1OPERATION_ - 第219页
4.7 RECOVERY OPN . TEACHING OPN . Concrete Example of Simplified Packaging Direction Change Shown is an example based on a transistor which has three leads . The following two transistors are classified individually with…

4.7
RECOVERY
OPN
.
TEACHING
OPN
.
at
the
“
COMPONENT
CARRIAGE
•
When
the
[
RTN
]
key
is
pressed
DATA
EDIT
”
display
,
the
“
DATA
SAVE
”
display
appears
on
the
screen
.
Select
the
[
SAVE
]
key
to
save
the
necessary
data
.
〈
DATA
SAVE
〉
COMPONENT
CARRIAGE
DATA
EDIT
NAME
OVERWRITE
THE
EXISTING
DATA
.
D
0
N
*
T
SAVE
ALL
OATA
THAT
VAS
JUST
EDITED
VILL
HOT
BE
SAVED
.
Fig
.
4.23
Note
:
The
component
carriage
parameters
(
packaging
change
data
)
are
updated
after
a
program
change
operation
is
performed
.
When
the
feeder
Nos
.
match
the
slot
Nos
.
of
the
actually
allocated
feeders
perfectly
before
and
after
the
program
change
operation
is
performed
,
the
component
carriage
parameters
are
backed
up
(
stored
in
memory
)
.
4
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4.7
RECOVERY
OPN
.
TEACHING
OPN
.
Concrete
Example
of
Simplified
Packaging
Direction
Change
Shown
is
an
example
based
on
a
transistor
which
has
three
leads
.
The
following
two
transistors
are
classified
individually
with
different
component
IDs
defined
in
the
component
library
data
.
LI
0
/
An
Example
of
Identifications
(
Defined
by
Sanyo
)
n
o
n
n
R
①
TTU
ITU
nu
TR
1608
-
3
BOROM
-
LI
User
Direction
of
Feed
L
2
O
/
o
a
o
n
门
门
n
n
n
②
3
BOROM
—
L
2
TR
1608
u
n
u
User
Direction
of
Feed
“
LI
”
in
the
①
ID
indicates
that
one
lead
is
attached
to
the
left
side
of
the
component
,
compared
with
the
user
’
s
direction
of
feed
.
“
L
2
”
in
the
②
ID
indicates
that
two
leads
are
attached
to
the
left
side
of
the
component
,
compared
with
the
user
direction
of
feed
.
Situation
:
A
component
library
is
created
to
store
the
pattern
program
data
for
①
and
automatic
operation
is
performed
according
to
the
pattern
program
data
.
When
a
component
shortage
error
occurs
at
a
feeder
and
the
feeder
has
to
be
replenished
with
the
same
kinds
of
components
but
only
the
components
packaged
as
shown
in
②
available
,
take
the
following
assuming
that
only
the
packaging
directions
are
different
between
(
D
and
②
but
other
parameters
such
as
type
data
are
exactly
the
are
such
components
,
measures
to
use
same
.
<
Measures
>
•
As
the
packaging
direction
of
the
components
is
different
by
180
,
compared
with
the
direction
of
the
components
defined
in
the
component
library
data
of
the
corresponding
component
ID
,
change
the
“
DIR
.
”
parameter
to
“
180
°
”
•
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4.7
RECOVERY
OPN
.
TEACHING
OPN
.
4.7
.
4
FEEDER
(
B
)
OFFSET
When
the
[
FEEDER
(
B
)
OFFSET
]
key
is
pressed
at
the
“
RECOVERY
OPN
.
TEACHING
OPN
.
”
display
,
the
following
display
appears
on
the
screen
.
<
FE
£
BER
(
B
)
OFFSET
)
01
/
10
軍
Y
(
ran
)
FDR
.
X
(
Hi
)
Y
{
mm
)
H
)
X
(
wn
)
H
(
it
)
ALIMR
[
Ton
iron
non
Ron
pfon
IfO
.
M
201
2.05
2
o
6
iron
lion
隨
ncsTi
non
Hon
[
rorinorji
'
iori
202
203
207
:
IfOriROjlfTOd
lioniiiriiTof
204
208
7
8
9
c
FOR
.
201
H
:
十
0
.
99
mm
4
5
6
2
1
3
FQl
NP
^
E
pmt
o
SET
±
Fig
.
4.24
FEEDER
(
B
)
OFFSET
This
is
the
offset
data
to
correct
variation
in
tape
feeders
(
taped
components
)
.
•
In
normal
cases
,
do
not
change
the
parameters
.
Use
this
display
only
to
check
the
parameters
.
Component
recognition
processing
is
performed
during
automatic
operation
to
track
the
positional
relation
between
the
nozzle
and
component
centers
.
After
that
,
the
parameters
(
X
and
Y
)
automatically
updated
for
better
pick
-
up
posture
(
pick
-
up
on
the
component
center
)
.
Note
:
When
“
ENABLE
”
is
set
in
the
text
box
of
the
label
“
AUTOMATIC
FEEDER
AXIS
ADJ
.
MODE
”
for
X
and
Y
directions
at
the
“
AUTOMATIC
FEEDER
AXIS
ADJ
.
MODE
”
display
,
the
parameters
updated
.
are
not
automatically
are
•
When
a
feeder
is
replaced
for
a
model
(
program
)
change
,
etc
.
,
press
the
[
ALL
DATA
CLEAR
]
key
@
to
clear
the
feeder
(
B
)
offset
data
to
“
0
”
(
zero
)
.
When
large
parameters
are
set
as
feeder
(
B
)
offset
data
for
the
previous
tape
feeder
(
the
tape
feeder
(
taped
components
)
used
before
it
is
replaced
)
,
a
pick
-
up
error
will
occur
.
•
Refer
to
“
4.3
.
2
FEEDER
(
A
)
OFFSET
and
FEEDER
(
B
)
OFFSET
”
and
“
4.3
.
3
How
to
Clear
All
Feeder
(
B
)
Offset
Data
(
All
Data
Clear
)
”
in
the
instruction
manual
(
SECTION
H
PROGRAMMING
MANUAL
)
for
details
.
4
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