D4操作手册.pdf - 第21页
21 Vision Sensor Technology PCB Position Recognition Technical da ta PCB fidu cials Local f idu cial s Library memor y f. recognition of bad p anels up t o 3 (subpanels and multiple panel s) up t o 6 for the L ong board …

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Component Feeding
Dummy Feeder Modules
Dummy feeder modules for component changeover tables
from the SIPLACE D4
The following dummy feeder module variants are available for
component changeover tables from the SIPLACE D4:
SIPLACE dummy feeder module for 1 location
SIPLACE dummy feeder module for 6 - 10 locations
SIPLACE dummy feeder module for 11 - 20 locations
Dummy feeder module for 1 location
Dummy feeder module for
6 - 10 locations
Dummy feeder module for
11 - 20 locations
Danger
To ensure that your SIPLACE
placement machine runs
safely, a feeder must be
assigned to every location on
the component changeover
table. If you do not have
enough feeder modules, then
you should use dummy feeder
modules as space holders.

21
Vision Sensor Technology
PCB Position Recognition
Technical data
PCB fiducials
Local fiducials
Library memory f.
recognition of
bad panels
up to 3 (subpanels and multiple
panels)
up to 6 for the Long board option
(Optional PCB fiducials are output by
the optimization.)
up to 2 per PCB (may be of different
type)
up to 255 fiducial types per subpanel
Image analysis Edge detection method (Singular fea-
ture) based on grayscale values
Lighting method Front lighting
Fiducial recogni-
tion time
0.1 s
Field of vision 5.78 x 5.78 mm
Camera’s field of view
Pixel
Ink spot, e.g. square
Evaluation window
Geometrical Alignment
The size of the fiducial is pro-
grammed at the station com-
puter. From this time on form
and size of the fiducial is
defined and known.
With these data the PCB
vision module is able to
search and recognize the
fiducial at the predefined
position on the PCB or ceram-
ic substrate without further
assistance. For this reason it
places several small evalua-
tion windows at the assumed
border of the fiducial. Within
these evaluation windows
the vision system looks for
contrast transitions between
bright and dark. After finding
such contrasts the actual
position of the fiducial can be
assigned by comparison with
the predefined – and thus
known – shape and size.
The analysis operations can
be used to determine any off-
set with respect to the DE-
SIRED position in the X and Y
directions and the angular
position. Alternatively, a fidu-
cial may be taught as a pat-
tern.
Additional functions of the
PCB vision module are recog-
nition of the position of the
feeder modules and ceramic
substrate (optional) and
recording of the machine
data including mapping.
The bad board detector
(GOOD/SCRAP scan) is also
moved over the ink spot
using the PCB vision module.
Description
SIPLACE has a number of
vision modules and a central
vision system to evaluate the
recorded image data ensur-
ing high placement accuracy.
At the machine's X-gantry
the PCB vision module is
mounted. It is used to find
the PCB's positioning-offsets
within the conveyor system.
This vision module is also
required to measure the
machine origin and/or the
feeder module positions on
one side of the table.
Each vision module consists
of a single CCD camera with
integrated lighting and
optics. The offsets in the
position of the PCBs are
determined with the help of
at least two but generally
three reference fiducials on
the PCB. When the PCB
arrives at the placement area
the positioning system with
its PCB vision module moves
to the programmed fiducial.
The edge detection method
allows to choose predefined
fiducials from a menu (e.g.
cross, circle, square).

22
Vision Sensor Technology
PCB Position Recognition
Description
Different fiducial shapes
prove to be optimal depend-
ing on the condition of the
surface. Particularly advis-
able for bare copper surfaces
with little oxidation is the
single cross.
Maximum accuracy is
achieved due to the high in-
formation content. Rectan-
gle, square and circle are less
“informative” but save space
and can even be used when
oxidation is at an advanced
stage. Advisable for tinned
structures are circle or square
because in this case the ratio
of the fiducial dimensions to
the presolder thickness is
particularly favorable.
Fiducial criteria
Locate 2 fiducials
Locate 3 fiducials
X-/Y-position, rotation angle, mean PCB distortion
in addition: shear, distortion in X- and Y-direction separately
Fiducial shapes Synthetic fiducials: circle, cross, square, rectangle, rhombus,
circular, square, and rectangular contours, double cross
any pattern
Fiducial surface:
copper
tin
without oxidation and solder resist
Warp ≤ 1/10 of structure width, both with good contrast to
environment
Dimensions of synthetic fiducials
min. X/Y size for circle and rectangle: 0.25 mm
min. X/Y size for annulus and rectangle: 0.3 mm
min. X/Y size for cross: 0.3 mm
min. X/Y size for double-cross: 0.5 mm
min. X/Y size for lozenge: 0.35 mm
min. frame width for annulus and rectangle: 0.1 mm
min. bar width / bar distance for cross, double-cross: 0.1 mm
max. X/Y size for fiducial shapes: 3 mm
max. bar width for cross / double-cross: 1.5 mm
min. tolerances, general: 2% of nominal dimension
max. tolerances, general: 20% of nominal dimension
Dimensions of patterns
min. size
max. size
0.5 mm
3 mm
Fiducial environment Clearance around reference fiducial not necessary if there is
no similar fiducial structure in the search area