Mitsubishi Electric GOT2000 Series Connection Manual page 440

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14 - 8
14.6 Device Range That Can Be Set
(2) Engineering software for SICK and device representation of GT Designer3
The engineering software for SICK and the device representation of GT Designer3 are
different. Set the device by referring to the following table.
Device
*1
(1-12(Dec)): Module number
I
(1-8): Input position
*1
(1-12(Dec)): Module number
Q
(1-8): Output position
*1
LQ
(0-3): Byte number
(0-7): Bit position
*1
(0-3): Byte number
LI
(0-7): Bit position
(1-2): EFI number
*1
EI
(1-3): Device number
(0-3): Byte number
*1
(1-2): EFI number
EQ
(0-2): Byte number
D
(0-99(Dec)): Byte number
(0-49(Dec)): Word number
W
Word virtualization of D device
W0= (D1(Upper bits),
D0(Lower bits))
LD
(0-3): Byte number
(0-1): Word number
LW
Word virtualization of LD device
LW0= (LD1(Upper bits),
LD0(Lower bits))
*1
When the mapping position is changed by the engineering software for SICK, a mismatch occurs between
virtual devices on GOT and SICK safety controller mapping devices.
When mapping is changed, use D devices or LD devices.
GT Designer3
I
.
Q
.
LQ .
LI .
EI
EQ
D
W
LD
LW
Engineering software for SICK
[
].I
: I/O model name
(such as XTIO)
(1-12(Dec)): Module number
(1-8): Input position
[
].Q
: I/O model name
(such as XTIO)
(1-12(Dec)): Module number
(1-8): Output position
.
: "Result"
(0-3): Byte number
(0-7): Bit position
[0] . .
: CPU type(CPU0, CPU1)
(0-3): Byte number
(0-7): Bit position
[0].EFI : ,Byte
: CPU type(CPU0, CPU1)
(1-2): EFI number
(1-3): Device number
(0-3): Byte number
[0].EFI :1,Byte
: CPU type(CPU0, CPU1)
(1-2): EFI number
(0-2): Byte number
RS232 data
(Safety controller to RS232)
GOT independent device
(Not available)
RS232 data
(RS232 to safety controller)
GOT independent device
(Not available)

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