Endress+Hauser PROline prosonic flow 93 II2 GD Mode D'emploi page 59

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PROline Prosonic Flow 93 FOUNDATION Fieldbus
Endress+Hauser
Configuration example Entity model
Fig. 9 shows the typical structure and the associated components. The field devices are
operated on a segment with the type of protection EEx ia. A galvanic isolator is used for
the transition to the area with explosion risk. Field devices with a lower power consump-
tion, such as the Cerabar S pressure gauge, are supplied via the two-wire line. In con-
trast, the Prosonic Flow 93 as a four-wire device must be supplied via an local power
supply.
0 - 10 bar
6
4
T
5
Esc
-
Fig. 9:
Typical example of a bus connection with a fieldbus power supply of type MTL 5053
1 = DCS with integrated FOUNDATION Fieldbus H1 interface card
2 = fieldbus power supply, model MTL 5053
3 = Prosonic Flow 93 bus devices for hazardous area
4 = terminator (T) = bus termination
5 = transducer supply
6 = Cerabar S bus devices for hazardous area
Functional considerations
Using the following procedure the functional considerations checks whether the desired
segment structure meets the basic requirements for transmission to the physical layer
in IEC 61158-2.
Step 1 – compilation of the functional characteristic values of the fieldbus components
• Fieldbus power supply MTL 5053:
U
=
18.4 V
S
I
=
80 mA
S
105 Ω (source impedance)
R
=
Q
• Fieldbus line:
Cable type A
44 Ω/km (effective resistance per unit length)
R
=
WK
max. permissible cable length L
• Fieldbus device Prosonic Flow 93:
I
=
12 mA (basic current)
B
U
=
9...32 V (perm. operating voltage)
B
I
=
0 mA (fault current)
FDE
I
=
0 (< I
)
startup
B
• Fieldbus device Cerabar S:
I
=
10.5 mA (basic current)
B
U
=
9...32 V (perm. operating voltage)
B
I
=
0 mA (fault current)
FDE
I
=
0 (< I
)
startup
B
E X
0 - 10 bar
6
580 m
r
r
5
Esc
+
E
-
+
E
3
3
= 1900 m
perm.
<
E X
T
Fieldbus
Foundation
2
1
21

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Proline prosonic flow 93 ii1 gd

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