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AS39513 Fiches technique(PDF) 64 Page - ams AG

No de pièce AS39513
Description  NFC Sensor Tag and Data Logger IC
PDF  108 Pages
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Fabricant  AMSCO [ams AG]
Site Internet  http://www.ams.com
Logo AMSCO - ams AG

AS39513 Fiches technique(HTML) 64 Page - ams AG

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Page 64
ams Datasheet
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[v1-10] 2018-Apr-25
AS39513 − Detailed Description
Memory Lock Bits
The memory lock bits EEPROM pages from addresses 0x460
through 0x47F contain the individual lock status for each
EEPROM block in the Application and Measurement area. As
described above, the AS39513 has an 11-bit memory map
address space. Let the address space for the Application and
Measurement EEPROM be represented by the fields below.
Figure 41:
Address Space for the Application and Measurement EEPROM
For the Application and Memory areas, Address[10] is always 0.
These areas are broken into 256 blocks of four bytes each. The
RFID read and write commands work on a block-by-block basis.
The 8-bit block address is the concatenation: { AGROUP[4:0],
ABLSB[2:0] }. Each block can be individually locked from writing
via the RFID write commands by setting one of the memory lock
bits in the EEPROM. The EEPROM address containing the
memory lock bit for a given block is at the address 0x460 +
AGROUP. The bit index to lock the block is ABLSB. For example
to lock the block containing the memory address 0x13A, for
which AGROUP = 5’b01001, ABLSB = 3’b110, and ABYTE = 2’b10,
the RFID Lock Block command writes a 1 to bit 6 in EEPROM
address 0x469. The RFID Write Block command must check that
the corresponding lock bit is not set before writing to that
block.
The RFID interface can only access the memory lock bits
through the Lock Block command described above. They can
be read through the SPI interface. They can be written through
the SPI interface if the Factory access password has been
entered previously.
Bit
10
9876
5
4
3
2
1
0
Address
0
AGROUP[4:0]
ABLSB[2:0]
ABYTE[1:0]



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