WAGO-I/O-SYSTEM 750
Device Description
13
750-506 2DO 24V DC 0.5A/ diagnostics
Manual
Version 1.2.0
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3
Device Description
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The 750-506 (2DO 24V DC 0.5A/ diagnostics) Digital Output Module transmits
binary control signals from the automation device to the connected actuators (e.g.,
solenoid valves, contactors, transmitters, relays or other electrical loads).
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These output modules can recognize a short circuit to ground, a line break and an
overload in either channel.
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The module has two output channels. Two actuators with ground (earth) wire
may be directly connected to signal output DO 1.0 V and PE (earth potential)
or signal output DO 2.0 V and PE.
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The assignment of the connections is described in the “Connectors” section.
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Connection examples are shown in section “Connecting Devices” > … >
“Connection Example(s)”.
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Limit all induced voltage!
The electronic components of the I/O module can be damaged by the induced
voltage produced when inductive loads are de-activated.
An appropriate protection circuit, e.g., a recovery diode, must be installed in
parallel to the load to limit this induced voltage.
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The output channels are electrically short-circuit-protected.
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The I/O module outputs provide high-side switching. If the signal status of an
output channel is at “high” the 24 V potential for field power will be switched to
the appropriate output connection.
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The supply voltage for the field side is derived from an adjacent supply module by
means of power jumper contacts.
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Provide for overload protection!
Overloading can damage the electronic components of the I/O module.
A fused supply module (750-601) must be installed upstream of the I/O module to
protect it against overloading!
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The status of the two output channels is indicated via green status LEDs. A color
change to red signals an open circuit, overload or a short circuit.
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The meaning of the LEDs is described in the “Display Elements” section.
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The I/O module 750-506 (2DO 24V DC 0.5A/ diagnostics) receives the 24 V
voltage supply for the field level from an upstream I/O module or from the
fieldbus coupler/controller via blade-formed power jumper contacts. It then
provides these potentials to subsequent I/O modules via spring-formed power
jumper contacts.