14:
PID
I
NSTRUCTION
FC5A
M
ICRO
S
MART
U
SER
’
S
M
ANUAL
FC9Y
‐
B1273
14
‐
19
Device
Settings
Note:
When
analog
I/O
module
FC4A
‐
L03AP1
is
used
for
the
PID
instruction,
select
the
binary
data
to
make
sure
that
the
process
vari
‐
able
takes
a
value
of
0
through
4095.
Analog
Input
Data
vs.
Process
Variable
after
Conversion
Device
Function
Description
Device
Address
(Value)
S1+3
Operation
mode
Advanced
AT
(auto
tuning)
+
PID
action
D3
(3)
S1+4
Control
mode
Enable
linear
conversion,
proportional
band
D4
(3)
S1+5
Linear
conversion
maximum
value
1300°C
D5
(13000)
S1+6
Linear
conversion
minimum
value
0°C
D6
(0)
S1+10
Integral
start
coefficient
100%
D10
(100)
S1+11
Input
filter
coefficient
70%
D11
(70)
S1+14
High
alarm
value
250°C
D14
(2500)
S1+15
Low
alarm
value
0°C
D15
(0)
S1+25
Proportional
band
offset
value
0%
D25
(0)
S1+26
Derivative
gain
0%
D26
(0)
S2+2
Output
manipulated
variable
limit
enable
Disable
output
manipulated
variable
limits
M2
(OFF)
S2+3
Integral
start
coefficient
disable
Enable
integral
start
coefficient
(S1+10)
M3
(OFF)
S2+4
High
alarm
output
ON: When
temperature
250°C
OFF: When
temperature
<
250°C
M4
S2+6
Control
output
Remains
on
during
advanced
auto
tuning;
Goes
on
and
off
according
to
the
control
period
(S1+13)
and
output
manipulated
variable
(S1+1)
during
PID
action
M6
S3
Set
point
200°C
D100
(2000)
S4
Process
variable
Analog
input
data
of
analog
I/O
module
1,
analog
input
channel
0;
stores
0
through
4095
D760
Analog
input
operating
status
Stores
0
through
5
D761
Analog
input
signal
type
Type
K
thermometer
D762
(2)
Analog
input
data
type
12
‐
bit
data
(0
to
4095)
(Note)
D763
(0)
D1
Manipulated
variable
Stores
PID
calculation
result
D50
PID
start
input
Starts
to
execute
the
PID
instruction
I0
Heater
power
switch
Turned
on
and
off
by
control
output
M6
Q0
High
alarm
light
Turned
on
and
off
by
high
alarm
output
M4
and
analog
input
error
M11
Q1
Analog
input
error
Turns
on
when
analog
input
operating
status
D761
is
3
or
more
M11
High
Alarm
Value
(S1+14):
2500
(250°C)
4095
Linear
Conversion
Minimum
Value
(S1+6):
0
(0°C)
Linear
Conversion
Maximum
Value
(S1+5):
13000
(1300°C)
Set
Point
(S3):
2000
(200°C)
AT
Set
Point
(automatically
determined)
Analog
Input
Data
D760
Process
Variable
after
Conversion
(S1+0)
Process
Variable
before
Conversion
(S4)
0
Содержание MICROSmart FC5A Series
Страница 1: ...FC5A SERIES FC9Y B1273 1 User s Manual Advanced Volume ...
Страница 2: ......
Страница 8: ...Preface 6 FC5A MicroSmart User s Manual FC9Y B1273 ...
Страница 14: ...TABLE OF CONTENTS vi FC5A MICROSMART USER S MANUAL FC9Y B1273 ...
Страница 52: ...4 DATA COMPARISON INSTRUCTIONS 4 10 FC5A MICROSMART USER S MANUAL FC9Y B1273 ...
Страница 72: ...5 Binary Arithmetic Instructions 5 20 FC5A MicroSmart User s Manual FC9Y B1273 ...
Страница 88: ...7 SHIFT ROTATE INSTRUCTIONS 7 12 FC5A MicroSmart User s Manual FC9Y B1273 ...
Страница 112: ...8 DATA CONVERSION INSTRUCTIONS 8 24 FC5A MicroSmart User s Manual FC9Y B1273 ...
Страница 138: ...11 PROGRAM BRANCHING INSTRUCTIONS 11 14 FC5A MICROSMART USER S MANUAL FC9Y B1273 ...
Страница 178: ...13 PULSE INSTRUCTIONS 13 32 FC5A MICROSMART USER S MANUAL FC9Y B1273 ...
Страница 202: ...14 PID INSTRUCTION 14 24 FC5A MICROSMART USER S MANUAL FC9Y B1273 ...
Страница 206: ...15 DUAL TEACHING TIMER INSTRUCTIONS 15 4 FC5A MICROSMART USER S MANUAL FC9Y B1273 ...
Страница 214: ...16 INTELLIGENT MODULE ACCESS INSTRUCTIONS 16 8 FC5A MICROSMART USER S MANUAL FC9Y B1273 ...
Страница 248: ...21 COMPUTER LINK COMMUNICATION 21 4 FC5A MICROSMART USER S MANUAL FC9Y B1273 ...
Страница 272: ...23 MODBUS TCP COMMUNICATION 23 10 FC5A MICROSMART USER S MANUAL FC9Y B1273 ...
Страница 332: ...25 EXPANSION RS232C RS485 COMMUNICATION 25 16 FC5A MICROSMART USER S MANUAL FC9Y B1273 ...
Страница 341: ...NOTE FC5A MICROSMART USER S MANUAL FC9Y B1273 1 ...
Страница 342: ...NOTE 2 FC5A MICROSMART USER S MANUAL FC9Y B1273 ...