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ADS5553IPFPR Datenblatt(PDF) 20 Page - Texas Instruments

Teilenummer ADS5553IPFPR
Bauteilbeschribung  Dual 14 BIT, 65 MSPS Analog-to-Digital Converter
PDF  24 Pages
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Hersteller  TI [Texas Instruments]
Direct Link  http://www.ti.com
Logo TI - Texas Instruments

ADS5553IPFPR Datenblatt(HTML) 20 Page - Texas Instruments

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ADS5553
SLWS158 − FEBRUARY 2005
www.ti.com
20
CLOCK INPUT
The ADS5553 clock input can be driven with either a
differential clock signal or a single-ended clock input,
with little or no difference in performance between both
configurations. The common-mode voltage of the clock
inputs is set internally to CM using internal 5-kΩ
resistors that connect CLKP and CLKM to CM , as
shown in Figure 33.
CM
5 kΩ
CLKP
5 kΩ
CM
CLKM
6 pF
3 pF
3 pF
Figure 33. Clock Inputs
When driven with a single-ended CMOS clock input, it
is best to connect CLKM to ground with a 0.01 µF
capacitor, while CLKP is ac-coupled with a 0.01 µF
capacitor to the clock source, as shown in Figure 34.
CLKP
ADS5553
CLKM
Square Wave or
Sine Wave
0.01 µF
0.01 µF
Figure 34. AC-Coupled, Single-Ended Clock Input
The ADS5553 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 35.
CLKP
ADS5553
CLKM
Differential Square Wave
or Sine Wave
(3 Vp-p)
0.01 µF
0.01 µF
Figure 35. 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 24 shows the
performance variation of the ADC versus 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 23 shows the performance variation of the
device versus input clock amplitude. For detailed
clocking schemes based on transformer or PECL-level
clocks,
see
the
ADS5553EVM
user’s guide
(SLWU010), available for download from www.ti.com.



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