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11.1 Sequence Oscillation Example
WF1967/WF1968
11-2
11.1 Sequence Oscillation Example
As a simple example of sequence oscillation, this section describes how to change DC voltage in stages
as shown in the following figure.
(First, restore the initial setting in the Utility screen.)
Set the sequence as follows.
Step
number
Step control parameters
Intra-step
channel parameters
0
Time: 5 s
StopPhs: Off
StepCode: any value
Fctn: DC
Offset: 0V
Action: Sweep
1
Time: 20 s
AutoHold: Off
JumpTo: Off
StopPhs: Off
StateB: Off
StepTerm: Continue
EventB: Off
StepCode: any value
Fctn: DC
Offset: +10V
Action: Sweep
2
Time: 10 s
AutoHold: Off
JumpTo: Off
StopPhs: Off
StateB: Off
StepTerm: Continue
EventB: Off
StepCode: any value
Fctn: DC
Offset:
Action: Keep
3
Time: 15 s
AutoHold: On
JumpTo: Off
StopPhs: Off
StateB: Off
StepTerm: End
EventB: Off
StepCode: any value
Fctn: DC
Offset: +5V
Action: Const
The following section describes the operation in the order of step transition.
Step 0
These are the output setting before the sequence starts and after the sequence ends.
In this case, the system waits for the sequence to start in the state of DC 0V.
[Time] and [Action] are enabled only when the sequence is stopped. They will be explained later.
Step 1
When the sequence starts, the sequence goes to Step 1. Since [Time] is set to 20 seconds, [Offset] is
set to +10V, and [Action] of [Offset] is set to [Sweep], the output voltage rises linearly from 0V to
+10V over 20 seconds.
Once the output voltage has r10V after 20 seconds, since [StepTerm] is set to [Continue], the
sequence moves on to the next step, Step 2.
Step 2
Since [Time] is set to 10 seconds and [Action] of [Offset] is set to [Keep], the last value of the
previous step, Step 1, which is +10V, is held for 10 seconds.
After the lapse of 10 seconds, since [StepTerm] is set to [Continue], the sequence moves on to the next
step, Step 3.
Step 3
Since [Time] is set to 15 seconds and [Action] of [Offset] is set to [Const], a constant value, which is
+5V, is held for 15 seconds. When the sequence moves on from Step 2 to Step 3, the output voltage
abruptly changes from +10V to +5V.
After the lapse of 15 seconds, since [AutoHold] is set to [On], the sequence goes into standby in that
state.
Output
voltage
Time
Start operation
Start operation or
resume operation
Содержание WAVE FACTORY WF1967
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Страница 10: ...WF1967 WF1968 vi...
Страница 19: ...WF1967 WF1968 1 1 1 Overview 1 1 Features 1 2 1 2 Operating Principles 1 4...
Страница 50: ...3 3 Cautions on Floating Ground Connection WF1967 WF1968 3 20 MEMO...
Страница 156: ...4 9 Setting and Operation of Burst WF1967 WF1968 4 106 MEMO...
Страница 206: ...7 9 Identifying Memory Space Required for Saving Arbitrary Waveforms WF1967 WF1968 7 14 MEMO...
Страница 221: ...WF1967 WF1968 9 1 9 Synchronizing Multiple Units 9 1 Connection Procedure 9 2 9 2 Performing Synchronization 9 4...
Страница 226: ...9 2 Performing Synchronization WF1967 WF1968 9 6 MEMO...
Страница 262: ...13 6 Product Information Display Information WF1967 WF1968 13 4 MEMO...
Страница 274: ...14 7 Suspected Failure WF1967 WF1968 14 12 MEMO...
Страница 275: ...WF1967 WF1968 15 1 15 Maintenance 15 1 Outline 15 2 15 2 Operation Inspection 15 4 15 3 Performance Test 15 5...
Страница 286: ...15 3 Performance Test WF1967 WF1968 15 12 MEMO...
Страница 287: ...WF1967 WF1968 16 1 16 List of Initial Settings...
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