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AD9142ABCPZRL 数据表(PDF) 33 Page - Analog Devices |
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AD9142ABCPZRL 数据表(HTML) 33 Page - Analog Devices |
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33 / 73 page ![]() AD9142A Data Sheet Rev. A | Page 32 of 72 DIGITAL DATAPATH Figure 40. Block Diagram of Digital Datapath The block diagram in Figure 40 shows the functionality of the digital datapath. The digital processing includes An input power detection block Three half-band interpolation filters A quadrature modulator consisting of a fine resolution NCO and an fS/4 coarse modulation block An inverse sinc filter A gain and phase and offset adjustment block The interpolation filters accept I and Q data streams and process them as two independent data streams, whereas the quadrature modulator and phase adjustment block accepts I and Q data streams as a quadrature data stream. Therefore, quadrature input data is required when digital modulation and phase adjustment functions are used. INTERPOLATION FILTERS The transmit path contains three interpolation filters. Each of the three interpolation filters provides a 2× increase in output data rate and a low-pass function. The half-band (HB) filters are cas- caded to provide 4× or 8× interpolation ratios. The AD9142A provides three interpolation modes (see Table 6). Each mode offers a different usable signal bandwidth in an operating mode. Which mode to select depends on the required signal bandwidth and the DAC update rate. Refer to Table 6 for the maximum speed and signal bandwidth of each interpolation mode. The usable bandwidth is defined as the frequency band over which the filters have a pass-band ripple of less than ±0.001 dB and a stop band rejection of greater than 85 dB. 2× Interpolation Mode Figure 41 and Figure 42 show the pass-band and all-band filter response for 2× mode. Note that the transition from the transition band to the stop band is much sharper than the tran- sition from the pass band to the transition band. Therefore, when the desired output signal moves out of the defined pass band, the signal image, which is supposed to be suppressed by the stop band, grows faster than the droop of the signal itself due to the degraded pass-band flatness. In cases where the degraded image rejection is acceptable or can be compensated by the analog low-pass filter at the DAC output, it is possible to let the output signal extend beyond the specified usable signal bandwidth. Figure 41. Pass-Band Detail of 2× Mode Figure 42. All-Band Response of 2× Mode INPUT POWER DETECTION AND PROTECTION HB1 HB2 HB3 INV SINC DIGITAL GAIN AND PHASE AND OFFSET ADJUSTMENT COARSE AND FINE MODULATION 0.02 –0.10 –0.08 –0.06 –0.04 –0.02 0 0 0.050.100.150.200.25 0.300.350.400.45 FREQUENCY (Hz) 10 –100 –90 –80 –70 –60 –50 –40 –30 –20 –10 0 00.4 0.2 0.6 0.8 1.0 1.2 1.4 1.6 1.8 2.0 FREQUENCY (Hz) |
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