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National Semiconductor
LME49713
LME49713 is High Fidelity Current Feedback Audio Operational Amplifier manufactured by National Semiconductor.
Description The LME49713 is an ultra-low distortion, low noise, ultra high slew rate current feedback operational amplifier optimized and fully specified for high performance, high fidelity applications. bining advanced leading-edge process technology with state-of-the-art circuit design, the LME49713 current feedback operational amplifier delivers superior signal amplification for outstanding performance. Operating on a wide supply range of ±5V to ±18V, the LME49713 bines extremely low voltage noise density (1.9n V/√Hz) with very low THD+N (0.00008%) to easily satisfy the most demanding applications. To ensure that the most challenging loads are driven without promise, the LME49713 has a high slew rate of ±1900V/μs and an output current capability of ±100m A. Further, dynamic range is maximized by an output stage that drives 150Ω loads to within 2.9V of either power supply voltage. The LME49713 's outstanding CMRR (88d B), PSRR (102d B), and VOS (0.05m V) give the amplifier excellent operational amplifier DC performance. The LME49713 is available in an 8- lead narrow body SOIC. Demonstration boards are available. -  Input Noise Density -  Slew Rate -   Bandwidth (AV = - 1, RL= 2kΩ, RF = 1.2kΩ) 1.9n V/√Hz (typ) ±1900V/μs (typ) 132MHz (typ) 1.8μA (typ) 0.05m V (typ) -  Input Bias Current -  Input Offset Voltage Features - - - - - Easily drives 150Ω loads Optimized for superior audio signal fidelity Output short circuit protection 102d B (typ) PSRR and 88d B (typ) CMRR SOIC package Applications - - - - - - - - - Ultra high quality audio amplification High fidelity preamplifiers High fidelity multimedia State of the art phono pre amps High performance professional audio High fidelity equalization and crossover networks High performance line drivers High performance line receivers High fidelity active filters Key Specifications -  Power Supply Voltage Range -  THD+N  (AV = 1, RL = 100Ω, VOUT = 3VRMS,  f = 1k Hz) -  THD+N  (AV = 1, RL = 600Ω, VOUT = 1.4VRMS,  f = 1k Hz) ±5V to...