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Model TT339-0700
4-Wire Isolated Frequency Transmitter w/USB
Acromag, Inc. Tel: 248-295-0880
[
37
]
http://www.acromag.com
Agency Approvals
Electromagnetic Compatibility (EMC
): CE marked, per EMC Directive 2004/108/EC.
Consult factory.
Safety Approvals:
UL Listed (USA & Canada). Hazardous Locations – Class I, Division
2, Groups A, B, C, D Hazardous Location or Nonhazardous Locations only. These
devices are open-type devices that are to be installed in an enclosure suitable for the
environment. Consult Factory.
ATEX Certified:
Model TT339-0700 is ATEX Certified for Explosive Atmospheres per
ATEX Directive 94/9/EC which complies with standards BS EN 60079-0:2012 & BS
EN 60079-15:2010.
II 3 G Ex nA IIC T4 Gc -40
o
C
≤
Ta
≤
+80
o
C
DEMKO 15 ATEX 1561X
X = Special Conditions
1.) The equipment shall only be used in an area of not more than pollution
degree 2, as defined in EN 60664-1.
2.). The equipment shall be installed in an enclosure that provides a degree of
protection not less than IP 54 and only accessible with the use of a tool in
accordance with EN 60079-15.
3.) Transient protection shall be provided that is set at a level not exceeding 140
% of the peak rated voltage value at the supply terminals to the equipment.
Reliability Prediction
MTBF (Mean Time Between Failure):
MTBF in hours using MIL-HDBK-217F, FN2.
Per
MIL-HDBK-217, Ground Benign, Controlled, G
B
G
C
Temperature MTBF (Hours)
MTBF (Years)
Failure Rate (FIT)
25°C
1,032,587
117.9
968
40°C
652,056
74.4
1,534
Configuration Controls
Software Configuration Only via USB
This transmitter drives an analog output current or voltage proportional to a
frequency input measurement calculated by a microcontroller. No switches or
potentiometers are used to make adjustments to this transmitter. Its behavior as an
isolated signal amplifier/transducer is determined via programmed variables set
using a temporary USB connection to a host computer or laptop running a Windows-
compatible configuration software program specific to the transmitter model. This
software provides the framework for digital control of all configuration and
calibration parameters, and this information is stored in non-volatile memory.
Refer to Operation Step-By-Step in the Technical Reference section of this manual
for detailed information on available software control of this model.