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ST25R3916 数据表(PDF) 33 Page - STMicroelectronics |
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ST25R3916 数据表(HTML) 33 Page - STMicroelectronics |
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33 / 157 page ![]() DS12484 Rev 4 33/157 ST25R3916/7 Application information 156 4.2.5 Wake-up mode Asserting the Operation control register bit wu while the other bits are set to 0 puts the ST25R3916/7 into the Wake-up mode, used to perform low power detection of card presence. The ST25R3916/7 features three possibilities, namely capacitive sensor, phase and amplitude measurement. An integrated low power 32 kHz RC oscillator and register configurable Wake-up timer are used to schedule periodic detection. Usually the presence of a card is detected by a so-called polling. In this process the reader field is periodically turned on and the controller checks whether a card is present using RF commands. This procedure consumes a lot of energy since reader field has to be turned on for 5 ms before a command can be issued. Low power detection of card presence is performed by detecting a change in the reader environment, produced by a card. When a change is detected, an interrupt is sent to the controller. As a result, the controller can perform a regular polling loop. In Wake-up mode the ST25R3916/7 periodically performs the configured reader environment measurements and sends an IRQ to the controller when a difference to the configured reference value is detected. Card detection The presence of a card close to the reader antenna coil produces a change of the antenna LC tank signal phase and amplitude. The reader field activation time needed to perform the phase or the amplitude measurement is extremely short (~20 μs) compared to the activation time needed to send a protocol activation command. The power level during the measurement can be lower than that during normal operation as the card does not have to be powered to produce a coupling effect. The emitted power can be reduced by changing the RFO driver resistance. The capacitive sensor detects a change of the parasitic capacitance between the two excitation electrodes. This change in capacitance can be caused by a card antenna or a hand holding the card (see Section 2.2.6: Capacitive sensor). Registers from 32h to 3Eh are dedicated to Wake-up configuration and display. The Wake- up timer control register is the main Wake-up mode configuration register. The timeout period between the successive detections and the measurements which are going to be used are selected in this register. Timeouts in the range from 10 to 800 ms are available, 100 ms being the default value. Registers from 33h to 3Dh configure the possible detection measurements and store the results, four registers are used for each method. An IRQ is sent when the difference between a measured value and reference value is larger than configured threshold value. There are two possibilities how to define the reference value: the ST25R3916/7 can calculate the reference based on previous measurements (auto-averaging) the controller determines the reference and stores it in a register. The first register in the series of four is the Amplitude measurement configuration register. The difference to reference which triggers the IRQ, the method of reference value definition and the weight of last measurement result in case of auto-averaging are defined in this register. The next register is storing the reference value in case the reference is defined by |
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