1、 IEC 60529 Edition 2.2 2013-08 CONSOLIDATED VERSION VERSION CONSOLIDE Degrees of protection provided by enclosures (IP Code) Degrs de protection procurs par les enveloppes (Code IP) IEC60529:1989+A1:1999+A2:2013 colourinsideTHIS PUBLICATION IS COPYRIGHT PROTECTED Copyright 2013 IEC, Geneva, Switzerl
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16、 protection procurs par les enveloppes (Code IP) INTERNATIONAL ELECTROTECHNICAL COMMISSION COMMISSION ELECTROTECHNIQUE INTERNATIONALE ICS 13.260; 29.020 ISBN 978-2-8322-1086-4 Registered trademark of the International Electrotechnical Commission Marque dpose de la Commission Electrotechnique Interna
17、tionale Warning! Make sure that you obtained this publication from an authorized distributor. Attention! Veuillez vous assurer que vous avez obtenu cette publication via un distributeur agr. colourinsideIEC 60529 Edition 2.2 2013-08 REDLINE VERSION VERSION REDLINE Degrees of protection provided by e
18、nclosures (IP Code) Degrs de protection procurs par les enveloppes (Code IP) IEC60529:1989+A1:1999+A2:2013 colourinside 2 60529 IEC:1989+A1:1999 +A2:2013 CONTENTS FOREWORD . 5 INTRODUCTION . 7 INTRODUCTION TO AMENDMENT 2 . 8 1 Scope and object 9 2 ObjectNormative references . 10 3 Definitions 10 4 D
19、esignations 12 4.1 Arrangement of the IP Code 12 4.2 Elements of the IP Code and their meanings . 12 4.3 Examples for the use of letters in the IP Code . 13 5 Degrees of protection against access to hazardous parts and against solid foreign objects indicated by the first characteristic numeral 14 5.
20、1 Protection against access to hazardous parts 14 5.2 Protection against solid foreign objects . 15 6 Degrees of protection against ingress of water indicated by the second characteristic numeral 16 7 Degrees of protection against access to hazardous parts indicated by the additional letter 18 8 Sup
21、plementary letters . 19 9 Examples of designations with the IP Code 20 9.1 IP Code not using optional letters: . 20 9.2 IP Code using optional letters: . 20 10 Marking 21 11 General requirements for tests . 21 11.1 Atmospheric conditions for water or dust tests . 21 11.2 Test samples . 21 11.3 Appli
22、cation of test requirements and interpretation of test results 21 11.4 Combination of test conditions for the first characteristic numeral 22 11.5 Empty enclosures 22 12 Tests for protection against access to hazardous parts indicated by the first characteristic numeral 22 12.1 Access probes . 22 12
23、.2 Test conditions 22 12.3 Acceptance conditions . 24 12.3.1 For low-voltage equipment (rated voltages not exceeding 1 000 V a.c. and 1 500 V d.c.) 24 12.3.2 For high-voltage equipment (rated voltages exceeding 1 000 V a.c. and 1 500 V d.c.) . 24 12.3.3 For equipment with hazardous mechanical parts
24、25 13 Tests for protection against solid foreign objects indicated by the first characteristic numeral 25 13.1 Test means . 25 13.2 Test conditions for first characteristic numerals 1, 2, 3, 4 25 60529 IEC:1989+A1:1999 3 +A2:2013 13.3 Acceptance conditions for first characteristic numerals 1, 2, 3,
25、4 . 25 13.4 Dust test for first characteristic numerals 5 and 6 25 13.5 Special conditions for first characteristic numeral 5 . 27 13.5.1 Test conditions for first characteristic numeral 5 27 13.5.2 Acceptance conditions for first characteristic numeral 5 . 27 13.6 Special conditions for first chara
26、cteristic numeral 6 . 27 13.6.1 Test conditions for first characteristic numeral 6 27 13.6.2 Acceptance conditions for first characteristic numeral 6 . 27 14 Tests for protection against water indicated by the second characteristic numeral 27 14.1 Test means . 27 14.2 Test conditions 28 14.2.1 Test
27、for second characteristic numeral 1 with the drip box . 29 14.2.2 Test for second characteristic numeral 2 with the drip box . 29 14.2.3 Test for second characteristic numeral 3 with oscillating tube or spray nozzle 30 14.2.4 Test for second characteristic numeral 4 with oscillating tube or spray no
28、zzle 30 14.2.5 Test for second characteristic numeral 5 with the 6,3 mm nozzle . 31 14.2.6 Test for second characteristic numeral 6 with the 12,5 mm nozzle . 31 14.2.7 Test for second characteristic numeral 7: temporary immersion between 0,15 m and 1 m . 31 14.2.8 Test for second characteristic nume
29、ral 8: continuous immersion subject to agreement . 32 14.2.9 Test for second characteristic numeral 9 with a spray nozzle . 32 14.3 Acceptance conditions . 32 15 Tests for protection against access to hazardous parts indicated by the additional letter 33 15.1 Access probes . 33 15.2 Test conditions
30、33 15.3 Acceptance conditions . 33 Annex A (informative) Examples of IP coding for the verification of protection of low-voltage equipment against access to hazardous parts 43 Annex B (informative) Summary of responsibilities of relevant technical committees 49 Bibliography 51 Figure 1 Jointed test
31、finger 34 Figure 2 Test device to verify protection against dust (dust chamber) 35 Figure 3 Test device to verify protection against vertically falling water drops (drip box) 36 Figure 4 Test device to verify protection against spraying and splashing water; second characteristic numerals 3 and 4 (os
32、cillating tube) . 37 Figure 5 Hand-held device to verify protection against spraying and splashing water; second characteristic numerals 3 and 4 (spray nozzle) . 38 Figure 6 Test device to verify protection against water jets (hose nozzle) 38 Figure 7 Fan jet nozzle dimensions 39 4 60529 IEC:1989+A1
33、:1999 +A2:2013 Figure 8 Fan jet nozzle resulting dimensions of spraying hole for checking purpose 39 Figure 9 Fan jet nozzle examples. 40 Figure 10 Set-up for measuring the impact force of the water jet for determining the protection against high-pressure and temperature water jet, degree of protect
34、ion against ingress of water IP X9 . 41 Figure 11 Impact force distribution . 41 Figure 12 Test device to verify protection against high pressure and temperature water jet for small enclosures . 42 Table 1 Degrees of protection against access to hazardous parts indicated by the first characteristic
35、numeral . 15 Table 2 Degrees of protection against solid foreign objects indicated by the first characteristic numeral . 16 Table 3 Degrees of protection against water indicated by the second characteristic numeral . 18 Table 4 Degrees of protection against access to hazardous parts indicated by the
36、 additional letter . 19 Table 5 Test conditions for degrees of protection indicated by the first characteristic numeral . 22 Table 6 Access probes for the tests for protection of persons against access to hazardous parts 23 Table 7 Test means for the tests for protection against solid foreign object
37、s 25 Table 8 Test means and main test conditions for the tests for protection against water 28 Table 9 Total water flow rate qvunder IPX3 and IPX4 test conditions Mean flow rate per hole qvl= 0,07 l/min 31 IP Codes of examples in annex A . 48 60529 IEC:1989+A1:1999 5 +A2:2013 INTERNATIONAL ELECTROTE
38、CHNICAL COMMISSION _ DEGREES OF PROTECTION PROVIDED BY ENCLOSURES (IP Code) FOREWORD 1) The International Electrotechnical Commission (IEC) is a worldwide organization for standardization comprising all national electrotechnical committees (IEC National Committees). The object of IEC is to promote i
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48、rrect application of this publication. 9) Attention is drawn to the possibility that some of the elements of this IEC Publication may be the subject of patent rights. IEC shall not be held responsible for identifying any or all such patent rights. This Consolidated version of IEC 60529 bears the edi
49、tion number 2.2. It consists of the second edition (1989) documents 70(CO)13 + 70(CO)15 and 70(CO)16 + 70(CO)17, its corrigendum 1 (2003), its corrigendum 2 (2007), its corrigendum 3 (2009), its amendment 1 (1999) documents 70/91/FDIS and 70/92/RVD and its amendment 2 documents 70/122/FDIS and 70/123/RVD. The technical content is identical to the base edition and its amendments. In this Redline version, a vertical line in the ma