Main Menu - Reference/Ramps - Group - Trane TR150 Programming Manual

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Parameters

3.4 Main Menu - Reference/Ramps - Group

3
3.4.1 3-0* Reference Limits
Parameters for setting the reference unit, limits and ranges.
Also see parameter group 20-0* Feedback for information
on settings in closed loop.
3-02 Minimum Reference
Range:
0 ReferenceFeed-
[ -4999.0 - 4999
backUnit
ReferenceFeed-
*
backUnit]
3-03 Maximum Reference
Range:
Size
[ -4999.0 - 4999
related
ReferenceFeed-
*
backUnit]
3.4.2 3-1* References
Illustration 3.4 References
TR150 Programming Guide
Function:
The Minimum
Reference is the
lowest value
obtainable by
summing all
references.
Function:
The maximum reference is the
highest value obtainable by
summing all references. The
maximum reference unit
matches the choice of configu-
ration in 1-00 Configuration
Mode.
BAS-SVP16A-EN - Rev. 2013-09-05
3-10 Preset Reference
Range:
Function:
0 %
[-100 -
Enter up to 8 different preset references (0-7) in
*
100 %]
this parameter, using array programming. Select
Preset Reference bit 0/1/2 [16] , [17] or [18] for
the corresponding digital inputs in parameter
group 5-1* Digital Inputs, for selecting dedicated
references. See also Table 3.4
3-11 Jog Speed [Hz]
Range:
Function:
5 Hz
[ 0 - 400.0
The jog speed is a fixed output speed at
*
Hz]
which the frequency converter is running
when the jog function is activated.
See also 3-80 Jog Ramp Time.
3-14 Preset Relative Reference
Range:
Function:
0
[-100
Define fixed value in % to be added to variable
%
- 100
value defined in 3-18 Relative Scaling Reference
*
%]
Resource, Relative Scaling Reference Source.
The sum of fixed and variable values (labelled Y in
Illustration 3.5) is multiplied with actual reference
(labelled X in Illustration 3.5). This product is added
to actual reference
Illustration 3.5 Preset Relative Reference
3-15 Reference 1 Source
Option:
Function:
Select the input to be used for the first
reference signal. 3-15 Reference 1 Source,
3-16 Reference 2 Source and
3-17 Reference 3 Source define up to
three different reference signals. The
sum of these reference signals defines
the actual reference.
[0]
No function
[1]
Analog in 53
*
[2]
Analog in 54
[7]
Pulse input 29
[11] Local bus
reference
Y
X
+
X
×
100
33
3
3

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