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TLV2711

Texas Instruments
Part Number TLV2711
Manufacturer Texas Instruments
Description MICROPOWER SINGLE OPERATIONAL AMPLIFIERS
Published Jan 8, 2022
Detailed Description TLV2711, TLV2711Y Advanced LinCMOS RAIL-TO-RAIL MICROPOWER SINGLE OPERATIONAL AMPLIFIERS SLOS196A – AUGUST 1997 – REVIS...
Datasheet PDF File TLV2711 PDF File

TLV2711
TLV2711


Overview
TLV2711, TLV2711Y Advanced LinCMOS RAIL-TO-RAIL MICROPOWER SINGLE OPERATIONAL AMPLIFIERS SLOS196A – AUGUST 1997 – REVISED MARCH 2001 D Output Swing Includes Both Supply Rails D Low Noise .
.
.
21 nV/√Hz Typ at f = 1 kHz D Low Input Bias Current .
.
.
1 pA Typ D Very Low Power .
.
.
11 µA Per Channel Typ D Common-Mode Input Voltage Range Includes Negative Rail D Wide Supply Voltage Range 2.
7 V to 10 V D Available in the SOT-23 Package D Macromodel Included description The TLV2711 is a single low-voltage operational amplifier available in the SOT-23 package.
It consumes only 11 µA (typ) of supply current and is ideal for battery-power applications.
Looking at Figure 1, the TLV2711 has a 3-V noise level of 21 nV/√Hz at 1 kHz; five times lower than competitive SOT-23 micropower solutions.
The device exhibits rail-to-rail output performance for increased dynamic range in single- or split-supply applications.
The TLV2711 is fully characterized at 3 V and 5 V and is optimized for low-voltage applications.
DBV PACKAGE (TOP VIEW) OUT 1 5 VDD–/GND VDD+ 2 IN + 3 4 IN– EQUIVALENT INPUT NOISE VOLTAGE† vs FREQUENCY 80 VDD = 3 V 70 RS = 20 Ω TA = 25°C 60 50 40 30 20 Vn – Equivalent Input Noise Voltage – nV/ Hz The TLV2711, exhibiting high input impedance and low noise, is excellent for small-signal conditioning for high-impedance sources, such as piezoelectric transducers.
Because of the micropower dissipation levels combined with 3-V operation, these devices work well in hand-held monitoring and remote-sensing applications.
In addition, the rail-to-rail output feature with single or split supplies makes this family a great choice when interfacing with analog-to-digital converters (ADCs).
10 0 101 102 103 104 f – Frequency – Hz † For all curves where VDD = 5 V, all loads are referenced to 2.
5 V.
For all curves where VDD = 3 V, all loads are referenced to 1.
5 V.
Figure 1.
Equivalent Input Noise Voltage Versus Frequency With a total area of 5.
6mm2,...



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