
NA6Plus-09
39
User’s Manual
duration. LU program can be closed and then we can read the previous configuration from the file
and save it to the meter using e-Con.
Caution!
If the connection is interrupted or the power is turned off while updating the meter software,
it may cause permanent damage to the device.
11. TECHNICAL DATA
Inputs:
Pt100
(-200...850) °C
Pt500
(-200...850) °C
Pt1000
(-200...850) °C
J (Fe-CuNi)
(-100...1100) °C
K (NiCr-NiAl)
(-100...1370) °C
N (NiCrSi-NiSi)
(-100...1300) °C
E (NiCr-CuNi)
(-100...850) °C
R (PtRh13-Pt)
(0...1760) °C
S (PtRh10-Pt)
(0...1760) °C
T (Cu-CuNi)
(-50...400) °C
Resistance measurement
0...10 k
Ω
Voltage measurement
-75...75 mV
input resistance > 100 k
Ω
Voltage measurement
-300...300 mV
input resistance > 100 k
Ω
Voltage measurement
-10...10 V
input resistance > 3.5 M
Ω
Voltage measurement
-600...600 V
input resistance > 3.5 M
Ω
Current measurement
-40...40 mA
input resistance < 4
Ω
Current measurement
-5...5 A
input resistance 10 m
Ω
±10 %
Current flowing through the resistance thermometer:
< 400
μ
A
Resistance of conductors linking the resistance thermometer
with the meter: < 20
Ω
/wire
Thermocouple characteristics according to EN 60584-1
Resistance thermometer characteristics acc. IEC 751+A1+A2
Outputs:
Analog outputs galvanically isolated
–
current 0/4...20 mA
load resistance
≤
500
Ω
–
voltage 0...10 V
load resistance
≥
500
Ω
–
output error
0.2 %
–
additional error due to ambient
temperature changes
±(0.1 % of the range / 10 K)
Relay outputs
–
4 relays; potential free - make contacts, maximum load:
–
voltage
250 V AC / 150 V DC
–
current
5 A 30 V DC, 250 V AC
–
resistive load
1250 VA, 150 W