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ADS8317 Scheda tecnica(PDF) 16 Page - Texas Instruments

Il numero della parte ADS8317
Spiegazioni elettronici  16-Bit, High-Speed, 2.7V to 5.5V microPower Sampling ANALOG-TO-DIGITAL CONVERTER
PDF  37 Pages
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Produttore elettronici  TI2 [Texas Instruments]
Homepage  https://www.ti.com
Logo TI2 - Texas Instruments

ADS8317 Scheda tecnica(HTML) 16 Page - Texas Instruments

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ADS8317
ADS8317
Single-EndedInput
Common
Voltage
2
V
´
REF
Peak-to-Peak
DifferentialInput
Common
Voltage
V
REF
Peak-to-Peak
V
REF
Peak-to-Peak
ADS8317
SBAS356D – JUNE 2007 – REVISED OCTOBER 2009 .................................................................................................................................................... www.ti.com
THEORY OF OPERATION
The digital data that are provided on the DOUT pin are
The ADS8317 is a classic Successive Approximation
for the conversion currently in progress—there is no
Register (SAR) analog-to-digital (A/D) converter. The
pipeline delay. It is possible to continue to clock the
architecture is based on capacitive redistribution that
ADS8317 after the conversion is complete and to
inherently includes a sample-and-hold function. The
obtain the serial data least significant bit first. See the
converter is fabricated on a 0.6
μ CMOS process. The
Digital Timing section for more information.
architecture
and
fabrication
process
allow
the
ADS8317 to acquire and convert an analog signal at
ANALOG INPUT
up
to
250,000
conversions
per
second
while
consuming less than 10mW from VDD.
The analog input is bipolar and fully differential. There
are two general methods of driving the analog input
Differential
linearity
for
the
ADS8317
is
of the ADS8317: single-ended or differential, as
factory-adjusted via a package-level trim procedure.
shown in Figure 37. When the input is single-ended,
The state of the trim elements is stored in non-volatile
the –IN input is held at a fixed voltage. The +IN input
memory and is continuously updated after each
swings
around
the
same
voltage
and
the
acquisition cycle, just prior to the start of the
peak-to-peak amplitude is 2 × VREF. The value of
successive approximation operation. This process
VREF determines the range over which the common
ensures that one complete conversion cycle always
voltage may vary, as shown in Figure 38 and
returns the part to its factory-adjusted state in the
Figure 39.
event of a power interruption.
The ADS8317 requires an external reference, an
external clock, and a single power source (VDD). The
external reference can be any voltage between 0.1V
and VDD/2. The value of the reference voltage directly
sets the range of the analog input. The reference
input current depends on the conversion rate of the
ADS8317.
The external clock can vary between 24kHz (1kHz
throughput) and 6.0MHz (250kHz throughput). The
duty cycle of the clock is not significant, as long as
the minimum high and low times are at least 200ns
(VDD = 4.75V or greater). The minimum clock
frequency is set by the leakage on the internal
capacitors to the ADS8317.
The analog input is provided to two input pins: +IN
and
–IN.
When
a
conversion
is
initiated,
the
differential input on these pins is sampled on the
Figure 37. Methods of Driving the
internal capacitor array. While a conversion is in
ADS8317—Single-Ended or Differential
progress, both inputs are disconnected from any
internal function.
The digital result of the conversion is clocked out by
the DCLOCK input and is provided serially (most
significant bit first) on the DOUT pin.
16
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Copyright © 2007–2009, Texas Instruments Incorporated
Product Folder Link(s): ADS8317



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