Input And Output Circuits; Iris Video Output; Trigger Input; Xeen Output - JAI AT-200GE User Manual

Digital 3ccd progressive scan rgb color camera
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6. Input and output circuits

This chapter introduces the basic diagram and bit allocation of digital output.

6.1. Iris video output

This signal can be used for lens iris control In
Continuous and RCT modes. The signal is NUM
luminance signal and passes through the gain
circuit. However, due to reversed
compensation applied, the gain settings do
not influence this signal. The iris video output
is 0.7 V p-p from 75  and without sync.

6.2. Trigger input

The trigger input is on pin #10 on the 12-pin
connector or pin#3 on the D-sub 9-pin
connector. The input is AC coupled. To allow
a long pulse width, the input circuit is a flip-
flop, which is toggled by the negative or
positive differentiated spikes caused by the
falling or rising trigger edges.
The trigger polarity can be changed.
Trigger input level is 4 V 2 V. It can be
terminated by SW600: ON for 75. OFF for
TTL(Factory default).

6.3. XEEN output

XEEN is found on pin #4 or #8 on D-sub 9-pin
connector.
The output circuit is 75  complementary
emitter followers. Output level 3 V from 75.
(No termination).
When the open collector is used, the maximum
current is 120mA. However, if a current of more
than 50mA is flowed, it is necessary to use
bigger diameter wires for connecting pin#8 and
9. In case of narrower wires, due to its
resistance, it may not work properly.
This output can be changed to Open collector
signal by SW100.
EEN is found in OPT out in 12-pin connector.
AT-200GE
+5V
0.1μ
DAC
Fig. 9 Iris video output.
HIROSE 12P
#10
0.1μ
75
SW600
Fig.10 Trigger input.
180
1K
+5V
0.1
EEN
- 13 -
2K2
1μ
1K
15K
1K2
39K
100K
0.001μ
Open
Collector
1K
10K
220
10
10
10K
Fig.11 EEN output
Iris Video
+5V
TTL
1K
HIROSE
#9
SW100
Push
Pull
120
150

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