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R8-NC3

5-2-55, Minamitsumori, Nishinari-ku, Osaka 557-0063 JAPAN
Phone: +81(6)6659-8201 Fax: 

+81(6)6659-8510  E-mail: [email protected]

EM-9726  P. 5 / 7

DATA DESCRIPTIONS

The DIP SW located at the side of the module switches the unit’s data allocation mode.
In the Data Allocation Mode 1, one (1) word is assigned per module.  The second channel of analog I/O modules cannot be used.  
Max. 16 I/O modules can be connected in this mode.
In the Data Allocation Mode 2, two (2) words are assigned per module regardless of whether the second word area is required 
or not, even for discrete I/O modules that reguire one (1) word.
Max. 32 I/O modules can be connected in this mode.
Each Status data is available when the Ready is “1” (the internal bus in normal condition).  While the Ready is “0,” all of the 
Status data is “0” (the internal bus in abnormal condition).

 

DATA ALLOCATION MODE 1

•   Output Data

The figure below shows the allocation of data sent from 
the power / network module to the master.

0

Module

1

2

3

4

5

6

7

8

9

10

11

12

14

13

15

+2

+4

+6

+8

+10

+12

+14

30

31

+30

0

15

RWr n+0

•   Input Data

The figure below shows the allocation of data sent from 
the master to the power / network module.

RWw n+0

0

Module

1

2

3

4

5

6

7

8

9

10

11

12

14

13

15

+2

+4

+6

+8

+10

+12

+14

30

31

+30

0

15

16 × m (m = cyclic expansion setting) data areas are available for the R8-NC3.
In Data Allocation Mode 1, set Cyclic Expansion two (2).  When Cyclic Expansion setting is 4, data of module address 32 or 
larger is invalid.
Field input data is set in the module’s output data area.  The input data area is also secured though not used for an input 
module.

•   Module Status

RX (n+0) 0 through RX (n+1) 15 indicate that modules are mounted in each slot.

15

0

Module 0
Module 1
Module 2

Module 15

15

0

Module 16
Module 17
Module 18

Module 31

RX(n+0)

RX(n+1)

•   Ready Signal

When cyclic expansion is “2”, RX (n+13) 11 is assigned to Ready signal, which turns to “1” when the internal bus is in normal 
conditions.

Summary of Contents for R8-NC3

Page 1: ...ox 12W output current 1 6 A Excitation supply 24V DC 10 operational current 10A ENVIRONMENT Indoor use When heavy dust or metal particles are present in the air install the unit inside proper housing...

Page 2: ...4 3 2 1 0 9 8 7 6 Baud Rate Setting 0 156 kbps 1 625 kbps 2 2 5 Mbps 3 5 Mbps 4 10 Mbps front DIP SW Data Allocation Mode SW1 DATA ALLOCATION MODE SW1 1 ON 2 OFF Cyclic Expansion SW2 CYCLIC EXPANSION...

Page 3: ...ON OFF OFF ON Unable to receive data addressed to the station ON ON OFF OFF OFF ON OFF BL BL ON Performs the interval timed responses but CRC error found in receiving the refresh data ON OFF BL BL OF...

Page 4: ...nce bond the FE1 terminal to ground Caution FE1 terminal is NOT a protective conductor terminal EXC SUPPLY 24V INTERNAL POWER 5V PC CONFIGURATION JACK WIRING INSTRUCTIONS TENSION CLAMP TERMINAL BLOCK...

Page 5: ...utput Data The figure below shows the allocation of data sent from the power network module to the master 0 Module 1 2 3 4 5 6 7 8 9 10 11 12 14 13 15 2 4 6 8 10 12 14 30 31 30 0 15 RWr n 0 Input Data...

Page 6: ...H1 7_CH1 6_CH2 7_CH2 2 4 6 8 10 12 14 31_CH1 31_CH2 62 0 15 RWw n 0 16 m m cyclic expansion setting data areas are available for the R8 NC3 Field input data is set at the module s output data area The...

Page 7: ...t binary data is used for temperature data With C K temperature unit raw data is multiplied by 10 For example 25 5 C is converted into 255 With F temperature unit the integer section of raw data is di...

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