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LT1994CMS8#PBF

Description
SP Amp DIFF AMP Single R-R O/P ±6.3V/12.6V 8-Pin MSOP Tube
File Size224KB,20 Pages
ManufacturerADI
Websitehttps://www.analog.com
Download Datasheet Parametric View All

LT1994CMS8#PBF Overview

SP Amp DIFF AMP Single R-R O/P ±6.3V/12.6V 8-Pin MSOP Tube

LT1994CMS8#PBF Parametric

Parameter NameAttribute value
EU restricts the use of certain hazardous substancesCompliant
ECCN (US)EAR99
Part StatusActive
HTS8542.33.00.01
TypeDifferential Amplifier
Number of Elements per Chip1
Number of Channels per Chip1
Rail to RailRail to Rail Output
Typical Gain Bandwidth Product (MHz)70
Maximum Voltage Gain Range (dB)100 to 125
Maximum Voltage Gain (dB)100(Typ)
Minimum CMRR Range (dB)<60
Minimum CMRR (dB)55
Minimum PSRR (dB)69
Output TypeDifferential
Typical Output Current (mA)85
Maximum Input Offset Voltage (mV)2@5V@0C to 70C
Maximum Operating Supply Voltage (V)±6.3|12.6
Maximum Supply Voltage Range (V)10 to 15
Minimum Single Supply Voltage (V)2.375
Typical Single Supply Voltage (V)3|5|9|12
Maximum Single Supply Voltage (V)12.6
Minimum Dual Supply Voltage (V)±1.1875
Typical Dual Supply Voltage (V)±3|±5
Maximum Dual Supply Voltage (V)±6.3
Maximum Input Bias Current (uA)45(Min)@5V@0C to 70C
Maximum Supply Current (mA)19.5@5V@0C to 70C
Maximum Input Resistance (MOhm)0.7(Typ)@3V
Minimum Operating Temperature (°C)0
Maximum Operating Temperature (°C)70
Supplier Temperature GradeCommercial
PackagingTube
Power Supply TypeDual|Single
Pin Count8
Standard Package NameSOP
Supplier PackageMSOP
MountingSurface Mount
Package Height0.86
Package Length3
Package Width3
PCB changed8
Lead ShapeGull-wing
LT1994
Low Noise, Low Distortion
Fully Differential Input/
Output Amplifier/Driver
FEATURES
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DESCRIPTION
The LT
®
1994 is a high precision, very low noise, low distor-
tion, fully differential input/output amplifier optimized for
3V, single-supply operation. The LT1994’s output common
mode voltage is independent of the input common mode
voltage, and is adjustable by applying a voltage on the
V
OCM
pin. A separate internal common mode feedback
path provides accurate output phase balancing and reduced
even-order harmonics. This makes the LT1994 ideal for
level shifting ground referenced signals for driving dif-
ferential input, single-supply ADCs.
The LT1994 output can swing rail-to-rail and is capable
of sourcing and sinking up to 85mA. In addition to the
low distortion characteristics, the LT1994 has a low input
referred voltage noise of 3nV/√Hz. This part maintains
its performance for supply voltages as low as 2.375V. It
draws only 13.3mA of supply current and has a hardware
shutdown feature that reduces current consumption to
225μA.
The LT1994 is available in an 8-pin MSOP or 8-pin DFN
package.
L,
LT, LTC and LTM are registered trademarks of Linear Technology Corporation.
All other trademarks are the property of their respective owners.
Fully Differential Input and Output
Wide Supply Range: 2.375V to 12.6V
Rail-to-Rail Output Swing
Low Noise: 3nV/√Hz
Low Distortion, 2V
P-P
, 1MHz: –94dBc
Adjustable Output Common Mode Voltage
Unity-Gain Stable
Gain-Bandwidth: 70MHz
Slew Rate: 65V/μs
Large Output Current: 85mA
DC Voltage Offset <2mV Max
Open-Loop Gain: 100V/mV
Low Power Shutdown
8-Pin MSOP or 3mm
×
3mm DFN Package
APPLICATIONS
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Differential Input A/D Converter Driver
Single-Ended to Differential Conversion
Differential Amplification with Common Mode
Translation
Rail-to-Rail Differential Line Driver/Receiver
Low Voltage, Low Noise, Differential Signal
Processing
TYPICAL APPLICATION
A/D Preamplifier: Single-Ended Input to Differential Output
with Common Mode Level Shifting
499Ω
V
IN
2V
P-P
3V
0.1μF
24.9Ω
47pF
V
DD
SD0
CONV
SCK
GND V
REF
10μF
1994 TA01
LT1994 Driving an LTC1403A-1 1MHz
Sine Wave, 8192 Point FFT Plot
DIFFERENTIAL OUTPUT MAGNITUDE (dB)
f
SAMPLE
= 2.8Msps
–10 f = 1.001MHz
IN
–20 INPUT = 2V
P-P
,
SINGLE ENDED
–30
SFDR = 93dB
–40
–50
–60
–70
–80
–90
–100
–110
–120
0
0.35
0.70
1.05
FREQUENCY (MHz)
1.40
1994 TA01b
0
499Ω
3V 10μF
– +
V
OCM
LT1994
0.1μF
A
IN+
A
IN–
+ –
499Ω
499Ω
24.9Ω
LTC1403A-1
50.4MHz
V
OCM
= 1.5V
1994fb
1

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