Coupling Mechanisms - Siemens CPU 313C Hardware And Installation Manual

S7-300 automation system
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Depending on the emitting media (line or isolated) and the distance between the
interference source and the device, four different coupling mechanisms can
influence the PLC.
Table 12-5
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Electrical
coupling
Capacitive
coupling
Inductive
coupling
Radio frequency
coupling
12-4

Coupling mechanisms

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Galvanic or mechanical
coupling always occurs when
two circuits use one common
cable.
Capacitive or electrical
coupling occurs between
conductors connected to
different potentials.
The coupling effect is
proportional to voltage
change over time.
Inductive or magnetic
coupling occurs between two
current circuit loops. Current
flow in magnetic fields
induces interference voltages.
The coupling effect is
proportional to current change
over time.
Radio frequency coupling
occurs when an
electromagnetic wave
reaches a conductor system.
This wave coupling induces
currents and voltages.
S7-300 Automation System, Hardware and Installation: CPU 31xC and CPU 31x
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Clocked devices (influence on the
network due to converters and
third-party power supply modules)
Starting motors
Potential differences on component
enclosures with common power
supply
Static discharge
Interference coupling due to
parallel routing of signal cables
Static discharge of the operator
Contactors
Transformers, motors, arc welding
devices
Power supply cables routed in
parallelism
Switched cable current
High-frequency signal cable
Coils without suppression circuit
Neighboring transmitters (e.g. radio
phones)
Sparking (sparkplugs, collectors of
electrical motors, welding devices)
A5E00105492-03

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