EN 50131-2-7-3-2012 en Alarm systems - Intrusion and hold-up systems - Part 2-7-3 Intrusion detectors - Glass break detectors (active) (Incorporates Amendment A2 2016).pdf
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1、Alarm systems Intrusion and hold-up systemsPart 2-7-3: Intrusion detectors Glass break detectors (active)BS EN 50131-2-7-3:2012+A2:2016Incorporating corrigendum July 2014BSI Standards PublicationWB11885_BSI_StandardCovs_2013_AW.indd 1 15/05/2013 15:06BS EN 50131-2-7-3:2012+A2:2016National forewordTh
2、is British Standard is the UK implementation of EN 50131-2-7-3:2012+A2:2016. It supersedes The start and finish of text introduced or altered by amendment is indicated in the text by tags. Tags indicating changes to CENELEC text carry the number of the CENELEC amendment. For example, text altered by
3、 CENELEC amendment A1 is indicated by !“.The UK participation in its preparation was entrusted by Technical Committee GW/1, Electronic security systems, to Subcommittee GW/1/1, Alarm components.A list of organizations represented on this subcommittee can be obtained on request to its secretary.This
4、publication does not purport to include all the necessary provisions of a contract. Users are responsible for its correct application. The British Standards Institution 2016. Published by BSI Standards Limited 2016ISBN 978 0 580 91847 6ICS 13.320Compliance with a British Standard cannot confer immun
5、ity fromlegal obligations.This British Standard was published under the authority of the Standards Policy and Strategy Committee on 31 October 2013.Amendments/corrigenda issued since publicationDate Text affected31 July 2014 31 July 2014 Implementation of CENELEC Interpretation Sheet February 2014 i
6、n National Annex NAImplementation of CENELEC amendment A1:2013BRITISH STANDARDBS EN 50131-2-7-3:2012+A1:2013 which is withdrawn.30 June 2016 Implementation of CENELEC amendment A2:2016Text of IS1 to EN 50131-2-7-3:2012 Clause: Annex C and Figure C.1 Question: Would it be allowed for test purposes (f
7、or test houses and manufacturers) to use the NeoDym magnet listed below instead of the AlNiCo version described in Annex C and Figure C.1 for reproducible tests ? Interpretation: Yes, because this will allow stable and reproducible test results, which is not guaranteed while using the AlNiCo magnet
8、due to the nature of the magnet material. Furthermore, the test magnet described below allows a high-level degree of backward compatibility for already tested products, while it gives the stability required. Therefore, when the NeoDym magnet is used for test purposes (for test houses and manufacture
9、rs), the text below may be used in place of Annex C. Validity: This interpretation remains valid until an amendment or updated standard dealing with this issue is published by CENELEC. National Annex NA (informative) BS EN 50131-2-7-3:2012+A2:2016 EN 50131-2-7-3:2012+A2:2016 (E)Annex C (normative) D
10、imensions however if signal processing (except if it is the CIE itself) is required to process the output of the sensor, such an event shall be generated alternatively no generation of a message or signal is required when the condition is detected by the CIE due to system design cMandatory for all g
11、rade 4 devices. For grade 3 devices, only required in case of MCU based solutions based on Software / Firmware sensor input analysis and signal processing. !“ 8 BS EN 50131-2-7-3:2012+A2:2016 EN 50131-2-7-3:2012+A2:2016 (E)Table 2 Generation of Indication Signals or Messages Event Signals or Message
12、s Intrusion Tamper Fault Intrusion M NP NPNo Stimulus NP NP NP MaskingaM Op M Tamper NP M NPLow Supply Voltage Op Op M Total loss of power supplybM Op Op Local Self Test Pass NP NP NP Local Self Test Fail NP NP M Remote Self Test Pass M NP NP Remote Self Test Fail NP NP M M = mandatory NP = Not perm
13、itted Op = Optional aAn independent masking signal or message may be provided instead bAlternatively Total loss of Power Supply shall be determined by loss of communication with the detector. This permits two methods of signalling a masking event: either by the intrusion signal and fault signal, or
14、by a dedicated output. Use of the intrusion signal and fault signal is preferable, as this requires fewer connections between CIE and detector. If multiple events overlap there will be some signal combinations that may be ambiguous. To overcome this ambiguity it is suggested that detectors should no
15、t signal intrusion and fault at the same time except to indicate masking. This implies that the detector should prioritise signals, e.g. 1. Intrusion, 2. Fault, 3. Masking. When, in Table 1, an event may optionally generate signals or messages, they shall be as shown in this table. 9 BS EN 50131-2-7
16、-3:2012+A2:2016 EN 50131-2-7-3:2012+A2:2016 (E)4.2 Operational requirements 4.2.1 Time interval between intrusion signals or messages Wired detectors shall be able to provide an intrusion signal or message not more than 15 s after the end of the preceding intrusion signal or message. Wire free detec
17、tors shall be able to provide an intrusion signal or message after the end of the preceding intrusion signal or message within the following times: Grade 1 300 s Grade 2 180 s Grade 3 30 s Grade 4 15 s 4.2.2 Switch on delay The detector shall meet all functional requirements within 180 s of the powe
18、r supply reaching its nominal voltage as specified by the manufacturer. 4.2.3 Self tests 4.2.3.1 Local self test The detector shall automatically test itself at least once every 24 h according to the requirements of Tables 1 and 2. If normal operation of the detector is inhibited during a local self
19、-test, the detector inhibition time shall be limited to a maximum of 30 s in any period of 2 h. 4.2.3.2 Remote self test A detector shall process remote self tests and generate signals or messages in accordance with Tables 1 and 2 within 10 s of the remote self test signal being received, and shall
20、return to normal operation within 30 s of the remote test signal being received. 4.3 Detection 4.3.1 Detection performance The detector shall generate an intrusion signal or message when a simulated or real glass breakage according to the corresponding requirements of Table 3 is performed. Table 3 P
21、erformance test requirements Requirement Grade 1 Grade 2 Grade 3 Grade 4 Verification of detection performance M M M M Performance test: hole drilling with diamond hole saw Op Op Op M Performance test: Glass cutting Op Op Op M M = Mandatory Op = Optional 4.3.1.1 Verification of detection performance
22、 This test will verify the detection performance for sensitivity and a break through the glass according to the supported conditions claimed by the manufacturer. It will verify the maximum covering range (sensitivity performance test) and the break through detection (breakage performance test), acco
23、rding 10 BS EN 50131-2-7-3:2012+A2:2016 EN 50131-2-7-3:2012+A2:2016 (E)to Annex A for different glass types and sizes claimed to be supported (types and dimensions) by the manufacturer. A number of standard glass types and sizes need to be passed by this test according to the corresponding test sect
24、ion. 4.3.1.2 Performance test for hole drilling with a diamond hole saw This test will verify the detection performance by drilling a hole using a diamond hole saw on different glass types and dimensions according to the supported conditions claimed by the manufacturer and Annex A. It will verify if
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