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AN3433 Datasheet(PDF) 22 Page - STMicroelectronics |
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AN3433 Datasheet(HTML) 22 Page - STMicroelectronics |
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22 / 34 page ![]() Tag detection principle AN3433 22/34 Doc ID 019046 Rev 2 Appendix A Tag detection principle The Tag Detection process requires the temporary use of internal resources such as the 13.56 MHz HF oscillator or the DAC which are usually switched off in WFE mode and only turned on during an RF burst emission to determine if tag entered the device operating range. To detect the presence of a tag, the device measures a portion of the device antenna’s current using the DAC (DacLevel) and compares this value to a reference value (CalRef) determined in the same way when the application is initialized. To do this, once the HF oscillator is stabilized, the device emits an RF burst and monitors its antenna current using its internal 64-bit DAC. This result is then compared to a reference value established during the Tag Detection Calibration phase. The device is initially calibrated by the user application in a free-air environment (no tags present) in order to obtain a reference value (CalRef) that corresponds to the basic threshold of its comparator. When a new measurement of the antenna’s current results in a value different from the CalRef value, a tag is probably present in the RF field. To reduce the margin of error for false detections, in addition to comparing the value of the measured antenna current (DacLevel) to the reference value (CalRef), the device checks that the measured value is within a given range: DacDataL < DacLevel < DacDataH Using range limits ensures a stable Tag Detection process. We usually choose: DacDataL = CalRef – 0x08 and DacDataH = CalRef + 0x08 The parameters that define measurement resources, oscillator and DAC setup times or RF burst duration, can be individually adjusted within the Idle command parameters, but they must remain unchanged between the calibration and tag detection periods. We recommend for the HF oscillator and DAC stabilization times (OscStart and DacStart, respectively) using a minimum value of 0x60 that corresponds to a duration of 3 ms (96 * tLFO). |
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