5 speed synchronism, How to select the correct configuration, Speed-synchronous running – Lenze EVS9332xS User Manual
Page 37: Speed ratio synchronism, Speed synchronism, Configuration
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Configuration
Basic configurations
2.2.5
Speed synchronism
2−25
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EDSVS9332S−EXT EN 2.0
2.2.5
Speed synchronism
2.2.5.1
How to select the correct configuration
The following
slave
configurations can be selected for the speed synchronism with the master
configuration C0005 = 5XXX:
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Slave for setpoint bus C0005 = 6XXX;
for only two drives or fixed speed relationships which must be set only once (commissioning)
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Slave for setpoint cascade C0005 = 7XXX;
for more than two drives or simple change of the speed relationship with stretching factors in
the running process
A correction value for the speed synchronism can be changed and displayed via the input
DFSET−N−TRIM in the DFSET function block.
The input can be changed by reconfiguration via:
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analog terminal
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motor potentiometer
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keypad
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automation interface or system bus
The correction value is provided in % of C0011 (n
max
).
Deactivate the phase controller for the speed synchronism. This means that the phase−synchronous
running becomes a speed−synchronous running, which results in adding phase errors between the
drives. The phase controller can be deactivated by setting code C0254 to zero.
2.2.5.2
Speed−synchronous running
Purpose
For material transports with very low stretching coefficients, such as paper, metal, etc., the tension
can be set via the gearbox factor C0032/C0033 by oversynchonism in the ‰ range. A specified
tension thus results from the stretching coefficient of the material. For a better operation and higher
accuracy in the digital frequency coupling, we recommend the digital frequency cascade C0005 =
7XXX.
2.2.5.3
Speed ratio synchronism
Purpose
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Stretching systems
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Wire−drawing plants
Example
Extruder system with stretching of plastic threads by a speed ratio synchronism. The stretching is
performed online during the process via a motor potentiometer function.