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LME49713HA/NOPB from NS,National Semiconductor

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LME49713HA/NOPB

Manufacturer: NS

High Performance, High Fidelity Current Feedback Audio Operational Amplifier 8-TO-99 -40 to 85

Partnumber Manufacturer Quantity Availability
LME49713HA/NOPB,LME49713HANOPB NS 100 In Stock

Description and Introduction

High Performance, High Fidelity Current Feedback Audio Operational Amplifier 8-TO-99 -40 to 85 The LME49713HA/NOPB is a high-performance, high-fidelity audio operational amplifier manufactured by Texas Instruments (NS).  

### **Specifications:**  
- **Supply Voltage Range:** ±2.5V to ±17V  
- **Low Noise:** 2.7nV/√Hz (typical)  
- **Low THD+N:** 0.00003% (typical)  
- **High Slew Rate:** 20V/µs (typical)  
- **Wide Bandwidth:** 55MHz (typical)  
- **High Output Current:** ±45mA (typical)  
- **Operating Temperature Range:** -40°C to +85°C  
- **Package Type:** TO-99 (Metal Can)  

### **Descriptions and Features:**  
- **Ultra-Low Distortion:** Designed for high-end audio applications requiring minimal harmonic distortion.  
- **Low Noise:** Optimized for precision audio signal processing.  
- **High Slew Rate:** Ensures fast signal response.  
- **Wide Supply Range:** Supports a broad range of operating voltages.  
- **Stable Performance:** Internally compensated for unity-gain stability.  
- **Robust Construction:** TO-99 package provides excellent thermal and electrical performance.  

This amplifier is ideal for professional audio equipment, high-end DACs, preamplifiers, and other critical audio applications.

Application Scenarios & Design Considerations

High Performance, High Fidelity Current Feedback Audio Operational Amplifier 8-TO-99 -40 to 85# Technical Documentation: LME49713HANOPB High-Performance Audio Operational Amplifier

 Manufacturer : Texas Instruments (formerly National Semiconductor - NS)
 Document Revision : 1.0
 Date : October 26, 2023

## 1. Application Scenarios

The LME49713HANOPB is a high-fidelity, high-performance audio operational amplifier designed for professional and consumer audio applications where superior sound quality, low noise, and low distortion are critical. It combines the benefits of bipolar and CMOS technologies to deliver exceptional audio performance.

### Typical Use Cases

*    High-End Preamplifiers and Line Amplifiers:  The amplifier's ultra-low noise (2.7 nV/√Hz) and low distortion (0.00003% THD+N) make it ideal for the sensitive gain stages in phono preamps, microphone preamplifiers, and mixing console summing buses, where signal integrity is paramount.
*    Active Filter Networks:  Its high gain-bandwidth product (55 MHz) and excellent slew rate (20 V/µs) allow for the implementation of precise active filters (e.g., Linkwitz-Riley crossovers, equalizers) without phase degradation or slew-induced distortion at audio frequencies.
*    Digital-to-Analog Converter (DAC) Output Buffers:  The LME49713 excels as an I/V converter or output buffer for high-resolution audio DACs. Its low noise floor ensures the delicate analog signal from the DAC is amplified without adding audible artifacts, preserving dynamic range.
*    Headphone Amplifiers:  Capable of driving moderate impedance loads (down to 600 Ω with ease), it is suitable for the output stage of high-fidelity headphone amplifiers, providing clean, uncolored power.
*    Professional Audio Equipment:  Found in studio-grade compressors, equalizers, and analog synthesizers where transparent signal processing is required.

### Industry Applications

*    Consumer Audio:  High-end A/V receivers, integrated amplifiers, CD/DAC players, and USB audio interfaces.
*    Professional Audio & Broadcasting:  Studio recording equipment, broadcast mixing consoles, and outboard processing gear.
*    Musical Instruments:  High-quality guitar pedals, preamps, and stage amplifiers.
*    Test & Measurement:  Used in audio analyzers and signal generators as a low-distortion source buffer or gain stage.

### Practical Advantages and Limitations

 Advantages: 
*    Exceptional Sonic Fidelity:  Extremely low THD+N and intermodulation distortion (IMD) result in a transparent, "wire-with-gain" sound characteristic.
*    Wide Supply Range:  Operates from ±2.5V to ±17V, offering flexibility in system design for both portable and mains-powered equipment.
*    High Output Drive:  Can deliver ±30 mA continuous output current, sufficient for driving cables, filters, and moderate loads.
*    Robust Overload Recovery:  Designed to recover quickly from output saturation or clipping, minimizing audible "thumps" or prolonged distortion.
*    Unity-Gain Stable:  Can be used in buffer (voltage follower) configurations without risk of oscillation.

 Limitations: 
*    Not a Power Amplifier:  While it has good drive capability, it cannot directly drive low-impedance speakers (e.g., 4-8 Ω). An external power stage is required for loudspeaker amplification.
*    Thermal Considerations:  In high-gain, high-output current applications, the 8-pin DIP (H) package may require attention to PCB thermal design to maintain optimal performance.
*    Cost vs. Performance:  It is a premium audio op-amp. For non-critical audio applications (e.g., control loops, non-audio signal conditioning), a more general-purpose op-amp may be more cost-effective.
*    Decoupling Requirements:  To achieve its

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