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Semiconductores
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Módulos con aislamiento eléctrico
- Módulos con aislamiento eléctrico | VISHAY (IR)
- Módulos con aislamiento eléctrico | INFINEON (EUPEC)
- Módulos con aislamiento eléctrico | Semikron
- Módulos con aislamiento eléctrico | POWEREX
- Módulos con aislamiento eléctrico | IXYS
- Módulos con aislamiento eléctrico | POSEICO
- Módulos con aislamiento eléctrico | ABB
- Módulos con aislamiento eléctrico | TECHSEM
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- Rectificadores de puente
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Transistores
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- Módulos SiC MOSFET | Mitsubishi
- Módulos SiC MOSFET | STARPOWER
- Módulos ABB SiC MOSFET
- Módulos IGBT | MITSUBISHI
- Módulos de transistores | MITSUBISHI
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- Módulos IGBT | POWEREX
- Módulos IGBT | INFINEON (EUPEC)
- Elementos semiconductores de carburo de silicio (SiC)
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- Controladores de puerta
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Convertidores de corriente y tensión LEM
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Transductores de corriente | LEM
- Transductor de corriente con bucle de retroalimentación cerrado (C / L)
- Transductor de corriente con bucle de retroalimentación abierto (O / L)
- Transductor de corriente alimentado por voltaje unipolar
- Transductores en tecnología Eta
- Transductores de corriente de alta precisión serie LF xx10
- Transductores de corriente de la serie LH
- HOYS y HOYL: dedicados para el montaje directamente en un riel conductor
- Convertidores de corriente en la tecnología SMD de las series GO-SME y GO-SMS
- Transductores de corriente AUTOMOCIÓN
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Transductores de voltaje | LEM
- Convertidores de voltaje de la serie LV
- Convertidores de voltaje de la serie DVS
- Convertidores de tensión de precisión con doble núcleo magnético serie CV
- Convertidores de tensión de precisión con doble núcleo magnético serie CV
- Convertidores de voltaje de la serie DVM
- Transductor de voltaje - DVC 1000-P
- Transductores de voltaje - Serie DVC 1000
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- Transductores de corriente de precisión | LEM
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Transductores de corriente | LEM
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Componentes pasivos (condensadores, resistencias, fusibles, filtros)
- Resistencias
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Fusibles
- Fusibles miniatura para circuitos electrónicos, serie ABC y AGC
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- Eslabones fusibles de retardo de tiempo con características GL / GG y AM
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- Fusibles de acción rápida (estándar británico y estadounidense)
- Fusibles de acción rápida (estándar europeo)
- Fusibles de tracción
- Eslabones fusibles de alto voltaje
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Condensadores
- Condensadores de motor
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- Condensadores para circuitos de CC
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- Condensadores de calentamiento por inducción
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- Condensadores de ENLACE CC
- Condensadores para circuitos AC/DC
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- Filtros EMI
- Supercondensadores
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Protección contra sobretensiones
- Protección contra sobretensiones para aplicaciones coaxiales
- Protección contra sobretensiones para sistemas de videovigilancia
- Protección contra sobretensiones para cableado de potencia
- Pararrayos para LED
- Descargadores de sobretensiones para energía fotovoltaica
- Protección del sistema de pesaje
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Relés y contactores
- Teoría de relés y contactores
- Relés semiconductores de CA trifásicos
- Relés semiconductores de CA trifásicos
- Reguladores, controles y accesorios
- Arranques suaves y contactores de inversión
- Relés electromecánicos
- Contactores
- Interruptores giratorios
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Relés semiconductores de CA monofásicos
- Relés semiconductores CA monofásicos, serie 1 | D2425 | D2450
- Relés semiconductores CA monofásicos, series CWA y CWD
- Relés semiconductores CA monofásicos de las series CMRA y CMRD
- Relés semiconductores de CA monofásicos, serie PS
- Relés semiconductores de CA dobles y cuádruples, serie D24 D, TD24 Q, H12D48 D
- Relés de estado sólido monofásicos, serie gn
- Relés semiconductores de ca monofásicos, serie ckr
- Relés AC monofásicos SERIE ERDA Y ERAA para carril DIN
- Relés AC monofásicos para corriente 150A
- Relés dobles de estado sólido integrados con disipador de calor para carril DIN
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- Relés semiconductores CA monofásicos para PCB
- Relés de interfaz
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- Núcleos y otros componentes inductivos
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- Aire Acondicionado, Accesorios para Armarios Eléctricos, Neveras
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Baterías, cargadores, fuentes de alimentación de búfer e inversores
- Baterías, cargadores - descripción teórica
- Baterías de iones de litio. Baterías personalizadas. Sistema de gestión de batería (BMS)
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Automaticas
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Grabadores
- Grabadora AL3000
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- Grabadora KR5000
- Medidor HN-CH con función de registro de humedad y temperatura
- Consumibles para registradores
- Grabadora 71VR1
- Grabadora KR 3000
- Grabadores de PC de la serie R1M
- Grabadores de PC de la serie R2M
- Grabador de PC, 12 entradas aisladas - RZMS-U9
- Grabador de PC, USB, 12 entradas aisladas - RZUS
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Cables, alambres Litz, conductos, conexiones flexibles
- alambres
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Cables para aplicaciones especiales
- Los cables de extensión y compensación
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- Multicore cables temp. -60 ° C a + 1400 ° C
- cables de media tensión SILICOUL
- ignición alambres
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- temp núcleo único. -60 ° C a + 450 ° C
- conductores de trenes
- El calentamiento de los cables en el Ex
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- camisas
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trenzas
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- cintas de conexión flexibles
- Trenzas cilíndrico galvanizado y acero inoxidable
- Aislamiento de PVC trenzas de cobre - Temperatura 85 ° C
- aluminio trenzado plano
- Kit de conexión - trenzas y tubos
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- Accesorios para la tracción
- Terminales de cable
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- sistemas de gestión de cables
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Semiconductores
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Applications
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Probadores industriales
- Probadores de semiconductores de potencia
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- Probador de fusibles automotriz
- Probador qrr para medir cargas transitorias en tiristores y diodos de potencia
- Comprobador de rotores de interruptores automáticos de la serie FD
- Comprobador de auditoría de dispositivos de corriente residual
- Probador de calibración de relés
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- Interruptor de tiristor de alta corriente
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Inductores
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Modernizacja induktorów
- Reparación de inductores usados
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Producción de nuevos inductores.
- Endurecimiento de cigüeñales
- Endurecimiento de los dientes de la sierra de cinta
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- Soldadura blanda
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Dispositivos de inducción
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Urządzenia indukcyjne
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Generadores de calentamiento por inducción
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Generadores de calentamiento por inducción Ambrell
- Generadores: potencia 500 W, frecuencia 150-400 kHz
- Generadores: Potencia 1,2 - 2,4 kW, frecuencia 150 - 400 kHz
- Generadores: potencia 4.2 - 10 kW, frecuencia 150 - 400 kHz
- Generadores: potencia 10-15 kW, frecuencia 50-150 kHz
- Generadores: potencia 30-45 kW, frecuencia 50-150 kHz
- Generadores: potencia 65-135 kW, frecuencia 50-150 kHz
- Generadores: potencia 180-270 kW, frecuencia 50-150 kHz
- Generadores: potencia 20-35-50 kW, frecuencia 15-45 kHz
- Generadores: cнага 75-150 кВ, фреквенција 15-45 кХз
- Generadores: potencia 200-500 kW, frecuencia 15-45 kHz
- Generadores: potencia 20-50 kW, frecuencia 5-15 kHz
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- Generadores de calentamiento por inducción Denki Kogyo
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Generadores de calentamiento por inducción JKZ
- Generadores de la serie CX, frecuencia: 50-120kHz, potencia: 5-25kW
- Generadores de la serie SWS, frecuencia: 15-30kHz, potencia: 25-260kW
- Generadores (hornos) para conformar y forjar serie MFS, frecuencia: 0.5-10kHz, potencia: 80-500kW
- Hornos de fusión MFS, frecuencia: 0,5-10 kHz, potencia: 70-200 kW
- Generadores de la serie UHT, frecuencia: 200-400kHz, potencia: 10-160kW
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Generadores de calentamiento por inducción Ambrell
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Generadores de calentamiento por inducción
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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
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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
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