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GB 30439.7-2014Safety requirements for industrial automation products-Part 7: Safety requirements for loop regulator (English PDF)

工业自动化产品安全要求 第7部分:回路调节器的安全要求

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Issued by

General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China; Standardization Administration of China

Level / Type

National · Mandatory

Issue date

July 24, 2014

Implementation date

February 1, 2015

Scope

GB 30439.7-2014 is the English-translated version of 工业自动化产品安全要求 第7部分:回路调节器的安全要求.

GB 30439.7-2014 is the Chinese national standard on safety requirements for industrial automation products-part 7: safety requirements for loop regulator, in the field of manufacturing engineering. It carries no /T suffix, which in the Chinese system means compliance is mandatory: a product or a practice within its scope has to meet it to be lawfully made, sold or carried out in China. It was issued on 24 July 2014 by the General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China; Standardization Administration of China, and has been in force since 1 February 2015. Classification: ICS 25.040.01, CCS N10. This page is published from the official record of the standard held by the Chinese standards administration: the identification, the dates, the classification and the issuing body are taken from there. The clause text, the tables and the numeric limits are in the document itself, which is delivered complete in English translation.

Document preview — GB 30439.7-2014

National Standard of the People's Republic of China

ICS
25.040.01
Classification
N10

Issued by: General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China; Standardization Administration of China

Contents

  • 1 Scope
  • 2 Normative references
  • 3 Terms and Definitions
  • 3.1 Equipment and devices
  • 3.2 Parts and Accessories
  • 3.3 Electrical values
  • 3.4 Test
  • 3.5 Security Terminology 3.5.1 (Parts) palpable accessible (ofapart)
  • 3.6 Insulation
  • 3.6.6.1 Pollution Level 1 polutiondegree
  • 3.6.6.2 Pollution Level 2 polutiondegree
  • 3.6.6.3 Pollution Level 3 polutiondegree
  • 4 Test
  • 4.1 Overview
  • 4.2 Test procedure
  • 4.4 Test under single fault conditions
  • 5 Marking and documentation
  • 5.3 durability of the marking
  • 5.4 Document 12 6 anti-shock
  • 6 Test under a single fault condition 4.4
  • 6.1 Overview
  • 6.2 ACCESSIBLE parts of the judgment
  • 6.6 connection with an external circuit
  • 6.7 clearances and creepage distances
  • 6.8 Dielectric strength test program
  • 7.1 Overview
  • 7.2 Wall Mounting 25 8 resistant to mechanical shock and impact
  • 8.1 Overview
  • 8.2 housing rigid test 25 9 to prevent the spread of flame
  • 9.1 Overview
  • 9.2 to eliminate or reduce ignition sources inside the loop controller
  • 9.3 in the event of fire, the flame will be controlled within the loop controller
  • 9.4 energy-limited circuit
  • 9.5 overcurrent protection 30 10 loop controller temperature limits and heat
  • 10.1 pairs of anti-burn surface temperature limit
  • 10.2 winding temperature of
  • 10.4 Temperature Test
  • 10.5 Heat
  • 11 Anti-dangerous fluid
  • 11.1 Overview 32
  • 14 Figure 2 charging normal conditions and single fault conditions limit the capacity
  • 14.1 Overview
  • 14.2 high integrity components
  • 14.3 Printed Circuit Board
  • 14.4 used as transient overvoltage limiting device circuits and components 34
  • 14.5 Power Transformers
  • 23 Disconnect the power supply 23 6.10 7 against mechanical hazard
  • 28 Regional structure of FIG. 6 to comply 9.3.2b) 1) the provisions of the housing bottom
  • 33 Rechargeable batteries and batteries 33 13.1
  • 41 Table E.1 through the use of additional protection allows to reduce environmental pollution level inside

Foreword

All technical content in this Part of GB 30439 is mandatory. GB 30439 "Industrial Automation product safety requirements" is divided into 18 sections as follows:

--- Part 1. General;

--- Part 2. pressure/differential pressure transmitter safety requirements;

--- Part 3. Temperature Transmitter safety requirements;

--- Part 4. Safety requirements for the control valve;

--- Part 5. flowmeter safety requirements;

--- Part 6. solenoid valve safety requirements;

--- Part 7. loop controller safety requirements;

--- Part 8. Safety requirements for electric actuators;

--- Part 9. Digital display instrument safety requirements;

--- Part 10. recording instrument safety requirements;

--- Part 11. Programmable Controller safety requirements;

--- Part 12. Radar level meter and ultrasonic level meter safety requirements;

--- Part 13. magnetostrictive level gauge safety requirements;

1 Scope

GB 30439.7-2014 is the Chinese national standard on safety requirements for industrial automation products-part 7: safety requirements for loop regulator, in the field of manufacturing engineering. It carries no /T suffix, which in the Chinese system means compliance is mandatory: a product or a practice within its scope has to meet it to be lawfully made, sold or carried out in China. It was issued on 24 July 2014 by the General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China; Standardization Administration of China, and has been in force since 1 February 2015. Classification: ICS 25.040.01, CCS N10. This page is published from the official record of the standard held by the Chinese standards administration: the identification, the dates, the classification and the issuing body are taken from there. The clause text, the tables and the numeric limits are in the document itself, which is delivered complete in English translation.

GB This section 30439 provides for industrial automation products loop controller shockproof and electrical burns, anti-mechanical hazards, anti-flame Spread outward from the inner loop controller, against excessive heat, fluid-fluid pressure and the impact of the explosion and implosion of security content. This section does not include security features and device-independent, performance or other characteristics, the effectiveness of transport packaging, electromagnetic compatibility (EMC) to Requirements, functional safety, environmental protection measures for the explosion, maintenance (repair), maintenance (repair) personnel protection. This Part shall not apply to products In corrosive environments. If you want to loop regulator products used in other environments (such as buildings, medical, etc.), the loop controller products must also meet applicable Particular requirements for appropriate environmental standards and installation guidelines. This section applies to industrial processes, the signal into an electrical signal, for indoor use, the power supply voltage of 300V or less and the controlled output signal No adjustment of the instrument. This section does not apply to one sensor input signal to physical devices (such as. bimetallic temperature controller).

2 Normative references

The following documents for the application of this document is essential. For dated references, only the dated version suitable for use herein Member. For undated references, the latest edition (including any amendments) applies to this document.

GB/T 1633-2000 thermoplastics Vicat softening temperature (VST) Determination (idt ISO 306.1994)

GB/T 3098.1-2010 Mechanical properties of fasteners Bolts, screws and studs ( ISO 898-1.2009, MOD)

GB/T 3098.3-2000 Mechanical properties of fasteners set screws (idt ISO 898-5.1998)

GB/T 4207-2003 solid insulating materials under moist conditions index tracking of the measuring method and the proof tracking index compared ( IEC 60112. 1979, IDT)

GB 4208-2008 housing protection (IP Code) ( IEC 60529.2001, IDT)

GB 4793.1-2007 measurement, control and laboratory safety requirements for electrical equipment Part 1. General requirements ( IEC 61010-1. 2001, IDT)

GB/T 5465.2-2008 Graphical symbols for electrical equipment - Part 2. Graphical symbols ( IEC 60417DB.2007, IDT)

GB/T 7354-2003 partial discharge measurements ( IEC 60270.2000, IDT)

GB 8898-2001 Audio, video and similar electronic apparatus - Safety requirements (eqv IEC 60065.1998)

GB 9364.1-1997 Miniature fuses Part 1. Definitions and miniature fuses and general requirements for miniature fuse-links (idt IEC 60127-1. 1988)

GB 9364.2-1997 Miniature fuses - Part 2. Cartridge fuse-links (idt IEC 60127-2. 1989)

GB 9364.3-1997 Miniature fuses Part 3. Ultra-miniature fuse-links (idt IEC 60127-3. 1988)

GB 9364.4-2006 Miniature fuses - Part 4. Universal modular fuse-links ( IEC 60127-4.1996, IDT)

3 Terms and Definitions

GB 4793.1 define the following terms and definitions apply to this document. For ease of use, repeat the following list of GB 4793.1 Some terms and definitions. Unless otherwise specified, "voltage" value and "current" refers to the value of RMS AC, DC, or synthetic voltage or current. Category

3.1 Equipment and devices

3.1.1 Stationary equipment fixedequipment Fixed to the support member or an additional fixture at a specific location. [GB 4793.1-2007, the definition 3.1.1]

3.1.2 PERMANENTLY CONNECTED EQUIPMENT permanentlyconnectedequipment Only permanent connection method and tools to disconnect the electrical power supply connected equipment.

3.2 Parts and Accessories

3.2.1 Terminal terminal A component of the apparatus (device) connected to the outer conductor provided. [IEV151-01-03, revised edition]

Note. The terminal can contain one or more contacts, so that the term also includes sockets, connectors and the like.

3.2.2 Functional ground terminal functionalearthterminal To a point directly measuring or control circuit, or directly with a shield portion is electrically connected, but also reservations To be used for any function other than safety purposes purpose a ground terminal.

Note. The measuring equipment, the terminal is often referred to as measuring ground terminal.

3.2.3 Protective Conductor Terminal protectiveconductorterminal For security purposes and conductive parts of equipment are connected, but also with a predetermined external terminal connected to protective earthing system.

3.2.4 Housing enclosure Protect the unit against certain external influences and prevent parts from any direct contact with the direction provided. [GB 4793.1-2007, the definition 3.2.4]

3.2.5 Baffle barrier Prevent parts from any direction normal close direct contact provided.

Note. The housing and bezel provides flame spread protection [see 9.2.1b)]. [GB 4793.1-2007, the definition 3.2.5]

3.3 Electrical values

3.3.1 Rated (value) rated (value) Usually by the manufacturer for the components, apparatus, or device reaches a given magnitude of working status. [GB 4793.1-2007, the definition 3.3.1]

3.3.2 Rating rating A set of ratings and working conditions. [GB 4793.1-2007, the definition 3.3.2]

3.3.3 Operating voltage workingvoltage When the device is supplied at rated voltage, the insulation can occur any particular maximum RMS AC voltage or DC voltage values.

Note 1. The instantaneous value is not considered.

Note 2. The open circuit conditions and normal operating conditions are to be considered.

3.4 Test

3.4.1 Type test typetest For a particular design, in order to prove that the design and structure of this standard can meet one or more of the requirements of one or more devices Taiwan sample (or device components) tests carried out. [GB 4793.1-2007, the definition 3.4.1]

Note. This is IEV151-04-15 definition expanded to include both the design requirements and structural requirements.

3.4.2 Routine tests routinetest After fabrication or manufacture to determine the means (equipment) meets a criterion and for each separate device (device) test (See Appendix F). [GB 4793.1-2007, the definition 3.4.2]

3.5 Security Terminology 3.5.1 (Parts) palpable accessible (ofapart)

6.2 When prescribed use standard test finger or test pin to the touch.

3.5.2 Dangerous hazard Potential source of harm.

3.5.3 Hazardous live hazardouslive Electric shock or electrical burn make it under normal condition or single fault condition.

Note. The value of the normal conditions apply, see 6.3.1, for under a single fault condition is considered to be a higher number apply, see 6.3.2.

3.5.4 Power supply mains It is designed to make about the device connected thereto need for equipment to provide electricity for the purpose of low voltage power supply system.

Note. Some of the measurement circuit can measure the power grid and for purposes connected with.

3.5.5 The power supply circuit mainscircuit Intended to be connected to the power grid, providing power for the device circuitry.

Note. The measuring circuit and the use of induction powered from the mains power supply circuit circuit does not belong to the grid power supply circuit.

3.5.6 Protective impedance protectiveimpedance A combination of components, component or components of the basic insulation and current limiting or pressure-limiting device when it is connected to ACCESSIBLE conductive parts and the danger zone When between the electrical components, the degree of protection impedance, structure and reliability under normal conditions and single fault conditions provided the requirements of this standard.

3.5.7 Protection connection protectivebonding To make electrical ACCESSIBLE conductive parts or protective screen and for the external protection conductor is connected with the electrical continuity of having carried out the connection.

3.5.8 Normal use normaluse Operation according to instructions or intended use by the apparent instructions, including standby. NOTE. In most cases, the normal use also refers to normal conditions, because the use of manual warns users not to use the device under abnormal conditions.

3.5.9 Normal conditions normalcondition All protective measures to prevent dangerous conditions are intact.

3.5.10 Single fault condition singlefaultcondition Protective measures to prevent the risk of a failure condition occurs or is likely to cause some dangerous and a fault condition.

Note. If a single fault condition will inevitably lead to another single fault conditions, such a two failures are considered a single fault condition.

3.6 Insulation

3.6.1 Basic insulation basicinsulation Whose failure can cause a shock hazard insulation.

Note. The basic function of insulation can be used for insulation purposes. [GB 4793.1-2007, the definition 3.6.1]

3.6.2 Additional insulation supplementaryinsulation Independent insulation applied in addition to basic insulation, in order to ensure that when once the basic insulation failure can still prevent electric shock. [GB 4793.1-2007, the definition 3.6.2]

3.6.3 Double insulation doubleinsulation Constituted by the basic insulation and supplementary insulation. [GB 4793.1-2007, the definition 3.6.3]

3.6.4 Reinforced insulation reinforcedinsulation Its ability to provide protection against electric shock is not less than double insulation insulation, it can not as a separate image into several layers of additional insulation or basic insulation Insulation test line configuration. [GB 4793.1-2007, the definition 3.6.4]

3.6.5 Pollution polution It will lead dielectric strength or surface resistivity reduced solid, liquid or gaseous (ionized gas) additional foreign substances.

3.6.6 Pollution degree polutiondegree To assess the level of contamination and the separation distance specified below microenvironment.

3.6.6.1 Pollution Level 1 polutiondegree

1 No pollution or only dry non-conductive pollution, the pollution has no adverse effect.

3.6.6.2 Pollution Level 2 polutiondegree

2 Normally only non-conductive pollution, but occasionally due to the cohesive effect and short conductive.

3.6.6.3 Pollution Level 3 polutiondegree

3 Conductive pollution or dry non-conductive pollution due to the unifying role and become conductive.

Note. In this condition, the device is usually to prevent exposure to direct sunlight, rain, strong wind pressure, but it need not control the temperature or humidity.

3.6.7 Clearance clearance The shortest distance between two conductive parts in the air.

3.6.8 Creepage distance creepagedistance The shortest distance between two conductive parts along the surface of insulating material. [GB 4793.1-2007, the definition 3.6.8] Product-related definitions

3.6.9 Loop controller loopregulater With a microprocessor circuit adjustment function, the input signal is compared with the set value, the output operation after an electric signal (current, Pressure or frequency), so that the controlled object to achieve the desired requirements of the equipment.

4 Test

4.1 Overview In this section all tests are type tests on the sample loop controller or components carried out. The only purpose of these tests It is to verify that the design and construction to ensure compliance.

4.2 Test procedure Subject to the provisions of this section, the test sequence may be optionally substituted. After each test should be careful to check the test loop controller. If there is doubt about the results of the test, if the test suspect reverse the order, any of the foregoing really pass the test, the front of these Test should be repeated. If the test will damage the regulator circuit under fault conditions, then these tests can be placed under the reference test conditions After the test.

4.3 reference test conditions

4.3.1 Environmental Conditions Subject to the provisions of this section, the test sites should have the following conditions.

a) Temperature. 15 °C ~ 35 °C;

b) Relative humidity. not exceed 75%;

c) Atmospheric pressure. 75kPa ~ 106kPa;

d) no frost, condensation, water seepage, rain and sunshine.

4.3.2 loop controller status Unless otherwise specified, each test should be assembled for the normal use of the loop controller, and in the provisions of 4.3.2.1 ~

4.3.2.8 Carried out under the most unfavorable combination of conditions. Loop controller should be installed according to the provisions of the manufacturer specification.

4.3.2.1 loop controller position Loop controller is in any position of normal use, and any ventilation unobstructed.

4.3.2.2 Accessories Recommended by the manufacturer or supplied, accessories and operator and the loop controller for use with interchangeable parts should be connected or Not connected.

4.3.2.3 lid and removable parts Without tools or removal of the lid parts should be removed or not removed.

4.3.2.4 MAINS Shall comply with the following requirements.

4.4 Test under single fault conditions

4.4.1 Overview It should be according to the following requirements.

a) Check the loop controller and can usually determine whether the circuit diagram may be dangerous and therefore should be implemented if faults condition;

b) In addition to proof of a specific fault conditions likely to cause danger outside. Shall be the test failure, or select Check Compliance test prescribed alternative method instead of test failu...

14 Figure 2 charging normal conditions and single fault conditions limit the capacity

......
This preview omits tables, figures, formulas and parts of the technical clauses. The complete document — 51 pages — is available in the English PDF.

Referenced standards

Normative references

GB/T 1633-2000 · ISO 306.1994 · GB/T 3098.1-2010 · ISO 898 · GB/T 3098.3-2000 · GB/T 4207-2003 · IEC 60112 · GB 4208-2008 · IEC 60529.2001 · GB 4793.1-2007 · IEC 61010 · IEC 60417 · GB/T 7354-2003 · IEC 60270.2000 · GB 8898-2001 · IEC 60065.1998 · GB 9364.1-1997 · IEC 60127 · GB 9364.2-1997 · GB 9364.3-1997 · GB 9364.4-2006 · GB 14048.1-2006 · IEC 60947 · GB 14048.3-2008 · GB/T 11020-2005 · IEC 60707.1999 · GB/T 11021-2007 · IEC 60085.2004 · GB/T 12113-2003 · IEC 60990.1999 · GB/T 16273.1-2008 · ISO 7000.2004 · GB/T 16842-2008 · IEC 61032.1997 · GB/T 16927 · IEC 60060 · GB/T 16935.3-2005 · IEC 60664 · IEC 60027

Similar standards

Editions of GB 30439.7

EditionTitleRevisionStatus
GB 30439.7-2014Safety requirements for industrial automation products-Part 7: Safety requirements for loop regulatorcurrent editionCurrent

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