201
CHAPTER 8 FUNCTIONS
8
8.
3 T
e
mperat
ure Cont
rol
M
ode
(2) Conditions for the simultaneous temperature rise function
The simultaneous temperature rise function can be executed when all the following conditions are satisfied:
• When the control is started
• When the set value (SV) is larger than the temperature process value (PV)
• When the module is in the standard control (not executed in the heating-cooling control) (
• When the simultaneous temperature rise parameter has been determined (or has been set) and is not 0 (the
default value)
When the following buffer memory area setting is less than 100%, reaching time may vary.
• CH
Upper limit output limiter (address: 105H, 135H, 165H, 195H) (
(3) Setting method (dividing channels into groups)
1.
Set "Method selection" to "Param write" of the control mode to be used.
"CC IE Field Configuration" window
Select the temperature control module from "List of
stations"
[CC IE Field Configuration]
[Online]
[Parameter Processing of Slave Station]
2.
Set "CH
Simultaneous temperature rise group setting".
(4) Simultaneous temperature rise parameter
The simultaneous temperature rise parameter is classified into the following two remote buffer memory values.
Before executing the simultaneous temperature rise function, the simultaneous temperature rise parameter
needs to be automatically calculated (or arbitrarily set).
(a) Automatic calculation
The simultaneous temperature rise parameter can be automatically calculated using the following two
methods:
• Simultaneous temperature rise AT (
• The simultaneous temperature rise parameter setting using self-tuning (
If the setting in Peak current suppression control group setting (address: 1E5H) is changed after the simultaneous
temperature rise parameter is calculated, the intended control may not be performed. If so, calculate the simultaneous
temperature rise parameter again.
For details on the peak current suppression function, refer to the following.
Remote buffer memory area name
Remote buffer memory address
Reference
CH1
CH2
CH3
CH4
CH
Simultaneous temperature rise
gradient data
2D1H
2D5H
2D9H
2DDH
CH
Simultaneous temperature rise dead
time
2D2H
2D6H
2DAH
2DEH
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