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ADS5520IPAPR датащи(PDF) 27 Page - Texas Instruments

номер детали ADS5520IPAPR
подробное описание детали  12-Bit, 125 MSPS Analog-To-Digital Converter
PDF  38 Pages
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производитель  TI1 [Texas Instruments]
домашняя страница  http://www.ti.com
Logo TI1 - Texas Instruments

ADS5520IPAPR датащи(HTML) 27 Page - Texas Instruments

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0.01
µF
0.01
µF
CLKP
CLKM
Square Wave
or Sine Wave
(3V
PP)
ADS5520
0.01
µF
CLKP
CLKM
0.01
µF
Differential Square Wave
or Sine Wave
(3V
PP)
ADS5520
100
95
90
85
80
75
70
65
60
Clock Duty Cycle
− %
35
40
50
45
55
65
60
SFDR
SNR
f
IN = 20MHz
ADS5520
www.ti.com....................................................................................................................................................... SBAS310F – MAY 2004 – REVISED OCTOBER 2008
Figure 46. AC-Coupled, Single-Ended Clock Input
The ADS5520 clock input can also be driven differentially, reducing susceptibility to common-mode noise. In this
case, it is best to connect both clock inputs to the differential input clock signal with 0.01-
µF capacitors, as shown
in Figure 47.
Figure 47. AC-Coupled, Differential Clock Input
For high input frequency sampling, it is recommended to use a clock source with low jitter. Additionally, the
internal ADC core uses both edges of the clock for the conversion process. This means that, ideally, a 50% duty
cycle should be provided. Figure 48 shows the performance variation of the ADC versus clock duty cycle.
Figure 48. AC Performance vs Clock Duty Cycle
Bandpass filtering of the source can help produce a 50% duty cycle clock and reduce the effect of jitter. When
using a sinusoidal clock, the clock jitter further improves as the amplitude is increased. In that sense, using a
differential clock allows for the use of larger amplitudes without exceeding the supply rails and absolute
maximum ratings of the ADC clock input. Figure 49 shows the performance variation of the device versus input
clock amplitude. For detailed clocking schemes based on transformer or PECL-level clocks, see the
ADS55xxEVM User's Guide (SLWU010), available for download from www.ti.com.
Copyright © 2004–2008, Texas Instruments Incorporated
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