
7
1 : 0 ; 1 ; 2 ; 3 ; 4 ; 5 ; 6 ; 7 ; 8 ; 9
(!) 1
9) Select the “rAnGE1” step and press ↵;
Set the total capacity of the scale
if you exceed this value, the message " ¯ ¯ ¯ ¯ ¯ ¯ " will be displayed on weighing mode.
Confirm with the ↵key.
10) “rAnGE2” (if the system is a simple range, SET this value to 0) press ↵
Set the capacity of the second range and press ↵
11) “CALib.P” ,calibration steps, press ↵
12) “ntP” step press ↵
With the ->0<- or ->T<- key set the number of points with which one wants to calibrate (from 1 to 3,
with 1 it does the zero point and one weight point) and press ↵
13) “tP0” (scale zero point) step and recording of the signal of the loadcell: unload the scale (position "0")
and wait a few seconds, then press ↵, the unit will go automatically to the next step after recording the
sensor signal.
14) “ddt1” (setting first reference weight) step ; press ↵, enter the weight value that you are applying on
the loadcell and confirm with ↵key.
15) “tP1” (acquisition of first reference weight) step: put the weight (equal at the value on ddt1) on the
loadcells, wait a few seconds and press ↵, the unit will go automatically to the next step after
recording the sensor signal.
16) If a calibration point has been set, once the weight acquisition has been made, the display shows
for an instant the value of the internal divisions and then the “ntP” step.
If there are various calibration points, repeat the operations for the “ddt2”, “tP2”, “ddt3”, “tP3”
points.1
17) Once the calibration has been made of all the necessary points, press the C key various times until
the indicator shows “SAVE? in the display: confirm with ↵to memorize and return to weighing.
N.B.: the calibration points must be increasing (point 1 < point 2 < point 3).
18) Theorical calibration. Press the key ->0<-, "thEo.CA" is displayed, press ↵. Attention, this type of
calibration is less accuracy than with real load on the system.
19) CEL.SEn , (signal in mV/V of one or many loadcells connected) press ↵. Enter the signal value of one
or many loadcells corresponding at the value which will be setting in the step CEL.CAP, attention if
many loadcell are connected to the IPE50.
Ex : 1 loadcell of 10t with signal of 2mV/V, you enter 2mV/V for 10t in step CEL.CAP
Ex : 3 loadcells of 10t with signal of 2mV/V, you enter 2mV/V for 3x10t = 30t in step CEL.CAP
Press ↵
20) CEL.CAP, (range of one or many loadcells connected) press ↵. Enter the range of one or many
loadcells corresponding to the value entered in step CEL.Sen attention if many loadcell are connected
to the IPE50.
Ex : 1 loadcell of 10t with signal of 2mV/V, you enter 10t for2mV/V in step CEL.SEn
Ex : 3 loadcells of 10t with signal of 2mV/V, you enter 3x10= 30t for 2mV/V in step CEL.SEn
Press ↵