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ADAU1701 Audio Processor: Arduino,Board,DSP [FAQ]

  • Contents

 

Catalog

Description

CAD Models

Pin Configuration

Block Diagram

Features

Applications

Datasheet

Specifications

Manufacturer

Using Warning

FAQ

 

Description

The ADAU1701 is a complete single-chip audio system with a 28-/56-bit audio DSP, ADCs, DACs, and microcontroller-like control interfaces. Signal processing includes equalization, cross- over, bass enhancement, multiband dynamics processing, delay compensation, speaker compensation, and stereo image widening. This processing can be used to compensate for real-world limitations of speakers, amplifiers, and listening environments, providing dramatic improvements in perceived audio quality.

 

Its signal processing is comparable to that found in high end studio equipment. Most processing is done in full 56-bit, double precision mode, resulting in very good low level signal perfor- mance. The ADAU1701 is a fully programmable DSP. The easy to use SigmaStudio™ software allows the user to graphically configure a custom signal processing flow using blocks such as biquad filters, dynamics processors, level controls, and GPIO interface controls.

 

ADAU1701 programs can be loaded on power-up either from a serial EEPROM through its own self-boot mechanism or from an external microcontroller. On power-down, the current state of the parameters can be written back to the EEPROM from the ADAU1701 to be recalled the next time the program is run.

 

Two Σ-Δ ADCs and four Σ-Δ DACs provide a 98.5 dB analog input to analog output dynamic. Each ADC has a THD + N of −83 dB, and each DAC has a THD + N of −90 dB. Digital input and output ports allow a glueless connection to additional ADCs and DACs. The ADAU1701 communicates through an I2C® bus or a 4-wire SPI port.

 

CAD Models

ADAU1701-PCB-Symbol

 

Figure: PCB Symbol

 

ADAU1701-PCB-Footprint

 

Figure: Footprint

 

ADAU1701-3D-Model

 

Figure: 3D Model

 

Pin Configuration

ADAU1701-Pin-Configuration

 

Figure: Pin Configuration

 

Block Diagram

ADAU1701-Functional-Block-Diagram

 

Figure: Block Diagram

 

Features

28-/56-bit, 50 MIPS digital audio processor

 

2 ADCs: SNR of 100 dB, THD + N of −83 dB

 

4 DACs: SNR of 104 dB, THD + N of −90 dB

 

Complete standalone operation Self-boot from serial EEPROM

 

Auxiliary ADC with 4-input mux for analog control

 

GPIOs for digital controls and outputs

 

Fully programmable with SigmaStudio graphical tool

 

28-bit × 28-bit multiplier with 56-bit accumulator for full double-precision processing

 

Clock oscillator for generating a master clock from crystal

 

PLL for generating master clock from 64 × fS, 256 × fS,

384 × fS, or 512 × fS clocks

 

Flexible serial data input/output ports with I2S-compatible, left-justified, right-justified, and TDM modes

 

Sampling rates of up to 192 kHz are supported

 

On-chip voltage regulator for compatibility with 3.3 V systems 48-lead, plastic LQFP

 

Applications

Multimedia speaker systems MP3 player speaker docks Automotive head units Minicomponent stereos Digital televisions

Studio monitors Speaker crossovers

Musical instrument effects processors

In-seat sound systems (aircraft/motor coaches)

 

Datasheet

You can download the datasheet the link given below.

ADAU1701-Datasheet

 

Specifications

Physical
Case/Package LQFP
Contact Plating Tin
Mount Surface Mount
Number of Pins 48
Weight 181.692094 mg
Technical
Frequency 50 MHz
Interface I2C, SPI
Max Operating Temperature 70 掳C
Max Power Dissipation 286.5 mW
Max Supply Voltage 1.84 V
Min Operating Temperature 0 掳C
Min Supply Voltage 1.7 V
Number of Converters 6
Number of GPIO 12
Operating Supply Current 40 mA
Resolution 3 B
Signal to Noise Ratio (SNR) 100 dB
Termination SMD/SMT
Dimensions
Height 1.4 mm
Length 7 mm
Width 7 mm
Compliance
Lead Free Contains Lead
Radiation Hardening No
REACH SVHC No SVHC
RoHS Compliant

 

Manufacturer

Analog Devices, Inc. (ADI), also known simply as Analog, is an American multinational semiconductor company specializing in data conversion, signal processing and power management technology, headquartered in Wilmington, Massachusetts.

 

Using Warning

Note: Please check their parameters and pin configuration before replacing them in your circuit.

 

FAQ

What is audio digital signal processor?

A DSP is a processor dedicated to number-crunching digital signals like audio. They're designed to perform mathematical functions like addition and subtraction at high speed with minimal energy consumption. DSP chips appear in a variety of sizes, prices, and performance points.

 

What does an audio processor do?

A processor allows us to delay the sound arrival from each and every speaker. Now, it all arrives at your ears at the exact same time. Doing this makes your sound appear in front of you, with staging and imaging that rivals an intimate jazz concert or acoustical performance.

 

Why is DSP important?

Digital Signal Processing is important because it significantly increases the overall value of hearing protection. Unlike passive protection, DSP suppresses noise without blocking the speech signal.

 

What is difference between analog and digital signal?

The major difference between both signals is that the analog signals have continuous electrical signals, while digital signals have non-continuous electrical signals. The difference between analog and digital signal can be observed with the various examples of different types of waves.

 

What is the difference between DSP processor and microprocessor?

The DSP processor is a particular type of processor is a specialized microprocessor that has an architecture optimized for the operational needs of digital signal processing. The main difference between is that a DSP processor has features designed to support high performance, repetitive, numerically intensive tasks.

 

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