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CS5371 Arkusz danych(PDF) 9 Page - Cirrus Logic

Numer części CS5371
Szczegółowy opis  LOW POWER HIGH PERFORMANCE MODULATORS
Download  22 Pages
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Producent  CIRRUS [Cirrus Logic]
Strona internetowa  http://www.cirrus.com
Logo CIRRUS - Cirrus Logic

CS5371 Arkusz danych(HTML) 9 Page - Cirrus Logic

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CS5371/CS5372
DS255PP2
9
3. MODULATOR PERFORMANCE
Figures 4 and 5 illustrate the spectral performance
of the CS5371/CS5372 modulators when com-
bined with the CS5376 digital filter. The plots
were created from ten averaged 1024 point FFTs.
3.1.
Full Scale Signal Performance
Figure 4 illustrates the full-scale signal perfor-
mance of the CS5371/CS5372 modulators and
CS5376 digital filter using a 31.25 Hz input signal
and a 1000 sps output word rate. The outstanding
full-scale
signal
characteristics
of
the
CS5371/CS5372 modulators are shown, with no
harmonic components exceeding -120 dB. Analy-
sis of this data set yields a signal-to-noise ratio
(SNR) of 124.0 dB and a signal-to-distortion ratio
(SDR) of 119.0 dB. Note that the full-scale signal
peak in Figure 4 shows a slightly reduced ampli-
tude due to spectral smearing associated with the
FFT windowing function, and is a purely digital
phenomenon.
3.2.
Noise Performance
Figure 5 illustrates the noise performance of the
CS5371/CS5372 modulators and CS5376 digital
filter using a 31.25 Hz -24 dB input signal and a
1000 sps output word rate. The outstanding noise
characteristics of the CS5371/CS5372 modulators
are shown, with the averaged noise components
consistently below the -150 dB level. Analysis of
this data set yields a dynamic range of 124.7 dB.
Note that the 0.7 dB variation between the signal-
to-noise calculation in Figure 4 and the dynamic
range calculation in Figure 5 is not modulator de-
pendent and results from jitter in the test signal
generator when producing a full scale output, as ev-
idenced by the skirt surrounding the signal peak be-
low the -140 dB level in Figure 4.
4. SIGNAL INPUTS
The CS5371/CS5372 modulators use a switched
capacitor architecture for the analog signal inputs,
which has increased jitter tolerance relative to con-
tinuous time signal input stages.
4.1.
Differential Inputs - INR+/-, INF+/-
The analog signal inputs are differential and use
four pins: INR+, INR-, INF+, and INF-. The posi-
tive inputs, INR+ and INF+, are connected to the
positive half of the differential signal, while the
negative inputs, INR- and INF-, are connected to
Figure 4. 1024 Point FFT plot with a 31.25 Hz
input at Full Scale, ten averages
-200
-180
-160
-140
-120
-100
-80
-60
-40
-20
0
0
50
100
150
200
250
300
350
400
450
500
Hz
S/N = 124.0 dB
S/D = 119.0 dB
-200
-180
-160
-140
-120
-100
-80
-60
-40
-20
0
0
50
100
150
200
250
300
350
400
450
500
Hz
Dynamic Range = 124.7 dB
Figure 5. 1024 Point FFT plot with a 31.25 Hz
input at -24 dB, ten averages


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