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ADS5271 Datasheet(PDF) 31 Page - Texas Instruments

Part # ADS5271
Description  10-Bit, Octal-Channel ADC Up to 65MSPS
PDF  42 Pages
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Manufacturer  TI2 [Texas Instruments]
Direct Link  https://www.ti.com
Logo TI2 - Texas Instruments

ADS5271 Datasheet(HTML) 31 Page - Texas Instruments

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ADS5287
www.ti.com
SBAS428D – JANUARY 2008 – REVISED JUNE 2012
APPLICATION INFORMATION
The ADC output goes to a serializer that operates
THEORY OF OPERATION
from a 12x clock generated by the PLL. The 12 data
bits from each channel are serialized and sent LSB
The ADS5287 is an 8-channel, high-speed, CMOS
first. In addition to serializing the data, the serializer
ADC. Two zeroes are appended on the LSB side to
also generates a 1x clock and a 6x clock. These
the 10 bits given out by each channel. The resulting
clocks are generated in the same way the serialized
12 bits are serialized and sent out on a single pair of
data are generated, so these clocks maintain perfect
pins in LVDS format. All eight channels of the
synchronization with the data. The data and clock
ADS5287 operate from a single clock (ADCLK). The
outputs of the serializer are buffered externally using
sampling clocks for each of the eight channels are
LVDS buffers. Using LVDS buffers to transmit data
generated from the input clock using a carefully
externally has multiple advantages, such as a
matched clock buffer tree. The 12x clock required for
reduced number of output pins (saving routing space
the serializer is generated internally from ADCLK
on the board), reduced power consumption, and
using a phase-locked loop (PLL). A 6x and a 1x clock
reduced effects of digital noise coupling to the analog
are also output in LVDS format, along with the data,
circuit inside the ADS5287.
to enable easy data capture. The ADS5287 operates
from internally-generated reference voltages that are
The ADS5287 operates from two sets of supplies and
trimmed to achieve a high level of accuracy. Trimmed
grounds. The analog supply and ground set is
references
improve
the
gain
matching
across
identified as AVDD and AVSS, while the digital set is
devices, and provide the option to operate the
identified by LVDD and LVSS.
devices without having to externally drive and route
reference lines. The nominal values of REFT and
ANALOG INPUT
REFB
are
2.5V
and
0.5V,
respectively.
The
references are internally scaled down differentially by
The analog input consists of a switched-capacitor
a factor of 2. This scaling results in a differential input
based, differential sample-and-hold architecture. This
of –1V to correspond to the zero code of the ADC,
differential
topology
results
in
very
good
ac
and a differential input of +1V to correspond to the
performance, even for high input frequencies at high
full-scale code (1023 LSB). VCM (the common-mode
sampling rates. The INN and INP pins must be
voltage of REFT and REFB) is also made available
externally biased around a common-mode voltage of
externally through a pin, and is nominally 1.5V.
1.5V, available on VCM. For a full-scale differential
input, each input pin (INN and INP) must swing
The ADC employs a pipelined converter architecture
symmetrically between VCM + 0.5V and VCM – 0.5V,
that consists of a combination of multi-bit and single-
resulting in a 2VPP differential input swing. The
bit internal stages. Each stage feeds its data into the
maximum input peak-to-peak differential swing is
digital
error
correction
logic,
ensuring
excellent
determined to be the difference between the internal
differential linearity and no missing codes at the 10-
reference voltages REFT (2.5V nominal) and REFB
bit level.
(0.5V nominal). Figure 31 illustrates the model of the
input driving circuit.
Copyright © 2008–2012, Texas Instruments Incorporated
31



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