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LT1168IN8

Description
INST Amp Single ±18V Automotive 8-Pin PDIP N
File Size334KB,20 Pages
ManufacturerADI
Websitehttps://www.analog.com
Download Datasheet Parametric View All

LT1168IN8 Overview

INST Amp Single ±18V Automotive 8-Pin PDIP N

LT1168IN8 Parametric

Parameter NameAttribute value
EU restricts the use of certain hazardous substancesNot Compliant
ECCN (US)EAR99
Part StatusUnconfirmed
SVHCYes
SVHC Exceeds ThresholdYes
Number of Channels per Chip1
Minimum CMRR (dB)85
Minimum CMRR Range (dB)85 to 95
Minimum PSRR (dB)100
Maximum Input Offset Voltage (mV)0.06@±15V
Maximum Operating Supply Voltage (V)±18
Maximum Supply Voltage Range (V)30 to 50
Minimum Dual Supply Voltage (V)±2.3
Typical Dual Supply Voltage (V)±15|±3|±5|±9|±12
Maximum Dual Supply Voltage (V)±18
Maximum Input Bias Current (uA)0.0005@±15V
Maximum Supply Current (mA)0.53@±15V
Typical Output Current (mA)32@±15V
Maximum Input Resistance (MOhm)1250000(Typ)@±15V
Power Supply TypeDual
Minimum Operating Temperature (°C)-40
Maximum Operating Temperature (°C)85
Supplier Temperature GradeIndustrial
Pin Count8
Standard Package NameDIP
Supplier PackagePDIP N
MountingThrough Hole
Package Height3.3
Package Length10.16(Max)
Package Width6.48
PCB changed8
Lead ShapeThrough Hole
FEATURES
LT1168
Low Power, Single
Resistor Gain Programmable,
Precision Instrumentation Amplifier
DESCRIPTIO
The LT
®
1168 is a micropower, precision instrumentation am-
plifier that requires only one external resistor to set gains of
1 to 10,000. The low voltage noise of 10nV/√Hz (at 1kHz) is
not compromised by low power dissipation (350µA typical for
±15V
supplies). The wide supply range of
±2.3V
to
±18V
allows
the LT1168 to fit into a wide variety of industrial as well as
battery-powered applications.
The high accuracy of the LT1168 is due to a 20ppm maximum
nonlinearity and 0.4% max gain error (G = 10). Previous mono-
lithic instrumentation amps cannot handle a 2k load resistor
whereas the nonlinearity of the LT1168 is specified for loads
as low as 2k. The LT1168 is laser trimmed for very low input
offset voltage (40µV max), drift (0.3µV/°C), high CMRR (90dB,
G = 1) and PSRR (103dB, G = 1). Low input bias currents of
250pA max are achieved with the use of superbeta process-
ing. The output can handle capacitive loads up to 1000pF in
any gain configuration while the inputs are ESD protected up
to 13kV (human body). The LT1168 with two external 5k
resistors passes the IEC 1000-4-2 level 4 specification.
The LT1168 is a pin-for-pin improved second source for the
AD620 and INA118. The LT1168, offered in 8-pin PDIP and
SO packages, requires significantly less PC board area than
discrete op amp resistor designs. These advantages make
the LT1168 the most cost effective solution for precision
instrumentation amplifier applications.
, LT, LTC and LTM are registered trademarks of Linear Technology Corporation.
All other trademarks are the property of their respective owners.
Supply Current: 530µA Max
Meets IEC 1000-4-2 Level 4 (±15kV) ESD Tests
with Two External 5k Resistors
Single Gain Set Resistor: G = 1 to 10,000
Gain Error: G = 10, 0.4% Max
Input Offset Voltage Drift: 0.3µV/°C Max
Gain Nonlinearity: G = 10, 20ppm Max
Input Offset Voltage: 40µV Max
Input Bias Current: 250pA Max
PSRR at A
V
=1: 103dB Min
CMRR at A
V
= 1: 90dB Min
Wide Supply Range:
±2.3V
to
±18V
1kHz Voltage Noise: 10nV/√Hz
0.1Hz to 10Hz Noise: 0.28µV
P-P
Available in 8-Pin PDIP and SO Packages
APPLICATIO S
Bridge Amplifiers
Strain Gauge Amplifiers
Thermocouple Amplifiers
Differential to Single-Ended Converters
Differential Voltage to Current Converters
Data Acquisition
Battery-Powered and Portable Equipment
Medical Instrumentation
Scales
TYPICAL APPLICATIO
5V
Single Supply* Pressure Monitor
BI TECHNOLOGIES
67-8-3 R40KQ, (0.02% RATIO MATCH)
1
3.5k
3.5k
3
8
R1
G = 200
249Ω
1
2
+
40k
7
REF
LT1168
5
6
20k
3
40k
2
IN
ADC
LTC
®
1286
1
AGND
DIGITAL
DATA
OUTPUT
3.5k
3.5k
+
1/2
LT1112
4
1168 TA01
NONLINEARITY (100ppm/DIV)
*See Theory of Operation section
U
U
U
Gain Nonlinearity
G = 1000
R
L
= 2k
V
OUT
=
±10V
OUTPUT VOLTAGE (2V/DIV)
1168 TA01a
1168fa
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