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2. DEVICE RANGE THAT CAN BE SET
2.6 MELSEC-WS
2 - 13
2
DEVICE RA
NGE THA
T
CAN B
E SET
2.6
MELSEC-WS
The device ranges that can be set when selecting
[MELSEC-WS] as the controller type are as follows.
POINT
POINT
POINT
(1) Devices of MELSEC-WS
Only reading is possible for all devices.
(2) Device settings of MELSEC-WS
• Input(I), Output(Q)
• Logic result(LQ), Logic input(LI)
• EFI input(EI)
• EFI output(EQ)
(3) Engineering software for MELSEC-WS and device
representation of GT Designer3
The engineering software for MELSEC-WS and
the device representation of GT Designer3 are
different. Set the device by referring to the
following table.
Device
Setting range
Device No.
representation
Bit
device
Input (I)
I1.1
to
I12.8
Decimal
+Decimal
Output (Q)
Q1.1
to
Q12.8
Logic result (LQ)
LQ0.0 to
LQ3.7
Logic input (LI)
LI0.0
to
LI3.7
Word device bit
Specified bit of the
following word devices
-
W
o
rd device
Data (byte)(D)
D0
to
D99
Decimal
Data (word)(W)
W0
to
W49
EFI input (byte)(EI)
EI110
to
EI233
Decimal
+Decimal
+Decimal
EFI output (byte)(EQ)
EQ10
to
EQ22
Decimal
+Decimal
Logic input (byte)(LD)
LD0
to
LD3
Decimal
Logic input (word)(LW)
LW0
to
LW1
Decimal
Device
name
Input position(1 to 8)
Module number(1 to 12)
Device
name
Bit position(0 to 7)
Byte number(0 to 3)
Device
name
Device number(1 to 3)
Byte number(0 to 3)
EFI number(1 to 2)
Device
GT Designer3
Engineering software for
MELSEC-WS
I
*1
I
.
(1-12(Dec)): Module number
(1-8): Input position
[
].I
: I/O model name
(such as XTIO)
(1-12(Dec)): Module number
(1-8): Input position
Q
*1
Q
.
(1-12(Dec)): Module number
(1-8): Output position
[
].Q
: I/O model name
(such as XTIO)
(1-12(Dec)): Module number
(1-8): Output position
LQ
*1
LQ
.
(0-3): Byte number
(0-7): Bit position
.
: "Result"
(0-3): Byte number
(0-7): Bit position
LI
*1
LI
.
(0-3): Byte number
(0-7): Bit position
[0] .
.
: CPU type (CPU0, CPU1)
(0-3): Byte number
(0-7): Bit position
EI
*1
EI
(1-2): EFI number
(1-3): Device number
(0-3): Byte number
[0].EFI
:
, Byte
: CPU type (CPU0, CPU1)
(1-2): EFI number
(1-3): Device number
(0-3): Byte number
EQ
*1
EQ
(1-2): EFI number
(0-2): Byte number
[0].EFI
:1, Byte
: CPU type (CPU0, CPU1)
(1-2): EFI number
(0-2): Byte number
D
D
(0-99(Dec)): Byte number
RS232 data
(Safety controller to RS232)
W
W
(0-49(Dec)): Word number
Word virtualization of D
device
W0= (D1(Upper bits),
D0(Lower bits))
GOT independent device
(Not available)
LD
LD
(0-3): Byte number
RS232 data
(Safety controller to RS232)
Device
name
EFI number(1 to 3)
Byte number(0 to 2)
Summary of Contents for GOT2000 Series
Page 2: ......
Page 62: ...1 38 1 PREPARATORY PROCEDURES FOR MONITORING 1 6 Checking for Normal Monitoring ...
Page 64: ......
Page 80: ...2 16 2 DEVICE RANGE THAT CAN BE SET 2 6 MELSEC WS ...
Page 246: ...7 26 7 COMPUTER LINK CONNECTION 7 6 Precautions ...
Page 252: ...8 6 8 BUS CONNECTION 8 1 Connectable Model List ...
Page 256: ...8 10 8 BUS CONNECTION 8 2 System Configuration ...
Page 288: ...8 42 8 BUS CONNECTION 8 4 Precautions ...
Page 324: ...9 36 9 MELSECNET H CONNECTION PLC TO PLC NETWORK MELSECNET 10 CONNECTION PLC TO PLC NETWORK ...
Page 416: ......
Page 510: ...15 46 15 SERVO AMPLIFIER CONNECTION 15 7 Precautions ...
Page 518: ...16 8 16 ROBOT CONTROLLER CONNECTION 16 6 Precautions ...
Page 540: ...17 22 17 CNC CONNECTION 17 7 Precautions ...
Page 541: ...MULTIPLE GOT CONNECTIONS 18 GOT MULTI DROP CONNECTION 18 1 ...
Page 542: ......
Page 567: ...MULTI CHANNEL FUNCTION 19 MULTI CHANNEL FUNCTION 19 1 ...
Page 568: ......
Page 599: ...FA TRANSPARENT FUNCTION 20 FA TRANSPARENT FUNCTION 20 1 ...
Page 600: ......
Page 668: ...20 68 20 FA TRANSPARENT FUNCTION 20 7 Precautions ...
Page 670: ...REVISIONS 2 ...
Page 673: ......