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ST25TB02K Datasheet(PDF) 20 Page - STMicroelectronics

Part # ST25TB02K
Description  13.56 MHz short-range contactless memory chip with 2048-bit EEPROM and anticollision functions
PDF  47 Pages
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Manufacturer  STMICROELECTRONICS [STMicroelectronics]
Direct Link  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

ST25TB02K Datasheet(HTML) 20 Page - STMicroelectronics

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Table 8. Standard anticollision sequence
Step 1
Init:
Send Initiate().
•
If no answer is detected, go to step1.
•
If only 1 answer is detected, select and access the ST25TB02K. After accessing the ST25TB02K,
deselect the tag and go to step1.
•
If a collision (many answers) is detected, go to step2.
Step 2
Slot 0
Send Pcall16().
•
If no answer or collision is detected, go to step3.
•
If 1 answer is detected, store the Chip_ID, Send Select() and go to step3.
Step 3
Slot 1
Send Slot_marker(1).
•
If no answer or collision is detected, go to step4.
•
If 1 answer is detected, store the Chip_ID, Send Select() and go to step4.
Step 4
Slot 2
Send Slot_marker(2).
•
If no answer or collision is detected, go to step5.
•
If 1 answer is detected, store the Chip_ID, Send Select() and go to step5.
Step N
Slop N
Send Slot_marker(3 up to 14) ...
•
If no answer or collision is detected, go to stepN+1.
•
If 1 answer is detected, store the Chip_ID, Send Select() and go to stepN+1.
Step 17 Slot 15
Send Slot_marker(15).
•
If no answer or collision is detected, go to step18.
•
If 1 answer is detected, store the Chip_ID, Send Select() and go to step18.
Step 18 -
All the slots have been generated and the Chip_ID values should be stored into the reader memory. Issue
the Select(Chip_ID) command and access each identified ST25TB02K one by one. After accessing each
ST25TB02K, switch them into Deselected or Deactivated state, depending on the application needs.
•
If collisions were detected between Step2 and Step17, go to Step2.
•
If no collision was detected between Step2 and Step17, go to Step1.
After each Slot_marker() command, there may be no answer, one or several answers from the ST25TB02K
devices. The reader must handle all the cases and store all the Chip_IDs, correctly decoded. At the end of the
anticollision sequence, after Slot_marker(15), the reader can start working with one ST25TB02K by issuing a
Select() command containing the desired Chip_ID. If a collision is detected, the reader has to generate a new
sequence in order to identify all unidentified ST25TB02K devices in the field. The anticollision sequence can stop
when all ST25TB02K devices have been identified.
Table 9 gives an example of anticollision sequence, the cells containing (*) highlight the fact that the related tags
are not yet identified. When the tag is identified, in the table the (*) changes to bold character.
Table 9. Example of an anticollision sequence
Command
Tag1
Tag2
Tag3
Tag4
Tag5
Tag6
Tag7
Tag8
Comment
Chip_ID Chip_ID Chip_ID Chip_ID Chip_ID Chip_ID Chip_ID Chip_ID
READY state
28h(*)
75h(*)
40h(*)
01h(*)
02h(*)
FEh(*)
A9h(*)
7Ch(*)
Each tag gets a random Chip_ID
INITIATE()
40h(*)
13h(*)
3Fh(*)
4Ah(*)
50h(*)
48h(*)
52h(*)
7Ch(*)
Each tag get a new random Chip_ID.
All tags answer: collisions
PCALL16()
45h(*)
12h(*)
30h(*)
43h(*)
55h(*)
43h(*)
53h(*)
73h(*)
All CHIP_SLOT_ NUMBERs get a
new random value
SELECT(30h)
(*)
(*)
(*)30h
(*)
(*)
(*)
(*)
(*)
Slot0: only one answer
SLOT_MARKER(1) (*)
(*)
30h
(*)
(*)
(*)-
(*)-
(*)
Slot1: no answer
SLOT_MARKER(2) (*)
12h(*)
-
(*)
(*)
(*)
(*)
(*)
Slot2: only one answer
SELECT(12h)
(*)
12h
-
(*)
(*)
(*)
(*)
(*)
Tag2 is identified
SLOT_MARKER(3) (*)
-
-
43h(*)
(*)
43h(*)
53h(*)
73h(*)
Slot3: collision
SLOT_MARKER(4) (*)
-
-
(*)
(*)
(*)
(*)
(*)
Slot4: no answer
ST25TB02K
Description of an anticollision sequence
DS11469 - Rev 7
page 20/47



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