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AD7699 датащи(PDF) 17 Page - Analog Devices |
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AD7699 датащи(HTML) 17 Page - Analog Devices |
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17 / 28 page ![]() AD7699 Rev. 0 | Page 17 of 28 GND COM CH0+ CH3+ CH1+ CH2+ CH4+ CH5+ CH6+ CH7+ CH0+ CH3+ CH1+ CH2+ CH4+ CH5+ CH6+ CH7+ COM– GND COM IN1 IN0 IN2 IN3 IN4 IN5 IN6 IN7 IN1 IN0 IN2 IN3 IN4 IN5 IN6 IN7 IN1 IN0 IN2 IN3 IN4 IN5 IN6 IN7 IN1 IN0 IN2 IN3 IN4 IN5 IN6 IN7 A—8 CHANNELS, SINGLE ENDED B—8 CHANNELS, COMMON REFERENCE GND COM CH0+ (–) CH1+ (–) CH2+ (–) CH3+ (–) CH0– (+) CH1– (+) CH0+ (–) CH1+ (–) CH0– (+) CH1– (+) CH2– (+) CH3– (+) C—4 CHANNELS, DIFFERENTIAL GND COM CH2+ CH3+ CH4+ CH5+ D—COMBINATION COM– Figure 31. Multiplexed Analog Input Configurations The analog inputs can be configured as • Figure 31A, single-ended referenced to system ground; CFG[12:10] = 1112. • Figure 31B, bipolar differential with a common reference point; COM = VREF/2; CFG[12:10] = 0102. Unipolar differential with COM connected to a ground sense; CFG[12:10] = 1102. • Figure 31C, bipolar differential pairs with INx− referenced to VREF/2; CFG[12:10] = 00X2. Unipolar differential pairs with INx− referenced to a ground sense; CFG[12:10] = 10X2. In this configuration, the INx+ is identified by the channel in CFG[9:7]. For example, for IN0 = IN1+ and IN1 = IN1−, CFG[9:7] = 0002; for IN1 = IN1+ and IN0 = IN1−, CFG[9:7] = 0012. • Figure 31D, inputs configured in any of the above combinations (showing that the AD7699 can be configured dynamically). Sequencer The AD7699 includes a channel sequencer useful for scanning channels in a IN0 to IN[7:0] fashion. Channels are scanned as singles or pairs, with or without the temperature sensor, after the last channel is sequenced. The sequencer starts with IN0 and finishes with IN[7:0] set in CFG[9:7]. For paired channels, the channels are paired depending on the last channel set in CFG[9:7]. Note that the channel pairs are always paired as IN (even) = INx+ and IN (odd) = INx− regardless of CFG[7]. To enable the sequencer, CFG[2:1] are written to for initializing the sequencer. After CFG[13:0] are updated, DIN must be held low while reading data out (at least for Bit 13), or the CFG register begins updating again. While operating in a sequence, the CFG register can be changed by writing 012 to CFG[2:1]. However, if changing CFG11 (paired or single channel) or CFG[9:7] (last channel in sequence), the sequence reinitializes and converts IN0 (or IN1) after CFG is updated. Examples Bit[13], Bits[6:3], and Bit 0 are configured for the input and sequencer. As a first example, scan all IN[7:0] referenced to COM = GND with the temperature sensor. 13 12 11 10 9 8 7 6 5 4 3 2 1 0 CFG INCC INx BW REF SEQ RB 1 1 0 1 1 1 1 0 As a second example, scan three paired channels without the temperature sensor and referenced to VREF/2. 13 12 11 10 9 8 7 6 5 4 3 2 1 0 CFG INCC INx BW REF SEQ RB 0 0 X1 1 0 X1 1 1 1 X = don’t care. Source Resistance When the source impedance of the driving circuit is low, the AD7699 can be driven directly. Large source impedances signifi- cantly affect the ac performance, especially total harmonic distortion (THD). The dc performances are less sensitive to the input impedance. The maximum source impedance depends on the amount of THD that can be tolerated. The THD degrades as a function of the source impedance and the maximum input frequency. |
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