參數(shù)資料
型號: AD7872KR
廠商: ANALOG DEVICES INC
元件分類: ADC
英文描述: LC2MOS Complete 14-Bit, Sampling ADCs
中文描述: 1-CH 14-BIT SUCCESSIVE APPROXIMATION ADC, SERIAL ACCESS, PDSO16
封裝: SOIC-16
文件頁數(shù): 10/16頁
文件大小: 344K
代理商: AD7872KR
AD7871/AD7872
–10–
REV. D
E ffective Number of Bits
T he formula given in Equation 1 relates the SNR to the number
of bits. Rewriting the formula, as in Equation 2, it is possible to
get a measure of performance expressed in effective number of
bits (N).
N
=
SNR
±1.76
T he effective number of bits for a device can be calculated di-
rectly from its measured SNR. Figure 14 shows a typical plot of
effective number of bits versus frequency for the AD7871/
AD7872 with a sampling frequency of 60 kHz.
6.02
(2)
Figure 14. Effective Number of Bits vs. Frequency
Harmonic Distortion
Harmonic Distortion is the ratio of the rms sum of harmonics to
the fundamental. For the AD7871/AD7872, T otal Harmonic
Distortion (T HD) is defined as
V
22
+
V
32
+
V
42
+
V
52
+
V
62
THD
(
dB
) = 20
log
where V
1
is the rms amplitude of the fundamental and V
2
, V
3
,
V
4
, V
5
and V
6
are the rms amplitudes of the second through the
sixth harmonic. T he T HD is also derived from the FFT plot of
the ADC output spectrum. Figure 15 shows how the T HD var-
ies with input frequency.
Figure 15. Total Harmonic Distortion vs. Frequency
Intermodulation Distortion
With inputs consisting of sine waves at two frequencies, fa and
fb, any active device with nonlinearities will create distortion
products at sum and difference frequencies of mfa
±
nfb where
m, n = 0, 1,
2,
3, etc. Intermodulation terms are those for which
neither m nor n are equal to zero. For example, the second or-
der terms include (fa+fb) and (fa–fb), while the third order
terms include (2fa+fb), (2fa–fb), (fa+2fb) and (fa–2fb).
DY NAMIC SPE CIFICAT IONS
T he AD7871/AD7872 is specified and tested for dynamic per-
formance specifications as well as traditional dc specifications
such as Integral and Differential Nonlinearity. T hese ac specifi-
cations are required for signal processing applications such as
Speech Recognition, Spectrum Analysis and High Speed
Modems. T hese applications require information on the effects
on the spectral content of the input signal. Hence, the param-
eters for which the AD7871/AD7872 is specified include SNR,
Harmonic Distortion, Intermodulation Distortion and Peak
Harmonics. T hese terms are discussed in more detail in the fol-
lowing sections.
Signal-to-Noise Ratio (SNR)
SNR is the measured signal-to-noise ratio at the output of the
ADC. T he signal is the rms magnitude of the fundamental.
Noise is the rms sum of all the nonfundamental signals up to
half the sampling frequency (fs/2) excluding dc. SNR is depen-
dent upon the number of quantization levels used in the digiti-
zation process; the more levels, the smaller the quantization
noise. T he theoretical signal to noise ratio for a sine wave input
is given by:
SNR
(
dB
)
=
(
6
.02
N
+ 1.76)
where
N
is the number of bits in the ADC. T hus for an ideal
14-bit converter, SNR = 86 dB.
T he output spectrum from the ADC is evaluated by applying a
sine wave signal of very low distortion to the V
IN
input, which is
sampled at an 83 kHz sampling rate. A Fast Fourier T ransform
(FFT ) plot is generated from which the SNR data can be ob-
tained. Figure 13 shows a typical 2048 point FFT plot of the
AD7871/AD7872, with an input signal of 10 kHz and a sam-
pling frequency of 83 kHz. T he SNR obtained from this graph
is
80 dB. It should be noted that the harmonics are included when
calculating the SNR.
(1)
Figure 13. Fast Fourier Transform Plot
V
1
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