Functional Reserve; Temperature Processing - Balluff DRIVE-CLiQ Notice D'utilisation

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BML SGA-AEZ1-LZZZ- _ _ _1- _ _ _ _
Absolute magnetic encoder system
6
DRIVE-CLiQ interface (continued)
6.3

Functional reserve

Different parameters such as distance, lateral offset,
ambient temperature, angle to the magnetic tape, and
external magnetic fields have a direct effect on the
measuring accuracy.
The measuring accuracy is determined in a functional
reserve value by applying a plausibility check.
To perform the plausibility check, the sensor head must be
moved over the magnetic tape with a speed of <1 m/s. If
no value can be determined (traverse speed > 1 m/s or
opposite direction of movement) the value unknown is
output.
The functional reserve value is not sent at each DRIVE-
CLiQ communication cycle. The value itself can be read
from the parameter Functional reserve 3 and is given in
percent. Values for the functional reserve are defined as
follows:
Value [%]
0...25
Functional limit was reached
26...100
Sensor head operating optimally
999
unknown (e.g. speed > 1 m/s)
Tab. 6-4:
Functional reserve values
When the functional limit is reached, the control
unit generates the alarm A3x407.
6.4

Temperature processing

The sensor head model BML SGA-AEZ1-LZZZ-TU11-S284
can process an externally connected resistance
temperature detector (RTD). The temperature value is sent
in SINAMICS format, with a temperature resolution value of
0.1 °C. The basic error detection is also implemented, so
that the sensor head is able to determine whether the
connection to the temperature sensor is defective.
Only a type PT1000 (2-wire) temperature sensor is
supported. If another sensor type is connected, the
temperature processing will indicate highly inexact values.
Possible temperature values:
Value [°C]
–300.0
invalid temperature value, temperature error
> –200.0
valid temperature value
Tab. 6-5:
Possible temperature values
A temperature error causes alarm F3x405 to be
generated.
18
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