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ADC32RF83 データシート(PDF) 32 Page - Texas Instruments

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部品番号 ADC32RF83
部品情報  ADC32RF8x Dual-Channel, 3-GSPS Telecom Receiver and Feedback Devices
PDF  138 Pages
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メーカー  TI [Texas Instruments]
ホームページ  http://www.ti.com
Logo TI - Texas Instruments

ADC32RF83 データシート(HTML) 32 Page - Texas Instruments

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V
CM
50
50
CLKINP
100
SYSREFP
SYSREF
Capture
Delay
CLKINM
SYSREFM
Clock Amplitude (vPP)
0.2
1
2
50
100
150
200
250
300
350
D061
fIN = 1 GHz
fIN = 2 GHz
32
ADC32RF80, ADC32RF83
SBAS774A – MAY 2016 – REVISED DECEMBER 2016
www.ti.com
Product Folder Links: ADC32RF80 ADC32RF83
Submit Documentation Feedback
Copyright © 2016, Texas Instruments Incorporated
Feature Description (continued)
The analog-to-digital converter (ADC) aperture jitter is a function of the clock amplitude applied to the pins. The
equivalent aperture jitter for input frequencies at a 1-GHz and a 2-GHz input is shown in Figure 88. Depending
on the clock frequency, a matching circuit can be designed in order to maximize the clock amplitude.
Figure 88. Equivalent Aperture Jitter vs Input Clock Amplitude
8.3.3 SYSREF Input
The SYSREF signal is a periodic signal that is sampled by the ADC32RF8x device clock and is used to align the
boundary of the local multiframe clock inside the data converter. SYSREF is also used to reset critical blocks
[such as the clock divider for the interleaved ADCs, numerically-controlled oscillators (NCOs), decimation filters
and so forth].
The SYSREF input requires external biasing. Furthermore, SYSREF must be established before the SPI
registers are programmed. A programmable delay on the SYSREF input, as shown in Figure 89, is available to
help with skew adjustment when the sampling clock and SYSREF are not provided from the same source.
Figure 89. SYSREF Internal Circuit Diagram



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