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Section 7. Installation
214
BeginProg / Scan() / NextScan / EndProg Syntax
'This program example demonstrates the use of BeginProg/EndProg and Scan()/NextScan syntax.
Public
PanelTemp_
DataTable
(PanelTempData,True,-1)
DataInterval
(0,1,Min,10)
Sample
(1,PanelTemp_,FP2)
EndTable
BeginProg
' <<<<<<<BeginProg
Scan
(1,Sec,3,0)
' <<<<<<< Scan
PanelTemp
(PanelTemp_,250)
CallTable
PanelTempData
NextScan
' <<<<<<< NextScan
EndProg
' <<<<<<<EndProg
Scan()
determines how frequently instructions in the program are executed, as
shown in the following CRBasic code snip:
'Scan(Interval, Units, BufferSize, Count)
Scan
(1,Sec,3,0)
'CRBasic instructions go here
ExitScan
Scan()
has four parameters:
•
Interval
—
the interval between scans. Interval is 1 ms ≤
Interval
≤ 1
day.
•
Units
— the time unit for the interval.
•
BufferSize
— the size (number of scans) of a buffer in RAM that holds
the raw results of measurements. When running in pipeline mode, using
a buffer allows the processing in the scan to lag behind measurements at
times without affecting measurement timing. Use of the
CRBasic Editor
default size is normal. Refer
SkippedScan
(p. 562)
for troubleshooting tips.
•
Count
— number of scans to make before proceeding to the instruction
following
NextScan
. A count of
0
means to continue looping forever (or
until
ExitScan
).
7.6.3.13.2 SlowSequence / EndSequence
Slow sequences include automatic and programmed sequences. Auto
self-calibration calibration is an automatic slow sequence.
User-entered slow sequences are declared with the
SlowSequence
instruction and
run outside the main-program scan. Slow sequences typically run at a slower rate
than the main scan. Up to four slow-sequence scans can be defined in a program.
Instructions in a slow-sequence scan are executed when the main scan is not
active. When running in pipeline mode, slow-sequence measurements are spliced
in after measurements in the main program, as time allows. Because of this
Содержание CR6 Series
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Страница 76: ...Section 5 Overview 76 FIGURE 20 Half Bridge Wiring Example Wind Vane Potentiometer ...
Страница 80: ...Section 5 Overview 80 FIGURE 23 Pulse Input Wiring Example Anemometer ...
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Страница 251: ...Section 7 Installation 251 FIGURE 46 Running Average Frequency Response FIGURE 47 Running Average Signal Attenuation ...
Страница 454: ...Section 8 Operation 454 FIGURE 104 Narrow Sweep High Noise ...
Страница 459: ...Section 8 Operation 459 FIGURE 106 Vibrating Wire Sensor Calibration Report ...
Страница 535: ...Section 8 Operation 535 8 11 2 Data Display FIGURE 121 CR1000KD Displaying Data ...
Страница 537: ...Section 8 Operation 537 FIGURE 123 CR1000KD Real Time Custom ...
Страница 538: ...Section 8 Operation 538 8 11 2 3 Final Storage Data FIGURE 124 CR1000KD Final Storage Data ...
Страница 539: ...Section 8 Operation 539 8 11 3 Run Stop Program FIGURE 125 CR1000KD Run Stop Program ...
Страница 541: ...Section 8 Operation 541 FIGURE 127 CR1000KD File Edit ...
Страница 542: ...Section 8 Operation 542 8 11 5 PCCard Memory Card Management FIGURE 128 CR1000KD PCCard Memory Card Management ...
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Страница 549: ...Section 9 Maintenance Details 549 FIGURE 133 Separate Back Shell from Module FIGURE 134 Disconnect Battery Connector ...
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Страница 610: ...Section 11 Glossary 610 FIGURE 137 Relationships of Accuracy Precision and Resolution ...
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