For details, see page 9 – Sony XC-EU50 User Manual

Page 18

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18

Mode Setting

For setting the shutter speed using the DIP switches

No HD/VD input (Internal synchronization)

*1 This is a signal input from outside.

*2 The exposure time (Te) is determined by the

setting of the DIP switches.

For details, see Page 9.

*3 The normal operation state is chosen when the

trigger pulse width is 1/3 s or more. The trigger
falling edge restores the external trigger shutter
operation. In this case, the area between the falling
edge of a trigger pulse and the subsequent 50 ms
period is an external trigger input inhibition area.
There is no guarantee of operation for any triggers
input in this period.

*4 The internal VD signals are output as long as there

is no external input and the HD/VD signal
input/output switch on the rear panel is set to INT.

1

1

2

3

3

2

*5 An image is output when an internal VD signal

falls 10 ms or more after a trigger pulse rises (2
and 3 in the figure). If the period from the
trigger rising edge to the internal VD falling edge
(T in the figure) is under 10 ms, it is not defined
whether the image is output for the internal VD
falling edge or the image is output for the next
internal VD falling edge. (1 in the figure shows
that the image is output for the next internal VD).
In this case, see WEN since the image and WEN
make up a pair.
(The internal VD falling edge and the beginning
of the equivalent pause in the V period of the
SYNC have the same phase.)

Note

An image is not output correctly when the next
trigger is input before the image for the previous
trigger is output.

External trigger shutter operation

Normal

operation*

3

Mode transition state

External input

inhibition area

(50 ms)

External trigger

shutter operation

Exposure time (Te)*

2

Exposure time
(Te)*

2

Trigger pulse width*

3

T: T=under 10

m

s*

5

Trigger*

1

Internal VD*

4

Video out

WEN

T: T=10

m

s or

more*

5

100

µ

s to 250 ms

T: T=10

m

s or more*

5

250 H (EIA)
293 H (CCIR)

250 H (EIA)
293 H (CCIR)

Exposure time (Te)*

2

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