SRIX4K-A5T/1GE STMicroelectronics, SRIX4K-A5T/1GE Datasheet - Page 11

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SRIX4K-A5T/1GE

Manufacturer Part Number
SRIX4K-A5T/1GE
Description
Manufacturer
STMicroelectronics
Datasheet

Specifications of SRIX4K-A5T/1GE

Operating Temperature (max)
85C
Operating Temperature Classification
Commercial
Lead Free Status / Rohs Status
Not Compliant
SRIX4K
3.2
3.2.1
3.2.2
Output data transfer from the SRIX4K to the Reader (answer
frame)
The data bits issued by the SRIX4K use retro-modulation. Retro-modulation is obtained by
modifying the SRIX4K current consumption at the antenna (load modulation). The load
modulation causes a variation at the reader antenna by inductive coupling. With appropriate
detector circuitry, the reader is able to pick up information from the SRIX4K. To improve
load-modulation detection, data is transmitted using a BPSK encoded, 847 kHz subcarrier
frequency ƒ
Figure 7.
Character transmission format for answer frame
The character format is the same as for input data transfer
frames are made up of an SOF, data, a CRC and an EOF
transfer, if an error occurs, the reader does not issue an error code to the SRIX4K, but it
should be able to detect it and manage the situation. The data transfer rate is
106 Kbits/second.
Answer start of frame
The SOF described in
Figure 8.
Data Bit to be Transmitted
Generated by the SRIX4K
847kHz BPSK Modulation
ETU
followed by 10 ETUs at logic-0
followed by 2 ETUs at logic-1
s
0
Wave transmitted using BPSK subcarrier modulation
Answer start of frame
b0
to the Reader
as shown in
0
b1
Figure 8
Or
0
b2
Figure
0
b3
is composed of:
During a One-bit Data Transfer Time (1/106kHz)
7, and as specified in the ISO 14443-2 Type B Standard.
b4
0
BPSK Modulation at 847kHz
0
b5
0
b6
0
b7
(Figure
(Figure
0
b8
10). As with an input data
4). The transmitted
0
b9
1
b10
Data transfer
ai07665
1
b11
AI05730
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