FUJI NXT Programming Manual QD004-18.pdf - 第82页

3. Job Builder QD004-18 72 NXT Programming Manual Module Produ ction] grou p box. 9. Click [Next] when comp leted making settings. 10.Specify the optimization options you want to use. For details on the settings refer to…

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QD004-18 3. Job Builder
NXT Programming Manual 71
Note: It is possible to start this wizard from Director by clicking the icon for it in the [Optimizer]
section of the icon bar.
2. Click [Next] to proceed to the next step.
3. Click the button with the three dots in the [Job] group box to display a list of the available
jobs.
4. Select the location for the job in the left pane and then double-click the job you want to
line balance and optimize to select it. The job is opened and the name displays in the
text box.
Note: The job cannot be opened if another program already has it opened.
5. Select the side of the panel to be line balanced and optimized.
6. Select any other options you want to use in this step and then click [Next].
7. Specify the settings for the conveyor in the [Conveyor Settings] group box.
8. If performing paired module production, then specify the desired settings in the [Paired
Setting Description
Optimizes the entire
NXT line
When selected, the entire NXT line is line balanced and
optimized. If option is not selected, then only the machine
selected in the [Line Configuration] list is optimized (if no
machines are selected, then the first machine is
automatically selected).
Support XPF Select this option if there are XPF machines in the line with
the NXT. By selecting this, the XPF will be considered
during optimization of the NXT machines.
Setting Description
Conveyor Mode This setting specifies the panel conveyance mode to be
used for production for determining optimization.
Board Flow This specifies the direction in which the panels flow
through the machine. This settings does not actually
control the direction in the machine but is used for job
related processing in Fuji Flexa.
Lane 2 reference
rail setting
This specifies whether or not the reference rail for the
second lane can move to different positions. If this is set to
"Fixed" the reference rail cannot move to different positions
and a setting must be specified for [Interval between lane
1 and 2 (mm)].
Interval between
lane 1 and 2 (mm)
This setting is only available when the setting for [Lane 2
reference rail setting] is "Fixed". This setting specifies the
location at which the reference rail for lane 2 will be fixed.
Target Conveyor This specifies the target lane on which the job will be
optimized. If set to "Lane 1", then the job is optimized with
the premise that the panels are to be loaded on lane 1.
3. Job Builder QD004-18
72 NXT Programming Manual
Module Production] group box.
9. Click [Next] when completed making settings.
10.Specify the optimization options you want to use. For details on the settings refer to the
table below. Select the check box for [Performs basic head optimization] to have the
optimizer decide the head setup for the modules.
Note: Head optimization does not change the heads on modules with OF, F04, or G04 heads nor
can it allot these heads. These are special heads and if they are being used, then they
should be specified in their modules in the job before using NXT Multi Machine Optimizer.
Setting Description
Optimize For Single
Module Production
This specifies whether or not paired module production is
used for panels between 250 and 305 in length. This
setting has no bearing for panels outside of this range. If
this is not selected and the panel size is within the range,
the M3 modules are automatically paired for paired
production. If this is selected and the panel size is within
the range, the M3 modules are not paired. For panels
smaller than the range, M3 modules are never paired. For
panels larger than the range, M3 modules are always
paired.
Optimize Panel
Stopping Position
Offset
This specifies whether or not the panel stopping position is
optimized for paired module production. This is only for M3
modules when they are performing paired module
production.
Allocate Parts To
M6 Module
This specifies whether or not to allocate parts that are in
the head interference area during paired module
production to M6 modules if possible. By selecting this
option, head waiting time during paired module production
is reduced. However, more parts are assigned to the M6
module.
Setting Description
Reallocate feeders If this option is selected, then feeders that have a variable
status can be moved or even deleted if they are not needed
during optimization. If this option is not selected, then
already existing feeders cannot be moved or deleted and
any newly required feeders can be set in empty slots only.
Allocate parts with
excessive
sequences to
multiple modules
This specifies whether or not parts with many placements
will be broken up into multiple feeders and set into different
modules. If this is selected, parts with many placements
can be set in multiple feeders and placed on multiple
modules if possible.
Divide parts on
fixed feeders
Specify whether to reallocate parts on fixed feeders when
[Allocate parts with excessive sequences to multiple
modules] is selected. When this is selected, parts on fixed
feeders can be allocated to other modules to reduce cycle
time.
QD004-18 3. Job Builder
NXT Programming Manual 73
11.If basic head optimization was specified, then a step to specify the number of heads
available for each type is displayed. Specify the number of heads for each type of head
and then click [Next]. If head optimization was not specified then the next step is
displayed.
Use current feeder
setup
When the [Reallocate Feeders] option is selected, this
specifies whether or not the current feeder setup will be
changed or not. If this is not selected and the [Reallocate
Feeders] option is selected, then the current feeder
positions and settings are completely ignored and all
feeders are redistributed. If there are variable status
feeders that are not being used in the current job in the
feeder setup, these feeders are removed.
Optimize insert
order only
When this is not selected, insert order, feeders, head
setup, nozzle stations and other items can be optimized/
changed during optimization. Only the insert order is
changed during optimization when this is selected.
Optimize nozzle
station
This specifies whether the nozzle allocation should be
optimized or not. If this is selected, the nozzles in the
nozzle station will be changed to be "optimized" for
production. If this is not selected, then optimization is
performed without changing the nozzle setup.
Nozzle station
nozzle allocation
method
Specify the nozzle station nozzle arrangement method.
"Minimum" arranges for the minimum number nozzles
required by the head. "Maximum" arranges for the
maximum number of nozzles allowable in the station.
Optimizer Type This setting specifies the level of optimization to be
performed. "Speed" performs optimization with a priority
on achieving a relatively fast cycle time and processing is
performed quickly. "Optimal" performs optimization with a
priority on achieving the fastest cycle time and processing
takes longer. "Time Limit" performs processing the same
as "Optimal" but within a specified time limit.
Processing time
limit
This only displays if [Optimizer Type] is set to "Time Limit".
This specifies the time limit in minutes that the optimizer
has to complete processing.
Used feeder type Specify the whether of not reel holders are on the feeders.
If set to "Reel holder", the optimizer positions feeders in the
feeder setup considering that the feeders have reel
holders. If this is set to "Reel holder-E", the optimizer
positions feeders in the feeder setup considering that
feeders have no reel holders and a bucket type feeder
pallet is used.
Performs basic
head optimization
When this is selected, the setup of the heads is considered
during optimization and the heads/nozzle stations used are
changed to best suit the job. The GL, F04, G04 and OF
heads are not considered when using this option and will
not be moved, added, or deleted because these are
special head types. If using these head types, manually
set them in the job before optimizing. In addition, the
quantity and head types available for optimization are
specified in the next step when this option is selected.
When this option is not selected, step 4 is skipped.
Setting Description