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Soehnle 3025 - Reference Weight Optimization Methods

Soehnle 3025
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92
Do not place more parts on the scale than are already on it.
The reason for this is that a reference weight calculation may only be performed if the quantity on the
scale is exactly correct. It would make no sense to calculate the reference weight from 10 parts, add
1,000 parts and then optimize with 1,010 parts. There is a danger that due to the manufacturing
tolerance of the parts or the uncertainty of measurement of the scale, for example, 1,009 or 1,011
parts are on the scale and a reference weight optimization would lead to a completely incorrect
reference weight. Therefore, the reference weight is not optimized in this case. However, the
reference weight optimization function remains active. If you place more parts on the scale than are
allowed for reference weight updating and do not initially optimize the reference weight, you can
remove them again. As soon as the scale detects the smaller quantity, the reference weight is
updated again.
Reference weight updating is switched on and off in the setting mode under Program settings /
Counting / Optimise ref. The percentage value determines up to which percentage of the maximum
load of the scale is to be optimized. Example: 0 = off, 50% = 30kg for a scale with 60kg maximum
load, 100% = 60kg for a scale with 60kg maximum load.
Example of reference weight updating:
> ADD- Mode
If the minimum reference weight is not reached, the parts are requested until the minimum reference
weight is reached. The scale calculates the reference weight after the requested parts (add xx pieces)
have been placed on the scale.
Example for reference weight determination in ADD mode:
Smallest digit of the scale: 1 g
Set minimum load: 10 d
Results in min. load for reference weight determination: 10 g
Example for part weight: 0,8 g
Reference quantity: 10 pieces
Results in a weight value for reference weight calculation: 8 g
Difference to set minimum load: 2 g
ADD Mode requests parts: 3 pieces
Reference
quantity
1.
Ref. optimization
for currently 10
parts on the scale,
place additional up
to max.
2.
Ref. optimization
for the current 20
parts on the scale,
place additional
parts on the scale
up to max.
3.
Ref. optimization
for currently 40
parts on the scale,
place additional
parts on the scale
up to max.
4.
Ref. optimization
with currently 80
parts on the scale,
additional loading
of up to max.
5.
Ref. optimization
160 parts on the
scale at the
moment,
additionally place
up to max.
10 parts 20 counted parts 40 counted parts 80 counted parts 160 counted parts 320 counted parts

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