LMC6464

Features: Ultra Low Supply Current 20 A/AmplifierGuaranteed Characteristics at 3V and 5VRail-to-Rail Input Common-Mode Voltage RangeRail-to-Rail Output Swing (within 10 mV of rail, VS = 5V and RL = 25 k)Low Input Current 150 fALow Input Offset Voltage 0.25 mVApplicationBattery Operated CircuitsTra...

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LMC6464 Picture
SeekIC No. : 004396537 Detail

LMC6464: Features: Ultra Low Supply Current 20 A/AmplifierGuaranteed Characteristics at 3V and 5VRail-to-Rail Input Common-Mode Voltage RangeRail-to-Rail Output Swing (within 10 mV of rail, VS = 5V and RL = ...

floor Price/Ceiling Price

Part Number:
LMC6464
Supply Ability:
5000

Price Break

  • Qty
  • 1~5000
  • Unit Price
  • Negotiable
  • Processing time
  • 15 Days
Total Cost: $ 0.00

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Upload time: 2024/5/28

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Product Details

Description



Features:

Ultra Low Supply Current 20 A/Amplifier
Guaranteed Characteristics at 3V and 5V
Rail-to-Rail Input Common-Mode Voltage Range
Rail-to-Rail Output Swing (within 10 mV of rail, VS = 5V and RL = 25 k)
Low Input Current 150 fA
Low Input Offset Voltage 0.25 mV





Application

Battery Operated Circuits
Transducer Interface Circuits
Portable Communication Devices
Medical Applications
Battery Monitoring





Pinout

  Connection Diagram




Specifications

Channels 4 Channels
VCM Min from Neg Supply -0.1 Volt
VCM Max from Pos Supply 0.3 Volt
Offset Voltage max, 25C 3, 0.5 mV
Supply Min 3 Volt
Supply Max 15.5 Volt
Gain Bandwidth 0.05 MHz
Supply Current Per Channel 0.02 mA
PowerWise Rating 2 400 uA/MHz
Input OutputType R-R In and Out
Vout Min vs Negative Supply 0.005 Volt
Vout Max vs Positive Supply -0.005 Volt
Max Input Bias Current 0.005, 0.2 nA
Slew Rate 0.028, 0.015 Volts/usec
Voltage Noise 80 nV/root(Hz)
Output Current 27 mA
Shut down No
Special Features Undefined
Temperature Min -40, -55 deg C
Temperature Max 85, 125 deg C
Function Op Amp
View Using Catalog


ESD Tolerance (Note 2) ...........................................................2.0 kV
Differential Input Voltage ........................................±Supply Voltage
Voltage at Input/Output Pin........................ (V+) + 0.3V, (V−) − 0.3V
Supply Voltage............................................................ (V+ − V−) 16V
Current at Input Pin (Note 12) ...............................................±5 mA
Current at Output Pin(Notes 3, 8)........................................ ±30 mA
Current at Power Supply Pin 40 mA
Lead Temp. (Soldering, 10 sec.) ..............................................260°C
Storage Temperature Range ................................−65°C to +150°C
Junction Temperature (Note 4)............................................... 150°C





Description

The LMC6464 is a micropower version of the popular LMC6482/4, combining Rail-to-Rail Input and Output Range with very low power consumption.

The LMC6464 provides an input common-mode voltage range that exceeds both rails. The rail-to-rail output swing of the amplifier, guaranteed for loads down to 25 k, assures maximum dynamic sigal range. This rail-to-rail performance of the amplifier, combined with its high voltage gain makes it unique among rail-to-rail amplifiers. The LMC6462/4 is an excellent upgrade for circuits using limited common-mode range amplifiers.

The LMC6464, with guaranteed specifications at 3V and 5V, is especially well-suited for low voltage applications. A quiescent power consumption of 60 µW per amplifier (at VS = 3V) can extend the useful life of battery operated systems. The amplifier's 150 fA input current, low offset voltage of 0.25 mV, and 85 dB CMRR maintain accuracy in battery-powered systems.

Reliability Metrics


Part Number Process EFR Reject EFR Sample Size PPM LTA Rejects LTA Device Hours FITS MTTF (Hours)
LMC6464AIM P2CMOS 0 48295 0 1 4172500 2 536440139
LMC6464AIMX P2CMOS 0 48295 0 1 4172500 2 536440139
LMC6464AMWG-QML P2CMOS 0 48295 0 1 4172500 2 536440139
LMC6464BIM P2CMOS 0 48295 0 1 4172500 2 536440139
LMC6464BIMX P2CMOS 0 48295 0 1 4172500 2 536440139
LMC6464BIN P2CMOS 0 48295 0 1 4172500 2 536440139

Note: The Early Failure Rates (EFR) were calculated as point estimate PPM based on rejects and sample size for EFR. The Long Term Failure Rates were calculated at 60% confidence using the Arrhenius equation at 0.7eV activation energy and derating the assumed stress temperature of 150°C to an application temperature of 55°C.

For more information on Reliability Metrics, please click here.


Design Tools


Title Size in Kbytes Date
Amplifiers Selection Guide software for Windows 8 Kbytes 6-Mar-2007 View

If you have trouble printing or viewing PDF file(s), see Printing Problems.

Application Notes


Title Size in Kbytes Date
AN-1515: Application Note 1515 A Comprehensive Study of the Howland Current Pump 227 Kbytes 29-Jan-08 Download

If you have trouble printing or viewing PDF file(s), see Printing Problems.






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