P
L
C
P
L
C
Item
Number of inputs/outputs
Number of
Basic
instructions
Application
Processing
Basic (µs)
speed per
Application
instruction
(µs)
Program capacity (steps)
Number of program blocks
Devices
Timers***
Counters***
Relays
Internal
Shared
Link
Special
Registers
Data
File
Link
Special
Index
Shared
F3SP05-0P, F3SP21-0N, F3SP28-3N, F3SP38-6N, F3SP53-4H, F3SP58-6H and
F3FP36-3N Sequence CPU Modules
• High-speed execution of instructions easily handles high-speed processing and response.
(Scan time of 1 ms for a 20K step program when using an F3SP53 or F3SP58)
• Sensor control function enables quick scan (input
besides normal scan . This allows to have stable input/output response of 400 µs (200 µs
x 2). (when using an F3SP28, F3SP38, F3SP53 or F3SP58).
• Inheriting the structured programming, object ladder programming is adopted as a
dramatically upgraded programming language that facilitates program development and
modification (for the F3SP28, F3SP38, F3SP53 or F3SP58).
• User-defined macro instructions can be created and registered.
• Enriched functions, such as forced set/reset that are not affected by the results of
program computations as well as a scan operation, facilitate program debugging and
modification.
• The PROGRAMMER port (connection port for programming tool) supports a personal
computer link, allowing linkage to upper-level computers and display units without a
personal computer link module (at maximum baud rate of 115K bps for the F3SP28,
F3SP38, F3SP53 or F3SP58).
• Programs and data can be stored in an optional ROM pack, which is useful when
performing program replacement and making many copies of the same program on site.
• Protect function is provided to prevent programs from being read and copied by
unauthorized persons.
Note: The F3FP36-3N is used for both SFC and ladder programs (ladder programs only is available), and supports
neither index modification, scan operation, personal computer link, user log, ROM pack nor program security.
TI 34M6A01-01E
Sequence CPU Modules
Larger Program Capacity, Device Capacity and
Variety of Instructions than for High- end PLCs
Seven modules to meet various needs.
F3SP05
F3SP21
2,048
2,048
25
25
227
227
0.18–0.36
0.18–0.36
Min. 0.36
Min. 0.36
5K
10K
32
32
512
512
512
512
4,096
4,096
—
2,048
2,048
2,048
2,048
2,048
5,120
5,120
—
—
2,048
2,048
512
512
32
32
—
1,024
program execution
F3SP28
F3SP38
F3SP53
4,096
8,192,
4,096
33
33
33
312
312
312
0.045–0.18
0.045–0.18
0.0175– 0.07
Min. 0.18
Min. 0.18
Min. 0.07
30K
120K
56K
1,024
1,024
1,024
2,048
3,072
2,048
2,048
3,072
2,048
16,384
32,768
16,384
2,048
2,048
2,048
8,192
16,384
8,192
9,884
9,884
9,884
16,384
32,768
16,384
32,768
262,144
32,768
8,192
16,384
8,192
1,024
1,024
1,024
256
256
256
1,024
1,024
1,024
*
Capacity in steps of ladder program
** Capacity in steps of sequence function chart (SFC)
*** Total number of timers and counters
output)
F3SP58
F3FP36
8,192
4,096
33
8
312
59
0.0175– 0.07
0.09–0.18
Min. 0.07
Min. 0.18
120K
40K*
1,024
1,024**
3,072
2,048
3,072
2,048
32,768
8,192
2,048
4,096
16,384
8,192
9,884
9,984
32,768
5,120
262,144
27,648
16,384
8,192
1,024
512
256
—
1,024
4,096
RDY
RDY
RUN
RUN
ALM
ALM
ERR
ERR
SP21-0N
SP53-4H
CPU
RDY
RDY
RUN
RUN
ALM
ALM
ERR
ERR
SP28-3N
SP58-6H
CPU
RDY
RUN
PROGR
ALM
ERR
AMMER
SP38-6N
RDY
RUN
ALM
PROGR
PROGRAMMER
PROGRAMMER
ERR
AMMER
FP36-3N
PROGRAMMER
PROGRAMMER
PROGRAMMER
PROGRAMMER
F3SP53-4H
F3SP58-6H
F3SP21-0N
F3SP28-3N
F3SP38-6N
F3FP36-3N
CPU
CPU
CPU
CPU
8
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