Test Equipment & Instrumentation, Hire, Sales & Technical Services |
Druck Unomat TRX II Series, Portable Documenting
Calibrator
Specifications
|
|
Home

|
Druck Unomat TRX II Series, Portable Documenting
Calibrator
Specifications
-
Simulates
and Reads RTD’s and thermocouples
-
Sources
and reads Millivolts, Volts, Milliamps, Ohms and frequency
-
Intrinsically
safe version
-
Data
transfer via RS 232 or PCMCIA card
-
Measures
pressure -1 to 700 Bar
-
Dual
readout: measure and source
-
Dual
storage for field calibrations
| MEASURE
|
|
|
|
|
|
|
| Input
|
|
Range
|
1
Year Accuracy
|
Resolution
|
Remarks
|
|
|
|
|
|
|
|
|
| mV
|
|
0
… 100 mV
|
0.02%
|
+
0.01%
|
0.001
|
R
– input > 20 M Ohm
|
|
|
|
100
… 600 mV
|
0.025%
|
+
0.005%
|
0.01
|
|
| V
|
|
0
… 6 V
|
0.025%
|
+
0.005%
|
0.0001
|
R
– input > 1 M Ohm
|
|
|
|
6
… 60 V
|
0.05%
|
+
0.005%
|
0.001
|
|
| mA
|
|
0
… 52 mA
|
0.01%
|
+
0.01%
|
0.001
|
R
– input 2,5 Ohm fused
|
| Ohms
|
|
0
… 400 Ohm
|
0.005%
|
+
0.02%
|
0.01
|
at
0.9 mA excitation
|
|
|
|
400
… 2000 Ohm
|
0.02%
|
+
0.015%
|
0.1
|
at
0.9 mA excitation
|
| Frequency
|
0
… 655 Hz
|
0.006%
|
|
0.01
|
R
– input > 300 k Ohm
|
|
|
|
655
… 1310 Hz
|
0.1
Hz
|
|
0.1
|
R
– input > 300 k Ohm
|
|
|
|
1310
… 20,000 Hz
|
1
Hz
|
|
1
|
R
– input > 300 k Ohm
|
| Counts/minute
|
0
… 6 x 100
|
1
c/min.
|
|
1
|
R
– input > 300 k Ohm
|
| Counts/hour
|
0
… 107 –1
|
1
c/hour
|
|
1
|
R
– input > 300 k Ohm
|
| Totalising
|
0
… 108 –1
|
infinate
|
|
1
|
R
– input > 300 k Ohm
|
| Accuracy
( % of reading + % of range)
|
|
|
|
|
|
|
|
|
|
|
|
| SOURCE
|
|
|
|
|
|
|
| Output
|
|
Range
|
1
Year Accuracy
|
Resolution
|
Remarks
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
| mV
|
|
-10
… 100 mV
|
0.01%
+ 0.005%
|
0.001
R – output < 0.2 Ohm
|
| V
|
|
0
… 12 V
|
0.01%
+ 0.005%
|
0.0001
R – output < 0.2 Ohm
|
| mA
|
|
0
… 24 mA (21mA IS)
|
0.01%
+ 0.02%
|
0.001
R – max 900 OhmA (600IS)
|
| Ohms
|
|
0
… 400 Ohm
|
0.005%
+ 0.02%
|
0.01
at 1 mA excitation
|
|
|
|
0
… 2000 Ohm
|
0.02%
+ 0.015%
|
0.01
at 1 mA excitation
|
| Pulse
|
|
0
… 108 –1
|
Infinite
|
|
1
0 … 24V/ 34 mA max.*
|
| Frequency
|
|
0
… 100 Hz
|
0.01
Hz ± 1 LSD
|
0.01
0 … 24V/ 34 mA max.*
|
|
|
|
0
… 20,000 Hz
|
1
Hz
|
|
1
0 … 24V/ 34 mA max.*
|
| pulses/min
|
|
0
… 6000
|
1
p/min
|
|
1
0 … 24V/ 34 mA max.*
|
| pulses/hour
|
|
0
… 99,9999
|
36
p/hour
|
|
1
0 … 24V/ 34 mA max.*
|
|
|
|
|
|
|
|
|
| Accuracy
( % of reading + % of range)
|
|
|
|
| *12V/25mA
max. for IS version
|
|
|
|
|
|
|
|
|
|
|
|
| TEMPERATURE
|
|
|
|
|
|
|
| RTD
|
|
Range
|
1
Year Accuracy
|
|
Resolution
|
|
|
|
|
|
|
|
|
|
|
|
|
Measure
|
Source
|
|
| Pt1000
|
!
|
-200/400
°C
|
0.2
°C
|
0.2
°C
|
0.1
°C
|
| Pt500
|
!
|
-200/850
°C
|
0.4
°C
|
0.4
°C
|
0.1
°C
|
| Pt200
|
!
|
-200/850
°C
|
0.6
°C
|
0.6
°C
|
0.1
°C
|
| Pt100
|
!
|
-200/850
°C
|
0.25
°C
|
0.25
°C
|
0.03
°C
|
| Pt50
|
!
|
-200/850
°C
|
0.5
°C
|
0.5
°C
|
0.06
°C
|
| D-100
|
"
|
-200/630
°C
|
0.25
°C
|
0.25
°C
|
0.03
°C
|
| Ni100
|
#
|
-60/250
°C
|
0.2
°C
|
0.2
°C
|
0.1
°C
|
| Ni120
|
$
|
-20/250
°C
|
0.2
°C
|
0.2
°C
|
0.1
°C
|
| Cu10
|
%
|
-200/260
°C
|
2.0
°C
|
2.0
°C
|
0.3
°C
|
| !
= IEC 751,
|
"
= JIS 1604-1989, # = DIN 43760, $ = MINCO 7, %
|
=
MINCO 16-9
|
| Best
case, Mid Range accuracies
|
|
|
|
| T/C
|
|
Range
|
1
Year Accuracy
|
Resolution
|
|
|
|
|
|
|
|
|
|
|
|
|
Measure
|
Source
|
|
| J
|
!
|
-210
… 1200
|
°C
|
0.5
°C
|
0.3
°C
|
0.1
°C
|
| L
|
"
|
-200
… 900
|
°C
|
0.3
°C
|
0.2
°C
|
0.1
°C
|
| K
|
!
|
-250
… 1370
|
°C
|
0.6
°C
|
0.3
°C
|
0.1
°C
|
| T
|
!
|
-250
… 400
|
°C
|
0.3
°C
|
0.2
°C
|
0.1
°C
|
| U
|
"
|
-200
… 600
|
°C
|
0.3
°C
|
0.2
°C
|
0.1
°C
|
| B
|
!
|
250
… 1820
|
°C
|
1.0
°C
|
0.6
°C
|
0.1
°C
|
| R
|
!
|
-50
… 1768
|
°C
|
1.0
°C
|
0.6
°C
|
0.1
°C
|
| S
|
!
|
-50
… 1768
|
°C
|
1.4
°C
|
0.7
°C
|
0.1
°C
|
| E
|
!
|
-250
… 1000
|
°C
|
0.4
°C
|
0.2
°C
|
0.1
°C
|
| N
|
!
|
-200
… 1300
|
°C
|
0.6
°C
|
0.3
°C
|
0.1
°C
|
| C
|
!
|
0
… 2320 °C
|
1.0
°C
|
0.5
°C
|
0.1
°C
|
| D
|
!
|
0
… 2495 °C
|
1.0
°C
|
0.5
°C
|
0.1
°C
|
| !
= IEC 584, " = DIN 43710
|
|
|
|
|
| Best
case, Mid Range accuracies
|
|
|
|
|
|
|
|
|
|
|
|
| Note:
Thermocouple accuracies do not
include cold junction compensation errors
|
| |