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Section 7. Installation
372
The network administrator prefers to synchronize the CR510 clocks from a central
computer using the legacy Campbell Scientific
C
command. The CR510
datalogger is hard-coded to output printable ASCII and recognize the
C
command. CR6 dataloggers, however, require custom programming to output and
accept these same ASCII strings. A similar program can be used to emulate
CR10X and CR23X dataloggers.
Solution — CRBasic example
Measure Sensors / Send RS-232 Data
(p. 372)
imports
and exports serial data with the CR6 RS-232 port. Imported data are expected to
have the form of the legacy Campbell Scientific time set
C
command. Exported
data has the form of the legacy Campbell Scientific Printable ASCII format.
Note
The nine-pin RS-232 port (requires CPI to RS-232 adapter cable pn
31055 (RS-232/CPI RJ45 to DB9 Male DTE) or pn 31056 (RS-232/CPI
RJ45 to DB9 Female DCE)) can be used to download the CR6 program if
the
SerialOpen()
baud rate matches that of the
datalogger support
software
(p. 662).
However, two-way PakBus
®
communications will cause
the CR6 to occasionally send unsolicited PakBus
®
packets out the RS-232
port for at least 40 seconds after the last PakBus
®
communication. This
will produce some "noise" on the intended data-output signal.
Monitor the CR6 RS-232 port with
HyperTerminal
as described in the section
Configure HyperTerminal
(p. 369).
Send
C
-command file to set the clock
according to the text in the file.
Note
The
HyperTerminal
file will not update automatically with actual
time. The file only simulates a clock source for the purposes of this
example.
Measure Sensors / Send RS-232 Data
'This program example demonstrates the import and export serial data via the CR6 RS-232
'port. Imported data are expected to have the form of the legacy Campbell Scientific
'time set C command:
' [YR:DAY:HR:MM:SS]C
'Exported data has the form of the legacy Campbell Scientific Printable ASCII format:
' 01+0115. 02+135 03+00270 04+7999 05+00138 06+07999 07+04771
'Declarations
'Visible Variables
Public
StationID
Public
KWH_In
Public
KVarH_I
Public
KWHHold
Public
KVarHold
Public
KWHH
Public
KvarH
Public
InString
As String
* 25
Public
OutString
As String
* 100
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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