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CDCE62005 Datasheet(PDF) 70 Page - Texas Instruments

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Part # CDCE62005
Description  Five/Ten Output Clock Generator/Jitter Cleaner With Integrated Dual VCOs
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Manufacturer  TI [Texas Instruments]
Direct Link  http://www.ti.com
Logo TI - Texas Instruments

CDCE62005 Datasheet(HTML) 70 Page - Texas Instruments

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Output
Divider 0
Output
Divider 1
Output
Divider 2
Output
Divider 3
Output
Divider 4
PFD/
CP
/1:/2:HiZ
/1:/2:HiZ
Prescaler
Feedback
Divider
Input
Divider
Reference
Divider
30.72 MHz
10.00 MHz
122 .88 MHz
491 .52 MHz
245 .76 MHz
30.72 MHz
30.72 MHz
10 MHz
10 MHz
10
1
20 log
2
é
ù
=
ê
ú
ë
û
jitter
in
total
SNR
πf jitter
(
)
(
)
2
2
=
+
total
ADC
CLK
jitter
jitter
jitter
6.02
1.76
=
+
ADC
SNR
N
CDCE62005
SCAS862C – NOVEMBER 2008 – REVISED FEBRUARY 2010
www.ti.com
Figure 44. CDCE62005 Jitter Cleaner Example
Clocking ADCs with the CDCE62005
High-speed analog to digital converters incorporate high input bandwidth on both the analog port and the sample
clock port. Often the input bandwidth far exceeds the sample rate of the converter. Engineers regularly
implement receiver chains that take advantage of the characteristics of bandpass sampling. This implementation
trend often causes engineers working in communications system design to encounter the term clock limited
performance. Therefore, it is important to understand the impact of clock jitter on ADC performance. Equation 10
shows the relationship of data converter signal to noise ratio (SNR) to total jitter.
(10)
Total jitter comprises two components: the intrinsic aperture jitter of the converter and the jitter of the sample
clock:
(11)
With respect to an ADC with N-bits of resolution, ignoring total jitter, DNL, and input noise, the following equation
shows the relationship between resolution and SNR:
(12)
Figure 45 plots Equation 10 and Equation 12 for constant values of total jitter. When used in conjunction with
most ADCs, the CDCE62005 supports a total jitter performance value of <1 ps.
70
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