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AD7699 датащи(PDF) 24 Page - Analog Devices |
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AD7699 датащи(HTML) 24 Page - Analog Devices |
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24 / 28 page ![]() AD7949 Rev. A | Page 24 of 28 READ/WRITE SPANNING CONVERSION WITH A BUSY INDICATOR This mode is used when the AD7949 is connected to any host using an SPI, serial port, or FPGA with an interrupt input. The connection diagram is shown in Figure 35, and the correspon- ding timing is given in Figure 36. For SPI, the host should use CPHA = CPOL = 1. Reading/writing spanning conversion is shown, which covers all three modes detailed in the Digital Interface section. A rising edge on CNV initiates a conversion, forces SDO to high impedance, and ignores data present on DIN. After a conversion is initiated, it continues until completion irrespective of the state of CNV. CNV must be returned low before the safe data transfer time, tDATA, and then held low beyond the conversion time, tCONV, to generate the busy signal indicator. When the conversion is complete, SDO transitions from high impedance to low with a pull-up to VIO, which can be used to interrupt the host to begin data transfer. After the conversion is complete, the AD7949 enters the acquisition phase and powers down. The host must enable the MSB of CFG at this time (if necessary) to begin the CFG update. While CNV is low, both a CFG update and a data readback take place. The first 14 SCK rising edges are used to update the CFG, and the first 14 SCK falling edges clock out the conversion results starting with the MSB. The restriction for both configuring and reading is that they both occur before the tDATA time elapses for the next conversion. All 14 bits of CFG[13:0] must be written or they are ignored. Also, if the 14-bit conversion result is not read back before tDATA elapses, it is lost. The SDO data is valid on both SCK edges. Although the rising edge can be used to capture the data, a digital host using the SCK falling edge allows a faster reading rate, provided it has an acceptable hold time. After the optional 14th (or 28th) SCK falling edge or when CNV goes high (whichever occurs first), SDO returns to high impedance. If CFG readback is enabled, the CFG associated with the conversion result (n − 1) is read back MSB first following the LSB of the conversion result. A total of 29 SCK falling edges is required to return SDO to high impedance if this is enabled. AD7949 MISO MOSI SCK SS SDO VIO FOR SPI USE CPHA = 1, CPOL = 1. SCK CNV DIN DIGITAL HOST IRQ Figure 35. Connection Diagram for the AD7949 with a Busy Indicator SCK ACQUISITION (n) ACQUISITION (n + 1) CNV DIN SDO MSB MSB – 1 1 2 BEGIN DATA (n – 1) BEIGN CFG (n + 1) CFG MSB LSB + 1 LSB 13 13 SEE NOTE SEE NOTE 14 14 15/ 29 15/ 29 CONVERSION (n) CONVERSION (n – 1) (QUIET TIME) END DATA (n – 2) END DATA (n – 1) END CFG (n + 1) END CFG (n) X XX X X X tDATA UPDATE (n + 1) CFG/SDO LSB + 1 LSB CONVERSION (n – 1) (QUIET TIME) UPDATE (n) CFG/SDO tCYC tACQ tHDIN tHSDO tDSDO tSDIN tDATA tCONV tCNVH tDIS tDIS tDIS tEN tEN tEN CFG MSB –1 NOTES: 1. THE LSB IS FOR CONVERSION RESULTS OR THE CONFIGURATION REGISTER CFG (n – 1) IF 16 SCK FALLING EDGES = LSB OF CONVERSION RESULTS. 30 SCK FALLING EDGES = LSB OF CONFIGURATION REGISTER. ON THE 17TH OR 31st SCK FALLING EDGE, SDO IS DRIVEN TO HIGH IMPENDANCE. OTHERWISE, THE LSB REMAINS ACTIVE UNTIL THE BUSY INDICATOR IS DRIVEN LOW. Figure 36. Serial Interface Timing for the AD7949 with a Busy Indicator |
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