Mitsubishi Electric AnyWire ASLINK User Manual page 52

Programmable controller
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Address setting example
■Assignment by 2-point bit slave module only
The following shows the areas occupied by each address setting when using the slave module as shown below.
• One 2-point bit input slave module: Address setting "0"
• Two 2-point bit output slave modules: Address setting "0" "2"
• Remote input signal of input slave module
Remote input signal
RX2
The value from 0 to F of the input data bit goes into .
*1 Areas occupied by address 0 of the 2-point slave module: RX20, RX21
• Remote output signal of output slave module
Remote output signal
RY2
The value from 0 to F of the output data bit goes into .
*2 Areas occupied by address 0 of the 2-point slave module: RY20, RY21
*3 Areas occupied by address 2 of the 2-point slave module: RY22, RY23
■Mixed assignment by 2-point bit slave module and 1-point bit slave module
The following shows the areas occupied by each address setting when using the slave module as shown below.
• Two 2-point bit input slave modules: Address setting "0" "3"
• One 1-point bit input slave module: Address setting "2"
• Two 2-point bit output slave modules: Address setting "0" "3"
• Two 1-point bit output slave modules: Address setting "2"
• Remote input signal of input slave module
Remote input signal
RX2
The value from 0 to F of the input data bit goes into .
*1 Areas occupied by address 0 of the 2-point slave module: RX20, RX21
*2 Area occupied by address 2 of the 1-point slave module: RX22
*3 Areas occupied by address 3 of the 2-point slave module: RX23, RX24
• Remote output signal of output slave module
Remote output signal
RY2
The value from 0 to F of the output data bit goes into .
*4 Areas occupied by address 0 of the 2-point slave module: RY20, RY21
*5 Area occupied by address 2 of the 1-point slave module: RY22
*6 Areas occupied by address 3 of the 2-point slave module: RY23, RY24
6 CONFIGURATION
50
6.3 Settings of Slave Module
Bit No. (0 to F)/Address (0 to 15)
F
E
D
C
B
15
14
13
12
11
Bit No. (0 to F)/Address (0 to 15)
F
E
D
C
B
15
14
13
12
11
Bit No. (0 to F)/Address (0 to 15)
F
E
D
C
B
15
14
13
12
11
Bit No. (0 to F)/Address (0 to 15)
F
E
D
C
B
15
14
13
12
11
A
9
8
7
6
10
9
8
7
6
A
9
8
7
6
10
9
8
7
6
A
9
8
7
6
10
9
8
7
6
A
9
8
7
6
10
9
8
7
6
5
4
3
2
1
5
4
3
2
1
5
4
3
2
1
*3
*3
5
4
3
2
1
5
4
3
2
1
*3
*3
*2
5
4
3
2
1
5
4
3
2
1
*6
*6
*5
5
4
3
2
1
0
*1
*1
0
0
*2
*2
0
0
*1
*1
0
0
*4
*4
0

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