IC MODULATOR 64TQFP
IC LINE DRIVER 28TSSOP
OP AMP
AUDIO/VIDEO SWITCH, PQCC10
IC AUDIO SIGNAL PROCESSOR 16QFN
MULTIMEDIA AND USB 2.0 HI-SPEED
IC AUDIO SIGNAL PROCESSOR 32TQFP
IC AUDIO SIGNAL PROCESSOR 16QFN
IC AUDIO SIGNAL PROCESSOR 48TQFP
IC AUDIO TRANSCEIVER 48LQFP
Images
Mfr.Part #
In Stock
Manufacturer
Description
Package
TAS5504PAG TAS5504PAG 9767 Texas Instruments IC MODULATOR 64TQFP 64-TQFP
DIT4192IPWR DIT4192IPWR 17982 Texas Instruments IC LINE DRIVER 28TSSOP 28-TSSOP (0.173", 4.40mm Width)
INA1651IPWR INA1651IPWR 1341 Texas Instruments OP AMP 14-TSSOP (0.173", 4.40mm Width)
FSA8008AUMX FSA8008AUMX 1197 Fairchild Semiconductor AUDIO/VIDEO SWITCH, PQCC10 10-UFQFN
TPA5052RSAR TPA5052RSAR 49365 Texas Instruments IC AUDIO SIGNAL PROCESSOR 16QFN 16-VQFN Exposed Pad
FSA221L10X FSA221L10X 30620 Fairchild Semiconductor MULTIMEDIA AND USB 2.0 HI-SPEED 10-UFQFN Exposed Pad
TWL1103TPBSRQ1 TWL1103TPBSRQ1 44330 Texas Instruments IC AUDIO SIGNAL PROCESSOR 32TQFP 32-TQFP
TPA5051RSAR TPA5051RSAR 48766 Texas Instruments IC AUDIO SIGNAL PROCESSOR 16QFN 16-VQFN Exposed Pad
TAS5010IPFB TAS5010IPFB 20842 Texas Instruments IC AUDIO SIGNAL PROCESSOR 48TQFP 48-TQFP
DIX9211PT DIX9211PT 29496 Texas Instruments IC AUDIO TRANSCEIVER 48LQFP 48-LQFP

Audio Special Purpose

1. What are Audio Special Purpose ICs?‌

Audio Special Purpose ICs are integrated circuits designed for audio signal processing, including core functional modules such as audio codec (CODEC), digital signal processor (DSP), amplifier, mixer, etc., covering the entire link of audio signal acquisition, conversion, processing, and output. This type of chip achieves application requirements such as high-definition voice capture and multi-channel output through analog signal input, A/D conversion, digital processing (such as noise reduction and equalization), and D/A conversion.

 

2. What are the ‌Main Types of Audio Special Purpose ICs?‌

‌Audio Codec (CODEC)‌

Mainly responsible for analog-to-digital conversion (ADC) and digital-to-analog conversion (DAC), which directly affects the quality of analog input and output. For example, the AC107 chip supports multi-microphone array input and is suitable for speech recognition scenarios.

 

‌Digital Signal Processor (DSP)‌

Performs complex algorithm processing on digital audio, such as filtering, sound enhancement, etc. Some high-end models integrate independent programmable microphone bias voltage and amplifier.

 

‌Automotive Audio Processor‌

Optimized for the in-vehicle environment, such as BD37033FV-ME2 and BD37069FV-ME2 support multi-channel output (such as 6 channels), covering power management, interface control, and other functions, and adapting to the low noise and high-reliability requirements of the automotive audio system.

 

‌Power Amplifier‌

Such as the LTC6910 series, it provides high driving capability and is commonly found in portable devices and consumer electronics products. It is necessary to pay attention to the packaging form (such as SOT23-8) and the power supply voltage range.

 

3. ‌Interface and Communication Protocol of Audio Special Purpose ICs‌

‌Digital Interface Type‌

Includes I²S (mainstream audio data transmission bus), PCM (mostly used for data conversion between subsystems), and PDM (microphone recording scenarios). Among them, I²S supports left and right channel separation transmission and can work efficiently with the main control chip.

 

‌Control Interface‌

Such as the I²C bus, used for parameter configuration (such as volume adjustment).

 

4. What are Audio Special Purpose ICs Used for?‌‌

‌Consumer Electronics‌: audio processing of headphones, smart speakers, mobile phones, and other devices.

‌Automotive Electronics‌: Car audio, voice assistant, etc.

‌Industry and Communications‌: Conference systems, signal processing of voice recognition equipment.

 

5. ‌Design Points for Audio Special Purpose ICs‌

‌Power Supply and Wiring‌: Short and wide power leads should be used to reduce impedance and avoid power ripple affecting sound quality.

‌Interface Layout‌: It is recommended to place peripheral interfaces such as headphone jacks on the edge of the PCB for easy plugging and unplugging. At the same time, attention should be paid to the isolation of power supply pins (such as +5V power lines to avoid misconnection).

‌Anti-interference‌: The analog signal path needs to be separated from the digital signal to reduce crosstalk.