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Portable Calibration Baths
Specifications
5
Input Module Option Specifications
The Product specifications describe the Absolute Instrumental Uncertainty of the
Product at 95 % level of confidence (coverage factor k = 2) within one year from
calibration. The Input Module specifications include calibration uncertainty,
linearity, repeatability, resolution, stability, and environmental temperature effects
from 13
°
C to 33
°
C.
Function Range
Accuracy:
Maximum Permissible Error
Reference Input Resistance
0
Ω
to 42
Ω
0.0025
Ω
42
Ω
to 400
Ω
0.006
%
Reference Input Temperature
-25
°
C to 250
°
C
0.007 % + 0.015
°
C
Resistance Sensing Current
1 mA
8 %
DUT 4-wire Resistance
0
Ω
to 31
Ω
0.0025
Ω
31
Ω
to 400
Ω
0.008 %
DUT 3-wire Resistance Accuracy
0
Ω
to 400
Ω
0.12
Ω
Thermocouple mV
-10 mV to 100 mV
0.025 % + 0.01 mV
Reference Junction Temperature
0
°
C to 40
°
C 0.35
°
C
Thermocouple Temperature
-25
°
C to 250
°
C
J: 0.44
°
C
K: 0.49
°
C
T: 0.53
°
C
E: 0.44
°
C
N: 0.57
°
C
M: 0.48
°
C
L: 0.42
°
C
U: 0.48
°
C
0
°
C to 250
°
C
R: 1.92
°
C
S: 1.88
°
C
C: 0.84
°
C
D: 1.12
°
C
G/W: 3.34
°
C
mA
0 mA to 22 mA
0.02 % + 0.002 mA
Notes
•
Specifications stated in percent are percent of reading.
•
If the environment temperature is outside the Performance Environment Range but within the Operating Environment
Range, multiply the accuracy specifications by 1.5.
•
Reference Input Temperature Accuracy assumes a 4-wire, 100
Ω
,
α
= 0.00392 PRT. The specification does not include
accuracy of the thermometer (see Table 4 of this manual).
•
DUT Input Resistance Accuracy specification for 2-wire sensors is 0.05
Ω
plus lead wire resistance.
•
Thermocouple Input Temperature Accuracy specification includes Thermocouple Input mV and Reference Junction
Temperature, combined using the root-sum-square method. The specification does not include the accuracy of the
thermocouple.
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