User`s manual

AW00049313000 Acquisition Control
Basler runner 129
Factor 2:
Factor 2 is the exposure time. You can use the formula below to calculate the maximum line rate
based on the exposure time for each acquired line:
Where the constant C
1
depends on the camera model as shown in the table below:
For more information about setting the exposure time, see Section 8.2.5.2 on page 94.
Factor 3:
Factor 3 is the frame transmission time. You can use the formula below to calculate the maximum
line rate based on the frame transmission time:
Once you have determined which factor is most restrictive on the line rate, you can try to make that
factor less restrictive if possible:
If you find that the sensor readout time is most restrictive factor, you cannot make any
adjustments that will result in a higher maximum line rate.
If you are using long exposure times, it is quite possible to find that your exposure time is the
most restrictive factor on the line rate. In this case, you should lower your exposure time. (You
may need to compensate for a lower exposure time by using a brighter light source or
increasing the opening of your lens aperture.)
The frame transmission time will not normally be a restricting factor. But if you are using
multiple cameras and you have set a small packet size or a large inter-packet delay, you may
find that the transmission time is restricting the maximum allowed line rate. In this case, you
Max Lines/s (based on sensor readout)
ruL1024-
19gm
ruL1024-
36gm
ruL1024-
57gm
ruL2048-
10gm
ruL2048-
19 gm
ruL2048-
30gm
ruL2098-
10gc
18700 35700 56100 9700 18700 29200 9200
ruL1024-
19gm
ruL1024-
36gm
ruL1024-
57gm
ruL2048-
10gm
ruL2048-
19 gm
ruL2048-
30gm
ruL2098-
10gc
C
1
2.59 µs 1.63 µs 1.22 µs 2.39 µs 1.54 µs 1.22 µs 1.44 µs
Max Lines/s
1
Exposure time in µs C
1
+
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Max Lines/s
Device Current Throughput Parameter Value
Payload Size Parameter Value
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Frame Height=