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ADL5202ACPZ-R7 数据表(PDF) 21 Page - Analog Devices |
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ADL5202ACPZ-R7 数据表(HTML) 21 Page - Analog Devices |
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21 / 32 page ![]() Data Sheet ADL5202 Rev. 0 | Page 21 of 32 An alternative narrow-band approach is presented in Figure 59. By designing a narrow band-pass antialiasing filter between the ADL5202 and the target ADC, the output noise of the ADL5202 outside of the intended Nyquist zone can be attenuated, helping to preserve the available SNR of the ADC. In general, the SNR improves by several decibels (dB) when including a reasonable order antialiasing filter. In this example, a low loss 1:3 input transformer is used to match the 150 Ω balanced input of the ADL5202 to a 50 Ω unbalanced source, resulting in minimum insertion loss at the input. Figure 59 is optimized for driving some of the Analog Devices popular unbuffered ADCs, such as the AD9246, AD9640, and AD6655. Table 8 includes antialiasing filter component recommendations for popular IF sampling center frequencies. Inductor L5 works in parallel with the on-chip ADC input capacitance and a portion of the capacitance presented by C4 to form a resonant tank circuit. The resonant tank helps to ensure that the ADC input acts like a real resistance at the target center frequency. In addition, the L6 inductor shorts the ADC inputs at dc, which introduces a zero into the transfer function. The ac coupling capacitors and the bias chokes introduce additional zeros into the transfer function. The final overall frequency response takes on a band-pass characteristic, helping to reject noise outside of the intended Nyquist zone. Table 8 provides initial suggestions for prototyping purposes. Some empirical optimization may be needed to help compensate for actual PCB parasitics. LAYOUT CONSIDERATIONS Each amplifier has two output pins for each polarity, and they are oriented in an alternating fashion. When designing the board, care should be taken to minimize the parasitic capacitance due to the routing that connects the corresponding outputs together. A good practice is to avoid any ground or power plane under this routing region and under the chokes to minimize the parasitic capacitance. L6 50Ω AC 1:3 75Ω 75Ω 1µH 5V 1µH 5V CML C4 4pF 5V 1nF 1nF 1nF L1 L3 L5 L1 L3 L5 1nF DIGITAL INTERFACE 1/2 ADL5202 C2 4pF AD9246 AD9640 AD6655 Figure 59. Narrow-Band IF Sampling Solution for Unbuffered ADC Applications Table 8. Interface Filter Recommendations for Various IF Sampling Frequencies Center Frequency 1 dB Bandwidth L1 C2 L3 C4 L5 L6 96 MHz 27 MHz 68 nH 15 pF 220 nH 15 pF 68 nH 150 nH 140 MHz 31 MHz 47 nH 11 pF 150 nH 11 pF 47 nH 82 nH 170 MHz 25 MHz 39 nH 10 pF 120 nH 10 pF 47 nH 51 nH 211 MHz 40 MHz 30 nH 7 pF 100 nH 7.5 pF 30 nH 43 nH |
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