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CS5321 数据表(PDF) 22 Page - Cirrus Logic |
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CS5321 数据表(HTML) 22 Page - Cirrus Logic |
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22 / 36 page ![]() CS5321/22 22 DS454F2 2.8 Performance Figure 22, 23 and 24 illustrate the spectral perfor- mance of the CS5321/22 and chipset when operat- ing from a 1.024 MHz master clock. Ten 1024 point FFTs were averaged to produce the plots. Figure 22 illustrates the chip set with a 100 Hz, -20 dB input signal. The sample rate was set at 1 kHz. Dynamic range is 122 dB. The dynamic range calculated by the test soft-ware is reduced somewhat in Figures 23 and 24 because of jitter in the signal test oscillator. Jitter in the 100 Hz signal source is interpreted by the signal processing software to be increased noise. The choice of master clock frequency will affect performance. The CS5321 will exhibit the best Sig- nal to Distortion performance with slower modula- tor sampling clock rates as slower sample rates allow more time for amplifier settling. For lowest offset drift, the CS5321 should be oper- ated with MCLK = 1.024 MHz and HBR = 1. Slow- er modulator sampling clock rates will exhibit more offset drift. Changing MCLK to 512 kHz (HBR = 1) or changing HBR to zero (MCLK = 1.024 MHz) will cause the drift rate to double. Off- set drift is not linear over temperature so it is diffi- cult to specify an exact drift rate. Offset drift characteristics vary from part to part and will vary as the power supply voltages vary. Therefore, if the CS5321 is to be used in precision dc measurement applications where offset drift is to be minimized, the power supplies should be well regulated. The CS5321 will exhibit about 6 ppm/°C of offset drift with MCLK = 1 and HBR = 1. Gain drift of the CS5321 itself is about 5 ppm/°C and is not affected by either modulator sample rate or by power supply variation. Figure 22. 1024 Point FFT Plot with -20 dB Input, 100 Hz Input, ten averages D yna m ic R ange = 1 22.0 dB HB R = 1 OF S T = 0 LP W R = 0 0 500 0 -20 -40 -60 -80 -100 -120 -140 -160 -180 Figure 23. 1024 Point FFT Plot with Full Scale Input, 100 Hz Input, HBR = 1, ten averages S /D = 11 6 .0 dB S /N = 11 8 .4 dB S /N+ D = 11 4 .2 d B HB R = 1 OF S T = 0 LP W R = 0 0 500 0 -20 -40 -60 -80 -100 -120 -140 -160 -180 see text Figure 24. 1024 Point FFT Plot with Full Scale Input, 100 Hz Input, HBR = 0, ten averages 0 500 0 -20 -40 -60 -80 -100 -120 -140 -160 -180 S /D = 12 2 .7 d B S /N = 11 7 .1 d B S /N + D = 11 6 .4 d B HB R = 0 OF S T = 0 LP W R = 0 see text |
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