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ADS6445 Datasheet(PDF) 54 Page - STMicroelectronics

Part # ADS6445
Description  QUAD CHANNEL, 14-BIT, 125/105/80/65 MSPS ADC WITH SERIAL LVDS OUTPUTS
PDF  75 Pages
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Manufacturer  STMICROELECTRONICS [STMicroelectronics]
Direct Link  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

ADS6445 Datasheet(HTML) 54 Page - STMicroelectronics

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V
CC
V
CC
REF_IN
VCXO_INM
CTRL
OUTP
OUTM
Y0B
Y0
ADS6xxx
CLKM
CLKP
VCXO
CDCM7005
VCXO_INP
Reference Clock
S0238-02
S0168-07
CLKP
CLKM
CMOSClockInput
ADS6xxx
0.1 F
m
0.1 F
m
CLOCK BUFFER GAIN
ADS6445, ADS6444
ADS6443, ADS6442
SLAS531 – MAY 2007
Figure 91. PECL Clock Drive Using CDCM7005
Single-ended CMOS clock can be ac-coupled to the CLKP input, with CLKM (pin) connected to ground with a
0.1-
µF capacitor, as shown in Figure 92.
Figure 92. Single-Ended Clock Driving Circuit
For best performance, the clock inputs have to be driven differentially, reducing susceptibility to common-mode
noise. For high input frequency sampling, it is recommended to use a clock source with very low jitter. Bandpass
filtering of the clock source can help reduce the effect of jitter. There is no change in performance with a
non-50% duty cycle clock input.
When using a sinusoidal clock input, the noise contributed by clock jitter improves as the clock amplitude is
increased. Hence, it is recommended to use large clock amplitude. As shown by Figure 18, use clock amplitude
greater than 1VPP to avoid performance degradation.
In addition, the clock buffer has programmable gain to amplify the input clock to support very low clock
amplitude. The gain can be set by programming the register bits <CLKIN GAIN> (refer to Table 14) and
increases monotonically from Gain 0 to Gain 4 settings. Table 22 lists the minimum clock amplitude supported
for each gain setting.
54
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