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ADPD103 датащи(PDF) 32 Page - Analog Devices |
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ADPD103 датащи(HTML) 32 Page - Analog Devices |
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32 / 53 page ![]() Data Sheet ADPD103 Rev. B | Page 31 of 52 Double-sample pair mode is another way to sample. In this mode, there are two negative sample regions and one long positive sample region (see Figure 27 and Figure 28). To use double-sample pair mode, write 0x0 to Register 0x5A, Bit 5 for Time Slot A, or Bit 6 for Time Slot B. The first negative sample region starts at SLOTx_AFE_OFFSET + 9 and its duration is set by SLOTx_AFE_WIDTH. The positive sample region starts at SLOTx_AFE_OFFSET + 9+ SLOTx_AFE_WIDTH and its duration is twice the SLOTx_AFE_WIDTH.After this, there is another negative sample region that starts at SLOTx_AFE_OFFSET + 9+ 3 × SLOTx_AFE_WIDTH, and its duration is SLOTx_AFE_ WIDTH. Set the timing such that both of the negative sample regions fall in the flat (dark) portion of the LED response and the positive sample region falls in the pulsed portion of the LED response. Placing the LED pulse offset, SLOTx_LED_OFFSET at the beginning of SLOTx_AFE_OFFSET + 9 + SLOTx_AFE_ WIDTH achieves this timing. The output is calculated by summing the response of all the regions in a negative/positive/ negative manner. The double-sample pair mode is useful for cases when the background light is not constant because it has better background rejection, but it also uses more power than single- sample pair mode. Sample Timing Modes There are two options for timing the sample regions: gapped mode and continuous mode. In gapped timing mode, there is a space between the negative and positive sample regions. The width of this region is specified by SLOTA_AFE_FOFFSET for Time Slot A and SLOTB_AFE_ FOFFSET for Time Slot B in microseconds. To enable this feature, write 0x1 to Register 0x5A, Bit 7. This bit enables gapped timing for the time slot (or time slots) that are in digital integrate mode. This mode is helpful when there are unwanted transients in the LED response that must be ignored for an accurate output. If there are no concerns about LED response transients, select continuous timing mode. In this mode, there is no space between the negative and positive sample regions. Write 0x0 to Register 0x5A, Bit 7 for continuous timing of the sample regions. Both gapped and continuous sample timing modes can be used with single-sample pair or double-sample pair mode. Some example timing diagrams are shown in Figure 27, Figure 28, Figure 29, and Figure 30. Background Values In digital integrate mode, the digital integration background value, DI_BACKGROUND, or dark values are also stored and available as output data. This is in addition to the output value during the LED pulse, DI_OUTPUT, which has the dark value subtracted. DI_BACKGROUND is the sum of the negative region samples. To include these values in the FIFO, set Register 0x11, Bits[4:2] for Time Slot A, and Register 0x11, Bits[8:6] for Time Slot B. For 16-bit data, set this value to 0x3; for 32-bit data, set this value to 0x04. These settings are also available through the data registers; Register 0x65, Register 0x71, and Register 0x75 for Time Slot A, and Register 0x69, Register 0x79, and Register 0x7D for Time Slot B. It is recommended that the channel offsets (Register 0x18 to Register 0x21) be set to 0x1F00 when including the background values in the FIFO in digital integration mode. These channel offsets do not affect the sample values, but do provide more headroom for the background values. Saturation Detection in Digital Integrate Mode In normal operation, when using the band-pass filter and the integrator, the ADC almost always saturates before the TIA. Unlike in normal operation, saturation of the TIA or the ADC cannot be detected solely by looking at the signal value where the signal value is the positive sample region minus the reference region in digital integrate mode. This is because the integrated value does not by itself contain any information indicating if one of the ADC conversions during the integration period exceeded the ADC output range. As a result, the real- time output may have saturated only for a fraction of theADC conversions within a sample and the final accumulated sum may not reflect this. To detect TIA saturation in digital integration mode, both the background values, DI_BACKGROUND, and the signal values, DI_OUTPUT, must be collected. Refer to the Background Values section for the correct settings for Register 0x11 that provide these values. For single-sample pair mode, saturation has occurred when (DI_OUTPUT/(min(LED_WIDTH, AFE_WIDTH)) + DI_BACKGROUND/AFE_WIDTH)/NUM_PULSES > 0x3FFF For double-sample pair mode, saturation has occurred when (DI_OUTPUT/(min(LED_WIDTH, 2 × AFE_WIDTH)) + DI_BACKGROUND/(2 × AFE_WIDTH))/NUM_PULSES > 0x3FFF |
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