Lightning protection guide by OBO

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Last revision 2020

Vydal: OBO BETTERMANN s. r. o. Autor: OBO BETTERMANN

Strana 55 z 288

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2.2.4 134 Potential control 2.2 143 Assignment the zones 2.1 101 Concrete 2.13.57 The external lightning protection system 2.7.3 132 Isolated external lightning protection system with insulated, high-voltage-resistant con- ductors 2.3 65 Mesh method 2.2.1.13.1.6 105 Types anchors 2.2.1.1.13.2.2 102 Masonry 2.5 71 Separation distance 2.7 137 Summary 2.1.2.4 149 Earthing systems Chapter The external lightning protection system TBS Blitzschutz-Leitfaden 2018 / en / 2020/01/10 14:42:40 14:42:40 (LLExport_02613) / 2020/01/10 14:42:54 14:42:54 55 Chapter The external lightning protection system .1.1 97 Number and arrangement 2.13.1.7.2 63 Protective angle method 2.7.2.1.1.1 57 Air-termination systems 2.2.6 136 Type tests for insulated conductors 2.12 117 Versions 2.3.1 129 Problem 2.1.2 67 Changes length due temperature 2.8 109 Fastenings wooden components 2.2.1.12.7.2.7.2.1 82 Insulated air-termination masts with external isCon® conductor 2.3 86 GRP rods 2.2.12.10 114 Equipotential areas reference layer 2.2.1.2.3 119 High-voltage-resistant, insulated isCon® conductor 2.1.7.2.2 85 Tele rod systems 2.2 131 Insulated external lightning protection system with insulators 2.2 99 Fastening principles 2.1.6 76 Wind load 2.1.1.13.1.13.7 108 Fastening steel structures 2.7.1.1.5 104 Failure criteria 2.1 59 Rolling sphere method 2.1 58 Planning methods for air-termination systems 2.2.2.3.2 117 Isolated lightning protection system 2.1.2.8 140 Selection aid, isCon® conductors 2.1.2.11 115 High-voltage-resistant, insulated conductor 2.12.1.13 129 New technical specification IEC 62561-8 2.1.2.2 96 Down-conductors 2.2.7 81 Types air-termination systems 2.3 67 External lightning protection for roof structures 2.7.13.1 84 Aluminium air-termination rods 2.1.4 92 Installation principle for building with pitched/gabled roof 2.3 145 Solutions 2.1 97 Planning methods 2.1 81 Insulated, high-voltage-resistant air-termination systems 2.4 66 Protection against lateral impact 2.3.2.4 68 Use natural components 2.1 141 Basic principles 2.2.2.3 88 Installation principle, building with flat roof 2.1.2.3.2.3.2 84 Isolated air-termination systems 2.1 117 Non-isolated lightning protection system 2.2.2.1.1.5 135 Technical solution for insulated high-voltage-resistant conductor 2.4 103 Distances and setting depth 2.7.3 100 Fastening substrates 2.9 112 Use natural components 2.3 141 Lightning protection potentially explosive areas 2.2.2.2 82 Insulated air-termination rods with internal isCon® conductor 2.13