7: B
INARY
A
RITHMETIC
I
NSTRUCTIONS
7-8
FC6A S
ERIES
MICROS
MART
L
ADDER
P
ROGRAMMING
M
ANUAL
FC9Y-B1726
Repeat Operation in the MUL Instruction
Since the MUL (multiplication) instruction uses two destination devices, the result is stored to destination devices as described
below. Source devices S1 and S2 and destination device D1 can be designated to repeat individually or in combination. When
destination device D1 is not assigned to repeat, the final result is set to destination device D1 and D1+1. When repeat is
designated, consecutive devices as many as the repeat cycles starting with the designated device are used.
Since the repeat operation works similarly on word and integer data, the following examples are described using word data.
Repeat One Source Device
When only S1 (source) is assigned to repeat, the final result is set to destination device D1·D1+1.
• Data Type: Word and Integer
• Data Type: Double Word, Long, and Float
Repeat Destination Device Only
When only D1 (destination) is assigned to repeat, the same result is set to 3 devices starting with D1·D1+1.
• Data Type: Word and Integer
• Data Type: Double Word, Long, and Float
Repeat Two Source Devices
When S1 and S2 (source) are assigned to repeat, the final result is set to destination device D1·D1+1.
• Data Type: Word and Integer
• Data Type: Double Word, Long, and Float
D10
)
0
=
t
a
e
p
e
R
(
1
D
)
3
=
t
a
e
p
e
R
(
1
S
S2 (Repeat = 0)
×
D20
D11
D12
×
×
D20
D20
(D30·D31)
(D30·D31)
D30·D31
I1
REP
3
S1 R
D10
D1 –
D30
S2 –
D20
SOTU
MUL(W)
D12·D13
D10·D11
D14·D15
)
0
=
t
a
e
p
e
R
(
1
D
)
3
=
t
a
e
p
e
R
(
1
S
S2 (Repeat = 0)
×
×
×
(D30·D31)
(D30·D31)
D30·D31
D20·D21
D20·D21
D20·D21
I1
REP
3
S1 R
D10
D1 –
D30
S2 –
D20
SOTU
MUL(D)
D10
)
3
=
t
a
e
p
e
R
(
1
D
)
0
=
t
a
e
p
e
R
(
1
S
S2 (Repeat = 0)
×
D20
D10
D10
×
×
D20
D20
D32·D33
D30·D31
D34·D35
I1
REP
3
S1 –
D10
D1 R
D30
S2 –
D20
SOTU
MUL(W)
D10·D11
D10·D11
D10·D11
)
3
=
t
a
e
p
e
R
(
1
D
)
0
=
t
a
e
p
e
R
(
1
S
S2 (Repeat = 0)
×
×
×
D32·D33
D30·D31
D34·D35
D20·D21
D20·D21
D20·D21
I1
REP
3
S1 –
D10
D1 R
D30
S2 –
D20
SOTU
MUL(D)
D10
)
0
=
t
a
e
p
e
R
(
1
D
)
3
=
t
a
e
p
e
R
(
1
S
S2 (Repeat = 3)
×
D20
D11
D12
×
×
D21
D22
(D30·D31)
(D30·D31)
D30·D31
I1
REP
3
S1 R
D10
D1 –
D30
S2 R
D20
SOTU
MUL(W)
D12·D13
D10·D11
D14·D15
)
0
=
t
a
e
p
e
R
(
1
D
)
3
=
t
a
e
p
e
R
(
1
S
S2 (Repeat = 3)
×
×
×
(D30·D31)
(D30·D31)
D30·D31
D22·D23
D20·D21
D24·D25
I1
REP
3
S1 R
D10
D1 –
D30
S2 R
D20
SOTU
MUL(D)
Summary of Contents for MICROSmart FC6A Series
Page 1: ...B 1726 7 FC6A SERIES Ladder Programming Manual ...
Page 8: ...Preface 7 FC6A SERIES MICROSMART LADDER PROGRAMMING MANUAL FC9Y B1726 ...
Page 32: ...1 OPERATION BASICS 1 20 FC6A SERIES MICROSMART LADDER PROGRAMMING MANUAL FC9Y B1726 ...
Page 96: ...3 INSTRUCTIONS REFERENCE 3 18 FC6A SERIES MICROSMART LADDER PROGRAMMING MANUAL FC9Y B1726 ...
Page 130: ...4 BASIC INSTRUCTIONS 4 34 FC6A SERIES MICROSMART LADDER PROGRAMMING MANUAL FC9Y B1726 ...
Page 192: ...9 SHIFT ROTATE INSTRUCTIONS 9 12 FC6A SERIES MICROSMART LADDER PROGRAMMING MANUAL FC9Y B1726 ...
Page 272: ...12 DISPLAY INSTRUCTIONS 12 24 FC6A SERIES MICROSMART LADDER PROGRAMMING MANUAL FC9Y B1726 ...
Page 284: ...14 REFRESH INSTRUCTIONS 14 6 FC6A SERIES MICROSMART LADDER PROGRAMMING MANUAL FC9Y B1726 ...
Page 502: ...25 DATA LOG INSTRUCTIONS 25 22 FC6A SERIES MICROSMART LADDER PROGRAMMING MANUAL FC9Y B1726 ...
Page 546: ...26 SCRIPT 26 44 FC6A SERIES MICROSMART LADDER PROGRAMMING MANUAL FC9Y B1726 ...
Page 598: ...APPENDIX A 14 FC6A SERIES MICROSMART LADDER PROGRAMMING MANUAL FC9Y B1726 ...