Toshiba Q9+ Installation & Operation Manual page 159

Adjustable speed drives
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PID Feedback Integral (I) Gain
Program Feedback Feedback Settings
This parameter determines the degree that the Integral function
affects the output signal. The smaller the value here, the more
pronounced the effect of the integral function on the output sig-
nal.
PID Deviation Upper Limit
Program Feedback Feedback Settings
This parameter determines the maximum amount that the feed-
back may increase the output signal.
PID Deviation Lower Limit
Program Feedback Feedback Settings
This parameter determines the maximum amount that the feed-
back may decrease the output signal.
PID Feedback Differential (D) Gain
Program Feedback Feedback Settings
This parameter determines the degree that the Differential func-
tion affects the output signal. The larger the value entered here,
the more pronounced the affect of the differential function for a
given feedback signal level.
Process Upper Limit
Program Feedback Feedback Settings
Selecting Process PID at parameter
ter setting to function as the Upper Limit while operating in the
PID Control mode.
https://www.toshiba.com/tic/
F363
Direct Access Parameter Information
Q9 Plus ASD Install/Op Manual
F359
allows for this parame-
F368
Direct Access Number —
Parameter Type — Numerical
Factory Default — 0.01
Changeable During Run — Yes
Minimum — 0.01
Maximum — 100.00
Direct Access Number —
Parameter Type — Numerical
Factory Default — (ASD-Depen-
dent)
Changeable During Run — Yes
Minimum — Lower-Limit Freq.
(F013)
Maximum — Upper-Limit Freq.
(F012)
Units — Hz
Direct Access Number —
Parameter Type — Numerical
Factory Default — (ASD-Depen-
dent)
Changeable During Run — Yes
Minimum — Lower-Limit Freq.
(F013)
Maximum — Upper-Limit Freq.
(F012)
Units — Hz
Direct Access Number —
Parameter Type — Numerical
Factory Default — 0.00
Changeable During Run — Yes
Minimum — 0.00
Maximum — 2.55
Direct Access Number —
Parameter Type — Numerical
Factory Default — (ASD-Depen-
dent)
Changeable During Run — Yes
Minimum — Lower-Limit Freq.
(F013)
Maximum — Upper-Limit Freq.
(F012)
Units — Hz
F363
F364
F365
F366
F367
147

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