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AN3433 датащи(PDF) 14 Page - STMicroelectronics

номер детали AN3433
подробное описание детали  Optimizing wakeup time and power consumption in CR95HF and STRFNFCA devices
PDF  34 Pages
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производитель  STMICROELECTRONICS [STMicroelectronics]
домашняя страница  http://www.st.com
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AN3433 датащи(HTML) 14 Page - STMicroelectronics

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Management of CR95HF or STRFNFCA activity
AN3433
14/34
Doc ID 019046 Rev 2
Note:
Bytes 4 to 9 should be used as shown in the examples in Section 2.3: Idle command
parameters.
Note that the MaxSleep value is coded on the 5 least significant bits, thus:
0x00 < MaxSleep < 0x1F.
All the previously described command parameters must be chosen accordingly for the initial
tag detection calibration when setting up the CR95HF or STRFNFCA.
Their value will impact tag detection efficiency and CR95HF or STRFNFCA power
consumption during Tag Detection periods.
2.7
Tag detection calibration procedure
The Idle command allows the use of a tag detection as a wakeup event. Certain parameters
of the Idle command are dedicated to setting the conditions of a tag detection sequence.
During the tag detection sequence, the CR95HF or STRFNFCA regularly emits RF bursts
and measures the current in the antenna driver IDRIVE using the internal 6-bit DAC.
When a tag enters the device antenna RF operating volume, it modifies the antenna loading
characteristics and induces a change in IDRIVE, and consequently, the DAC data register
reports a new value.
This value is then compared to the reference value established during the tag detection
calibration process. This enables the device to decide if a tag has entered or not its
operating volume.
The reference value (DacDataRef) is established during a tag detection calibration process
using the device application setting with no tag in its environment.
The calibration process consists in executing a tag detection sequence using a well-known
configuration, with no tag within the antenna RF operating volume, to determine a specific
reference value (DacDataRef) that will be reused by the host to define the tag detection
parameters (DacDataL and DacDataH).
During the calibration process, DacDataL is forced to 0x00 and the software successively
varies the DacDataH value from its maximum value (0xFE) to its minimum value (0x00). At
the end of the calibration process, DacDataRef will correspond to the value of DacDataH for
which the wakeup event switches from timeout (no tag in the RF field) to tag detected.
To avoid too much sensitivity of the tag detection process, we recommend using a guard
band. This value corresponds to 2 DAC steps (0x08).
Recommended guard band value:
DacDataL = DacDataRef – Guard and DacDataH = DacDataRef + Guard
The parameters used to define the tag detection calibration sequence (clocking, set-up time,
burst duration, etc.) must be the same as those used for the future tag detection sequences.
When executing a tag detection sequence, the device compares the DAC data register value
to the DAC Data parameter values (DacDataL and DacDataH) included in the Idle
command. The device will exit WFE mode through a Tag Detection event if the DAC data
register value is greater than the DAC Data parameter high value (DacDataH) or less than
the DAC Data parameter low value (DacDataL). Otherwise, it will return to Ready state after
a timeout.



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