Siemens SITRANS P DS III Operating Instructions Manual page 217

Pressure transmitter with profibus pa
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Certificates and approvals
Connection
Effective inner capacitance
Effective inner inductance
Flameproof enclosure
encapsulation "d"
Designation
Permissible ambient temperature
Connection
Dust explosion protection for Zone
20 and 20/21
Designation
Permissible ambient temperature
max. surface temperature
Connection
Effective inner capacitance
Effective inner inductance
Dust explosion protection for Zone
22
Designation
Connection
Type of protection "n" (Zone 2)
Designation
Connection "nA"
Connection "ic"
Effective inner capacitance
SITRANS P DS III with PROFIBUS PA
Operating Instructions, 06/2013, A5E00053276-07
HART
To a certified intrinsically safe circuit
with the max. values:
U
= 30 V, I
= 100 mA,
i
i
P
= 750 mW, R
= 300 Ω
i
i
C
= 6 nF
i
L
= 0.4 mH
i
II 1/2 G Ex d IIC T4, T6 Ga/Gb
-40 ... +85 °C (-40 ... +185 °F) temperature class T4
-40 ... +60 °C (-40 ... +140 °F) temperature class T6
To a circuit with the operating values:
U
= 10.5 ... 45 V DC
H
II 1 D Ex ta IIIC IP65 T120°C Da,
II 1/2 D Ex ta/tb IIIC IP65 T120°C Da/Db
-40 ... +85 °C (-40 ... +185 °F)
120°C (248°F)
To a certified intrinsically safe circuit
with the max. values:
U
= 30 V, I
= 100 mA,
i
i
P
= 750 mW, R
= 300 Ω
i
i
C
= 6 nF
i
L
= 0.4 mH
i
II 2 D Ex tb IIIC IP65 T120°C Db
To a circuit with the operating values:
U
= 10.5 ... 45 V DC; P
H
max
II 2/3 G Ex nA II T4/T5/T6 Gc
II 2/3 G Ex ic IIC T4/T5/T6 Gc
U
= 45 V
n
To a circuit with the operating values:
U
= 45 V
i
C
= 6 nF
i
13.8 Certificates and approvals
PROFIBUS PA and FOUNDATION
Fieldbus
FISCO supply unit
U
= 17.5 V, I
0
Linear barrier
U
= 24 V, I
0
0
C
= 1.1 nF
i
L
= 7 µH
i
To a circuit with the operating values:
U
= 9 ... 32 V DC
H
FISCO supply unit
U
= 17.5 V, I
0
Linear barrier
U
= 24 V, I
0
0
C
= 1.1 nF
i
L
= 7 µH
i
To a circuit with the operating values:
= 1.2 W
U
= DC 9 ... 32 V; P
H
U
= 32 V
m
FISCO supply unit
U
=17.5 V, I
O
Linear barrier
U
= 32 V, I
0
0
C
= 1.1 nF
i
Technical data
= 380 mA, P
= 5.32 W
0
0
= 174 mA, P
= 1 W
0
= 380 mA, P
= 5.32 W
0
0
= 250 mA, P
= 1.2 W
0
= 1.2 W
max
= 570 mA
O
= 132 mA, P
= 1 W
0
217

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