6 Holding brake control
6.6 Settings
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Lenze · i700 servo inverter · reference manual · DMS 3.0 EN · 06/2016 · TD06
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Selection list (read only)
0 Detection not active
1 Brake detection is running...
2 No brake detected
3 Brake detected
Write access CINH OSC P RX TX UNSIGNED_16
Subindex 5: Brake: Control logic
The control logic of the holding brake can be inverted.
Selection list (Lenze setting printed in bold)
0 Positive logic
1 Negative logic
Write access CINH OSC P RX TX UNSIGNED_8
Subindex 6: Brake monitoring: Response
In the controlled state, the holding brake is monitored cyclically for the presence of the brake current.
Since, after connecting the brake, the brake current builds up in a time-delayed manner as a function of inductance,
an open circuit, a terminal short circuit, or a missing brake supply is detected with a delay.
When monitoring trips, the response set here will be activated.
Note:
The brake is not monitored in the non-triggered state!
Selection list (Lenze setting printed in bold)
0 No response
1Fault
2 Warning
Write access CINH OSC P RX TX UNSIGNED_8
Subindex 9: Holding brake: Starting torque source
Source for the holding brake torque
Selection list (Lenze setting printed in bold) Info
0 Stopping value In case of feedforward control with the last memorised
stopping value, the setpoint that has been automatically
memorised during the last closing process is used as
starting torque.
1 Starting torque of 0x2820/10 In case of feedforward control with parameterised
starting torque, the parameterised starting torque from
subindex 10 is used.
The starting torque can be mapped.
Write access CINH OSC P RX TX UNSIGNED_16
Subindex 10: Holding brake: Starting torque
Feedforward control value for the automatic operation (subindex 9 = 1)
Setting range (min. value | unit | max. value) Lenze setting
-3276.8 % 3276.7
Write access CINH OSC P RX TX Scaling: 1/10 INTEGER_16
Subindex 4: Brake: brake identification