SIRUS 3TX7 coupling relays in narrow design are used to connect control signals to and from a PLC and are available in several different versions:
Coupling relays with relay output
Coupling relays with plug-in relay
Coupling relays with semiconductor output
Coupling relays with relay output
AC and DC operation
IEC 60947?5?1, EN 60947?5?1
In the coupling relays in double-decker design, the connections are arranged on two levels; these units are extremely compact. Connection method: screw or spring-type terminals. For test purposes, versions are available with manual-0-automatic switches.
The input and output coupling relays differ with regard to the positioning of the terminals and the LED. For equipment identification purposes, each coupling relay has a blank labeling plate.
The coupling relays with relay outputs have a low power consumption and are therefore particularly well suited for solid-state systems.
Application example: Motor control
Surge suppression
The coupling relays have been tested in 1 x 105 operating cycles under AC-15 operation with the values specified in the technical specifications.
The endurance of the coupling relays can be increased by connecting inductive loads.
Note 1:
If capacitive loads are switched without components (series resistors) that limit temporary peak currents, microscopic welding of the relay contacts may result.
Note 2:
For operation with rated voltage and 100 % ON period 24/7, always ensure a distance of at least 10 mm between modules or any adjacent contacts.
Coupling relay with plug-in relay
AC and DC operation
IEC 60947-5-1, EN 60947-5-1
Coupling relays are used to couple signals to and from a PLC. The relays are of plug-in type, meaning that at the end of its service life it can be replaced without disconnecting the wiring. For replacement modules see “More information”.
For easy linking of the signals, each terminal can be jumpered using an external connecting comb.
Advantages:
Coupling relays in 6.2?mm width with screw or spring-type terminals
Fast exchange with permanent wiring (plug-in relay)
Tested complete units > lower assembly time
Single relays available as components
The wire inlet and connections can be accessed from the front. This results in faster wiring time and wiring errors are prevented.
Linking of control supply voltage and control signals with 16-pole connecting comb
Galvanic isolation plate for isolating different voltages for neighboring units
Integrated reverse polarity protection and EMC arc-suppression diode
Functional state of the coupling relay clearly indicated by yellow LED
Safe isolation according to IEC 61140
Device variants with hard gold-plated contacts, hence high contact reliability
230 V AC/DC versions available
Note 1:
The endurance of the coupling relays can be increased by connecting inductive loads. Capacitive loads can result in micro-welding on the contacts.
Note 2:
For operation with rated voltage and 100 % ON period 24/7, always ensure a distance of at least 10 mm between modules or any adjacent contacts.
Coupling relays with semiconductor output
AC and DC operation
EN 60947?1, EN 60664?1 and EN 50005; Coupling relays with semiconductor output: EN 60747?5; programmable controllers: IEC 61131?2
The input and output coupling relays differ with regard to the positioning of the terminals and the LED. For equipment identification purposes, each coupling relay has a blank labeling plate.
The coupling relays with semiconductor outputs have a low power consumption and are therefore particularly well suited for solid-state systems.
In the coupling relays in double-decker design, the connections are arranged on two levels; these units are extremely compact. Connection method: screw or spring-type terminals. For test purposes, versions are available with manual-0-automatic switches. This version is also available with spring-loaded terminal connections.
Application example: Motor control
Surge suppression
In the case of coupling relays with semiconductor output (optocouplers), the contact element is a semiconductor. These are not subject to wear; so welding is not possible.
Note:
With semiconductors, the switching current is not dependent on the inductance of the load, i.e. the switching current for an inductive DC-13 load is the same as that for a DC-12 load. This means that coupling relays with a semiconductor output are particularly suitable for inductive loads, such as solenoid valves. It is not relevant to specify the number of operating cycles because this does not affect the lifetime of the semiconductor, provided it is not overheated.
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Арматура DENDOR
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Датчики и измерители
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Регуляторы и регистраторы
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Пневматическое оборудование
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Краны и Клапаны
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Измерительные приборы
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Системы беспроводного управления «умный дом»
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Бесконтактные выключатели Конечные выключатели Оптические датчики Энкодеры
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SKW-FS - Установка умягчения
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SKW-FK - Установка обезжелезивания