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Компоненты
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Category
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Полупроводниковые приборы
- Диоды
- Тиристоры
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Электро-изолированные модули
- Электроизолированные модули | ВИШАЙ (ИК)
- Электроизолированные модули | INFINEON (EUPEC)
- Электроизолированные модули | Семикрон
- Электроизолированные модули | POWEREX
- Электроизолированные модули | IXYS
- Электроизолированные модули | ПОЗЕЙКО
- Электроизолированные модули | ABB
- Электроизолированные модули | TECHSEM
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- Выпрямительные мостики
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Транзисторы
- Транзисторы | GeneSiC
- Модули SiC MOSFET | Mitsubishi
- Модули SiC MOSFET | STARPOWER
- Модули ABB SiC MOSFET
- Модули IGBT | МИЦУБИСИ
- Транзисторные модули | MITSUBISHI
- Модули MOSFET | МИЦУБИСИ
- Транзисторные модули | ABB
- Модули IGBT | POWEREX
- Модули IGBT | INFINEON (EUPEC)
- Полупроводниковые элементы из карбида кремния (SiC)
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- Драйвера
- Блоки мощности
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Электрические преобразователи
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Преобразователи тока / датчики тока ф. LEM
- Преобразователи тока с замкнутой петлей обратной связи (C/L) ф. LEM
- Преобразователи тока с открытой петлей обратной связи (O/L) ф. LEM
- Преобразователи тока с униполярным питанием ф. LEM
- Преобразователи в технологии Eta ф. LEM
- Датчики тока высокой точностью серии LF xx10
- Датчики тока серии LH
- HOYS i HOYL – предназначен для монтажа непосредственно на токопроводящей шине
- Преобразователи тока в технологии SMD, серии GO-SME и GO-SMS
- АВТОМОБИЛЬНЫЕ преобразователи тока
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Преобразователи напряжения | LEM
- Преобразователи напряжения серии LV
- Преобразователи напряжения серии DVL
- Прецизионные преобразователи напряжения с двойным магнитным сердечником серии CV
- Тяговый преобразователь напряжения DV 4200/SP4
- Преобразователи напряжения серии DVM
- Преобразователь напряжения DVC 1000-P
- Преобразователь напряжения DVC 1000
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- Прецизионные датчики тока
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Преобразователи тока / датчики тока ф. LEM
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Пассивные компоненты (конденсаторы, резисторы, предохранители, фильтры)
- Резисторы
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Предохранители
- Миниатюрные предохранители для электронных плат серии ABC и AGC
- Быстрые трубчатые предохранители
- Медленные вставки с характеристиками GL/GG и AM
- Ультрабыстрые плавкие вставки
- Быстрые предохранители английский и американский стандарт
- Быстрые предохранители европейский стандарт
- Тяговые предохранители
- Высоковольтные предохранительные вставки
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Конденсаторы
- Конденсаторы для электромоторов
- Электролитические конденсаторы
- Конденсаторы типа snubbers
- Конденсаторы мощности
- Конденсаторы для цепей DC
- Конденсаторы для компенсации пассивной мощности
- Высоковольтные конденсаторы
- Конденсаторы большой мощности для индукционного нагрева
- Импульсные конденсаторы
- Конденсаторы звена постоянного тока
- Конденсаторы для цепей переменного/постоянного тока
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- Противопомеховые фильтры
- Ионисторы
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Защита от перенапряжения
- Ограничители перенапряжения для приложений RF
- Ограничители перенапряжения для систем технического зрения
- Ограничители перенапряжения для линий электропередач
- Ограничители перенапряжения для светодиодов
- Ограничители перенапряжения для фотовольтаики
- Ограничители перенапряжения для систем взвешивания
- Ограничители перенапряжения для Fieldbus
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Реле и контакторы
- Теория реле и контакторы
- Полупроводниковые реле AC 3-фазные
- Полупроводниковые реле DC
- Контроллеры, системы управления и аксессуары
- Системы плавного пуска и реверсивные контакторы
- Электро-механические реле
- Контакторы
- Оборотные переключатели
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Полупроводниковые реле AC 1-фазные
- РЕЛЕ AC 1-ФАЗНЫЕ СЕРИИ 1 D2425 | D2450
- Однофазное реле AC серии CWA и CWD
- Однофазное реле AC серии CMRA и CMRD
- Однофазное реле AC серии PS
- Реле AC двойное и четверное серии D24 D, TD24 Q, H12D48 D
- Однофазные твердотельные реле серии gn
- Однофазные полупроводниковые реле переменного тока серии ckr
- Однофазные реле переменного тока ERDA И ERAA SERIES для DIN-рейки
- Однофазные реле переменного тока на ток 150А
- Двойные твердотельные реле, интегрированные с радиатором для DIN-рейки
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- Полупроводниковые реле AC 1-фазные для печати
- Интерфейсные реле
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- Индукционные компоненты
- Радиаторы, варисторы, термическая защита
- Вентиляторы
- Кондиционеры, оборудование для шкафов, охладители
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Аккумуляторы, зарядные устройства, буферные источники питания и инверторы
- Аккумуляторы, зарядные устройства - теоретическое описание
- Модульные литий-ионные аккумуляторы, пользовательские батареи, Система управления батареями (BMS)
- Аккумуляторы
- Зарядные устройства и аксессуары
- Резервный источник питания ИБП и буферные источники питания
- Преобразователи и аксессуары для фотовольтаики
- Хранилище энергии
- Топливные элементы
- Литий-ионные аккумуляторы
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Автоматика
- Futaba Drone Parts
- Концевые выключатели, Микровыключатели
- Датчики Преобразователи
- Пирометры
- Счетчики, Реле времени, Панельные измерительные приборы
- Промышленные защитные устройства
- Световые и звуковые сигнальные установки
- Термокамеры, Тепловизоры
- LED-экраны
- Управляющая аппаратура
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Регистраторы
- Регистраторы температуры с записью на ленту и с цифровым показателем - AL3000ym - AL3000
- Микропроцесорные регистраторы с экраном LCD серия KR2000
- Регистратор KR5000
- Измеритель с функцией регистрации влажности и температуры HN-CH
- Эксплуатационные материалы для регистраторов
- Компактный графический регистратор 71VR1
- Регистратор KR 3000
- Регистратор PC серии R1M
- Регистратор PC серии R2M
- Регистратор PC, USB, 12 изолированных входов – RZMS
- Регистратор PC, USB, 12 изолированных входов – RZUS
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- Перейти в подкатегорию
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Провода, литцендрат, гофрированные рукава, гибкие соединения
- Провода
- Многожильные провода (Lica)
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Кабели и провода для специальных применений
- Удлинительные и компенсационные провода
- Провода для термопар
- Присоединительные провода для датчиков PT
- Многожильные провода темп. от -60C до +1400C
- Провода среднего напряжения
- Провода зажигания
- Нагревательные провода
- Одножильные провода темп. от -60C до +450C
- Железнодородные провода
- Нагревательные провода в Ex
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- Оболочки
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Плетеные кабели
- Плоские плетеные кабели
- Круглые плетеные кабели
- Очень гибкие плетеные кабели - плоские
- Очень гибкие плетеные кабели - круглые
- Медные цилиндрические плетеные кабели
- Медные цилиндрические плетеные кабели и кожуха
- Гибкие заземляющие ленты
- Цилиндрические плетеные провода из луженой и нержавеющей стали
- Медные изолированные плетеные провода PCV - температура до 85 градусов C
- Плоские алюминиевые плетеные провода
- Соединительный набор - плетеные провода и трубки
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- Аксессуары для тяги
- Кабельные наконечники
- Изолированные эластичные шины
- Многослойные гибкие шины
- Системы прокладки кабеля (PESZLE)
- Трубы
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Полупроводниковые приборы
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- Поставщики
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Программы
- Energy bank
- Автоматика HVAC
- Горное дело, металлургия и литейное дело
- Двигатели и трансформаторы
- Измерение и регулирование температуры
- Измерение и регулирование температуры
- Индукционный нагрев
- Индустриальная автоматизация
- Источники питания (ИБП) и выпрямительные системы
- Компоненты для потенциально взрывоопасных сред (EX)
- Машины для сушки и обработки древесины
- Машины для термоформования пластмасс
- Оборудование для распределительных, контрольных и телекоммуникационных шкафов
- Печать
- Приводы переменного и постоянного тока (инверторы)
- Промышленная автоматика
- Промышленные защитные устройства
- Сварочные аппараты и сварочные аппараты
- Станки с ЧПУ
- Трамвай и ж / д тяга
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Монтаж
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Montaż urządzeń
- Монтаж шкафов
- Дизайн и сборка шкафов
- Монтаж энергосистем
- Компоненты
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Машины на заказ
- Автоматизированная индустрия
- Фармацевтическая индустрия
- Целлюлозно-бумажная промышленность
- Пищевая промышленность и напитки
- Горнодобывающая промышленность
- Химическая и нефтехимическая промышленность
- Литейная промышленность
- Деревообработка и деревообрабатывающая промышленность
- Промышленная очистка воды
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- НИОКР, научно-исследовательские и опытно-конструкторские работы
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Промышленные тестеры
- Тестеры силовых полупроводников
- Тестеры электрооборудования
- Тестеры варисторов и ОПН
- Автомобильный тестер предохранителей
- Qrr тестер для измерения переходных зарядов в тиристорах и силовых диодах
- Тестер ротора выключателей серии FD
- Аудит-тестер устройств защитного отключения
- Тестер калибровки реле
- Тестер визуальных испытаний поршневых штоков газовых рессор
- Сильноточный тиристорный переключатель
- Тестер на разрыв сетки
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Индукторы
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Modernizacja induktorów
- Ремонт бывших в употреблении индукторов
- Модернизация индукторов
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Производство новых индукторов
- Закалка коленчатых валов
- Закалка зубьев ленточной пилы
- Нагрев элементов перед наклеиванием
- Упрочнение дорожек качения подшипников ступиц автомобильных колес
- Упрочнение компонентов трансмиссии привода
- Закалка ступенчатых валов
- Нагрев усадочных швов
- Сканирующая закалка
- Мягкая пайка
- Нагреватели заготовок
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- База знаний
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Индукционные устройства
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Urządzenia indukcyjne
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Генераторы для индукционного нагрева
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Генераторы индукционного нагрева Ambrell
- Генераторы: mощность 500 Вт, частота 150-400 кГц
- Генераторы: мощность 1,2 - 2,4 кВт, частота 150 - 400 кГц
- Генераторы: mощность 4,2 - 10 кВт, частота 150 - 400 кГц
- Генераторы: mощность 10-15 кВт, частота 50-150 кГц
- Генераторы: mощность 30-45 кВт, частота 50-150 кГц
- Генераторы: mощность 65-135 кВт, частота 50-150 кГц
- Генераторы: mощность 180-270 кВт, частота 50-150 кГц
- Генераторы: mощность 20-35-50 кВт, частота 15-45 кГц
- Генераторы: mощность 75-150 кВт, частота 15-45 кГц
- Генераторы: mощность 200-500 кВт, частота 15-45 кГц
- Генераторы: mощность 20-50 кВт, частота 5-15 кГц
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- Генераторы индукционного нагрева Denki Kogyo
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Генераторы индукционного нагрева JKZ
- Генераторы серии CX, частота: 50-120 кГц, мощность: 5-25 кВт
- Генераторы серии SWS, частота: 15-30 кГц, мощность: 25-260 кВт
- Генераторы (печи) для штамповки и ковки серии MFS, частота: 0,5-10кГц, мощность: 80-500кВт.
- Плавильные печи MFS, частота: 0,5-10 кГц, мощность: 70-200 кВт
- Генераторы серии UHT, частота: 200-400кГц, мощность: 10-160кВт
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- Генераторы ламп для индукционного нагрева
- Генераторы индукционного нагрева Himmelwerk
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Генераторы индукционного нагрева Ambrell
- Ремонт и модернизация
- Периферийные устройства
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Приложения
- Медицинские приложения
- Приложения для автомобильной промышленности
- Мягкая пайка
- Пайка
- Пайка алюминия
- Пайка магнитных инструментов из нержавеющей стали
- Прецизионная пайка
- Пайка в защитной атмосфере
- Пайка латунных и стальных теплоотводящих колпачков
- Пайка спеченных карбидов
- Пайка медного наконечника и проволоки
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- База знаний
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Генераторы для индукционного нагрева
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Услуга
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asd
- Сервис промышленных водоохладителей и кондиционеров
- Ремонт и модернизация машин
- Ремонт и обслуживание силовой электроники, электроники и устройств промышленной автоматики
- Источники питания высокого напряжения для электрофильтров
- Промышленные принтеры и этикеточные машины
- Certyfikaty / uprawnienia
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Фотографии предназначены только для информационных целей. Посмотреть спецификацию продукта
please use latin characters
Overview of the functions of time relays
E ON delay | ||||||||||||||||||||||||||||
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When the supply voltage U is applied, the set interval t begins. After the interval t has expired the output relay R switches into on-position. This status remains until the supply voltage is interrupted. If the supply voltage is interrupted before the expiry of the set interval, the interval t already expired is erased and is restarted when the supply voltage is next applied. | ||||||||||||||||||||||||||||
A OFF delay without auxiliary voltage | ||||||||||||||||||||||||||||
When the supply voltage U is supplied, the output relay R swiches into on-position. If the supply voltage is interrupted, the set interval t begins. After the set interval t has expired the output relay R switches into offposition. If the supply voltage is reconnected before the interval t has expired the interval already is erased and is restarted with the next cycle. | ||||||||||||||||||||||||||||
R OFF delay | ||||||||||||||||||||||||||||
The supply voltage U must be constantly applied to the device. When the control contact S is closed, the output relay R switches into on-position. If the control contact is opened, the set interval t begins. After the interval t has expired the output relay switches into off-position. If the control contact is closed again before the set interval has expired, the interval already expired is erased and is restarted. | ||||||||||||||||||||||||||||
S Star-Delta Start-up | ||||||||||||||||||||||||||||
When the supply voltage U is applied, the star-contact switches into on-position and the set star-time t1 begins. After the interval t1 has expired the star-contact switches into off-position and the set transit-time t2 begins. After the interval t2 has expired the delta-contact switches into on-position. To restart the function the supply voltage must be interrupted and re-applied. | ||||||||||||||||||||||||||||
ER ON delay and OFF delay with control contact | ||||||||||||||||||||||||||||
The supply voltage U must be constantly applied to the device. When the control contact S is closed, the set interval t1 begins. After the interval t1 has expired, the output relay R switches into on-position. If the control contact is opened, the set interval t2 begins. After the interval t2 has expired, the output relay Switches into offposition. If the control contact is opened before the interval t1 has expired, the interval already expired is erased and is restarted with the next cycle. | ||||||||||||||||||||||||||||
Ec Additive ON Delay | ||||||||||||||||||||||||||||
When the supply voltage U is applied, the release for the interval starts. When the control contact S is closed, the set interval t begins. If the control contact S is opened during the set interval t, the interval stops, and the already expired interval is stored. During the lapse of time the control contact can be opened or closed as often as required. If the sum of the periods, in which the control contact S is closed reaches the set interval t the output relay R switches into on-position. The interval is stopped and a further activation of the control contact S remains without effect. By interrupting the supply voltage, the device will be reset. A possibly expired time t is deleted. | ||||||||||||||||||||||||||||
Es ON delay with control input | ||||||||||||||||||||||||||||
The supply voltage U must be constantly applied to the device. When the control contact S is closed, the set interval t begins. After the interval t has expired the output relay R switches into on-position. This status remains until the control contact is opened again. If the control contact is opened before the interval t has expired , the interval already expired is erased and is restarted with the next cycle. | ||||||||||||||||||||||||||||
ET ON delay two wire connected | ||||||||||||||||||||||||||||
When the supply voltage U is applied, the set interval t begins. After the interval has expired the thyristor switches on. This status remains until the supply voltage is interrupted. If the supply voltage is interrupted before the expiry of the interval, the interval already expired is erased and is restarted when the supply voltage is next applied | ||||||||||||||||||||||||||||
Wu Single shot leading edge voltage controlled | ||||||||||||||||||||||||||||
When the supply voltage U is applied, the output relay R switches into on-position and the set interval t begins. After the interval t has expired the output relay switches into off-position. This status remains until the supply voltage is interrupted. If the supply voltage is interrupted before the interval t has expired, the output relay switches into off-position. The interval already is erased and is restarted when the supply voltage is next applied. | ||||||||||||||||||||||||||||
EWu ON delay single shot leading edge with control contact | ||||||||||||||||||||||||||||
When the supply voltage U is applied, the set interval t1 begins. After the interval t1 has expired, the output relay R switches into on-position and the set interval t2 begins. After the interval t2 has expired, the output relay switches into off-position. If the supply voltage is interrupted before the interval t1+t2 has expired, the interval already expired is erased and is restarted when the supply voltage is next applied. | ||||||||||||||||||||||||||||
nWu Maintained single shot leading edge | ||||||||||||||||||||||||||||
When the supply voltage U is applied, the output relay R switches into on-position and the set interval t begins. After the interval t has expired the output relay switches into off-position. This status remains until the supply voltage is interrupted. If the supply voltage is reconnected before the interval t has expired, the unit continues to perform the actual single shot. | ||||||||||||||||||||||||||||
Ws Single shot leading edge with control input | ||||||||||||||||||||||||||||
The supply voltage U must be constantly applied to the device. When the control contact S is closed, the set interval t begins. After the interval t has expired the output relay R switches into on-position. This status remains until the control contact is opened again. If the control contact is opened before the interval t has expired , the interval already expired is erased and is restarted with the next cycle. | ||||||||||||||||||||||||||||
EWs ON delay single shot leading edge with control contact | ||||||||||||||||||||||||||||
The supply voltage U must be constantly applied to the device. When the control contact S is closed, the set interval t1 begins. After the interval t1 has expired, the output relay R switches into on-position and the set interval t2 begins. After the interval t2 has expired, the output relay switches into offposition. During the interval, the control contact can be operated any number of times. A further cycle can only be started when the cycle run has been completed. | ||||||||||||||||||||||||||||
Wa Single shot trailing edge with control input | ||||||||||||||||||||||||||||
The supply voltage U must be constantly applied to the device. Closing the control contact S has no influence on the condition of the output R. When the control contact is opened, the output relay switches into on-position and the set interval t begins. After the set interval has expired, the ouput relay switches into off-position. During the interval, the control contact can be operated any number of times. A further cycle can only be started when the cycle run has been completed. | ||||||||||||||||||||||||||||
nWa Maintained single shot trailing edge | ||||||||||||||||||||||||||||
When the supply voltage U is supplied, the output relay R remains into off-position. As soon as the supply voltage is interrupted the output relay switches into on-position and the set interval t begins. After the set interval t has expired the output relay switches into off-position. When the supply voltage is reconnected before the interval t has expired, the unit continues to perform the actual single shot. | ||||||||||||||||||||||||||||
nWuWa Maintained single shot leading and trailing edge | ||||||||||||||||||||||||||||
When the supply voltage U is applied, the output relay R switches into on-position and the set interval t begins. After the interval t has expired the output relay switches into off-position. As soon as the supply voltage is interrupted the output relay switches into on-position again and the set interval t begins. After the set interval t has expired the output relay switches into off-position. If the supply voltage is interrupted (nWu) or reconnected (nWa) before the interval t has expired the unit continues to perform the actual single shot | ||||||||||||||||||||||||||||
WsWa Single shot leading and single shot trailing edge with control contact | ||||||||||||||||||||||||||||
The supply voltage U must be constantly applied to the device. When the control contact S is closed, the output relay R switches into on-position and the set interval t1 begins. After the interval t1 has expired, the output relay R switches into off-position. If the control contact is opened, the output relay again switches into on-position and the set interval t2 begins. After the interval t2 has expired the output relay switches into off-position. During the interval, the control contact can be operated any number of times. | ||||||||||||||||||||||||||||
Bi Flasher pulse first | ||||||||||||||||||||||||||||
When the supply voltage U is applied, the output relay R switches into on-position and the set interval t begins. After the interval t has expired, the output relay R switches into off-position and the set interval t begins again. The output relay is triggered at a ratio of 1:1 until the supply voltage is interrupted. | ||||||||||||||||||||||||||||
Bp Flasher pause first | ||||||||||||||||||||||||||||
When the supply voltage U is applied, the set interval t begins. After the interval t has expired, the output relay R switches into on-position and the set interval t begins again. After the interval t has expired, the output relay switches into off-position. The output relay is triggered at a ratio of 1:1 until the supply voltage is interrupted. | ||||||||||||||||||||||||||||
Wt Asymmetric flasher pulse first | ||||||||||||||||||||||||||||
When the supply voltage U is applied, the set interval t1 begins and the output relay R switches into on-position. After the interval t1 has expired, the set interval t2 begins. So that the output relay R remains in on-position, the control contact S must be closed and opened again within the set interval t2. If this does not happen, the output relay R switches into off-position and all further pulses at the control contact are ignored. To restart the function the supply voltage must be interrupted and reapplied. | ||||||||||||||||||||||||||||
Ii Asymmetric flasher pulse first | ||||||||||||||||||||||||||||
When the supply voltage U is applied, the output relay R switches into on-position and the set interval t1 begins. After the interval t1 has expired, the output relay switches into off-position and the set interval t2 begins. After the interval t2 has expired, the output relay switches into on-position. The output relay is triggered at the ratio of t1:t2 until the supply voltage is interrupted. | ||||||||||||||||||||||||||||
Ip Asymmetric flasher pause first | ||||||||||||||||||||||||||||
When the supply voltage U is applied, the set interval t1 begins. After the interval t1 has expired, the output relay R switches into on-position and the set interval t2 begins. After the interval t2 has expired, the output relay switches into off-position. The output relay is triggered at the ratio of t1:t2 until the supply voltage is interrupted. | ||||||||||||||||||||||||||||
T, TW Function automatic timer with (TW) or without (T) switch-off warning | ||||||||||||||||||||||||||||
After the pushbutton (control input) has been pressed, the output relay R closes and the set interval t begins. If the pushbutton is pressed again before the interval has expired, the interval begins again (restart function complies with EN 60669-2-3). Rapid, multiple pressing of the pushbutton (pumping) adds 2, 3 or more time intervals to extend the time up to 60 min. Prolonged pressure on the button (>2 s) aborts the interval running and switches the relay off (energy saving function). In the TW mode the device provides a switch-off warning (in accordance with DIN 180-158-2) by generating short pulses (flashing) at 30s, 15s and 5s prior to switch-off. | ||||||||||||||||||||||||||||
P, PN Impulse switch mode | ||||||||||||||||||||||||||||
In this mode, every keypress of the pushbutton (control input) toggles the output relay R (flip-flop). In function P, the output relay remains in off-position, whenever the supply voltage is applied. In function PN, the output relay switches into on-position after applying the supply voltage U, if the output relay was in on-position last before power failure. In both functions the output relay switches into on-position, if a short voltage impulse (2s) opens the output relay (central OFF). | ||||||||||||||||||||||||||||
P (R) Impulse switch mode with off delay | ||||||||||||||||||||||||||||
In this mode, every keypress toggles the output relay R (flip-flop). After the pushbutton (control input) has been pressed, the output relay closes and the set interval t begins. After the interval has expired the output relay switches into off-position. If the pushbutton is pressed again before the interval has expired, the interval will be canceled and the output relay switches into off-position. |
Pictures time relays
Pictures 1 |
Pictures 2 |
Pictures 3 |
Pictures 4 |
Pictures 5 |
Pictures 6 |
Pictures 7 |
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Overview of the functions of time relays
E ON delay | ||||||||||||||||||||||||||||
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When the supply voltage U is applied, the set interval t begins. After the interval t has expired the output relay R switches into on-position. This status remains until the supply voltage is interrupted. If the supply voltage is interrupted before the expiry of the set interval, the interval t already expired is erased and is restarted when the supply voltage is next applied. | ||||||||||||||||||||||||||||
A OFF delay without auxiliary voltage | ||||||||||||||||||||||||||||
When the supply voltage U is supplied, the output relay R swiches into on-position. If the supply voltage is interrupted, the set interval t begins. After the set interval t has expired the output relay R switches into offposition. If the supply voltage is reconnected before the interval t has expired the interval already is erased and is restarted with the next cycle. | ||||||||||||||||||||||||||||
R OFF delay | ||||||||||||||||||||||||||||
The supply voltage U must be constantly applied to the device. When the control contact S is closed, the output relay R switches into on-position. If the control contact is opened, the set interval t begins. After the interval t has expired the output relay switches into off-position. If the control contact is closed again before the set interval has expired, the interval already expired is erased and is restarted. | ||||||||||||||||||||||||||||
S Star-Delta Start-up | ||||||||||||||||||||||||||||
When the supply voltage U is applied, the star-contact switches into on-position and the set star-time t1 begins. After the interval t1 has expired the star-contact switches into off-position and the set transit-time t2 begins. After the interval t2 has expired the delta-contact switches into on-position. To restart the function the supply voltage must be interrupted and re-applied. | ||||||||||||||||||||||||||||
ER ON delay and OFF delay with control contact | ||||||||||||||||||||||||||||
The supply voltage U must be constantly applied to the device. When the control contact S is closed, the set interval t1 begins. After the interval t1 has expired, the output relay R switches into on-position. If the control contact is opened, the set interval t2 begins. After the interval t2 has expired, the output relay Switches into offposition. If the control contact is opened before the interval t1 has expired, the interval already expired is erased and is restarted with the next cycle. | ||||||||||||||||||||||||||||
Ec Additive ON Delay | ||||||||||||||||||||||||||||
When the supply voltage U is applied, the release for the interval starts. When the control contact S is closed, the set interval t begins. If the control contact S is opened during the set interval t, the interval stops, and the already expired interval is stored. During the lapse of time the control contact can be opened or closed as often as required. If the sum of the periods, in which the control contact S is closed reaches the set interval t the output relay R switches into on-position. The interval is stopped and a further activation of the control contact S remains without effect. By interrupting the supply voltage, the device will be reset. A possibly expired time t is deleted. | ||||||||||||||||||||||||||||
Es ON delay with control input | ||||||||||||||||||||||||||||
The supply voltage U must be constantly applied to the device. When the control contact S is closed, the set interval t begins. After the interval t has expired the output relay R switches into on-position. This status remains until the control contact is opened again. If the control contact is opened before the interval t has expired , the interval already expired is erased and is restarted with the next cycle. | ||||||||||||||||||||||||||||
ET ON delay two wire connected | ||||||||||||||||||||||||||||
When the supply voltage U is applied, the set interval t begins. After the interval has expired the thyristor switches on. This status remains until the supply voltage is interrupted. If the supply voltage is interrupted before the expiry of the interval, the interval already expired is erased and is restarted when the supply voltage is next applied | ||||||||||||||||||||||||||||
Wu Single shot leading edge voltage controlled | ||||||||||||||||||||||||||||
When the supply voltage U is applied, the output relay R switches into on-position and the set interval t begins. After the interval t has expired the output relay switches into off-position. This status remains until the supply voltage is interrupted. If the supply voltage is interrupted before the interval t has expired, the output relay switches into off-position. The interval already is erased and is restarted when the supply voltage is next applied. | ||||||||||||||||||||||||||||
EWu ON delay single shot leading edge with control contact | ||||||||||||||||||||||||||||
When the supply voltage U is applied, the set interval t1 begins. After the interval t1 has expired, the output relay R switches into on-position and the set interval t2 begins. After the interval t2 has expired, the output relay switches into off-position. If the supply voltage is interrupted before the interval t1+t2 has expired, the interval already expired is erased and is restarted when the supply voltage is next applied. | ||||||||||||||||||||||||||||
nWu Maintained single shot leading edge | ||||||||||||||||||||||||||||
When the supply voltage U is applied, the output relay R switches into on-position and the set interval t begins. After the interval t has expired the output relay switches into off-position. This status remains until the supply voltage is interrupted. If the supply voltage is reconnected before the interval t has expired, the unit continues to perform the actual single shot. | ||||||||||||||||||||||||||||
Ws Single shot leading edge with control input | ||||||||||||||||||||||||||||
The supply voltage U must be constantly applied to the device. When the control contact S is closed, the set interval t begins. After the interval t has expired the output relay R switches into on-position. This status remains until the control contact is opened again. If the control contact is opened before the interval t has expired , the interval already expired is erased and is restarted with the next cycle. | ||||||||||||||||||||||||||||
EWs ON delay single shot leading edge with control contact | ||||||||||||||||||||||||||||
The supply voltage U must be constantly applied to the device. When the control contact S is closed, the set interval t1 begins. After the interval t1 has expired, the output relay R switches into on-position and the set interval t2 begins. After the interval t2 has expired, the output relay switches into offposition. During the interval, the control contact can be operated any number of times. A further cycle can only be started when the cycle run has been completed. | ||||||||||||||||||||||||||||
Wa Single shot trailing edge with control input | ||||||||||||||||||||||||||||
The supply voltage U must be constantly applied to the device. Closing the control contact S has no influence on the condition of the output R. When the control contact is opened, the output relay switches into on-position and the set interval t begins. After the set interval has expired, the ouput relay switches into off-position. During the interval, the control contact can be operated any number of times. A further cycle can only be started when the cycle run has been completed. | ||||||||||||||||||||||||||||
nWa Maintained single shot trailing edge | ||||||||||||||||||||||||||||
When the supply voltage U is supplied, the output relay R remains into off-position. As soon as the supply voltage is interrupted the output relay switches into on-position and the set interval t begins. After the set interval t has expired the output relay switches into off-position. When the supply voltage is reconnected before the interval t has expired, the unit continues to perform the actual single shot. | ||||||||||||||||||||||||||||
nWuWa Maintained single shot leading and trailing edge | ||||||||||||||||||||||||||||
When the supply voltage U is applied, the output relay R switches into on-position and the set interval t begins. After the interval t has expired the output relay switches into off-position. As soon as the supply voltage is interrupted the output relay switches into on-position again and the set interval t begins. After the set interval t has expired the output relay switches into off-position. If the supply voltage is interrupted (nWu) or reconnected (nWa) before the interval t has expired the unit continues to perform the actual single shot | ||||||||||||||||||||||||||||
WsWa Single shot leading and single shot trailing edge with control contact | ||||||||||||||||||||||||||||
The supply voltage U must be constantly applied to the device. When the control contact S is closed, the output relay R switches into on-position and the set interval t1 begins. After the interval t1 has expired, the output relay R switches into off-position. If the control contact is opened, the output relay again switches into on-position and the set interval t2 begins. After the interval t2 has expired the output relay switches into off-position. During the interval, the control contact can be operated any number of times. | ||||||||||||||||||||||||||||
Bi Flasher pulse first | ||||||||||||||||||||||||||||
When the supply voltage U is applied, the output relay R switches into on-position and the set interval t begins. After the interval t has expired, the output relay R switches into off-position and the set interval t begins again. The output relay is triggered at a ratio of 1:1 until the supply voltage is interrupted. | ||||||||||||||||||||||||||||
Bp Flasher pause first | ||||||||||||||||||||||||||||
When the supply voltage U is applied, the set interval t begins. After the interval t has expired, the output relay R switches into on-position and the set interval t begins again. After the interval t has expired, the output relay switches into off-position. The output relay is triggered at a ratio of 1:1 until the supply voltage is interrupted. | ||||||||||||||||||||||||||||
Wt Asymmetric flasher pulse first | ||||||||||||||||||||||||||||
When the supply voltage U is applied, the set interval t1 begins and the output relay R switches into on-position. After the interval t1 has expired, the set interval t2 begins. So that the output relay R remains in on-position, the control contact S must be closed and opened again within the set interval t2. If this does not happen, the output relay R switches into off-position and all further pulses at the control contact are ignored. To restart the function the supply voltage must be interrupted and reapplied. | ||||||||||||||||||||||||||||
Ii Asymmetric flasher pulse first | ||||||||||||||||||||||||||||
When the supply voltage U is applied, the output relay R switches into on-position and the set interval t1 begins. After the interval t1 has expired, the output relay switches into off-position and the set interval t2 begins. After the interval t2 has expired, the output relay switches into on-position. The output relay is triggered at the ratio of t1:t2 until the supply voltage is interrupted. | ||||||||||||||||||||||||||||
Ip Asymmetric flasher pause first | ||||||||||||||||||||||||||||
When the supply voltage U is applied, the set interval t1 begins. After the interval t1 has expired, the output relay R switches into on-position and the set interval t2 begins. After the interval t2 has expired, the output relay switches into off-position. The output relay is triggered at the ratio of t1:t2 until the supply voltage is interrupted. | ||||||||||||||||||||||||||||
T, TW Function automatic timer with (TW) or without (T) switch-off warning | ||||||||||||||||||||||||||||
After the pushbutton (control input) has been pressed, the output relay R closes and the set interval t begins. If the pushbutton is pressed again before the interval has expired, the interval begins again (restart function complies with EN 60669-2-3). Rapid, multiple pressing of the pushbutton (pumping) adds 2, 3 or more time intervals to extend the time up to 60 min. Prolonged pressure on the button (>2 s) aborts the interval running and switches the relay off (energy saving function). In the TW mode the device provides a switch-off warning (in accordance with DIN 180-158-2) by generating short pulses (flashing) at 30s, 15s and 5s prior to switch-off. | ||||||||||||||||||||||||||||
P, PN Impulse switch mode | ||||||||||||||||||||||||||||
In this mode, every keypress of the pushbutton (control input) toggles the output relay R (flip-flop). In function P, the output relay remains in off-position, whenever the supply voltage is applied. In function PN, the output relay switches into on-position after applying the supply voltage U, if the output relay was in on-position last before power failure. In both functions the output relay switches into on-position, if a short voltage impulse (2s) opens the output relay (central OFF). | ||||||||||||||||||||||||||||
P (R) Impulse switch mode with off delay | ||||||||||||||||||||||||||||
In this mode, every keypress toggles the output relay R (flip-flop). After the pushbutton (control input) has been pressed, the output relay closes and the set interval t begins. After the interval has expired the output relay switches into off-position. If the pushbutton is pressed again before the interval has expired, the interval will be canceled and the output relay switches into off-position. |
Pictures time relays
Pictures 1 |
Pictures 2 |
Pictures 3 |
Pictures 4 |
Pictures 5 |
Pictures 6 |
Pictures 7 |
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