Техническая документация
Характеристики
Brand
DehnТип ограничителя напряжения
Устройство защиты типа 2
Максимальное номинальное напряжение
23 В перем. тока, 33 В пост. тока
Тип монтажа
DIN-рейка
Максимальный ток перегрузки
20кА
Серия
DCO
Длина
6мм
Глубина
87.5мм
Высота
94.5мм
Размеры
6 x 87.5 x 94.5мм
Минимальная рабочая температура
-40°C
Максимальная рабочая температура
+80°C
Страна происхождения
Germany
Информация о товаре
Dehn Slim Terminal Block Surge Arresters
Energy coordinated two-stage arrester with disconnection function for protecting two single lines sharing a common reference potential as well as unbalanced interfaces
Surge Protection Devices, SPDs (DIN-rail)
Voltage surges, often referred to as spikes or transients are typically caused by switching of fluorescent lights, fuses blowing or nearby lightning activity. The worst voltage spikes are usually caused by lightning strikes and can reach up to 6000V, with current surges of over 3000A. The maximum size of the let-through voltage and current inrush depends on the location within the building's wiring system. BS7671: 2011 Amendment 1 Sections 443 and 534 cover risk assessment and provides guidance on protection of electronic equipment for installation engineers to follow. The fullest information on lightning and surge protection comes from the BSEN 62305 series of standards.
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Техническая документация
Характеристики
Brand
DehnТип ограничителя напряжения
Устройство защиты типа 2
Максимальное номинальное напряжение
23 В перем. тока, 33 В пост. тока
Тип монтажа
DIN-рейка
Максимальный ток перегрузки
20кА
Серия
DCO
Длина
6мм
Глубина
87.5мм
Высота
94.5мм
Размеры
6 x 87.5 x 94.5мм
Минимальная рабочая температура
-40°C
Максимальная рабочая температура
+80°C
Страна происхождения
Germany
Информация о товаре
Dehn Slim Terminal Block Surge Arresters
Energy coordinated two-stage arrester with disconnection function for protecting two single lines sharing a common reference potential as well as unbalanced interfaces
Surge Protection Devices, SPDs (DIN-rail)
Voltage surges, often referred to as spikes or transients are typically caused by switching of fluorescent lights, fuses blowing or nearby lightning activity. The worst voltage spikes are usually caused by lightning strikes and can reach up to 6000V, with current surges of over 3000A. The maximum size of the let-through voltage and current inrush depends on the location within the building's wiring system. BS7671: 2011 Amendment 1 Sections 443 and 534 cover risk assessment and provides guidance on protection of electronic equipment for installation engineers to follow. The fullest information on lightning and surge protection comes from the BSEN 62305 series of standards.