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UM0934 Datasheet(PDF) 19 Page - STMicroelectronics |
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UM0934 Datasheet(HTML) 19 Page - STMicroelectronics |
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19 / 113 page ![]() UM0934 Physical layer Doc ID 17389 Rev 2 19/113 Equation 1 Table 3 shows some conversion examples: Fine estimation This function provides an estimation of the signal-to-noise ratio for both channels 0 and 1, as detected by the ST7570 at the RX_IN pin. The estimation is performed on the P_sdu payload (304 bits). The estimated ratios are automatically provided through unsolicited indications (CMD_DataIndication, Section 5.3.11). In order to convert from a raw number (“value” as stored in the MIB) to an RMS voltage value expressed in dB, use Equation 2: Equation 2 3.6.2 Demodulation method count For each received PHY frame, the ST7570 provides a statistic of the ways used to demodulate each single bit of the P_SDU payload (304 bits), based on the signal quality. During each bit time, the demodulator returns the received binary symbol on the basis of numerical processing performed on measured data for both tones. If these data are processed independently and a binary symbol is chosen without combining them, an “ASK” counter (“ASK0” if the demodulated bit value is equal to 0, “ASK1” otherwise) is incremented; however, if the bit is returned after a combination of measured data, the “SFSK” counter is incremented. The values of the counters are automatically provided by means of unsolicited indications (CMD_DataIndication, Section 5.3.11). 3.6.3 Receiving gain (PGA) estimation The internal PGA block (refer to [1]) is driven by an automatic control algorithm to find the best gain maximizing the dynamic range of the input signal. The found PGA gain is then written into the MIB object 000Dh (S0, N0, PGA, Section 5.3.14), and automatically provided through unsolicited indications (CMD_DataIndication, Section 5.3.11, Table 3. SNR estimator values conversion Values provided by the ST7570 RMS amplitude [dB µV] Name Value S0 002C8Fh 114.07 N0 002359h 90.49 S1 002B0Ch 110.20 N1 0023F6h 92.06 [] 100 / value V dB VRMS = μ [ ] ( ) 19 10 2 2 log value 64 10 dB SNR − ⋅ ⋅ ⋅ ⋅ = |
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