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6 Vision functions User Manual HS-50 6.6 Test Component Software-Version 5.01 Edition 01/99 280 0HDVXULQJPRGH PHQX  Click on the ’M easurin g  m ode’ fi eld to ca ll up the 0HDVXULQJPRGH menu.   – In th e left col…

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User Manual HS-50 6 Vision functions
Software-Version 5.01Edition 01/99 6.6 Test Component
279
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NOTE
This option can only be activated when a GF number has been loaded.
The sensor-specific part of the package form includes a data structure with measurement condi-
tions for the components. In this menu you can manipulate these measurement conditions. The
menu options are primarily intended for the creation of your own user-specified GF file.
This option allows you to
Å select and activate a particular measurement method or combination of several measurement
methods
Å deactivate individual measurement methods, and
Å change the hex parameters belonging to each measurement method.
The hex parameters for the individual measuring methods can be modified in two ways:
Å either indirectly, i.e. menu-driven
You will be guided by the package form manipulator by means of setting menus and explana-
tory text in order to obtain the desired measuring results quickly and accurately.
Å or directly, i.e. you enter the necessary hex parameters directly into the ’Measuring mode 2’
input box.
NOTE
Please note that entering the hex values directly requires considerable knowledge of the
measuring method sequence.
If you intend to enter or modify hex values directly, please contact Siemens Service first and
do not enter the bit-coded hex values until you have spoken to the Service Department.
We recommend that you generally use the menu-driven package form manipulator.
6 Vision functions User Manual HS-50
6.6 Test Component Software-Version 5.01 Edition 01/99
280
0HDVXULQJPRGHPHQX
Click on the ’Measuringmode’ field to call up the 0HDVXULQJPRGH menu.
In the left column of the box, the desired measuring method can be activated or deactivated
by clicking with the mouse. A cross indicates that you have activated the measuring method.
The ‘Setting' field for calling up the sub-menu changes from grey to black.
Use the ‘Hex input’ field to call up the ‘Measuring mode 2’ input menu for directly entering hex
values. Please follow the instructions on page 6 - 279.
Å Select ‘Accept’ to close the ‘Measuring mode’ menu. The modified measuring conditions will
be entered into the package form file on the station computer.
Å Select ‘Abort’ to interrupt the operation without transferring the data and to return to the ‘Test
component’ menu.
User Manual HS-50 6 Vision functions
Software-Version 5.01Edition 01/99 6.6 Test Component
281
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As far as conventional components with lead connections are concerned, component centering is
essentially based on four measurement methods used to determine the position (x and y coordi-
nates,
Φ
= skew) of the component and the lead parameters:
Size-driven mode
Row-driven mode
Corner-driven mode
Lead-driven mode
For BGAs (B
all Grid Arrays) and flip-chips new algorithms have been implemented in order to de-
termine the position (x and y coordinates,
Φ
= skew) of the component and the ball parameters
(see Section 6.6.4.4 on page 6 - 257 ):
Grid-driven mode
Ball-driven mode
In accordance with your specifications any measurement method can be omitted from this se-
quence. However, it is not possible to change the way this sequence runs.
Definition of the measuring methods
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This measurement method has been especially developed for small components. On the basis
of the information on dimension parameters the position and rotation of small components is
determined rapidly and reliably.
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The size-driven mode also employs profiling. You can have the profile formed along either the
width RU the length of the component. You should make your choice within the options field.
The default selection is for profiling along the longer side.
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This measurement method is based on information from one row of leads.
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The measurement results provide precise information on the coordinates and rotation of the
component, the number of leads, the pitch and the row offset.
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This method is used to obtain information from an inspection of every single lead.