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LTC2392HLX-16PBF Datasheet(PDF) 11 Page - Linear Technology

Part # LTC2392HLX-16PBF
Description  16-Bit, 500ksps SAR ADC with 94dB SNR
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Manufacturer  LINER [Linear Technology]
Direct Link  http://www.linear.com
Logo LINER - Linear Technology

LTC2392HLX-16PBF Datasheet(HTML) 11 Page - Linear Technology

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LTC2392-16

239216f
applications inFormation
OVERVIEW
The LTC2392-16 is a low noise, high speed 16-bit suc-
cessive approximation register (SAR) ADC. Operating
from a single 5V supply, the LTC2392-16 supports a
large ±4.096V fully differential input range, making it ideal
for high performance applications which require a wide
dynamicrange.TheLTC2392-16achieves±2LSBINLmax,
no missing codes at 16 bits and 94dB SNR (typ).
TheLTC2392-16includesaprecisioninternalreferencewith
aguaranteed0.5%initialaccuracyanda±20ppm/°C(max)
temperature coefficient. Fast 500ksps throughput with no
cycle latency in both parallel and serial interface modes
makes the LTC2392-16 ideally suited for a wide variety
of high speed applications. An internal oscillator sets the
conversion time, easing external timing considerations.
TheLTC2392-16dissipatesonly110mWat500ksps,while
both nap and sleep power-down modes are provided to
further reduce power during inactive periods.
CONVERTER OPERATION
The LTC2392-16 operates in two phases. During the ac-
quisition phase, the charge redistribution capacitor D/A
converter (CDAC) is connected to the IN+ and INpins
to sample the differential analog input voltage. A falling
edge on the CNVST pin initiates a conversion. During the
conversionphase,the16-bitCDACissequencedthrougha
successiveapproximationalgorithm,effectivelycomparing
the sampled input with binary-weighted fractions of the
reference voltage (e.g., VREF/2, VREF/4 … VREF/65536)
usingthedifferentialcomparator.Attheendofconversion,
the CDAC output approximates the sampled analog input.
The ADC control logic then prepares the 16-bit digital
output code for parallel or serial transfer.
TRANSFER FUNCTION
The LTC2392-16 digitizes the full-scale voltage of 2 • VREF
into216levels,resultinginanLSBsizeof125µVwhenVREF
= 4.096V. The ideal transfer function for two’s complement
is shown in Figure 2. The OB/2C pin selects either offset
binary or two’s complement format.
ANALOG INPUT
The analog inputs of the LTC2392-16 are fully differential
in order to maximize the signal swing that can be digitized.
The analog inputs can be modeled by the equivalent circuit
showninFigure3.ThediodesattheinputprovideESDpro-
tection. The analog inputs should not exceed the supply or
go below ground. In the acquisition phase, each input sees
approximately40pF(CIN)fromthesamplingCDACinseries
with 50Ω (RIN) from the on-resistance of the sampling
switch. Any unwanted signal that is common to both
inputs will be reduced by the common mode rejection of
the ADC. The inputs draw only one small current spike
while charging the CIN capacitors during acquisition.
During conversion, the analog inputs draw only a small
leakage current.
Figure 2. LTC2392-16 Two’s Complement Transfer Function
Figure 3. The Equivalent Circuit for the
Differential Analog Input of the LTC2392-16
INPUT VOLTAGE (V)
0V
–1
LSB
239216 F02
011...111
011...110
000...001
000...000
100...000
100...001
111...110
1
LSB
BIPOLAR
ZERO
111...111
FSR/2 – 1LSB
–FSR/2
FSR = +FS – –FS
1LSB = FSR/65536
IN+
RIN
CIN
AVP
AVP
BIAS
VOLTAGE
IN
RIN
239216 F03
CIN


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