LMV651

Features: (Typical 5V supply, unless otherwise noted) Guaranteed 3.0V and 5.0V performance High unity gain bandwidth 12 MHzLow power supply current 110 µAMax input offset voltage 1 mVCapacitive load drive capability 500 pF CMRR 100 dBPSRR 95 dB Input referred voltage noise 17nV/Output swing ...

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SeekIC No. : 004397259 Detail

LMV651: Features: (Typical 5V supply, unless otherwise noted) Guaranteed 3.0V and 5.0V performance High unity gain bandwidth 12 MHzLow power supply current 110 µAMax input offset voltage 1 mVCapacitiv...

floor Price/Ceiling Price

Part Number:
LMV651
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: 2024/10/27

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Product Details

Description



Features:

(Typical 5V supply, unless otherwise noted)
Guaranteed 3.0V and 5.0V performance
High unity gain bandwidth 12 MHz
Low power supply current 110 µA
Max input offset voltage 1 mV
Capacitive load drive capability 500 pF
CMRR 100 dB
PSRR 95 dB
Input referred voltage noise 17nV/
Output swing with 2 kΩ load 50 mV from rail
Total harmonic distortion 0.003% @ 1 kHz, 600Ω
Temperature range −40°C to 125°C





Application

Portable equipment
Automotive
Battery powered systems
Sensors and Instrumentation





Specifications

Supply Min 2.7 Volt
Supply Max 5.5 Volt
Gain Bandwidth 12 MHz
Slew Rate 2.8 Volts/usec
Offset Voltage max, 25C 1.5 mV
Max Input Bias Current 100 nA
Input OutputType Vcm to V-, R-R Out
Supply Current Per Channel 0.11 mA
PowerWise Rating 2 9.2 uA/MHz
Channels 1 Channels
Output Current 15 mA
Shut down No
Special Features Undefined
Voltage Noise 17 nV/root(Hz)
Temperature Max 125 deg C
Temperature Min -40 deg C
Function Op Amp
Automotive Selection Guide Yes
PowerWise Yes
View Using Catalog


ESD Tolerance (Note 2)
Human Body ..................................................2 KV
Machine Model .............................................200V
VIN Differential........................................... ±0.3V
Supply Voltage (V+ - V−).................................. 6V
Input/Output Pin Voltage ......V+ +0.3V, V− −0.3V
Storage Temperature Range ..−65°C to +150°C
Junction Temperature (Note 3) ................+150°C
Soldering Information
Infrared or Convection (20 sec) .................235°C
Wave Soldering Lead Temp (10
sec) ............................................................260°C





Description

National's LMV651/LMV652/LMV654 are high performance, low power operational amplifier ICs implemented with National's advanced VIP50 process. This family of parts features 12 MHz of bandwidth while consuming only 116 A of current, which is an exceptional bandwidth to power ratio in this op amp class. The LMV651/LMV652/LMV654 are unity gain stable and provide an excellent solution for general purpose amplification in low voltage, low power applications.

This family of low voltage, low power amplifiers provides superior performance and economy in terms of power and space usage. These op amps have a maximum input offset voltage of 1.5 mV, a rail-to-rail output stage and an input common-mode voltage range that includes ground. The LMV651/LMV652/LMV654 provide a PSRR of 95 dB, a CMRR of 100 dB and a total harmonic distortion (THD) of 0.003% at 1 kHz frequency and 2 kΩ load.

The operating supply voltage range for this family of parts is from 2.7V and 5.5V. These op amps can operate over a wide temperature range (−40°C to 125°C) making them ideal for automotive applications, sensor applications and portable equipment applications. The LMV651 is offered in the ultra tiny 5-Pin SC70 and 5-Pin SOT-23 package. The LMV652 is offered in an 8-Pin MSOP package. The LMV654 is offered in a 14-Pin TSSOP package.

Reliability Metrics


Part Number Process EFR Reject EFR Sample Size PPM LTA Rejects LTA Device Hours FITS MTTF (Hours)
LMV651MG PVIP050 0 9600 0 0 765000 5 217070838
LMV651MGX PVIP050 0 9600 0 0 765000 5 217070838

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.







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