HP E1415 Command Reference
171
ALGorithm
2. If you re-define an algorithm (by swapping) after INIT, and it declares an
existing variable, the declaration-initialization statement
(e.g.
static float my_var = 3.5
) will not change the current value of
that variable.
3. The driver only calculates overall execution time for algorithms defined
before INIT. This calculation is used to set the default output delay (same as
executing ALG:OUTP:DELAY AUTO). If an algorithm is swapped after
INIT that take longer to execute than the original, the output delay will behave
as if set by ALG:OUTP:DEL 0, rather than AUTO (see ALG:OUTP:DEL
command). Use the same procedure from note 1 to make sure the longest
algorithm execution time is used to set ALG:OUTP:DEL AUTO before INIT.
ALGorithm[:EXPLicit]:SCALar
ALGorithm[:EXPLicit]:SCALar ’<
alg_name
>’,’<
var_name
>’,<
value
>
sets the
value of the scalar variable <var_name> for algorithm <alg_name> into the Update
Queue. This update is then pending until ALG:UPD is sent or an update event (as set
by ALG:UPD:CHANNEL) occurs.
Note
ALG:SCALAR places a variable update request in the Update Queue. You
can not place more update requests in the Update Queue than are allowed
by the current setting of ALG:UPD:WINDOW or a "Too many updates --
send ALG:UPDATE command" error message will be generated.
Parameters
Comments
•
To send values to a global scalar variable, set the <alg_name> parameter to
’GLOBALS’. To define a scalar global variable see the ALGorithm:DEFine
command.
•
An error is generated if <alg_name> or <var_name> is not defined.
•
Related Commands: ALG:DEFINE, ALG:SCAL?, ALG:UPDATE
•
*RST Condition: No algorithms or variables are defined.
Usage
ALG:SCAL ’ALG1’,’my_var’,1.2345
1.2345 to variable my_var in ALG1
ALG:SCAL ’ALG1’,’another’,5.4321
5.4321 to variable another also in ALG1
ALG:SCAL ’ALG3’,’my_global_var’,1.001
1.001 to global variable
ALG:UPD
update variables from update queue
Parameter
Name
Parameter
Type
Range of
Values
Default
Units
alg_name
string
ALG1 - ALG32 or GLOBALS
none
var_name
string
valid ’C’ variable name
none
value
numeric (float32)
IEEE-754 32-bit floating point number
none
Содержание VXI 75000 C Series
Страница 2: ......
Страница 16: ...16 ...
Страница 18: ......
Страница 30: ...30 Getting Started Chapter 1 Notes ...
Страница 32: ...32 Field Wiring Chapter 2 Figure 2 1 Channel Numbers at SCP Positions ...
Страница 44: ...44 Field Wiring Chapter 2 Figure 2 11 HP E1415 Terminal Module ...
Страница 54: ...54 Field Wiring Chapter 2 Notes ...
Страница 61: ...Programming the HP E1415 for PID Control 61 Chapter 3 Programming Overview Diagram ...
Страница 124: ...124 Creating and Running Custom Algorithms Chapter 4 Figure 4 2 Algorithm Operating Sequence Diagram ...
Страница 136: ...136 Creating and Running Custom Algorithms Chapter 4 Notes ...
Страница 152: ...152 Algorithm Language Reference Chapter 5 Notes ...
Страница 304: ...304 HP E1415 Command Reference Chapter 6 Command Quick Reference Notes ...
Страница 308: ...308 Specifications Appendix A Thermocouple Type E 200 800C SCPs HP E1501 02 03 ...
Страница 309: ...Specifications 309 Appendix A Thermocouple Type E 200 800C SCPs HP E1508 09 ...
Страница 310: ...310 Specifications Appendix A Thermocouple Type E 0 800C SCPs HP E1501 02 03 ...
Страница 311: ...Specifications 311 Appendix A Thermocouple Type E 0 800C SCPs HP E1509 09 ...
Страница 312: ...312 Specifications Appendix A Thermocouple Type E Extended SCPs HP E1501 02 03 ...
Страница 313: ...Specifications 313 Appendix A Thermocouple Type E Extended SCPs HP E1508 09 ...
Страница 314: ...314 Specifications Appendix A Thermocouple Type J SCPs HP E1501 02 03 ...
Страница 315: ...Specifications 315 Appendix A Thermocouple Type J SCPs HP E1508 09 ...
Страница 316: ...316 Specifications Appendix A Thermocouple Type K SCPs HP E1501 02 03 ...
Страница 317: ...Specifications 317 Appendix A Thermocouple Type R SCPs HP E1501 02 03 ...
Страница 318: ...318 Specifications Appendix A Thermocouple Type R SCPs HP E1508 09 ...
Страница 319: ...Specifications 319 Appendix A Thermocouple Type S SCPs HP E1501 02 03 ...
Страница 320: ...320 Specifications Appendix A Thermocouple Type S SCPs HP E1508 09 ...
Страница 321: ...Specifications 321 Appendix A Thermocouple Type T SCPs HP E1501 02 03 ...
Страница 322: ...322 Specifications Appendix A Thermocouple Type T SCPs HP E1508 09 ...
Страница 323: ...Specifications 323 Appendix A 5K Thermistor Reference SCPs HP E1501 02 03 ...
Страница 324: ...324 Specifications Appendix A 5K Thermistor Reference SCPs HP E1508 09 ...
Страница 325: ...Specifications 325 Appendix A RTD Reference SCPs HP E1501 02 03 ...
Страница 326: ...326 Specifications Appendix A RTD SCPs HP E1501 02 03 ...
Страница 327: ...Specifications 327 Appendix A RTD SCPs HP E1508 09 ...
Страница 328: ...328 Specifications Appendix A 2250 Thermistor SCPs HP E1501 02 03 ...
Страница 329: ...Specifications 329 Appendix A 2250 Thermistor SCPs HP E1508 09 ...
Страница 330: ...330 Specifications Appendix A 5K Thermistor SCPs HP E1501 02 03 ...
Страница 331: ...Specifications 331 Appendix A 5K Thermistor SCPs HP E1508 09 ...
Страница 332: ...332 Specifications Appendix A 10K Thermistor SCPs HP E1501 02 03 ...
Страница 333: ...Specifications 333 Appendix A 10K Thermistor SCPs HP E1508 09 ...
Страница 334: ...334 Specifications Appendix A Notes ...
Страница 346: ...346 Glossary Appendix C Notes ...
Страница 388: ...388 Generating User Defined Functions Appendix F Notes ...
Страница 438: ...438 Index Writing the algorithm 129 values to CVT elements 120 values to the FIFO 121 Z ZERO CALibration ZERO 194 ...