Surge protection for emergency alarm systems
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1 Surge protection for emergency alarm systems White Paper Contents Lightning and surge protection for a burglar alarm system with pulse polling technology Lightning and surge protection for a fire alarm system with analogue ring technology Lightning and surge protection for a burglar alarm system with d.c. circuit technology Combined arresters and surge arresters
2 Surge protection for emergency alarm systems White Paper The function of emergency alarm systems (fire or burglar alarm systems) is to actively produce an alarm in the event of danger and remain passive when there is no danger. Malfunction of these systems (no alarm is produced if there is danger or alarm is produced if there is no danger) is undesired and expensive and is responsible for several hundred millions of euros in losses annually. Moreover, false alarms have the following consequences: If false alarms frequently occur, the operator can no longer rely on the system and questions the significance of such a system and the associated investment. Security personnel start ignoring the alarm messages. Neighbours are disturbed by acoustic alarms. Emergency staff (e.g. fire brigade) is unnecessarily called out. Triggering of fire extinguishing systems cause interruption of operations. All these factors cause unnecessary costs and can be prevented if possible causes of false alarms are recognised at an early design stage and are eliminated by taking suitable preventive measures. For this purpose, the German Insurance Association (GDV) published the VdS 2833 guideline, which describes lightning and surge protection for emergency alarm systems. Coordinated lightning and surge protection prevents false alarms or the destruction by atmospheric discharges or switching overvoltages and increases the availability of the systems. When installing emergency alarm systems which are not required by the building law, the VdS guideline should be used for designing and installing these emergency alarm systems and for defining individual measures between the installer and operator. Many of today s emergency alarm systems have an increased surge immunity according to IEC (EN ) on the primary lines, secondary lines and mains voltage cables. Nevertheless, only external and internal lightning protection magnetic contacts glass break detector IR detector 1 IR detector 2 seismic detector hold-up button 1+2 alarm panel block lock 1 arming acknowledgement 1 block lock 2 EU arming acknowledgement 2 buzzer 1 burglar alarm system access control reader arming device horn 1 fixed-line operator TE 230 V horn 2 flashlight Figure 1 Lightning and surge protection for a burglar alarm system with pulse polling technology 2
3 Surge protection for emergency alarm systems White Paper smoke detector analogue ring manual alarm button FBIP alarm panel horns flashlight SS KD RE FBIP TE FBOP fixed-line operator 230 V Figure 2 Lightning and surge protection for a fire alarm system with analogue ring technology magnetic contact and glass break detector IR detector 1 block lock 1 buzzer arming acknowledgement 1 alarm panel magnetic contact and glass break detector block lock 2 IR detector 2 hold-up button arming acknowledgement 2 horn 1 fixed-line operator TE 230 V horn 2 flashlight Figure 3 Lightning and surge protection for a burglar alarm system with d.c. circuit technology 3
4 Surge protection for emergency alarm systems White Paper No. Protection for... Surge protective device Part No. Combined arresters for information technology systems at the boundaries from LPZ 0 A (0 B ) LPZ 1 or area 0/A (0/B) area 1 Alarm line groups, external alarms (24 V) (in this case max A) Exchange line U K0 of the fixed-line operator BXT ML2 BE S 24 (2 cores + earth drain wire) BXT ML4 BE 24 (4 cores) + BXT BAS + SAK BXT LR (for earth drain wire) BXT ML2 BD BXT BAS Surge arresters for power supply systems at the boundaries from LPZ 0 B LPZ 1 or area 0/B area 1 a.c.tn-s system a.c. TT system Table 1 Combined arresters and surge arresters in Figures to DG M TN 275 DG M TT 2P measures provide comprehensive protection against damage resulting from lightning strikes and surges (Figures 1 to 3). Monitoring principles Different monitoring principles are used for emergency alarm systems: Pulse polling technology Information from the detector which has triggered the alarm is digitally transmitted. This allows to identify the detector and its exact location (Figure 1). Analogue ring The addressable detectors define each detector in a ring. Line interruptions or short-circuits do not compromise the function (Figure 2). d.c. circuit technology According to the closed-circuit principle, every alarm line is permanently monitored. If a detector in a line is triggered, the line is interrupted and an alarm is produced in the alarm panel. However, only the alarm line, but not the individual detector can be identified (Figure 3). Irrespective of the monitoring principle used, all cables extending between the different areas of the emergency alarm system must be integrated in the lightning and surge protection concept of the overall system. Recommended protection BLITZDUCTOR XT of type BXT ML2 BE must be installed to protect two-wire alarm lines (approval from the manufacturer required, please contact DEHN + SÖHNE GmbH + Co.KG.) and allows to connect the earth drain wire by means of an EMC spring terminal. For cables with more than two wires, a four-wire version of type BXT ML4 BE is available. Surge protective devices are selected according to the voltage of the alarm lines, which is typically between 12 and 48 V (Table 1). The low internal resistance of BLITZDUCTOR arresters is also a clear advantage since the maximum resistances of the alarm lines must not be exceeded. For the outputs of the alarm panels (acoustic and visual alarm) it must be ensured that the nominal current of the surge protective devices is not exceeded. A telephone dialler is typically used if the alarm panel is connected to the exchange line of a fixed-line operator e.g. Deutsche Telekom. BLITZDUCTOR XT of type BXT ML2 BD 180 is ideally suited for this purpose. The power supply system can be protected by means of DEHNguard modular surge protective devices (Table 1). Emergency alarm systems, which must be approved by the German Insurance Association (VdS approval), must comply with VDS 2095 (fire alarm systems), VDS 2311 (burglar alarm systems) and VDS 2833 (surge protective devices for emergency alarm systems). The Executive Board or Executive Director of a company is responsible for the health and safety of all employees. In the legal sense, a system operator is an ordinary person who is not able to assess whether risks may arise from a technical solution. Therefore, electricians, who provide technical solutions, must make sure in every single case whether their solutions meet the actual requirements. 4
5 DEHNguard DG M TT 2P 275 ( ) Prewired complete unit consisting of a base part and plug-in protection modules High discharge capacity due to heavy-duty zinc oxide varistors / spark gaps High reliability due to "Thermo Dynamic Control" SPD monitoring device Basic circuit diagram DG M TT 2P 275 Dimension drawing DG M TT 2P 275 Modular surge arrester for use in single-phase TT and TN systems ("1+1" circuit). Type DG M TT 2P 275 Part No SPD according to EN / IEC type 2 / class II Nominal a.c. voltage (U N ) 230 V (50 / 60 Hz) Max. continuous operating a.c. voltage [L-N] (U C ) 275 V (50 / 60 Hz) Max. continuous operating a.c. voltage [N-PE] (U C ) 255 V (50 / 60 Hz) Nominal discharge current (8/20 µs) (I n ) 20 ka Max. discharge current (8/20 µs) (I max ) 40 ka Lightning impulse current (10/350 µs) [N-PE] (I imp ) 12 ka Voltage protection level [L-N] (U P ) 1.5 kv Voltage protection level [L-N] at 5 ka (U P ) 1 kv Voltage protection level [N-PE] (U P ) 1.5 kv Follow current extinguishing capability [N-PE] (I fi ) 100 A rms Response time [L-N] (t A ) 25 ns Response time [N-PE] (t A ) 100 ns Max. mains-side overcurrent protection 125 A gg Short-circuit withstand capability for max. mains-side overcurrent protection (I SCCR ) 50 ka rms Temporary overvoltage (TOV) [L-N] (U T ) Characteristic 335 V / 5 sec. withstand Temporary overvoltage (TOV) [L-N] (U T ) Characteristic 440 V / 120 min. safe failure Temporary overvoltage (TOV) [N-PE] (U T ) Characteristic 1200 V / 200 ms withstand Operating temperature range (T U ) -40 C C Operating state / fault indication green / red Number of ports 1 Cross-sectional area (min.) 1.5 mm 2 solid / flexible Cross-sectional area (max.) 35 mm 2 stranded / 25 mm 2 flexible For mounting on 35 mm DIN rails acc. to EN Enclosure material thermoplastic, red, UL 94 V-0 Place of installation indoor installation Degree of protection IP 20 Capacity 2 module(s), DIN Approvals KEMA, VDE, UL, VdS Weight 242 g Customs tariff number GTIN PU 1 pc(s) 5
6 DEHNguard DG M TN 275 ( ) Prewired complete unit consisting of a base part and plug-in protection modules High discharge capacity due to heavy-duty zinc oxide varistors / spark gaps High reliability due to "Thermo Dynamic Control" SPD monitoring device Modular surge arrester for use in single-phase TN systems. Basic circuit diagram DG M TN 275 Dimension drawing DG M TN 275 Type DG M TN 275 Part No SPD according to EN / IEC type 2 / class II Nominal a.c. voltage (U N ) 230 V (50 / 60 Hz) Max. continuous operating a.c. voltage (U C ) 275 V (50 / 60 Hz) Nominal discharge current (8/20 µs) (I n ) 20 ka Max. discharge current (8/20 µs) (I max ) 40 ka Voltage protection level (U P ) 1.5 kv Voltage protection level at 5 ka (U P ) 1 kv Response time (t A ) 25 ns Max. mains-side overcurrent protection 125 A gg Short-circuit withstand capability for max. mains-side overcurrent protection (I SCCR ) 50 ka rms Temporary overvoltage (TOV) (U T ) Characteristic 335 V / 5 sec. withstand Temporary overvoltage (TOV) (U T ) Characteristic 440 V / 120 min. safe failure Operating temperature range (T U ) -40 C C Operating state / fault indication green / red Number of ports 1 Cross-sectional area (min.) 1.5 mm 2 solid / flexible Cross-sectional area (max.) 35 mm 2 stranded / 25 mm 2 flexible For mounting on 35 mm DIN rails acc. to EN Enclosure material thermoplastic, red, UL 94 V-0 Place of installation indoor installation Degree of protection IP 20 Capacity 2 module(s), DIN Approvals KEMA, VDE, UL, VdS Weight 229 g Customs tariff number GTIN PU 1 pc(s) 6
7 BLITZDUCTOR XT BXT ML2 BE S 24 ( ) LifeCheck SPD monitoring function Optimal protection of two single lines and the cable shield For use in conformity with the lightning protection zone concept at the boundaries from 0 A 2 and higher Basic circuit diagram BXT ML2 BE S 24 Dimension drawing BXT ML2 BE S 24 Space-saving combined lightning current and surge arrester module with LifeCheck feature for protecting two single lines sharing a common reference potential as well as unbalanced interfaces, with direct or indirect shield earthing. If LifeCheck detects thermal or electrical overload, the arrester has to be replaced. This status is indicated contactlessly by the DEHNrecord LC / SCM / MCM reader. Type BXT ML2 BE S 24 Part No SPD monitoring system LifeCheck SPD class Nominal voltage (U N ) 24 V Max. continuous operating d.c. voltage (U C ) 33 V M Max. continuous operating a.c. voltage (U C ) 23.3 V Nominal current at 45 C (I L ) 0.75 A D1 Total lightning impulse current (10/350 µs) (I imp ) 9 ka D1 Lightning impulse current (10/350 µs) per line (I imp ) 2.5 ka C2 Total nominal discharge current (8/20 µs) (I n ) 20 ka C2 Nominal discharge current (8/20 µs) per line (I n ) 10 ka Voltage protection level line-line for I imp D1 (U p ) 102 V Voltage protection level line-pg for I imp D1 (U p ) 66 V Voltage protection level line-line at 1 kv/µs C3 (U p ) 90 V Voltage protection level line-pg at 1 kv/µs C3 (U p ) 45 V Series resistance per line 1.8 ohm(s) Cut-off frequency line-pg (f G ) 6.8 MHz Capacitance line-line (C) Capacitance line-pg (C) 0.5 nf 1.0 nf Operating temperature range (T U ) -40 C C Degree of protection (plugged-in) IP 20 Pluggable into Earthing via BXT BAS / BSP BAS 4 base part BXT BAS / BSP BAS 4 base part Enclosure material polyamide PA 6.6 Colour Test standards yellow IEC / EN , UL 497B SIL classification up to SIL3 * ) ATEX approvals IECEx approvals CSA & USA Hazloc approvals (1) CSA & USA Hazloc approvals (2) Approvals DEKRA 11ATEX0089 X: II 3 G Ex na IIC T4 Gc DEK X: Ex na IIC T4 Gc : Class I Div. 2 GP A, B, C, D T : Class I Zone 2, AEx na IIC T4 CSA, GOST, VdS Weight 37 g Customs tariff number GTIN PU 1 pc(s) * ) For more detailed information, please visit 7
8 BLITZDUCTOR XT BXT ML2 BD 180 ( ) LifeCheck SPD monitoring function Optimal protection of one pair For installation in conformity with the lightning protection zone concept at the boundaries from 0 A 2 and higher Basic circuit diagram BXT ML2 BD 180 Dimension drawing BXT ML2 BD 180 Space-saving combined lightning current and surge arrester module with LifeCheck feature for protecting one pair of unearthed balanced interfaces. If LifeCheck detects thermal or electrical overload, the arrester has to be replaced. This status is indicated contactlessly by the DEHNrecord LC / SCM / MCM reader. Type BXT ML2 BD 180 Part No SPD monitoring system LifeCheck SPD class L Nominal voltage (U N ) 180 V Max. continuous operating d.c. voltage (U C ) 180 V Max. continuous operating a.c. voltage (U C ) 127 V Nominal current at 45 C (I L ) 0.75 A D1 Total lightning impulse current (10/350 µs) (I imp ) 5 ka D1 Lightning impulse current (10/350 µs) per line (I imp ) 2.5 ka C2 Total nominal discharge current (8/20 µs) (I n ) 20 ka C2 Nominal discharge current (8/20 µs) per line (I n ) 10 ka Voltage protection level line-line for I imp D1 (U p ) 270 V Voltage protection level line-pg for I imp D1 (U p ) 550 V Voltage protection level line-line at 1 kv/µs C3 (U p ) 250 V Voltage protection level line-pg at 1 kv/µs C3 (U p ) 550 V Series resistance per line 1.8 ohm(s) Cut-off frequency line-line (f G ) 25.0 MHz Capacitance line-line (C) Capacitance line-pg (C) 240 pf 16 pf Operating temperature range (T U ) -40 C C Degree of protection (plugged-in) IP 20 Pluggable into Earthing via BXT BAS / BSP BAS 4 base part BXT BAS / BSP BAS 4 base part Enclosure material polyamide PA 6.6 Colour Test standards yellow IEC / EN , UL 497B SIL classification up to SIL3 * ) ATEX approvals IECEx approvals CSA & USA Hazloc approvals (1) CSA & USA Hazloc approvals (2) Approvals DEKRA 11ATEX0089 X: II 3 G Ex na IIC T4 Gc DEK X: Ex na IIC T4 Gc : Class I Div. 2 GP A, B, C, D T : Class I Zone 2, AEx na IIC T4 CSA, GOST, VdS Weight 43 g Customs tariff number GTIN PU 1 pc(s) * ) For more detailed information, please visit 8
9 BLITZDUCTOR XT BXT ML4 BE 24 ( ) LifeCheck SPD monitoring function Optimal protection of four single lines For installation in conformity with the lightning protection zone concept at the boundaries from 0 A 2 and higher Basic circuit diagram BXT ML4 BE 24 Dimension drawing BXT ML4 BE 24 Space-saving combined lightning current and surge arrester module with LifeCheck feature for protecting four single lines sharing a common reference potential as well as unbalanced interfaces. If LifeCheck detects thermal or electrical overload, the arrester has to be replaced. This status is indicated contactlessly by the DEHNrecord LC / SCM / MCM reader. Type BXT ML4 BE 24 Part No SPD monitoring system LifeCheck SPD class Nominal voltage (U N ) 24 V Max. continuous operating d.c. voltage (U C ) 33 V M Max. continuous operating a.c. voltage (U C ) 23.3 V Nominal current at 45 C (I L ) 0.75 A D1 Total lightning impulse current (10/350 µs) (I imp ) 10 ka D1 Lightning impulse current (10/350 µs) per line (I imp ) 2.5 ka C2 Total nominal discharge current (8/20 µs) (I n ) 20 ka C2 Nominal discharge current (8/20 µs) per line (I n ) 10 ka Voltage protection level line-line for I imp D1 (U p ) 102 V Voltage protection level line-pg for I imp D1 (U p ) 66 V Voltage protection level line-line at 1 kv/µs C3 (U p ) 90 V Voltage protection level line-pg at 1 kv/µs C3 (U p ) 45 V Series resistance per line 1.8 ohm(s) Cut-off frequency line-pg (f G ) 6.8 MHz Capacitance line-line (C) Capacitance line-pg (C) 0.5 nf 1.0 nf Operating temperature range (T U ) -40 C C Degree of protection (plugged-in) IP 20 Pluggable into Earthing via BXT BAS / BSP BAS 4 base part BXT BAS / BSP BAS 4 base part Enclosure material polyamide PA 6.6 Colour Test standards yellow IEC / EN , UL 497B SIL classification up to SIL3 * ) ATEX approvals IECEx approvals CSA & USA Hazloc approvals (1) CSA & USA Hazloc approvals (2) Approvals DEKRA 11ATEX0089 X: II 3 G Ex na IIC T4 Gc DEK X: Ex na IIC T4 Gc : Class I Div. 2 GP A, B, C, D T : Class I Zone 2, AEx na IIC T4 CSA, VdS, UL, GOST Weight 38 g Customs tariff number GTIN PU 1 pc(s) * ) For more detailed information, please visit 9
10 BLITZDUCTOR XT BXT BAS ( ) Four-pole version for universal use with all types of BSP and BXT / BXTU protection modules No signal interruption if the protection module is removed Universal design without protection elements Basic circuit diagram with and without plugged-in module Dimension drawing BXT BAS The BLITZDUCTOR XT base part is a very space-saving and universal four-pole feed-through terminal for the insertion of a protection module without signal interruption if the protection module is removed. The snap-in mechanism at the supporting foot of the base part allows the protection module to be safely earthed via the DIN rail. Since no components of the protective circuit are situated in the base part, only the protection modules must be maintained. Type BXT BAS Part No Operating temperature range (T U ) -40 C C Degree of protection IP 20 For mounting on 35 mm DIN rails acc. to EN Connection (input / output) Signal disconnection screw / screw no Cross-sectional area, solid mm 2 Cross-sectional area, flexible mm 2 Tightening torque (terminals) 0.4 Nm Earthing via 35 mm DIN rails acc. to EN Enclosure material polyamide PA 6.6 Colour yellow ATEX approvals DEKRA 11ATEX0089 X: II 3 G Ex na IIC T4 Gc * ) IECEx approvals DEK X: Ex na IIC T4 Gc * ) Approvals CSA, VdS, UL, GOST Weight 34 g Customs tariff number GTIN PU 1 pc(s) * ) only in connection with an approved protection module 10
11 BLITZDUCTOR XT SAK BXT LR ( ) Capable of carrying lightning current Low-impedance flat conductor Flexible spring terminal Dimension drawing SAK BXT LR Two spring terminals for the protected and unprotected side of a BLITZDUCTOR BSP/XT/XTU arrester for permanent low-impedance shield contact with a shielded signal line. Insulating cap for indirect shield earthing (BXT only), cable ties and insulating strips included. Suitable for BXT(U) ML2...S... / BSP M2... types. Type SAK BXT LR Part No D1 Lightning impulse current (10/350 µs) 5 ka Plugs into clamp connection BXT BAS / BSP BAS 4 Clamping range Colour Accessories Weight 3-10 mm bare surface insulating caps, cable tie, insulating strips Customs tariff number GTIN PU 12 g 1 Sa 11
12 Surge Protection DEHN + SÖHNE Hans-Dehn-Str. 1 Tel Lightning Protection GmbH + Co.KG. Postfach 1640 Fax Safety Equipment Neumarkt [email protected] DEHN protects. Germany Type designations of products mentioned in the white paper being at the same time registered trademarks are not especially marked. So if there is no marking of or this does not mean that the type designation is a free trade name. Neither it can be seen whether patents or utility models and other intellectual and industrial property rights are available. We reserve the right to introduce changes in performance, configuration and technology, dimensions, weights and materials in the course of technical progress. The figures are shown without obligation. Misprints, errors and modifications excepted. Reproduction in any form whatsoever is forbidden without our authorisation. activsense, BLITZDUCTOR, BLITZPLANER, DEHN, DEHN Logo, DEHN schützt, DEHNbloc, DEHNfix, DEHNgrip, DEHNguard, DEHNport, DEHNQUICK, DEHNrapid, DEHNshield, DEHNsnap, DEHNventil, HVI, LifeCheck, Red/Line are protected by German Trade Mark, by Community Trade Mark (EU) and/or in other countries.
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