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ADC3561 数据表(PDF) 38 Page - Texas Instruments |
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ADC3561 数据表(HTML) 38 Page - Texas Instruments |
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38 / 85 page ![]() 8.3.4.3 FS/4 Mixing with Real Output In this mode, the output after complex decimation gets mixed with FS/4 (FS = output data rate in this case). Instead of a complex output with the input signal centered around 0 Hz, the output is transmitted as a real output at twice the data rate and the signal is centered around FS/4 (Fout/4) as illustrated in Figure 8-26. In this example, complex decimation by 8 is used. The output data is transmitted as a real output with an output rate of Fout = FS'/4 (FS' = ADC sampling rate). The input signal is now centered around FS/4 (Fout/4) or FS'/16. FS/2 FIN FNCO /8 - FIN + FNCO )6¶ /2 FS/16 -FIN + FNCO + FS/4 )6¶ /2 FS/8 Complex Decimation /8 FS/4 mix Fout/4 mix 0 0 0 Figure 8-26. FS/4 Mixing with real output 8.3.4.4 Numerically Controlled Oscillator (NCO) and Digital Mixer The decimation block is equipped with a 32-bit NCO and a digital mixer to fine tune the frequency placement prior to the digital filtering. The oscillator generates a complex exponential sequence of: ejωn (default) or e–jωn (1) where: frequency (ω) is specified as a signed number by the 32-bit register setting The complex exponential sequence is multiplied with the real input from the ADC to mix the desired carrier to a frequency equal to fIN + fNCO. The NCO frequency can be tuned from –FS/2 to +FS/2 and is processed as a signed, 2s complement number. After programming a new NCO frequency, the MIXER RESTART register bit or SYNC pin has to be toggled for the new frequency to get active. Additionally the ADC356x provides the option via SPI to invert the mixer phase. The NCO frequency setting is set by the 32-bit register value given and calculated as: NCO frequency = 0 to + FS/2: NCO = fNCO × 232 / FS NCO frequency = -FS/2 to 0: NCO = (fNCO + FS) × 232 / FS where: • NCO = NCO register setting (decimal value) • fNCO = Desired NCO frequency (MHz) • FS = ADC sampling rate (MSPS) The NCO programming is further illustrated with this example: • ADC sampling rate FS = 65 MSPS • Input signal fIN = 10 MHz • Desired output frequency fOUT = 0 MHz For this example there are actually four ways to program the NCO and achieve the desired output frequency as shown in Table 8-2. Table 8-2. NCO value calculations example Alias or negative image fNCO NCO Value Mixer Phase Frequency translation for fOUT fIN = –10 MHz fNCO = 10 MHz 660764199 as is fOUT = fIN + fNCO = –10 MHz +10 MHz = 0 MHz fIN = 10 MHz fNCO = –10 MHz 3634203097 fOUT = fIN + fNCO = 10 MHz + (–10 MHz) = 0 MHz fIN = 10 MHz fNCO = 10 MHz 660764199 inverted fOUT = fIN – fNCO = 10 MHz – 10 MHz = 0 MHz fIN = –10 MHz fNCO = –10 MHz 3634203097 fOUT = fIN – fNCO = –10 MHz – (–10 MHz) = 0 MHz ADC3561, ADC3562, ADC3563 SBAS990B – FEBRUARY 2021 – REVISED OCTOBER 2022 www.ti.com 38 Submit Document Feedback Copyright © 2022 Texas Instruments Incorporated Product Folder Links: ADC3561 ADC3562 ADC3563 |
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