LTC2420I LINER [Linear Technology], LTC2420I Datasheet - Page 10

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LTC2420I

Manufacturer Part Number
LTC2420I
Description
20-Bit uPower No Latency ADC in SO-8
Manufacturer
LINER [Linear Technology]
Datasheet

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APPLICATIO S I FOR ATIO
LTC2420
Single-Chip Instrumentation Amplifier
for the LTC2420
The circuit in Figure 10 is a simple solution for processing
differential signals in pressure transducer, weigh scale or
strain gauge applications that can operate on a supply
voltage range of 5V to 15V. The circuit uses an LT
single-chip instrumentation amplifier to perform a differ-
ential to single-ended conversion. The amplifier’s output
voltage is applied to the LTC2420’s input and converted to
a digital value with an overall accuracy exceeding 17 bits
(0.0008%). Key circuit performance results are shown in
Table 3.
The practical gain range for this topology as shown is from
5 to 100 because the LTC2420’s wide dynamic range
makes gains below 5 virtually unnecessary, whereas gain
up to 100 significantly reduce the input referred noise.
The optional passive RC lowpass filter between the
amplifier’s output and the LTC2420’s input attenuates
high frequency noise and its effects. Typically, the filter
10
DIFFERENTIAL
U
INPUT
Figure 10. The LT1920 is a Simple Solution That Converts a Differential Input
to a Ground Referred Single-Ended Signal for the LTC2420
U
R
G
**
W
2
1
8
3
V
R
R
V
IN
IN
G
G
**R
*OPTIONAL—SEE TEXT
+
LT1920
USE SHORT LEAD LENGTHS
G
= 49.4k/(A
7
4
V
V
S
S
+
U
0.1 F
0.1 F
V
6
– 1): USE 5.49k FOR A
®
1920
47
R1*
SINGLE POINT
“STAR” GROUND
reduces the magnitude of averaged noise by 30% and
improves resolution by 0.5 bit without compromising
linearity. Resistor R2 performs two functions: it isolates
C1 from the LTC2420’s input and limits the LTC2420’s
input current should its input voltage drop below –300mV
or swing above V
The LT1920 is the choice for applications where low cost
is important. For applications where more precision is
required, the LT1167 is a pin-to-pin alternative choice with
a lower offset voltage, lower input bias current and higher
gain accuracy than the LT1920. The LT1920’s maximum
total input-referred offset (V
100. At the same gain, the LT1167’s V
of 10 or 100, the LT1920’s maximum gain error is 0.3%
and its maximum gain nonlinearity is 30ppm. At the same
gains, the LT1167’s maximum gain error is 0.1% and its
maximum gain nonlinearity is 15ppm. Table 4 summa-
rizes the performance of Figure 10’s circuit using the
LT1167.
10k
C1*
1 F
R2*
V
= 10; 499 FOR A
3
V
2
REFIN
V
IN
V
REF
1
GND
V
5V
CC
4
LTC2420
0.1 F
V
F
O
= 100
8
CC
+ 300mV.
SDO
SCK
CS
5
6
7
2429 F10
CHIP SELECT
SERIAL DATA OUT
SERIAL CLOCK
OST
) is 135 V for a gain of
OST
is 63 V. At gains

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