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SNZ AS/NZS 60079.10.2 - EXPLOSIVE ATMOSPHERES PART 10.2: CLASSIFICATION OF AREAS-EXPLOSIVE DUST ATMOSPHERES Organization: SNZ
Date: 2016-04-05
Description: This part of IEC 60079 is concerned with the identification and classification of areas where explosive dust atmospheres and combustible dust layers are present, in order to permit the proper assessment of ignition sources in such areas.
ISA 60079-0 - EXPLOSIVE ATMOSPHERES – PART 0: EQUIPMENT – GENERAL REQUIREMENTS - SIXTH EDITION; 12.00.01 Organization: ISA
Date: 2009-10-14
Description: This standard specifies the general requirements for construction, test ing and marking of electrical equipment and Ex Components intended for use in explosive atmospheresExplosive atmospheres are identified by the National Electrical Code®, ANSI/NFPA 70 as hazardous (classified) locations and include the following specified locations: • Class I, Zone 0 • Class I, Zone 1 • Class I, Zone 2 • Zone 20 • Zone 21 • Zone 22 See 6•1 for the relationship of the Equipment Protection Level (EPL) to the zone area classification• The standard atmospheric conditions (relating to the explosion characteristics of the atmosphere) under which it may be assumed that electrical equipment can be operated are:
CENELEC - EN 60079-0 - EXPLOSIVE ATMOSPHERES - PART 0: EQUIPMENT - GENERAL REQUIREMENTS - INCORPORATES AMENDMENT A11: 2013 Organization: CENELEC
Date: 2012-08-01
Description: NOTE 4 Where an explosive gas atmosphere and a combustible dust atmosphere are, or may be, present at the same time, the simultaneous presence of both should be considered and may require additional protective measures.
IEC 60079-0 - EXPLOSIVE ATMOSPHERES – PART 0: EQUIPMENT – GENERAL REQUIREMENTS - EDITION 6.0; INCORPORATES CORRIGENDUM 1: 11/2012 AND CORRIGENDUM 2: 12/2013; INCLUDES INTERPRETATION 1: 11/2013 AND INTERPRETATION 2: 10/2014 Organization: IEC
Date: 2011-06-01
Description: NOTE 4 Where an explosive gas atmosphere and a combustible dust atmosphere are, or may be, present at the same time, the simultaneous presence of both should be considered and may require additional protective measures.
SNZ AS/NZS 60079.0 - EXPLOSIVE ATMOSPHERES PART 0: EQUIPMENT—GENERAL REQUIREMENTS Organization: SNZ
Date: 2012-02-22
Description: NOTE 4 Where an explosive gas atmosphere and a combustible dust atmosphere are, or may be, present at the same time, the simultaneous presence of both should be considered and may require additional protective measures.
IEC 60079-0 REDLINE - EXPLOSIVE ATMOSPHERES – PART 0: EQUIPMENT – GENERAL REQUIREMENTS - EDITION 6.0 Organization: IEC
Date: 2011-06-01
Description: NOTE 4 Where an explosive gas atmosphere and a combustible dust atmosphere are, or may be, present at the same time, the simultaneous presence of both should be considered and may require additional protective measures.
CSA C22.2 NO 60079-0 - EXPLOSIVE ATMOSPHERES — PART 0: EQUIPMENT — GENERAL REQUIREMENTS - THIRD EDITION Organization: CSA
Date: 2015-10-01
Description: NOTE 4 Where an explosive gas atmosphere and a combustible dust atmosphere are, or may be, present at the same time, the simultaneous presence of both should be considered and may require additional protective measures.
DSF/EN 60079-0/FPRAA - EXPLOSIVE ATMOSPHERES - PART 0: EQUIPMENT - GENERAL REQUIREMENTS Organization: DS
Description: IEC 60079-0:2011 specifies the general requirements for construction, testing and marking of electrical equipment and Ex Components intended for use in explosive atmospheres. Electrical equipment complying with this standard is intended for use in hazardous areas in which explosive gas atmospheres, caused by mixtures of air and gases, vapours or mists, exist under normal atmospheric conditions.
DS/EN ISO 80079-36 - EXPLOSIVE ATMOSPHERES - PART 36: NON-ELECTRICAL EQUIPMENT FOR EXPLOSIVE ATMOSPHERES - BASIC METHOD AND REQUIREMENTS Organization: DS
Date: 2016-04-13
Description: This International Standard specifies the basic method and requirements for design, construction, testing and marking of non-electrical equipment intended for use in explosive atmospheres in air of gas, vapour, mist and dusts. Such atmospheres can also exist inside the equipment.
CEN - EN ISO 80079-36 - EXPLOSIVE ATMOSPHERES - PART 36: NON-ELECTRICAL EQUIPMENT FOR EXPLOSIVE ATMOSPHERES - BASIC METHOD AND REQUIREMENTS Organization: CEN
Date: 2016-04-01
Description: This standard is supplemented or modified by the following standards concerning specific types of protection: – ISO 80079-37, Explosive atmospheres – Part 37: Non-electrical equipment for explosive atmospheres – Non-electrical type of protection constructional safety "c", control of ignition source "b", liquid immersion "k" – IEC 60079-1, Explosive atmospheres – Part 1: Equipment protection by flameproof enclosures "d" – IEC 60079-2, Explosive atmospheres – Part 2: Equipment protection by pressurized enclosures "p" – IEC 60079-31, Explosive atmospheres – Part 31: Equipment dust ignition protection by enclosure "t" The nature and ignition sources of non-electrical equipment shall be considered when applying types of protection "d", "p", or "t" on non-electrical equipment  
CEI - UNI EN/ISO 80079-36 - EXPLOSIVE ATMOSPHERES PART 36: NON-ELECTRICAL EQUIPMENT FOR EXPLOSIVE ATMOSPHERES - BASIC METHOD AND REQUIREMENTS Organization: CEI
Date: 2016-06-01
Description: This standard is supplemented or modified by the following standards concerning specific types of protection: – ISO 80079-37, Explosive atmospheres – Part 37: Non-electrical equipment for explosive atmospheres – Non-electrical type of protection constructional safety "c", control of ignition source "b", liquid immersion "k" – IEC 60079-1, Explosive atmospheres – Part 1: Equipment protection by flameproof enclosures "d" – IEC 60079-2, Explosive atmospheres – Part 2: Equipment protection by pressurized enclosures "p" – IEC 60079-31, Explosive atmospheres – Part 31: Equipment dust ignition protection by enclosure "t" The nature and ignition sources of non-electrical equipment shall be considered when applying types of protection "d", "p", or "t" on non-electrical equipment (see Annex G).
ISO/IEC 80079-38 - EXPLOSIVE ATMOSPHERES – PART 38: EQUIPMENT AND COMPONENTS IN EXPLOSIVE ATMOSPHERES IN UNDERGROUND MINES - FIRST EDITION Organization: ISO
Date: 2016-02-01
Description: This includes machinery and components for use in mines susceptible to explosive atmospheres of firedamp and/or combustible dust. The standard atmospheric conditions (relating to the explosion characteristics of the atmosphere) under which it may be assumed that equipment can be operated are: • temperature -20 °C to +60 °C; • pressure 80 kPa (0,8 bar) to 110 kPa (1,1 bar); and • air with normal oxygen content, typically 21 % v/v.
CEN - EN ISO/IEC 80079-38 - EXPLOSIVE ATMOSPHERES - PART 38: EQUIPMENT AND COMPONENTS IN EXPLOSIVE ATMOSPHERES IN UNDERGROUND MINES Organization: CEN
Date: 2016-12-01
Description: This includes machinery and components for use in mines susceptible to explosive atmospheres of firedamp and/or combustible dust. The standard atmospheric conditions (relating to the explosion characteristics of the atmosphere) under which it may be assumed that equipment can be operated are: • temperature -20 °C to +60 °C; • pressure 80 kPa (0,8 bar) to 110 kPa (1,1 bar); and • air with normal oxygen content, typically 21 % v/v.
ISO/IEC 80079-36 - EXPLOSIVE ATMOSPHERES – PART 36: NON-ELECTRICAL EQUIPMENT FOR EXPLOSIVE ATMOSPHERES – BASIC METHOD AND REQUIREMENTS - FIRST EDITION Organization: ISO
Date: 2016-02-01
Description: This part of ISO/IEC 80079 specifies the basic method and requirements for design, construction, testing and marking of non-electrical Ex equipment, Ex Components, protective systems, devices and assemblies of these products that have their own potential ignition sources and are intended for use in explosive atmospheres. Hand tools and manually operated equipment without energy storage are excluded from the scope of this standard.
IEC 60079-10-2 REDLINE - REDLINE VERSION EXPLOSIVE ATMOSPHERES – PART 10-2: CLASSIFICATION OF AREAS – EXPLOSIVE DUST ATMOSPHERES - EDITION 2.0 Organization: IEC
Date: 2015-01-01
Description: This part of IEC 60079 is concerned with the identification and classification of areas where explosive dust atmospheres and combustible dust layers are present, in order to permit the proper assessment of ignition sources in such areas.
DS/EN 60079-10-2 - EXPLOSIVE ATMOSPHERES – PART 10-2: CLASSIFICATION OF AREAS – EXPLOSIVE DUST ATMOSPHERES Organization: DS
Date: 2015-03-12
Description: IEC 60079-10-2:201 5 is concerned with the identification and classification of areas where explosive dust atmospheres and combustible dust layers are present, in order to permit the proper assessment of ignition sources in such areas.
IEC 60079-10-2 - EXPLOSIVE ATMOSPHERES – PART 10-2: CLASSIFICATION OF AREAS – EXPLOSIVE DUST ATMOSPHERES - EDITION 2.0 Organization: IEC
Date: 2015-01-01
Description: This part of IEC 60079 is concerned with the identification and classification of areas where explosive dust atmospheres and combustible dust layers are present, in order to permit the proper assessment of ignition sources in such areas.
CENELEC - EN 60079-10-2 - EXPLOSIVE ATMOSPHERES - PART 10-2: CLASSIFICATION OF AREAS - EXPLOSIVE DUST ATMOSPHERES Organization: CENELEC
Date: 2015-03-01
Description: This part of IEC 60079 is concerned with the identification and classification of areas where explosive dust atmospheres and combustible dust layers are present, in order to permit the proper assessment of ignition sources in such areas.
CEI EN 60079-10-2 - EXPLOSIVE ATMOSPHERES PART 10-2: CLASSIFICATION OF AREAS - EXPLOSIVE DUST ATMOSPHERES Organization: CEI
Date: 2015-11-01
Description: This part of IEC 60079 is concerned with the identification and classification of areas where explosive dust atmospheres and combustible dust layers are present, in order to permit the proper assessment of ignition sources in such areas.
IEC 60079-10-1 REDLINE - EXPLOSIVE ATMOSPHERES – PART 10-1: CLASSIFICATION OF AREAS – EXPLOSIVE GAS ATMOSPHERES - EDITION 2.0 Organization: IEC
Date: 2015-09-01
Description: This standard does not take into account the consequences of ignition of an explosive atmosphere.

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