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AD6620S/PCB 数据表(PDF) 44 Page - Analog Devices |
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AD6620S/PCB 数据表(HTML) 44 Page - Analog Devices |
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44 / 44 page ![]() –44– AD6620 REV. A A DSP is then used to perform the demodulation of the digital channel. This has the advantage of allowing for in-system con- figuration options and can even allow for improved modulation techniques to be applied in the future. This assumes that the AD6600 and the circuitry on its front end are compatible with the modulation standard to be used. For more information on using the AD6600 and AD6620 in a Single Carrier application, refer to Analog Devices’ Application note AN-502. Using the AD6620 in a Wideband System The AD6620 is fully capable of being utilized in a wide-band architecture system where A/Ds such as the AD6640 or the AD9042 usually run at higher sample rates than those typically found in a narrow-band system. A correspondingly wider band can then be digitized. The digitization of this wide bandwidth allows many more channels to be digitized using the same A/D and IF circuitry. The core configuration of such a system is shown in Figure 61. The AD6640 and the AD6620 are both designed to run as fast as 67 MHz. In these applications the AD6620 will be used to process only one channel and will process the data at the A/D sample rate. Additional channels can be processed by taking the AD6640 high speed data stream to additional AD6620s. Each AD6620 can then be tuned to a different channel. The AD6620 provides a great deal of selectivity by mixing down a channel of interest as in the narrow-band case and filtering the out-of-band noise and adjacent channels. Unlike the narrow- band solutions it is much more difficult to place the spurious content out of the band of interest because more of this band- width is used due to the larger number of carrier channels. The aliased spurs of one channel are likely to fold back on another 80-Lead Terminal Plastic Quad Flatpack (PQFP) (S-80A) SEATING PLANE 0.134 (3.40) MAX 0.041 (1.03) 0.029 (0.73) 0.004 (0.10) MAX 0.120 (3.05) 0.100 (2.55) 0.010 (0.25) MIN 0.015 (0.38) 0.009 (0.22) 0.690 (17.45) 0.667 (16.95) 0.555 (14.10) 0.547 (13.90) 1 20 21 41 40 60 61 80 0.486 (12.35) BSC TOP VIEW (PINS DOWN) 0.026 (0.65) BSC OUTLINE DIMENSIONS Dimensions shown in inches and (mm). CLK DIN AD6620 #1 SERIAL I/O AIN ENCODE CLOCK CLK DIN AD6620 #2 SERIAL I/O CLK DIN AD6620 #3 SERIAL I/O CLK DIN AD6620 #4 SERIAL I/O DSP ARRAY LATCH AD6640 AD6644 Figure 61. Implementation of a Multicarrier Receiver channel. This places a greater requirement on the Spurious Free Dynamic Range (SFDR) of the A/D than in the narrow-band case. The SFDR is then usually the limiting factor of the wide- band system. Provided that the A/D has sufficient SFDR for the air interface requirements, the AD6620 can use process gain, as in the narrow- band case, by filtering the out-of-band noise and adjacent channel power. This increases the SNR of the digital data stream. As in the Narrow-band System a DSP is then used to demodu- late the digital data. The same advantages of flexibility exist in the wide-band case as they did in the narrow-band case. Future improvements in demodulation algorithms can be implemented in the receiver, provided that the front end hardware is compat- ible with the desired modulation standard. |
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