Datasheet
RoHS Compliance Information
| Size in Kbytes | Date |
 |
| LMC6062 Precision CMOS Dual Micropower Operational Amplifier |
336 Kbytes |
2-Mar-01 |
Download |
LMC6062 Precision CMOS Dual Micropower Operational Amplifier (Japanese)
 |
214 Kbytes |
|
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| LMC6062 Mil-Aero Datasheet MNLMC6062AM-X |
58 Kbytes |
|
Download |
Package Availability, Models, Samples & Pricing
| Obsolete Part | Alternate Part or
Supplier | Source | Last Time Buy Date |
LMC6062AI MDC
| NONE
| NATIONAL SEMICONDUCTOR
| 03 Dec 2008
|
LMC6062AIN
| NONE
| NATIONAL SEMICONDUCTOR
| 07 Jun 2005
|
LMC6062AMJ/883
| LMC6482AMJ/883
| NSC
| 05 Mar 2008
|
LMC6062AMN
| NONE
| NONE
| 10 Mar 1998
|
General Description
The LMC6062 is a precision dual low offset voltage, micropower operational amplifier, capable of precision single supply operation. Performance characteristics include ultra low input bias current, high voltage gain, rail-to-rail output swing, and an input common mode voltage range that includes ground. These features, plus its low power consumption, make the LMC6062 ideally suited for battery powered applications.
Other applications using the LMC6062 include precision full-wave rectifiers, integrators, references, sample-and-hold circuits, and true instrumentation amplifiers.
This device is built with National's advanced double-Poly Silicon-Gate CMOS process.
For designs that require higher speed, see the LMC6082 precision dual operational amplifier.
PATENT PENDING
Reliability Metrics
| Part Number |
Process |
EFR Reject |
EFR Sample Size |
PPM |
LTA Rejects |
LTA Device Hours |
FITS |
MTTF (Hours) |
|
LMC6062AIM | P2CMOS | 0 | 49735 | 0 | 1 | 4330000 | 2 | 556689228
|
|
LMC6062AIMX | P2CMOS | 0 | 49735 | 0 | 1 | 4330000 | 2 | 556689228
|
|
LMC6062I MDC | P2CMOS | 0 | 49735 | 0 | 1 | 4330000 | 2 | 556689228
|
|
LMC6062IM | P2CMOS | 0 | 49735 | 0 | 1 | 4330000 | 2 | 556689228
|
|
LMC6062IMX | P2CMOS | 0 | 49735 | 0 | 1 | 4330000 | 2 | 556689228
|
|
LMC6062IN | P2CMOS | 0 | 49735 | 0 | 1 | 4330000 | 2 | 556689228
|
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 |
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| Amplifiers Selection Guide software for Windows |
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View |
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Application Notes
| Title | Size in Kbytes |
Date |
 |
| AN-856: Application Note 856 A SPICE Compatible Macromodel for CMOS Operational Amplifiers |
121 Kbytes |
1-Oct-02 |
Download |
[Information as of 8-Nov-2009]
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