UMPIOXR400V2-7-1EN, 2012-07-01
51
12 Measurement
12 Measurement
During the measurement, more information about the measurement can be obtained by scrolling.
•
Scrolling in the upper line (backward/forward) with the keys
and
.
•
Scrolling in the lower line (backward/forward) with the keys
and
.
Select in the main menu the program branch
MEASURING
to start the
measurement. Press ENTER.
The channels on which is to be measured have to be activated, the
other channels have to be deactivated.
This display will not be indicated if the transmitter has only one mea-
suring channel.
measuring channel is activated
- measuring channel is deactivated
·
measuring channel can not be activated
Select a measuring channel with key
and
.
Press key
to activate or deactivate the selected channel.
A deactivated channel will be ignored during the measurement. All
parameters entered for this channel remain unchanged.
Press ENTER when finished.
Note!
A measuring channel can not be activated if no parameters have been entered.
The measurement is started. The designation of the measured quan-
tity is displayed in the upper line, its value in the lower line.
Press key
to display the normalized refractive index
.
Tab. 12.1: Values that can be displayed in the upper line
display
explanation
explanation
Sens= ***.*
status line of the sensor
short status
Humid= 33%
relative air humidity in the sensor chamber
sensor humidity
Tdev= 25 C
inner temperature of the sensor
sensor temp.
Tflu= 22.34 C
temperature of the fluid measured by the sensor
fluid temp.
nD = 1.345678
refractive index measured by the sensor
refractive index
Amp= 82.34564%
signal amplitude
(values > 100% are possible)
signal amplitude
Quality= 91.2%
signal quality
(values >100% are possible)
signal quality
Tab. 12.2: Values that can be displayed in the lower line
display
explanation
explanation
A: 3.44 Brix
physical quantity (here: Brix)
(designation of the physical quantity)
A: 1.345678 nDT
refractive index
(with temperature correction)
norm.nD(T=xxC)
The reference temperature defined in the temperature
coefficients of the fluid and relative to which the normaliza-
tion took place is given in parentheses.
p a r > M E A < o p t s f
M e a s u r i n g
C H A N N : A B
M e a s u r -
Ö
4
6
8
3
O N
S c a l e : B r i x
A : 3 . 4 4 B r i x
n o r m . n D ( T = 2 0 C )
A : 1 . 3 4 5 6 7 8 n D T
3
DISP
8
3
O N
9
DISP
2
3
O F F
3
DISP