF-M
22 - 8.8 Validation of programmable or complex integrated circuits
22 - 8.8.1 General
22 - 8.8.2 Additional validation for PDF-S and PDF-M
22 - 8.8.3 Software, programming, functional design of integrated circuits
23 - 8.8.4 Test results analysis statement
24 - Annex A
24 - A.1 Conductors and connectors
24 - A.1.1 Conductor/cable
24 - A.1.2 Printed circuit and printed circuit assembly
24 - A.1.3 Terminal blocks
25 - A.1.4 Multi-pin connectors (e. g. plug and socket for cable, relay, IC)
25 - A.2 Switches
25 - A.2.1 Electromechanical position switches, manually operated switches and push- buttons (e. g. reset actuator, dip switch)
25 - A.2.2 Electromechanical devices (e. g. relay, contactor)
26 - A.3 Discrete electrical components
26 - A.3.1 Transformers
26 - A.3.2 Inductors
26 - A.3.3 Resistors
26 - A.3.4 Resistor networks
26 - A.3.5 Potentiometers
27 - A.3.6 Fixed or adjustable capacitors
27 - A.4 Solid state electrical components
27 - A.4.1 Discrete semi-conductors (e. g. diode, transistor, triac, voltage regulator, phototransistor and light-emitting diode (LED))
27 - A.4.2 Optocouplers
27 - A.4.3 Integrated circuits - simple
28 - A.4.4 Integrated circuits – complex or programmable
28 - A.5 Motors

Applies to proximity devices with an enhanced resistance to fault. Specifies requirements for four different types of PDF: PDF with desifned reliability; PDF with test capability, PDF with single fault tolerance and PDF with self-monitoring. This Standard is identical with and reproduced from IEC 60947-5-3:1999.

This part of IEC 60947 applies to proximity devices with an enhanced resistance to failure (PDF).It specifies requirements for four different types of PDF.NOTE – Due to their enhanced resistance to failure, PDFs apply for instance to:– interlocking devices (see ISO 14119);– the detection of the presence or absence of protective devices (see ISO/TR 12100-1).For a PDF used in applications where additional characteristics, dealt with in other standards, are required, it will be necessary to satisfy the requirements of all relevant standards.

Committee
EL-006
DocumentType
Standard
ISBN
0 7337 3375 1
Pages
25
PublisherName
Standards Australia
Status
Superseded
SupersededBy
Supersedes

Standards Relationship
IEC 60947-5-3:1999+AMD1:2005 CSV Identical
IEC 60947-5-3:1999 Identical

First published as AS/NZS 3947.5.3:2000.

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AS/NZS ISO 9001:1994 Quality systems - Model for quality assurance in design, development, production, installation and servicing
AS/NZS 3947.1:1998 Low-voltage switchgear and controlgear General rules
AS/NZS ISO 9001:2000 Quality management systems - Requirements
AS/NZS 3108:1994 Approval and test specification - Particular requirements for isolating transformers and safety isolating transformers

AS/NZS 3000:2018 (Unamended Hardcopy + Amendments) Electrical installations (known as the Australian/New Zealand Wiring Rules)

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