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1 Customer data: Company: Name: Phone: Project und Anschrift des zu planenden Objektes: (unbedingt angeben) Project name: Lightning protection system / LPL installed external lightning protection system Class os LPS I / LPL I Class of LPS III / LPL III Class of LPS II / LPL II Class of LPS IV / LPL IV Type of building / use (e. g. office, nursery school, industrial plant,... ) Optional Site survey by DEHN + SÖHNE for collecting all relevant data (liable to costs) Protection goals for this designrtqlgev The complete building / installation should be protected (coordinated type + type + type surge protective device) Definition of protection goals during the site survey Lightning protection zone concept The lightning protection zone concept allows to plan, implement and monitor protection measures, thus ensuring that all relevant devices, installations and systems are reliably protected at reasonable costs. In this context, a building is divided into zones according to the level of threat. Necessary protection measures, in particular the lightning and surge protection devices and components, can be defined based on these zones. A lightning protection zone concept in conformance with EMC (electromagnetic compatibility) regulations includes external lightning protection (air-termination system, down conductor, earthing), equipotential bonding, spatial shielding and surge protection for the power supply and information technology system. The definition of lightning protection zones can be found in the table. DEHN-Formblatt-Nr. /0 E Page of

2 Surge protective devices are sub-divided into lightning current arresters, surge arresters and combined arresters according to the requirements on their place of installation. Lightning current and combined arresters, which are installed at the transition from LPZ 0A to or 0A to, fulfil the most stringent requirements concerning the discharge capacity. These arresters must be capable of conducting partial lightning currents of 0/0 wave form several times without destruction, thus preventing partial lightning currents from entering the electrical installation of a building. Surge arresters are used at the transition from LPZ 0B to or downstream of the lightning current arrester at the transition from LPZ to and higher. Their function is to further minimise the residual of upstream protection stages and to limit surges induced or generated in the installation. The lightning and surge protection measures at the boundaries of the lightning protection zones described above apply to both power supply and information technology systems. Comprehensive implementation of the measures described ensures permanent availability of the system of a modern infrastructure. Definition of lightning protection zones LEMP protection measures for structures with electric and electronic systems according to EN 0- LPZ 0A Threat due to direct lightning strikes, impulse currents up to the full lightning current and the full lightning field. LPZ 0B Protected against direct lightning strikes. Threat due to impulse currents up to partial lightning currents and the full lightning field. LPZ Impulse currents limited by current sharing and SPDs at the zone boundaries. The lightning field is mostly attenuated by spatial shielding. LPZ Impulse currents limited by current sharing and SPDs at the zone boundaries. The lightning electromagnetic field is mostly attenuated by spatial shielding. DEHN-Formblatt-Nr. /0 E Page of

3 0 d. c. system PV system System configuration TT system Remote signalling contact Type of installation/ design Remote signalling contact Max. continous operating voltage System configuration Arrester type Length of d.c. line > 0 m > down conductors < down conductors < 0 m > 0 m < 0 m Down conductors of the external LPS Length of a.c. line Separation distance maintained Size of upstreamovercurrent protection 00 V 0 V V 0 V IT TN-S TN-C Type Type Size of upstreamovercurrent protection Busbar exceeding mm 0 mm busbar DIN rail Unknown TN system Number of phases Distance from upstream protection > 0 m < 0 m or higher Terminal equipment / supply line a. c. system Description of a power supply line Zone OB Zone OA DEHN-Formblatt-Nr. /0. Page of

4 0 Type of installation LSA technology Type of installation DIN rail Installation at the terminal equipment (see table ) Installation at the entrance point into the building Telecommunication Data networks (see table ) Antenna systems, broadband cables Bus systems and measuring and controll equipment (see table ) DEHN-Formblatt-Nr. /0 E. Description of an information technology line (see table ) Page of

5 Table. LON-TP/FTT 0 a/b wires AMPS, NADAC (- MHz) ¾ line measurement 0 LON-TP/LPT 0 ADSL BWA (Broadband Wireless Access) ADSL + CATV (cable TV) -0 ma according to NAMUR recommendation NE or LON-TP/XF 0 according to EN 000-, open-circuit voltage kv core-p ADVANT LUXMATE bus Datex-P DCF AS interface M-bus E DCS 00 B (0-0 MHz) BACnet MS/TP Melsec Net G.0 / G.0 Radio systems BACnet/IP Modbus HDSL GPS (- MHz) Binary signals MPI bus ISDN S0 GSM 00, GSMR (-0 Hz) Bitbus ISDN SM / Um PCS 00 (0-0 MHz) 0 BLN (Building Level Netzwork) N bus (Johnson Controls, LON FTT 0) 0 ISDN UK0 / UP0 0 SAT C-bus (Honeywell) Optocoupler interface Modem M Sky DSL CAN-BUS (data line only) 0 Procontic CS (RS ) SDSL Tetra, NMT 0 (0- Hz) Control Net Procontic T00 (RS ) SHDSL TV DALI-bus PROFIBUS SIMATIC NET T-DSL UMTS Data Highway Plus PROFIBUS-DP / FMS Video (two-wire) Delta Net Peer Bus PROFIBUS-PA Telephone system telephones e. g. Siemens, HICOM, Alcatel Telecommunication systems Device Net (data line only) Universal lightning equipotential bonding WiMax Dupline PSM-EG-RS VDSL E-bus (Honeywell) PSM-EG-RS 0 EIB N LAN PROFIBUS-PA Ex (i) Rackbus (RS ) Table. 0 RS Arcnet Ex (i) measuring circuits ATM S-bus Ethernet 0 Base T Fieldbus Foundation Ex (i) SafetyBUS p Ethernet 0/00/000 FIP I/O SDLC FDDI, CDDI SDLS Industrial Ethernet FSK Securilan-LON-bus (LONWORKS Technology) Power over Ethernet PoE GENIUS I/O bus SIGMASYS (Siemens fire alarm system) Token Ring 0 d.c. voltage supply up to 0 V d.c. SINEC L V (RS C) IEC bus (RS) SINEC L 0 VG-AnyLAN Industrial Ethernet 0 SS SIN/X (RS) Voice over IP Electroaccoustic systems Fieldbus Foundation FIPIO/FIPWAY RS, V Interbus INLINE remote bus INTERBUS-INLINE (I/O) K-bus Temperature measurement Ex(i)PT00, PT000, Ni000, NTC,PTC Temperature measurement PT 00, PT 000, Ni000, NTC, PTC TTL TTY INTERBUS-Loop Page of KBR energy bus KNX bus SUCONET TTY -0 ma WLAN (, GHz band) WLAN ( GHz band) R-bus ET 00 Video (coaxial) Table. 0-0 ma, -0 ma (also with HART) DEHN-Formblatt-Nr. /0 E Table.

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