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GB 22134-2008 English PDF

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GB 22134-2008: Compatibility requirements of automatic fire alarm system components
Status: Valid
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GB 22134-2008369 Add to Cart 3 days Compatibility requirements of automatic fire alarm system components Valid

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Basic data

Standard ID: GB 22134-2008 (GB22134-2008)
Description (Translated English): Compatibility requirements of automatic fire alarm system components
Sector / Industry: National Standard
Classification of Chinese Standard: C81
Classification of International Standard: 13.220.20
Word Count Estimation: 16,156
Date of Issue: 2008-12-30
Date of Implementation: 2010-02-01
Quoted Standard: GB 4717; GB 14287.1; GB 16806; GB 16808
Adopted Standard: ISO 7240-13-2005, NEQ
Regulation (derived from): Announcement of Newly Approved National Standards No. 25 of 2008 (total 138)
Issuing agency(ies): General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China, Standardization Administration of the People's Republic of China
Summary: This Chinese standard specifies the automatic fire alarm system component compatibility and connectivity requirements. This standard applies to automatic fire alarm system component compatibility and connectivity assessments.

GB 22134-2008: Compatibility requirements of automatic fire alarm system components

---This is a DRAFT version for illustration, not a final translation. Full copy of true-PDF in English version (including equations, symbols, images, flow-chart, tables, and figures etc.) will be manually/carefully translated upon your order.
Compatibility requirements of automatic fire alarm system components ICS 13.220.20 C81 National Standards of People's Republic of China Automatic fire alarm system components compatibility requirements (ISO 7240-13.2005, NEQ) Published 2008-12-30 2010-02-01 implementation Administration of Quality Supervision, Inspection and Quarantine of People's Republic of China Standardization Administration of China issued

Table of Contents

Introduction Ⅲ 1 Scope 1 2 Normative References 1 Terms and definitions 1 3 4 General Requirements 1 5 requirements and test methods 3 6 Evaluation 4 Annex A (normative) automatic fire alarm system function 5 Annex B (normative) automatic fire alarm system components classified 6 Annex C (normative) Theoretical Analysis Method 8

Foreword

This standard in Chapters 4 and 5 are mandatory, the rest are recommended. This Standard corresponds to ISO 7240-13.2005 "Fire detection and alarm systems - Part 13. Compatibility Evaluation System Components" (English Edition), the degree of consistency with ISO 7240-13 non-equivalent. This standard Annex A, Annex B and Annex C is normative. The standard proposed by the People's Republic of China Ministry of Public Security. This standard by the National Fire Protection Standardization Technical Committee of the Sixth Technical Committee (SAC/TC113/SC6). This standard was drafted. Shenyang Fire Research Institute Ministry of Public Security. The main drafters. Zhang Decheng, Lu Shao However, Yang Bo, Liu Meihua, Guo Rui. This standard is the first release. Automatic fire alarm system components compatibility requirements Range 1 This standard specifies the fire alarm system component compatibility and connectivity requirements. This standard applies to automatic fire alarm system components evaluate the compatibility and connectivity can.

2 Normative references

The provisions of the following documents cited by this standard and become provisions of this standard. For dated reference documents, all later Amendments (not including errata content) or revisions do not apply to this standard, however, encourage the parties to agreements based on this standard Whether the latest versions of these documents. For undated references, the latest version applies to this standard. GB 4717 fire alarm controller GB 14287.1 electrical fire control system - Part 1. electrical fire monitoring equipment GB 16806 fire control system GB 16808 combustible gas alarm controller

3 Terms and Definitions

The following terms and definitions apply to this standard. 3.1 National standards or specifications means to protect life and property security features have. 3.2 National standard or specification does not require the device to protect life and property security features have. 3.3 The first component ability to work with the first type assembly. 3.4 Ability to work a second component to the first class type assembly.

4 General requirements

4.1 General Fire alarm system (system functionality see Appendix A) component compatibility and connectivity should first meet the requirements of this section, and then press section Chapter 5 require tests and meet the test requirements. Automatic fire alarm system components should also Chapter 6 may be connected and compatibility Of assessment and evaluation meet the test requirements. 4.2 Compatibility Requirements 4.2.1 automatic fire alarm system and connected devices (or members) of the dividing component B should meet the requirements of the Appendix. The first component should be By the National Fire product quality supervision and inspection agency inspection of product. A second operational components should not affect the fire alarm system normal work. 4.2.2 automatic fire alarm system independent (region) fire alarm controller, combustible gas alarm controller, electrical fire monitoring equipment Fire detectors connected to the assembly, manually fire the trigger device, combustible gas detectors, electric fire detectors, fire alarm devices, etc. After, respectively, should satisfy the following requirements. a) Independent (area) shall satisfy the fire alarm controller in GB 4717 fire alarm, fire alarm control function, fault alarm Function, self-test function, the software control function, the power requirements of function and other basic functions; b) the combustible gas alarm controller should meet the requirements of GB 16808 basic functions; c) electrical fire monitoring equipment should meet the requirements of the basic functions GB 14287.1; Various kinds of component d) and independent (region) to be connected to the fire alarm controller satisfy basic performance requirements of the relevant standards, such as the assembly of Independent (region) is provided which detects the fire alarm controller operation or performance parameters, related to the corresponding standard component should meet Claim; e) the combustible gas with various components connected to the alarm controller should satisfy the corresponding requirements of basic performance criteria, such as the assembly by a gas The controller body is provided which detects the alarm or operational performance parameters, the assembly also to meet the requirements of the relevant standards; f) with various components connected to electrical fire monitoring equipment shall meet the corresponding requirements of basic performance criteria, such as the assembly of electrical fires Monitoring device is provided which detects the operation parameters or properties, the component also to meet the requirements of the relevant standards. Fire extinguishing gas interlocking controller and the controller, Fire Control 4.2.3 automatic fire alarm system, emergency fire fighting equipment Power, fire emergency radio equipment, fire telephone transmission equipment, the fire control center graph display apparatus, module, fire electric apparatus, the fire extinction After plug connection components such as buttons, respectively, should satisfy the following requirements. a) the controller should meet fire linkage control function in GB 16806 fire linkage controller, fault alarm function, self-test function, Displaying information query function, the power requirements of function and other basic functions; Gas fire controller b) a controller connected to the fire linkage, Fire Control, fire emergency power equipment, fire emergency Broadcast equipment, fire telephone transmission equipment, the fire control center graph display apparatus, module, electrical devices fire hydrant button And other components should meet basic performance requirements of GB 16806 of. 4.2.4 automatic fire alarm system in the area of fire alarm controller, combustible gas alarm controller, electrical fire monitoring equipment, fire-linked After the movable fire alarm controller and centralized controller is connected, respectively, should satisfy the following requirements. a) zone fire alarm controller shall send to the centralized controller fire alarm fire alarm, fire alarm control, fault alarm, from Complete information and the subject of various alarm supervision may have a shield, latency, etc, and be able to receive, process control centralized fire alarm RELATED instruction; b) the combustible gas alarm controller shall send an alarm to the fire alarm controller concentrated, failure information; c) electrical fire monitoring equipment should be able to send an alarm to the fire alarm controller concentrated, failure information; d) the controller should transmit the fire linkage linkage control information to centralized fire alarm controller; e) centralized fire alarm controller should be able to receive and display a), b), c), information d) and into the respective predetermined state, b), c), d) regulation Displaying the specific information does not affect a) displaying predetermined information, b), c), d) the same information is displayed in a predetermined area should have the difference; f) centralized fire alarm control alarm shall be fire zone controller sends a control instruction; g) concentrate the fire alarm controller shall transmit information to the fire alarm controller fire linkage; h) fire linkage controller should be able to receive the concentrated fire alarm fire alarm control information; i) concentration in the region of the fire alarm controller fire alarm controller connected thereto, combustible gas alarm controller, electric fire Apparatus, the transmission line ground occurs between fire linkage controller circuit, short circuit, and can affect the function when the fault condition and enters significantly Site shown. 4.3 anti-electromagnetic interference requirements Resistance to electromagnetic interference of various types of components that make up the fire alarm system shall comply with the appropriate standard. 4.4 file 4.4.1 General Automatic fire alarm system file should contain the compatibility assessment and evaluation can be connected to the desired file. 4.4.2 compatibility assessment required documents To complete compatibility assessment, should provide the following documents. a) a list of components that make up the fire alarm system, each assembly comprising a software version identifier; b) demonstrate the compatibility of technical information; According to c) components comply with the relevant standards (such as inspection reports or certificates); d) the characteristics of the transmission line between the various types of parameters of components, comprising a cable characteristic parameter; Limitations (configuration, the number of components, functionality, etc.) e) use of automatic fire alarm system. 4.4.3 Evaluation of the desired file can be connected To complete connectivity assessments should provide the following documents. a) a list of components, and each component includes an identification function; b) Information technology proof assembly may be connected to the second category of; c) characteristics of the channel parameter between each of the first type and the component assembly, comprising a cable characteristic parameter; Limitations (configuration, the number of components, functionality, etc.) d) automatic fire alarm systems. 4.4.4 software files The functional software requires the implementation of automatic fire alarm system, software should satisfy the corresponding requirements of the standard software components.

5 requirements and test methods

5.1 General 5.1.1 Test environmental conditions Unless otherwise indicated the relevant provisions, the following tests were carried out under atmospheric conditions. Temperature. 15 ℃ ~ 35 ℃; Humidity. 25% RH ~ 75% RH; Atmospheric pressure. 86kPa ~ 106kPa. 5.1.2 Installation Component should be installed in the normal installation specified by the manufacturer. The description given installation, the component should be used in the test The most unfavorable installation. 5.2 Compatibility Test 5.2.1 Objective Verify all kinds of connected components consisting of automatic fire alarm system functions can be executed properly. 5.2.2 methods and requirements 5.2.2.1 The requirements of various components specified by the manufacturer connected to form a fire alarm system, and it is in the normal monitoring state. 5.2.2.2 kinds of components should meet the requirements of 4.2.2 and 4.2.3. 5.2.2.3 centralized automatic fire alarm system should also meet the requirements of 4.2.4. 5.3 Test connectable 5.3.1 Objective Testing whether the second type of assembly affect the normal operation of the fire alarm system in the range specified by the manufacturer. 5.3.2 Method Start from the normal monitoring state or fire alarm condition, in accordance with the manufacturer's instructions attached to the start and reset transmission line The second component class contains one or more functions. 5.3.3 Requirements The second area of the assembly should not affect normal operation of the first component type automatic fire alarm system, fire related second type transmission assembly Information system disaster alarm function information to be sent to the first class components coincide. Note. the failure of the second category assemblies can fire alarm controller enters the alarm status. Anti-electromagnetic interference test 5.4 5.4.1 Objective Test all kinds of connected components consisting of automatic fire alarm system function is affected by electromagnetic interference. 5.4.2 methods and requirements The requirements of various components specified by the manufacturer connected to form a fire alarm system, and it is in the normal monitoring state. For each group, Appropriate standards member anti-electromagnetic interference test requirements, respectively, of each anti-electromagnetic interference test components, each component shall meet the appropriate criteria Test requirements.

6 assessment

6.1 Appendix C shall be required compatibility and connectivity automatic fire alarm system components theoretical analysis, in addition to the need for clear Test other than Chapter 5. 6.2 The test shall be based on the results of theoretical analysis and after the theoretical analysis.

Appendix A

(Normative) Automatic fire alarm system function Figure A. 1 refers to function, not representative of the actual component. Which illustrates the function of automatic fire alarm system contains (function package Contained within a dashed line). The features on the dotted line, these functions may be between automatic fire alarm system and another system. A --- automatic fire detection function; B --- the control and indication functions; C --- fire alarm function; D --- manual trigger function; E --- fire alarm transmission function; --- F. Fire alarm receiving center remote monitoring function; G --- fire control function; H --- fire linkage function; J --- transmission fault alarm function; K --- remote monitoring center receives the fault alarm function; L --- power function. Figure A. 1 a schematic view of automatic fire alarm system function

Appendix B

(Normative) Automatic fire alarm system components Classification B. Objective 1 The assembly is divided into a first type or the second type of component assembly. B. 2 fire detection function All fire detectors (e.g., smoke, temperature, flame, gas, a point or line) and the manual fire alarm buttons are basic components, which Such components should be classified as a first class components. And a short-circuit isolator fire detectors connected to the loop interface should be classified as a first type Components. B. 3 alarm fire B. 3.1 alarm to duty Alerting the attendant is a fundamental feature of all components to perform alarm functions should be classified as a first class components, such as the police Bell, acoustic and/or optical alarm and the like. When an alarm is transmitted through a mobile phone or pager, the desired output of the device should be classified as a first type Components. B. 3.2 Call aid alarm (typically fire) The automatic fire alarm system having a means external relief organizations call, the device should be classified as a first class components. B. 4 start the fire linkage function B. 4.1 automatic fire alarm system directly trigger device Means for controlling the door is always open, closed dampers, smoke control ventilation output (or output terminal of the controller device) are group This function, each component of these trigger devices should be classified as a first class components. B. 4.2 automatic fire alarm system linkage function starting device Output functions are the basic functions to start fire extinguishing system, smoke control system, fire separation systems, access control systems, triggering each of these systems Component should be classified as a first class components. B. 5 indicates the external apparatus Dividing means is a first external instruction category or the second category assembly component may be determined based on national regulations. The fire brigade will be a display panel Preparation of components, the display panel should be classified as a first class components. And sending the printer device information to the building management system should be partitioned into a first Second-class components. B. 6 Input Function Device performs an input function shall be classified as the second class components. As the fire detection means for receiving packets from the water spray system Alarm information, the device should be classified as a first class components. B. 7 output Device performs the output function should be classified as the second class components. As means for transmitting information to the fire alarm equipment fire linkage, The device should be classified as a first class components. B. Connecting means between the transmission lines 8 Such a device should be classified as a first class components. Note. the junction box is not to be classified as a first class or second class components.

Appendix C

(Normative) Theoretical analysis C. 1 Introduction When all the components are connected together only when the automatic fire alarm system to work properly, but only in exchange components, automatic fire Alarm system to complete the function. Fire alarm controller is at the heart of the fire alarm system, all other components required to be active on the fire alarm controller letter. Not only requires a communication protocol, such as power requirements, and other aspects of the data transmission characteristic should also be considered. C. 2 Methods C. 2.1 General Theoretical analysis should begin to review the automatic fire alarm system configuration file, the purpose of the review is to understand the most complex configuration and analysis of its Performance, and then analyzed by the following method. a) mechanical connection; b) power supply; c) exchange data; d) function; e) anti-electromagnetic interference. Throughout the analysis process, the analysis of environmental compatibility should be considered. C. 2.2 Characteristics Table C. 2.2.1 mechanical connection Whether considering a transmission line connected to terminals and components compatible with cable and accessories meets a predetermined transmission line. C. 2.2.2 Power C. 2.2.2.1 Voltage Range Considering the maximum predetermined voltage is the maximum power supply voltage is less than or equal power components under all load conditions. In considering transmission Under the influence of the line where the voltage drop, consider the minimum power supply voltage under all load conditions to provide greater or equal to the minimum power component A predetermined voltage. C. 2.2.2.2 Current Consider current power supply meets the greatest needs, and consider whether to take appropriate measures to limit the current to a safe level. C. 2.2.2.3 Power features If it operates normally considered the worst case power component appears in the output frequency, modulation, and phase distortion. C. 2.2.2.4 Tolerance If it operates normally occurs when considering the worst case component tolerances in the power supply, taking into account the ambient temperature and input voltage tolerance influences. C. 2.2.2.5 Troubleshooting Considered in the power transmission line short-circ......
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