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2-9
2.4.2 Mainframe matrix expansion
Matrices using up to 12 matrix cards are possible by us-
ing six Model 7001 mainframes together. Using 12
Model 7012 matrix cards provides 480 cross-points.
In general, connecting the rows of a card in one main-
frame to the rows of a card in a second mainframe in-
creases the column numbers of the matrix. For
example, if the rows of a 4
×
20 matrix in one main-
frame are connected to the rows of a 4
×
20 matrix in a
second mainframe, the resulting matrix would be 4
×
40. Paragraph 3.4.3 explains how to connect a test sys-
tem using two mainframes.
Partial matrix implementation
A fully implemented matrix provides a relay at each
potential crosspoint. For example, a fully implemented
8
×
20 matrix utilizing four 4
×
10 matrix cards contains
160 crosspoints. A partially implemented 8
×
20 matrix
would contain fewer crosspoints.
Figure 2-11
Mixed card type example
1
2
3
4
1
10
Columns
7012
Rows
7001
Backplane
Card 1
4 x 10 Matrix
Notes : 1. Models 7011 and 7012 backplane jumpers must be installed.
2. Model 7011 bank-to-bank jumpers must be removed.
1
10
7011
Card 2
Quad 1 x 10 Mux
1
10
1
10
1
10
Bank A
Bank B
Bank C
Bank D
Inputs
An example of a partially implemented 8
×
20 matrix is
shown in Figure 2-12. The partial matrix is still consid-
ered 8
×
20, but contains only 120 crosspoints using
three Model 7012 matrix cards installed in two Model
7001 mainframes.
Matrix card #1 (7012 #1) installed in one of the slots of
the
Þ
rst mainframe (7001 #1) provides a 4
×
10 matrix.
The other slot of the
Þ
rst mainframe should be left
empty. If another switching card is left in that slot,
make sure it is isolated from the analog backplane (i.e.
backplane jumpers removed). The two matrix cards
(7012 #2 and #3) installed in the second mainframe
(7001 #2) are con
Þ
gured as a an 8
×
10 matrix as ex-
plained in paragraph 2.4.2 (Wide Matrix Expansion).
Keep in mind that the rows of card #2 must be isolated
from the rows of card #3. This is accomplished by re-
moving the jumpers on one of the two cards. Finally,
the partially implemented 8
×
20 matrix is realized by
externally hard-wiring the rows of card #1 to the rows
of card #2.
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