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6 Vision functions User Manua l SIPLACE F5/F5 HM 6.7 Guidelines for Describing Pa ckage Forms Software version S R.407.xx 01/2001 US Edition 372 6.7.7.5 T esting Ill umination Sett ings Y ou ca n set the ill uminatio n p…

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User Manual SIPLACE F5/F5 HM 6 Vision functions
Software version SR.407.xx 01/2001 US Edition 6.7 Guidelines for Describing Package Forms
371
6
Fig. 6.7 - 10 Illumination parameters for other components on the fine-pitch vision module
Adjusting the illumination of other compon
ents
Illumination level Brightness
Glänzende Beinchen
flat:
middle:
steep:
160
60
0
flat:
middle:
steep:
0
0
25
1. Illuminate body and leads equally.
Measure outline.
2. Trick: Use flat and middle levels to
bring leads image to saturation.
flat:
middle:
steep:
160
60
0
flat:
middle:
steep:
150-255
255
60-120
90
0
0
for variant 2:
flat:
flat:
middle:
middle:
steep:
steep:
120
120
40
40
0-10
0-10
flat:
middle:
steep:
100
30
40
flat:
middle:
steep:
100
30
40
flat:
middle:
steep:
90
40
10
flat:
middle:
steep:
200
30
5
flat:
flat:
middle:
middle:
steep:
steep:
0
0
0
0
20-40
20-40
flat:
middle:
steep:
90
40
10
flat:
middle:
steep:
200
30
5
flat:
middle:
steep:
90
90
5-10
flat:
middle:
steep:
120-140
40-60
0-10
flat:
middle:
steep:
Light and dull body
( white, yellow, red, brown,
grey,
metallic dull )
Ceramic body
Dark and dull body
( black, blue, green )
Reflective body
(independently of color and ma
terial)
Gullwing leads ( SO, QFP)
Clear separation
between lea
ds
and body.
J-L
ead ( PLCC ), convex-type leads
Clear separation
between leads
and body.
Shiny leads
Clear separation
between leads
and body.
Other lead shapes
Dull leads
Clear separation
between leads
and body.
Visual separation between leads
and body is not possible. Measure
outline or lead tips. Leads are
outside the body.
Gullwing leads ( SO, QFP )
Visual separation between leads
and body is not possible.
Illuminate body and leads equally.
Measure outline.
J-Lead ( PLCC ), convex-type leads
Other lead shapes
Visual separation between leads
Visual separation between leads
and body is not generally possible.
and body is not generally possible.
Leads:
Leads:
Outline:
Outline:
Measuring method:
Measuring method:
Shiny leads
Dull leads
Shiny leads
Clear separation
between leads
and body.
Dull leads
Visual separation between leads
and body is not possible.
Illuminate body and leads equally.
Measure outline.
Measure outline.
Convex-type leads
Visual separation between leads
and body is not generally possible.
Illuminate body and leads equally.
Gullwing leads ( SO, QFP )
Clear separation
between leads
and body.
J-Lead ( PLCC ), convex-type leads
Clear separation
between leads
and body.
Other lead shapes
Dull leads
Clear separation
between leads
and body.
6 Vision functions User Manual SIPLACE F5/F5 HM
6.7 Guidelines for Describing Package Forms Software version SR.407.xx 01/2001 US Edition
372
6.7.7.5 Testing Illumination Settings
You can set the illumination parameters by calling the Illumination option (see Section 6.6.4.8 on
page 325
). Using the Measure Component Option on page 311 you can then measure the com-
ponent and check your settings with the aid of the measurement results. 6
Proceed as follows to test your illumination setting: 6
Å Using the illumination values suggested in Figures 6.7 - 9 or 6.7 - 10 carry out measurement.
Measurement should run through successfully.
Å For each level reduce the set brightness level by 50 %.
Measurement should run through successfully.
Å For each level raise the set brightness level by 50 %.
Measurement should run through successfully.
If you are not successful with the above procedure, proceed as follows: 6
Å Starting with the suggested illumination value, increase the brightness of each individual illu-
mination level for as long as measurement is still successful.
Å Find this upper limit value for each individual illumination level in turn.
Å Starting with the suggested illumination value, decrease the brightness of each individual illu-
mination level for as long as measurement is still successful. Find this lower limit value for each
individual illumination level in turn.
Å Determine the average value of the upper and lower limit values. This will be the optimum illu-
mination value.
Example of an illumination test: 6
Settings from the diagram:
flat: 170
middle: 60
steep: 5
Measure the component. Measurement is successful.
Reduce setting values by 50%.
flat: 85
middle: 30
steep: 2
Increase setting values by 50%.
flat: 255
middle: 90
steep: 8
User Manual SIPLACE F5/F5 HM 6 Vision functions
Software version SR.407.xx 01/2001 US Edition 6.7 Guidelines for Describing Package Forms
373
Measure the component. Measurement is successful.
Reset the settings to the suggested values:
flat: 170
middle: 60
steep: 5
© optimum setting
6
6.7.7.6 General Information on Setting Illumination Values
As a rule it is better to overilluminate the component than to underilluminate it. A saturated im-
age is preferable to a low-contrast image.
Optimum illumination is attained when only the leads are imaged and the component body is
not shown.
If you cannot clearly separate the image of the component body from the leads, we recom-
mend to illuminate body and leads equally and then to measure the outline.
6.7.8 Setting the Component Illumination on the 6-Segment Revolver Head
Camera (Standard Vision Module)
6.7.8.1 General Information on Illumination Methods
The idea of illumination setting is to obtain an image of the leads of a component which is as high-
contrast as possible. At the same time it is also important to suppress representation of the body
of the component. 6
These instructions are intended to help you find the best possible illumination parameters. This,
however, does not imply that you rigidly comply with the values specified in these instructions. The
way you should proceed is first to follow these instructions and then to adjust the parameters your-
self where necessary. It may well be that you come across a component where the leads are better
illuminated using values different than the ones suggested in these instructions. 6
The illumination system consists of two different illumination levels. The intensities can be pro-
grammed individually. By using the individual illumination levels one at a time or in combination,
you can adapt the illumination to suit a wide range of components. 6