ABB CoriolisMaster FCB400 Series Manual page 50

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CoriolisMaster FCB400, FCH400 CORIOLIS MASS FLOWMETER | CI/FCB400/FCH400-EN REV. H
... 6 Electrical connections
... Electrical data for inputs and outputs
Digital output 41 / 42, 51 / 52 (basic device)
Can be configured as pulse, frequency or binary output via on-
site software.
A  Digital output 41 / 42, 51 / 52 passive as a pulse or frequency output
B  Passive digital output 51 / 52 as binary output
Figure 33: (I = internal, E = external, R
Pulse / frequency output (passive)
Terminals
41 / 42, 51 / 52
Output 'closed'
0 V ≤ U
For f < 2.5 kHz: 2 mA < I
For f > 2.5 kHz: 10 mA < I
Output 'open'
16 V ≤ U
0 mA ≤ I
f
10.5 kHz
max
Pulse width
0.05 to 2000 ms
Binary output (passive)
Terminals
41 / 42, 51 / 52
Output 'closed'
0 V ≤ U
2 mA ≤ I
Output 'open'
16 V ≤ U
0 mA ≤ I
Switching function
Can be configured using software.
Note
Terminals 42 / 52 have common grounding. Digital outputs
41 / 42 and 51 / 52 are not electrically isolated from each
other. An electrically isolated digital output can be made
using a plug-in module.
If using a mechanical counter, it is advisable to set a pulse
width of ≥ 30 ms and a maximum frequency of f
= load)
B
≤ 3 V
CEL
< 30 mA
CEL
< 30 mA
CEL
≤ 30 V DC
CEH
≤ 0.2 mA
CEH
≤ 3 V
CEL
≤ 30 mA
CEL
≤ 3 V DC
CEH
≤ 0.2 mA
CEH
max
Current output V1 / V2, V3 / V4 (plug-in module)
Up to two additional plug-in modules can be implemented via
the 'Passive current output (red)' option module.
Can be configured for outputting mass flow, volume flow,
density and temperature via on-site software.
A Current output V1 / V2, passive
Figure 34: (I = internal, E = external, R
The plug-in module can be used in slot OC1 and OC2.
Permissible source voltage U
resistance R
where Imax = 22 mA.
B
Figure 35: Source voltage for passive outputs
Passive current output
Terminals
Output signal
Load R
B
Source voltage U
Measuring error
Resolution
*
The source voltage U
an additional area.
≤ 3 kHz.
B Current output V3 / V4, passive
= load)
B
for passive outputs in relation to load
q
= Permissible range

V1 / V2, V3 / V4
4 to 20 mA
250 Ω ≤ R
≤ 600 Ω
B
*
13 V ≤ U
≤ 30 V
q
q
< 0.1 % of measured value
0.4 µA per digit
is dependent of the load R
q
and must be placed in
B

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