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CDCVF2505DR Scheda tecnica(PDF) 8 Page - Texas Instruments

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Il numero della parte CDCVF2505DR
Spiegazioni elettronici  3.3-V Clock Phase-Lock Loop Clock Driver
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Produttore elettronici  TI1 [Texas Instruments]
Homepage  http://www.ti.com
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CDCVF2505DR Scheda tecnica(HTML) 8 Page - Texas Instruments

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Edge Detect
Typical <10 MHz
Power Down
3-State
1
8
3
2
5
7
CLKOUT
1Y0
1Y1
1Y2
1Y3
CLKIN
PLL
25 W
25 W
25 W
25 W
25 W
B0246-01
Copyright © 2016, Texas Instruments Incorporated
8
CDCVF2505
SCAS640G – JULY 2000 – REVISED AUGUST 2016
www.ti.com
Product Folder Links: CDCVF2505
Submit Documentation Feedback
Copyright © 2000–2016, Texas Instruments Incorporated
(4)
The CLKOUT pin shall not be used to drive a trace, but only for delay tuning.
9 Detailed Description
9.1 Overview
The CDCVF2505 is designed for synchronous DRAM in server systems. This makes the device ideal for
applications which require the lowest possible skew between a provided reference clock and the clock copies
generated from the internal oscillator. At the same time, the phase-locked-loop has a high enough bandwidth to
track a spread-spectrum reference clock.
9.2 Functional Block Diagram
9.3 Feature Description
The CDCVF2505 provides a single high-impedance reference input to a phase-locked-loop circuit (PLL). The
reference is directly fed to a phase comparator. The control circuit loop filter is integrated into the device. The
oscillator output is fed to a clock tree with five output buffers. One of them is used as feedback to close the loop
of the PLL circuit. (4) The feedback path is designed for lowest phase difference or skew seen between reference
input and outputs. With respect to the supported reference frequency range the seen phase difference is
negligible to the clock period. Thus the CDCVF2505 is categorized as a Zero Delay PLL.
The CDCVF2505 contains an reference clock detector. This edge detector connected to CLKIN pin automatically
powers down the PLL and tri-states the output buffers to save power, as soon as the input reference frequency
goes below the minimum operating frequency range.


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