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Balluff BIS C-6002 - Function Description: Parametering Bytes; Parametering Bytes User-Parameter Bytes

Balluff BIS C-6002
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51
51
english
Example No. 11
Use Mixed Data
Access program
For configuring with
double bit header
and 8-byte buffer
size!
Read data carrier using Program No. 1 (data carrier type with 32 byte block size):
01
Hex
Command designator 21
Hex
02
Hex
Program number 01
Hex
00
Hex
/07
Hex
CT-Bit to 0 (32 byte block size),
set AV-Bit
00
Hex
/07
Hex
Set AA-Bit
01...06
Hex
Enter first 6 bytes of data
00
Hex
/07
Hex
Set AE-Bit
01...06
Hex
Enter the second 6 data bytes
00
Hex
/07
Hex
Invert TO-Bit
01...06
Hex
Copy first 6 data bytes
Process subaddress of the output buffer:
00
Hex
/07
Hex
Invert TI-Bit
... A total of 27 bytes of data are exchanged.
For the remainder of the procedure, see Example 2 on
38.
Dynamic mode is turned off while the Mixed Data Access program is being run.
Host:
1.) Process subaddresses of the output buffer in the
order shown:
BIS C-60_2 Identification System:
2.) Process subaddresses of the input buffer in the
order shown:
3.) Process subaddresses of the input buffer:
4.) Process subaddresses of the output buffer:
Function Description
Examples for protocol sequence
C60_2-019_818217_0806-e.p65
52
english52
Example No. 12
Use Mixed Data
Access program
For configuring with
double bit header
and 8-byte buffer
size!
Write data carrier using Program No. 1 (data carrier type with 32 byte block size):
Function Description
Examples for protocol sequence
01
Hex
Command designator 22
Hex
02
Hex
Program number 01
Hex
00
Hex
/07
Hex
CT-Bit to 0 (32 byte block size),
set AV-Bit
... A total of 27 bytes of data are exchanged.
For the remainder of the procedure, see Example 7 on
44.
Dynamic mode is turned off while the Mixed Data Access program is being run.
Host:
1.) Process subaddresses of the output buffer in
the order shown:
BIS C-60_2 Identification System:
2.) Process subaddresses of the input buffer in the
order shown:
3.) Process subaddresses of the output buffer:
4.) Process subaddresses of the output buffer:
01...06
Hex
Enter first 6 bytes of data
00
Hex
/07
Hex
Invert TI-Bit
00
Hex
/07
Hex
Set AA-Bit, invert TO-Bit
01...06
Hex
Copy the first 6 data bytes
Process subaddress of the input buffer:
00
Hex
/07
Hex
Invert TO-Bit