SLOS010C March   1987  ā€“ August 2026 LF412 , LF412-MIL

PRODUCTION DATA  

  1.   1
  2. 1Features
  3. 2Applications
  4. 3Description
  5. 4Pin Configuration and Functions
  6. 5Specifications
    1. 5.1 Absolute Maximum Ratings
    2. 5.2 Recommended Operating Conditions
    3. 5.3 Electrical Characteristics
    4. 5.4 Operating Characteristics
    5. 5.5 Typical Characteristics
    6. 5.6 Old Versus New Die Comparison
  7. 6Device and Documentation Support
    1. 6.1 Receiving Notification of Documentation Updates
    2. 6.2 Support Resources
    3. 6.3 Trademarks
    4. 6.4 Electrostatic Discharge Caution
    5. 6.5 Glossary
  8. 7Revision History
  9. 8Mechanical, Packaging, and Orderable Information

Typical Characteristics

Data at high and low temperatures are applicable only within the rated operating free-air temperature ranges of the devices.

LF412 Output Voltage Swing vs Output Current (Sourcing), New DieFigure 5-1 Output Voltage Swing vs Output Current (Sourcing), New Die
LF412 Open-Loop Gain and Phase vs Frequency, New Die
CL = 20pF
Figure 5-3 Open-Loop Gain and Phase vs Frequency, New Die
LF412 Quiescent Current vs Supply Voltage, New Die
VCM = V–
Figure 5-5 Quiescent Current vs Supply Voltage, New Die
LF412 Input
                        Bias Current vs Common-Mode Voltage, New DieFigure 5-7 Input Bias Current vs Common-Mode Voltage, New Die
LF412 CMRR
                        and PSRR vs Frequency, New DieFigure 5-9 CMRR and PSRR vs Frequency, New Die
LF412 THD+N
                        Ratio vs Frequency, New Die
BW = 80kHz, VOUT = 1VRMS
Figure 5-11 THD+N Ratio vs Frequency, New Die
LF412 Output Voltage Swing vs Output Current (Sinking), New DieFigure 5-2 Output Voltage Swing vs Output Current (Sinking), New Die
LF412 Short-Circuit Current vs Temperature, New DieFigure 5-4 Short-Circuit Current vs Temperature, New Die
LF412 Quiescent Current vs Temperature, New DieFigure 5-6 Quiescent Current vs Temperature, New Die
LF412 Input
                        Bias Current vs Temperature, New DieFigure 5-8 Input Bias Current vs Temperature, New Die
LF412 Input
                        Voltage Noise Spectral Density vs Frequency, New DieFigure 5-10 Input Voltage Noise Spectral Density vs Frequency, New Die
LF412 THD+N
                        vs Output Amplitude, New Die
BW = 80kHz, f = 1kHz
Figure 5-12 THD+N vs Output Amplitude, New Die