100
Operator control /
interfaces
Keypad
3 keys
→
↵
↑
Local display: Type
3-line, illuminated LCD display
1st (top) line: 8 -character, 7 segments for numerals and signs
2nd (middle) line: 10-character, 14 segments for texts
3rd (bottom) line: 6 markers
▼
for status identification
Function
actual measured value, forward, reverse or sum totaliser (7
characters), each can be set for continuous or cyclic display
and status output.
Measured quantities
and units
see page 6 “measured quantities and units”
Plain text language
English, German, French
Magnetic sensors MP
same function as the 3 keys, operation by means of hand-held
bar magnet without opening the housing
smartSystem
(option) Operator control
Connection
Distance
Technical data
MIC 500 hand-held communicator
to the two current output terminals
max. 1000 m or 3300 ft between MIC 500 and signal converter
see separate “smartSystem” Data Sheet
Housing material
die-cast aluminium with polyurethane finish
Mass flow - Accuracies as % of measured value.
(water, 20
°
C or 68
°
F)
Span:
1 : 5
1 : 10
1 : 20
1 : 40
0.2%
0.3%
0.8%
2.0%
11.3
Measuring Accuracy / Error limits
CORIMASS MFS 3000 - ....
CORIMASS MFS 2000 - ...
1.5 E
10 E
30 E
60 P
300 P
800 P
1500 P
Mass flow
better than
±
0.15% MV + Cz
better than
±
0.15% MV + Cz
Density (range 0.5-2
g/cm
3
or 30 to 125 lb/ft
3
,
field calibration)
±
0.004g/cm
3
±
0.26 lb/ft
3
±
0.002g/cm
3
±
0.13 lb/ft
3
±
0.001g/cm
3
±
0.007 lb/ft
3
±
0.002g/cm
3
±
0.13 lb/ft
3
±
0.002g/cm
3
±
0.13 lb/ft
3
±
0.001g/cm
3
±
0.007 lb/ft
3
±
0.001g/cm
3
±
0.007 lb/ft
3
Temperature (within
temperature range)
≤
1
°
C/
≤
1.8
°
F
≤
1
°
C/
≤
1.8
°
F
≤
1
°
C/
≤
1.8
°
F
≤
1
°
C/
≤
1.8
°
F
≤
1
°
C/
≤
1.8
°
F
≤
1
°
C/
≤
1.8
°
F
≤
1
°
C/
≤
1.8
°
F
Zero stability
±
0.0003kg/min
±
0.0007lb/min
±
0.0014 g/min
±
0.0031lb/min
±
0.0045kg/min
±
0.0099lb/min
±
0.012kg/min
±
0.03 lb/min
±
0.045kg/min
±
0.10 lb/min
±
0.118 kg/min
±
0.26 lb/min
±
0.227kg/min
±
0.50 lb/min
Repeatability
better than
±
0.04% MV = Cz
MV = measured value
better than
±
0.04% MV = Cz
MV = measured value
C
z
=
zero stability
×
100%
mass flow
C
z
=
zero stability
×
100%
mass flow