Iecex; Iecex Ex D; Iecex Ex I; Temperature Data - ABB TZIDC-200 Operating Instruction

Digital positioner
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10
TZIDC-200 DIGITAL POSITIONER | OI/TZIDC-200-EN REV. C
... 2 Use in potentially explosive atmospheres

IECEx

IECEx Ex d

Ex marking
Marking
Type Examination Test Certificate
Type

Temperature Data

Temperature class
T4
T5
T6

Electrical Data

Voltage
Current
Pneumatic data
Supply pressure
Special conditions
The positioner is designed for a maximum permissible
ambient temperature range of 40 to 85 °C
Variants that, according to declarations, also meet the
requirements for the 'intrinsically safe' type of protection
may no longer be used as 'intrinsically safe' if they have been
previously used as a flameproof type of protection
If the positioner is operated at an ambient temperature
above 60 °C (140 °F) or below −20 °C (−4 °F), make sure to
use cable entries and lines suited for an operating
temperature corresponding to the maximum ambient
temperature increased by 10 K or corresponding to the
minimum ambient temperature, respectively.

IECEx Ex i

Ex marking
Ex d IIC T4/T5/T6
Marking
IECEx BVS 07.0030X
Type Examination Test Certificate
TZIDC-200
Type
Standards
Ambient temperature Ta
Temperature Data
−40 to 85 °C
−40 to 80 °C
Temperature class
−40 to 65 °C
T4
T6*
≤ 30 V AC/DC
*
≤ 20 mA
Electrical Data
In intrinsically safe explosion protection types Ex ib IIC / Ex ia IIC,
only for connection to a certified intrinsically safe circuit.
Standard version
≤ 6 bar
Current circuit (terminal)
Marine version
Signal circuit
≤ 5.5 bar
(+11 / −12)
Contact input
(+81 / −82)
Switch output
(+83 / −84)
When using the 'Limit monitor' plug-in module in temperature class T6, the
maximum permissible ambient temperature range is −40 to 35 °C.
Ex ia IIC T6 or T4 Gb
Ex ib IIC T6 or T4 Gb
IECEx TUN 04.0015X
Intrinsic safety 'i'
IEC 60079-0:2011
IEC 60079-11:2011
Ambient temperature Ta
TZIDC Ex ia IIC
TZIDC Ex ib IIC
−40 to 85 °C
−40 to 85 °C
−40 bis 40 °C *
−40 bis 40 °C
Electrical information (maximum values)
U
= 30 V
C
i
i
I
= 320 mA
L
= negligibly small
i
i
P
= 1.1 W
i
U
= 30 V
C
= 14.5 nF
i
i
I
= 320 mA
L
= negligibly small
i
i
P
= 1.1 W
i
U
= 30 V
C
= 14.5 nF
i
i
I
= 320 mA
L
= negligibly small
i
i
P
= 500 mW
i
*
= 6.6 nF

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