LMC6462AIM

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Mfr.Part #
LMC6462AIM
Manufacturer
Texas Instruments
Package / Case
8-SOIC (0.154, 3.90mm Width)
Datasheet
Download
Description
IC CMOS 2 CIRCUIT 8SOIC
Stock
31,119
In Stock :
31,119

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Manufacturer :
Texas Instruments
Product Category :
Instrumentation, OP Amps, Buffer Amps
Operating Supply Current :
50μA
RoHS Status :
Non-RoHS Compliant
Supply Voltage :
5V
JESD-609 Code :
e0
Bandwidth :
50 kHz
Height :
1.75mm
Moisture Sensitivity Level (MSL) :
1 (Unlimited)
Output Type :
Rail-to-Rail
Width :
3.91mm
Nominal Supply Current :
90μA
Package / Case :
8-SOIC (0.154, 3.90mm Width)
Thickness :
1.58mm
Voltage - Supply, Single/Dual (±) :
3V~15.5V ±1.5V~7.75V
Slew Rate :
0.028V/μs
Supply Voltage Limit-Max :
16V
Power Supplies :
3/15V
Output Current :
75mA
Output Current per Channel :
75mA
Architecture :
VOLTAGE-FEEDBACK
Mounting Type :
Surface Mount
Average Bias Current-Max (IIB) :
0.00001μA
Pin Count :
8
Programmable Power :
No
Unity Gain BW-Nom :
50 kHz
Terminal Position :
Dual
Base Part Number :
LMC6462
Peak Reflow Temperature (Cel) :
235
Terminal Form :
Gull wing
Micropower :
yes
Radiation Hardening :
No
Lead Free :
Contains Lead
Common Mode Rejection Ratio :
70 dB
ECCN Code :
EAR99
Number of Terminations :
8
Low-Bias :
yes
Length :
4.9mm
Frequency Compensation :
yes
Power Supply Rejection Ratio (PSRR) :
70dB
Low-Offset :
No
Mount :
Surface Mount
Packaging :
Tube
Input Offset Current-Max (IIO) :
0.000005μA
REACH SVHC :
No SVHC
Number of Pins :
8
Current - Input Bias :
0.15pA
Number of Channels :
2
Amplifier Type :
GENERAL PURPOSE
Bias Current-Max (IIB) @25C :
0.00001μA
Lifecycle Status :
NRND (Last Updated: 3 days ago)
Max Supply Current :
20μA
Operating Temperature :
-40°C~85°C
Voltage - Input Offset :
250μV
Voltage Gain :
129.54dB
Number of Functions :
2
Terminal Finish :
Tin/Lead (Sn/Pb)
Input Offset Voltage (Vos) :
500μV
Introducing Instrumentation, OP Amps, Buffer Amps Texas Instruments LMC6462AIM from Chip IC,where excellence meets affordability. This product stands out with its Bandwidth:50 kHz, Package / Case:8-SOIC (0.154, 3.90mm Width), Mounting Type:Surface Mount, Base Part Number:LMC6462, Number of Terminations:8, Number of Pins:8, Number of Channels:2, Operating Temperature:-40°C~85°C, LMC6462AIM pinout, LMC6462AIM datasheet PDF, LMC6462AIM amp .Beyond Instrumentation, OP Amps, Buffer Amps Texas Instruments LMC6462AIM ,we also offer OP07CDR, TS321CX5 RFG, NE5532ADR, Our vast inventory has you covered. Contact us now for immediate solutions.

Texas Instruments LMC6462AIM


2 Channels 75mA per Channel 0.15pA 70 dB Instrumentational OP Amps 0.00001μA 3V~15.5V ±1.5V~7.75V LMC6462 8 Pins 8-SOIC (0.154, 3.90mm Width)

LMC6462AIM Overview


A 8-SOIC (0.154, 3.90mm Width) 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 Tube case. It is estimated that there will be 8 terminations in the next few months. There are a total of 8 pins on this op amp. It is important to remember that this op amp should be operated at a voltage of 5V volts. There are 8 pins on this chip. In terms of the input offset voltage, instrumentation amplifier rates at 500μV. 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 50μA volt supply current is needed for this linear amplifier to operate. Voltage gain should remain at 129.54dB. There are 2 channels on the operational amplifiers. One of the advantages of this op amp is that it outputs Rail-to-Rail signals, which is one of its many advantages.

LMC6462AIM Features


8 Pins
supply voltage of 5V
129.54dB voltage gain
Output Type: Rail-to-Rail


LMC6462AIM Applications


There are a lot of Texas Instruments
LMC6462AIM 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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