Linear - Amplifiers - Audio

Image Part Number Description / PDF Quantity Rfq
TDA8922CTH/N1,112

TDA8922CTH/N1,112

NXP Semiconductors

AUDIO AMPLIFIER, 2 FUNC, PDSO24

820

TDF8541JS/N3,512

TDF8541JS/N3,512

NXP Semiconductors

IC AMP CLSS AB QUAD 64W 27DBSMSP

0

TDA8595J/N2S,112

TDA8595J/N2S,112

NXP Semiconductors

IC AMP AUDIO PWR QUAD SOT827

10546

TDA8595TH/N2S,118

TDA8595TH/N2S,118

NXP Semiconductors

IC AMP CLASS AB QUAD 64W 36HSOP

0

TDA8953TH/N1,112

TDA8953TH/N1,112

NXP Semiconductors

IC AMP D MONO/STEREO 420W 24HSOP

0

TDF8599CTH/N1,118

TDF8599CTH/N1,118

NXP Semiconductors

IC AMP D MONO/STEREO 300W 36HSOP

356

TDF8599CTH/N1,112

TDF8599CTH/N1,112

NXP Semiconductors

IC AMP D MONO/STEREO 300W 36HSOP

0

TDF8544J/N3,112

TDF8544J/N3,112

NXP Semiconductors

IC AMP CLASS AB QUAD 28W DBS27P

0

TFA9815T/N1,118

TFA9815T/N1,118

NXP Semiconductors

IC AMP AUD STER D 2X17W 32SO

25484

TDA8932BT/N2,112

TDA8932BT/N2,112

NXP Semiconductors

IC AMP CLSS D MONO/STER 55W 32SO

726

TDA8953J/N1,112

TDA8953J/N1,112

NXP Semiconductors

IC AMP D MONO/STEREO 420W DBS23P

415

TFA9914UK/N1Z

TFA9914UK/N1Z

NXP Semiconductors

IC AMP CLASS D MONO 5.6W 48WLCSP

4000

TDF8599ATH/N2CS

TDF8599ATH/N2CS

NXP Semiconductors

IC AMP D MONO/STEREO 250W 36HSOP

0

TDF8546TH/N2,118

TDF8546TH/N2,118

NXP Semiconductors

IC AMP CLASS AB QUAD 64W 36HSOP

0

TFA9881UK/N1,023

TFA9881UK/N1,023

NXP Semiconductors

IC AMP AUDIO CLASSD 3.4W 9WLCSP

0

TDA8922CJ/N1,112

TDA8922CJ/N1,112

NXP Semiconductors

AUDIO AMPLIFIER, 2 FUNC, PZIP23

54

TDF8534HH/N3Y

TDF8534HH/N3Y

NXP Semiconductors

IC AMPLIFIER CLASS D 100HLQFP

0

TDF8599BTH/N1CS

TDF8599BTH/N1CS

NXP Semiconductors

IC AMP D MONO/STEREO 150W 36HSOP

0

TDA8954J/N1,112

TDA8954J/N1,112

NXP Semiconductors

IC AMP D MONO/STEREO 420W DBS23P

0

TDF8541TH/N3,118

TDF8541TH/N3,118

NXP Semiconductors

IC AMP CLASS AB QUAD 64W 36HSOP

0

Linear - Amplifiers - Audio

1. Overview

Linear audio amplifiers are electronic devices designed to amplify low-level audio signals while maintaining signal integrity and minimizing distortion. They operate in the linear region of transistor characteristics, ensuring high-fidelity sound reproduction. These amplifiers are critical in audio systems for applications ranging from consumer electronics to professional audio equipment, enabling clear sound amplification in devices such as smartphones, home theaters, and musical instruments.

2. Main Types and Functional Classification

Type Functional Characteristics Application Examples
Class AB Amplifiers Combines efficiency of Class B with low distortion of Class A Home audio systems, guitar amplifiers
Class D Amplifiers Switching amplifiers with high power efficiency (typically >90%) Portable speakers, automotive audio systems
Class G/H Amplifiers Uses multiple power rails to improve efficiency Professional audio mixers, high-power amplifiers
Class A Amplifiers Full-cycle conduction with minimal distortion High-end audiophile equipment, preamplifiers

3. Structure and Components

Typical linear audio amplifiers consist of: - Input Stage: Differential amplifier for signal reception - Gain Stage: Voltage amplification using transistors or op-amps - Output Stage: Push-pull configuration for power delivery - Power Supply: Symmetrical voltage rails ( Vcc) - Thermal Management: Heat sinks or thermal pads for power dissipation Packaged in DIP, SOIC, or surface-mount (SMT) formats with 8-14 pins.

4. Key Technical Specifications

Parameter Description Importance
Gain Bandwidth Product (GBW) Product of amplifier gain and operational bandwidth Determines frequency response capability
Total Harmonic Distortion + Noise (THD+N) Measure of signal distortion and noise Indicates audio quality (typically <0.1%)
Output Power Maximum power delivered to load (Watts) Defines application suitability (e.g., 2x15W for stereo)
Power Supply Rejection Ratio (PSRR) Ability to reject power supply noise Impacts noise immunity (typically >60dB)
Quiescent Current Current consumption at no-load condition Affects power efficiency and thermal design

5. Application Areas

  • Consumer Electronics: Smartphones, TVs, headphones
  • Professional Audio: Mixing consoles, studio monitors
  • Automotive: In-car entertainment systems
  • Communication: PA systems, VoIP equipment

6. Leading Manufacturers and Products

Manufacturer Representative Product Key Specifications
TI (Texas Instruments) TPA3255 2x75W Class D amplifier, 102dB PSRR
STMicroelectronics TDA7294 100W Hi-Fi amplifier, DMOS output stage
Analog Devices AD822 Low noise JFET input amplifier
NXP Semiconductors TDA1541A 192kHz DAC with integrated headphone amplifier

7. Selection Guidelines

Key considerations for selection: 1. Application Requirements: Output power, frequency range, and load impedance 2. Power Supply Constraints: Available voltage/current capacity 3. Thermal Management: Operating temperature range and cooling methods 4. Form Factor: Package size for PCB integration 5. Cost vs. Performance: Balancing THD+N, efficiency, and budget

8. Industry Trends

Future developments include: - Increased integration with digital signal processing (DSP) - Adoption of GaN (Gallium Nitride) technology for higher efficiency - Development of AI-powered noise cancellation algorithms - Miniaturization through 3D packaging techniques - Enhanced Class D amplifier designs with reduced electromagnetic interference (EMI)

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