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Quick Start Guide
21
January 2017
Brazil
E2
INMETRO Flameproof
Certificate: UL-BR 13.0643X
Standards: ABNT NBR IEC60079-0:2008 + Errata 1:2011,
ABNT NBR IEC60079-1:2009 + Errata 1:2011,
ABNT NBR IEC60079-26:2008 + Errata 1:2008
Markings: Ex d IIC T6/T5 Ga/Gb, T6(–50 °C
≤
T
a
≤
+65 °C), T5(–50 °C
≤
T
a
≤
+80 °C)
Special Conditions for Safe Use (X):
1. This device contains a thin wall diaphragm. Installation, maintenance and use shall
take into account the environmental conditions to which the diaphragm will be
subjected. The manufacturer's instructions for installation and maintenance shall be
followed in detail to assure safety during its expected lifetime.
2. In case of repair, contact the manufacturer for information on the dimensions of the
flameproof joints.
3. The capacitance of the wrap around label, being 1.6 nF, exceeds the limit in Table 9 of
ABNT NBR IEC 60079-0. The user shall determine suitability for the specific
application.
I2
INMETRO Intrinsic Safety
Certificate: UL-BR 13.0584X
Standards: ABNT NBR IEC60079-0:2008 + Errata 1:2011, ABNT NBR
IEC60079-11:2009
Markings: HART: Ex ia IIC T5/T4 Ga, T5(–60 °C
≤
T
a
≤
+40 °C), T4(–60 °C
≤
T
a
≤
+70 °C)
Fieldbus/PROFIBUS: Ex ia IIC T4 Ga (–60 °C
≤
T
a
≤
+60 °C)
Special Conditions for Safe Use (X):
1. If the equipment is fitted with an optional 90 V transient suppressor, it is not capable of
withstanding the 500 V insulation test required by ABNT NBR IRC 60079-11. This must
be taken into account when installing the equipment.
2. The enclosure may be made of aluminum alloy and given a protective polyurethane
paint finish; however, care should be taken to protect it from impact or abrasion if
located in Zone 0.
IB
INMETRO FISCO
Certificate: UL-BR 13.0584X
Standards: ABNT NBR IEC60079-0:2008 + Errata 1:2011,
ABNT NBR IEC60079-11:2009
Markings: Ex ia IIC T4 Ga (–60 °C
≤
T
a
≤
+60 °C)
Table 12. Input Parameters
Parameter
HART
Fieldbus/PROFIBUS
Voltage U
i
30 V
30 V
Current I
i
200 mA
300 mA
Power P
i
0.9 W
1.3 W
Capacitance C
i
0.012
μ
F
0
μ
F
Inductance L
i
0 mH
0 mH