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AD7762/ Datasheet(PDF) 21 Page - Analog Devices |
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AD7762/ Datasheet(HTML) 21 Page - Analog Devices |
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21 / 23 page ![]() Data Sheet AD7767 DRIVING THE AD7767 analog.com Rev. D | 21 of 23 ANTIALIASING The AD7767/AD7767-1/AD7767-2 sample the analog input at a maximum rate of 1.024 MHz. The on-board digital filter provides up to 100 dB attenuation for any possible aliasing frequency in the range from the beginning of the filter stop band (0.547 × ODR) to where the image of the digital filter pass band occurs. This occurs at MCLK minus the filter stop band (MCLK − 0.547 × ODR), as shown in Figure 42. Figure 42. AD7767/AD7767-1/AD7767 Spectrum Table 9 shows the attenuation achieved by various orders of front-end antialias filters prior to the signal entering the AD7767/ AD7767-1/AD7767-2 at the image of the digital filter stop band, which is 1.024 MHz − 0.547 × ODR. Table 9. Antialias Filter Order, Attenuation at at First Image Point Model Filter Order Attenuation at 1.024 MHz – 0.547 × ODR AD7767 First 27 dB Second 50 dB Third 70 dB AD7767-1 First 33 dB Second 62 dB Third 89 dB AD7767-2 First 38 dB Second 74 dB Third 110 dB The AD7764 and AD7765 ∑-∆ devices are available to customers that require extra antialias protection. These devices sample the signal internally at a rate of 20 MHz to achieve up to a maximum of 156 kHz or 312 kHz output data rate. This means that the first alias point of these devices when run at the maximum speeds is 19.921 MHz and 19.843 MHz, respectively. POWER DISSIPATION The AD7767/AD7767-1/AD7767-2 offer exceptional performance at ultralow power. Figure 43, Figure 44, and Figure 45 show how the current consumption of the AD7767/AD7767-1/ AD7767-2 scales with the MCLK frequency applied to the device. Both the digital and analog currents scale as the MCLK frequency is reduced. The actual throughput equals the MCLK frequency applied divided by the decimation rate employed by the device in use. For instance, operating the AD7767 device with an MCLK of 800 kHz results in an output data rate of 100 kHz due to the decimate-by-8 filtering. Figure 43. AD7767 Current vs. MCLK Frequency Figure 44. AD7767-1 Current vs. MCLK Frequency Figure 45. AD7767-2 Current vs. MCLK Frequency |
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