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ADC12D040CIVS/NOPB 데이터시트(PDF) 20 Page - Texas Instruments

부품명 ADC12D040CIVS/NOPB
상세설명  ADC12D040 Dual 12-Bit, 40 MSPS, 600 mW A/D Converter with Internal/External Reference
PDF  31 Pages
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제조업체  TI2 [Texas Instruments]
홈페이지  https://www.ti.com
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ADC12D040CIVS/NOPB 데이터시트(HTML) 20 Page - Texas Instruments

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ADC12D040
SNAS171E – JUNE 2002 – REVISED MARCH 2013
www.ti.com
To help isolate the pulses at the ADC input from the amplifier output, use RCs at the inputs, as can be seen in
Figure 31 and Figure 32. These components should be placed close to the ADC inputs because the input pins of
the ADC is the most sensitive part of the system and this is the last opportunity to filter that input.
For Nyquist applications the RC pole should be at the ADC sample rate. The ADC input capacitance in the
sample mode should be considered when setting the RC pole. Setting the pole in this manner will provide best
SNR performance.
To obtain best SINAD and ENOB performance, reduce the RC time constant until SNR and THD are numerically
equal to each other. To obtain best distortion and SFDR performance, eliminate the RC altogether.
For undersampling applications, RC pole should be set at about 1.5 to 2 times the maximum input frequency to
maintain a linear delay response.
Note that the ADC12DL040 is not designed to operate with single-ended inputs. However, doing so is possible if
the degraded performance is acceptable. See Single-Ended Operation
Figure 31 shows a narrow band application with a transformer used to convert single-ended input signals to
differential. Figure 32 shows the use of a fully differential amplifier for single-ended to differential conversion.
Figure 31. Application Circuit using Transformer or Differential Op-Amp Drive Circuit
20
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Product Folder Links: ADC12D040



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