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AD9873JS Datasheet(PDF) 22 Page - Analog Devices |
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AD9873JS Datasheet(HTML) 22 Page - Analog Devices |
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22 / 39 page ![]() REV. 0 AD9873 –22– Digital 8-bit ADC outputs are multiplexed to one 4-bit bus, clocked by a frequency (fMCLK) of four times the sampling rate whereas the 10- and 12-bit ADCs are multiplexed together to one 12-bit bus clocked by fMCLK, which is two times their sampling frequency. CLOCK AND OSCILLATOR CIRCUITRY The AD9873’s internal oscillator generates all sampling clocks from a simple, low-cost, series resonance, fundamental frequency quartz crystal. Figure 2 shows how the quartz crystal is connected between OSC IN (Pin 61) and XTAL (Pin 60) with parallel resonant load capacitors as specified by the crystal manufacturer. The internal oscillator circuitry can also be overdriven by a TTL level clock applied to OSC IN with XTAL left unconnected. fOSC IN = fMCLK × N/M An internal phase locked loop (PLL) generates the DAC sampling frequency fSYSCLK by multiplying OSC IN frequency M times (register address 00h). The MCLK signal (Pin 23) fMCLK is derived by dividing this PLL output frequency with the interpo- lation rate N of the CIC filter stages (register address 01h). fSYSCLK = fOSC IN × M fMCLK = fOSC IN × M/N An external PLL loop filter (Pin 57) consisting of a series resistor and ceramic capacitor (Figure 15, R1 = 1.3 k Ω, C12 = 0.01 µF) is required for stability of the PLL. Also, a shield surrounding these components is recommended to minimize external noise coupling into the PLL’s voltage controlled oscillator input (guard trace connected to AVDD PLL). Figure 1 shows that ADCs are either directly sampled by a low- jitter clock at OSC IN or by a clock that is derived from the PLL output. Operating modes can be selected in register address 08. Sampling the ADCs directly with the OSC IN clock requires MCLK to be programmed to be twice the OSC IN frequency. 5 4 3 2 7 6 9 8 1 11 10 16 15 14 13 18 17 20 19 22 21 12 24 23 26 25 28 27 30 29 76 77 78 79 74 75 72 73 70 71 80 65 66 67 68 63 64 61 62 59 60 69 57 58 55 56 53 54 51 52 PIN 1 IDENTIFIER TOP VIEW (Pins Down) AGND IQ I IN+ I IN– AGND IQ REFT8 REFB8 AGND IQ AVDD IQ DRVDD REF CLK DRGND DGND SO SDELTA0 SDELTA1 DVDD SD CA ENABLE CA DATA CA CLK DVDD OSC OS IN XTAL DGND OSC AGND PLL PLL FILTER AVDD PLL DVDD PLL DGND PLL AVDD Tx Tx+ Tx– DRGND DRVDD (MSB) IF(11) IF(10) IF(9) IF(8) IF(7) IF(6) IF(5) IF(4) IF(3) IF(2) IF(1) IF(0) (MSB) Rx IQ(3) Rx IQ(2) Rx IQ(1) Rx IQ(0) Rx SYNC DRGND DRVDD MLCK DVDD DGND Tx SYNC (MSB) Tx IQ(5) Tx IQ(4) Tx IQ(3) Tx IQ(2) AD9873 AVDD C7 0.1 F C8 0.1 F C9 0.1 F CP2 10 F C4 0.1 F C5 0.1 F C6 0.1 F CP1 10 F C1 0.1 F C2 0.1 F C3 0.1 F C10 20pF C11 20pF R1 1.3k CP3 10 F C12 0.01 F GUARD TRACE C13 0.1 F RSET 10k Figure 2. Basic Connections Diagram |
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