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AD7694ARMZ Datasheet(PDF) 16 Page - Analog Devices |
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AD7694ARMZ Datasheet(HTML) 16 Page - Analog Devices |
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16 / 17 page ![]() Data Sheet AD7694 SDO 1 SDO REMAINS LOW IF FURTHER SCK CLOCKS ARE APPLIED WHILE CNV IS LOW. D15 D14 D13 D1 D0 tDIS SCK 1 2 3 14 15 161 tSCK tSCKL tSCKH tHSDO tDSDO CNV CONVERSION ACQUISITION tCONV tCYC ACQUISITION tACQ tEN Figure 24. Serial Interface Timing DIGITAL INTERFACE The AD7694 is compatible with SPI, QSPI, digital hosts, and DSPs, for example, Blackfin® ADSP-BF53x or ADSP-219x. The connection diagram is shown in Figure 25 and the corresponding timing diagram is shown in Figure 24. A rising edge on CNV initiates a conversion and forces SDO to high impedance. When the conversion is complete, the AD7694 enters the acquisition phase and powers down. When CNV goes low, the MSB is output onto SDO. The remaining data bits are clocked by SCK falling edges. The data is valid on both SCK edges. CNV SCK SDO DATA IN CLK CONVERT DIGITAL HOST AD7694 Figure 25. Connection Diagram LAYOUT The printed circuit board that houses the AD7694 should be designed so that the analog and digital sections are separated and confined to certain areas of the board. The pinout of the AD7694 with all its analog signals on the left side and all its digital signals on the right side eases this task. Avoid running digital lines under the device because these couple noise onto the die, unless a ground plane under the AD7694 is used as a shield. Fast switching signals, such as CNV or clocks, should never run near analog signal paths. Crossover of digital and analog signals should be avoided. At least one ground plane should be used. It could be common or split between the digital and analog section. In such a case, it should be joined underneath the AD7694s. The AD7694 voltage reference input REF has a dynamic input impedance and should be decoupled with minimal parasitic inductances. That is done by placing the reference decoupling ceramic capacitor close to, and ideally right up against, the REF and GND pins and by connecting these pins with wide, low impedance traces. Finally, the power supply, VDD, of the AD7694 should be decoupled with a ceramic capacitor, typically 100 nF. This capacitor should be placed close to the AD7694 and connected using short and large traces to provide low impedance paths and reduce the effect of glitches on the power supply lines. EVALUATING THE AD7694 PERFORMANCE Other recommended layouts for the AD7694 are outlined in the evaluation board for the AD7694 (EVAL-AD7694SDZ). The evaluation board package includes a fully assembled and tested evaluation board, documentation, and software for controlling the board from a PC via the EVAL-SDP-CB1Z. Rev. B | Page 15 of 16 |
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