LMV712LD/NOPB

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Mfr.Part #
LMV712LD/NOPB
Manufacturer
Texas Instruments
Package / Case
10-WFDFN Exposed Pad
Datasheet
Download
Description
IC OPAMP GP 2 CIRCUIT 10WSON
Stock
8,140
In Stock :
8,140

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Manufacturer :
Texas Instruments
Product Category :
Instrumentation, OP Amps, Buffer Amps
Current - Input Bias :
5.5pA
Supply Voltage :
2.7V
Low-Offset :
No
Output Current per Channel :
50mA
Base Part Number :
LMV712
Number of Terminations :
10
Thickness :
800μm
Voltage Gain :
130dB
Terminal Position :
Dual
Number of Elements :
2
Wideband :
No
Nominal Supply Current :
1.22mA
Packaging :
Tape and Reel (TR)
Radiation Hardening :
No
Frequency Compensation :
yes
Voltage - Input Offset :
400μV
Output Current :
25mA
Micropower :
No
Number of Functions :
2
Pbfree Code :
yes
Operating Temperature :
-40°C~85°C
Terminal Pitch :
0.5mm
Bias Current-Max (IIB) @25C :
0.000115μA
Amplifier Type :
GENERAL PURPOSE
RoHS Status :
ROHS3 Compliant
Height :
800μm
Operating Supply Current :
1.17mA
Pin Count :
10
ECCN Code :
EAR99
Packing Method :
TR
Lifecycle Status :
ACTIVE (Last Updated: 2 days ago)
Input Offset Voltage (Vos) :
3mV
Architecture :
VOLTAGE-FEEDBACK
Slew Rate :
5V/μs
Length :
3mm
Width :
3mm
Unity Gain BW-Nom :
5000 kHz
Number of Pins :
10
Lead Free :
Lead Free
Contact Plating :
Tin
Low-Bias :
yes
Mount :
Surface Mount
JESD-609 Code :
e3
Moisture Sensitivity Level (MSL) :
3 (168 Hours)
Programmable Power :
No
Output Type :
Rail-to-Rail
Average Bias Current-Max (IIB) :
0.00013μA
Mounting Type :
Surface Mount
Voltage - Supply, Single/Dual (±) :
2.7V~5.5V
Gain Bandwidth Product :
5MHz
Common Mode Rejection Ratio :
50 dB
Power Supply Rejection Ratio (PSRR) :
70dB
Factory Lead Time :
6 Weeks
Peak Reflow Temperature (Cel) :
260
Supply Voltage Limit-Max :
5.5V
Package / Case :
10-WFDFN Exposed Pad
Datasheets
LMV712LD/NOPB
Introducing Instrumentation, OP Amps, Buffer Amps Texas Instruments LMV712LD/NOPB from Chip IC,where excellence meets affordability. This product stands out with its Base Part Number:LMV712, Number of Terminations:10, Operating Temperature:-40°C~85°C, Number of Pins:10, Mounting Type:Surface Mount, Package / Case:10-WFDFN Exposed Pad, LMV712LD/NOPB pinout, LMV712LD/NOPB datasheet PDF, LMV712LD/NOPB amp .Beyond Instrumentation, OP Amps, Buffer Amps Texas Instruments LMV712LD/NOPB ,we also offer OP07CDR, TS321CX5 RFG, NE5532ADR, Our vast inventory has you covered. Contact us now for immediate solutions.

Texas Instruments LMV712LD/NOPB


50mA per Channel 5.5pA 50 dB Instrumentational OP Amps 0.00013μA 2.7V~5.5V LMV712 10 Pins 10-WFDFN Exposed Pad

LMV712LD/NOPB Overview


A 10-WFDFN Exposed Pad case is used to package the op amp. General Purpose-type instrumentation amplifiers are used in this application. The case in which buffer amplifier is delivered is called a Tape & Reel (TR) case. It is estimated that there will be 10 terminations in the next few months. There are a total of 10 pins on this op amp. It is important to remember that this op amp should be operated at a voltage of 2.7V volts. There are 10 pins on this chip. In terms of the input offset voltage, instrumentation amplifier rates at 3mV. It is recommended that this electronic component be mounted using the Surface Mount mounting type. In terms of operating temperature, this instrumentation amplifier performs well at a temperature of about -40°C~85°C . An 1.17mA volt supply current is needed for this linear amplifier to operate. There should be no change in the voltage gain. One of the advantages of this op amp is that it outputs Rail-to-Rail signals, which is one of its many advantages. There are a total of 2 elements in this linear amplifier. The instrumentation amplifier is packed in the form of TR.

LMV712LD/NOPB Features


10 Pins
supply voltage of 2.7V
130dB voltage gain
Output Type: Rail-to-Rail


LMV712LD/NOPB Applications


There are a lot of Texas Instruments
LMV712LD/NOPB Instrumentational OP Amps applications.


  • Addition operation circuits
  • Subtraction operation circuits
  • single/dual op amp sum and difference circuits
  • Integrator circuits
  • Differentiator circuits
  • Logarithmic operation circuits
  • Exponential operation circuits
  • Multiplication circuits
  • Division circuits
  • Precision measurement
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