E115-P
User Manual
FW_E115-P_M_v0301-01_EN
Page 29
7
ANALOG OUTPUT
7.7 TUNE MAX (20MA)
Use this setting to precisely tune the maximum analog output value (initial
value is 20 mA). This value can differ slightly due to ambient influences
such as temperature.
Before tuning the signal, make sure the analog signal is not being
used for any application.
After pressing PROG, the current will be about 20 mA. The current can be
increased / decreased with the arrow-keys and is directly active. Press
PROG to store the new value.
7.8 FILTER
Stabilizes the analog output signal. The output value is updated 8 times a
second. This digital filter setting produces a more stable but less actual
reading. The filter principal is based on three input values: the filter level
(01-99), the last analog output value, and the last average value.
The higher the filter level, the longer the response time of a changed value.
RESPONSE TIME ON STEP CHANGE OF INPUT VALUE (IN % OF END VALUE)
Filter value
50%
75%
90%
99%
01
filter disabled
filter disabled
filter disabled
filter disabled
02
0.1 sec
0.2 sec
0.4 sec
0.7 sec
03
0.2 sec
0.4 sec
0.6 sec
1.2 sec
05
0.4 sec
0.7 sec
1.1 sec
2.1 sec
10
0.7 sec
1.4 sec
2.2 sec
4.4 sec
20
1.4 sec
2.8 sec
4.5 sec
9 sec
30
2.1 sec
4.1 sec
7 sec
14 sec
50
3.5 sec
7 sec
11 sec
23 sec
75
5 sec
10 sec
17 sec
34 sec
99
7 sec
14 sec
23 sec
45 sec
5.5.8
MENU 8: PULSE OUTPUT
The “Pulse output” menu configures the behavior of the digital output signals. As standard, two
transistor outputs are available (Type OT): D1 and D2. Their function is based on the mode selected
at
8.1: PULSE OUTPUT > MODE
.
Optionally, two relay outputs are available (Type OR): D5 and D6. The output functionality of these
outputs corresponds to the functionality of outputs D1 and D2 (respectively).
The digital (transistor) output D1 and D2 have a maximum frequency of 500 Hz (scaled pulse
output).
Make sure the output frequencies of the optional digital (relay) outputs D5 and D6 do not exceed
0.5 Hz, otherwise the relay lifetime and reliability will be reduced significantly.