Mitsubishi Electronics FX3G User Manual

Page of 964
409
FX
3S
/FX
3G
/FX
3GC
/FX
3U
/FX
3UC
 Series
Programming Manual - Basic & Applied Instruction Edition
14 Handy Instruction – FNC 60 to FNC 69
14.6 FNC 65 – STMR / Special Timer
11
FN
C30
-FN
C3
9
R
ota
tion and 
Shi
ft
12
FN
C40-FN
C49
D
ata O
perati
on
13
FNC
50-FNC
59
High-Speed
 
Proc
essing
14
FM
C60-FN
C69
H
andy 
In
struction
15
FN
C70-FN
C79
E
xternal
 F
X
 I/O
 
De
vice
16
FNC
80-FNC
89
External
 FX 
Dev
ice
17
FNC1
00-
FNC10
9
Dat
Transfer 2
18
FNC1
10-
FNC139
Fl
oati
ng Poi
nt
19
FNC14
0-F
N
C
149
Da
ta
 
Operation 2
20
FNC1
50-
FNC159
Pos
itioning 
Control
14.6
FNC 65 – STMR / Special Timer
Outline
This instruction can easily make off-delay timers, one-shot timers and flicker timers.
1. Instruction format
2. Set data
3. Applicable devices
S: "D .b" cannot be indexed with index registers (V and Z).
Explanation of function and operation
1. 16-bit operation (STMR)
The value specified in "m" is handled as the set value of a timer specified in 
, and output to four devices starting
from .
Create a proper program according to the purpose while referring to the example shown below.
Off-delay timer and one-shot timer
When T10 is set to 
, and M0 is set to 
• M0 [
]
: Off-delay timer which turns OFF with delay of the timer set value after the command contact 
turned OFF
• M1 [
+1]
: One-shot timer which turns ON after the command contact turned OFF from ON, and turns OFF 
after the timer set value 
• M2 [
+2]
: Occupied, and can be used for flicker.
• M3 [
+3]
: Occupied.
Operand type
Description
Data type
Used timer number [T0 to T199 (100 ms timer)]
16-bit binary
m
Set value of the timer [1 to 32,767]
16-bit binary
Head bit number to which the set value is output (Four devices are occupied.)
Bit
Oper-
and 
Type
Bit Devices
Word Devices
Others
System User
Digit Specification
System User
Special 
Unit
Index
Con-
stant
Real 
Number
Charac-
ter String
Pointer
X Y M T C S D .b KnX KnY KnM KnS T C D R U \G
V Z Modify K H
E
" "
P
m
S
FNC 65
STMR
Mnemonic
Operation Condition
16-bit Instruction
 7 steps STMR
Mnemonic
Operation Condition
Continuous
Operation
32-bit Instruction
S
1
 ‚
  S
  D
S
1
 ‚
  S
S
2
 ‚
  D
  
D
1
   
S
  
D
1
   
D
FNC 65
STMR
m
Command
input
  
D
1
   
S
  
D
1
   
D
Command
input
FNC 65
STMR
T10
K100
M0
  
D
1
   
D
  
D
1
   
D
  
D
1
   
D
  
D
1
   
D