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ADS5400IPZP Datenblatt(PDF) 10 Page - Texas Instruments

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Teilenummer ADS5400IPZP
Bauteilbeschribung  12-Bit, 1-GSPS Analog-to-Digital Converter
PDF  48 Pages
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Hersteller  TI [Texas Instruments]
Direct Link  http://www.ti.com
Logo TI - Texas Instruments

ADS5400IPZP Datenblatt(HTML) 10 Page - Texas Instruments

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CLKINP
RESETP
Phase 0: CLKOUT indesired
stateafterpowerup
Phase 1: misalignedby 1
clockafterpowerup
tPD-CLKDIV2
CLKOUTAP
CLKOUTBP
DATA BUSB
SYNCOUTB
(OVRBpins)
Sync
N
SampleNandRESET
pulsecapturedhere
tPD-BDATA
CLKOUT isresetafter 3.5 CLKINcycles (+ tPD-CLKDIV2 )
N+2
N+1
N+3
DATA BUS A
IfSYNCmodeisenabled,
theOVRBpinsbecomeSYNCOUTBpins
LatencyofN+1 is 7.5 CLKINcycles
LatencyofNandSYNCOUTBarematchedto 8.5 CLKINcycles
tPD-ADATA
N+1
ThephaseofdatashownpriortoresetmatchesCLKOUT inphase 0
ThephaseofdatashownpriortoresetmatchesCLKOUT inphase 0
tRSU
tRH
N, N+1
output
tsu
th
ADS5400
SLAS611B – OCT 2009 – REVISED MARCH 2010
www.ti.com
Timing Diagrams (continued)
Propagation delays and setup/hold times not drawn to scale. RESET and SYNCOUT are optional. Any clock phase
will work properly, but makes synchronization of data capture across multiple ADCs difficult without a known CLKOUT
phase. RESET can be a single pulse (as shown), low-to-high step or repetitive pulse input signal. The frequency of
repetitive RESET pulses should not exceed CLKIN/2, and should be an even divisor of CLKIN, in order to keep the
CLKOUT phase the same with each RESET event. SYNCOUTB transitions with the same latency as the sample that
is present when the RESET pulse is captured, shown here as sample N. Each RESET captured generates a
SYNCOUT pulse, which behaves as a data bit.
Figure 2. Dual Bus Mode - Aligned, CLKOUT Divide By 2
10
Copyright © 2009–2010, Texas Instruments Incorporated
Product Folder Link(s): ADS5400



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