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TDA1543 DAC: Datasheet, Pinout, Circuit [Video&FAQ]

  • Contents

Product Overview

The TDA1543 is a monolithic integrated dual 16-bit digital-to-analog converter (DAC) designed as an economy version for use in hi-fi digital audio equipment such as Compact Disc players, digital tape or cassette recorders, digital sound in TV sets and in digital amplifiers.

 

This blog will introduce TDA1543 systematically from its features, pinout to its specifications, applications, also including TDA1543 datasheet and so much more.

 

Video: ESP8266 MP3 Player with I2S DAC TDA1543

 

Catalog

Product Overview

TDA1543 Features

TDA1543 Pinout

TDA1543 Pin Configuration

TDA1543 Applications

TDA1543 CAD Models

TDA1543 Circuit Diagram

TDA1543 Block Diagram

TDA1543 Package

TDA1543 Specification

TDA1543 Manufacturer

TDA1543 Datasheet

Using Warnings

TDA1543 FAQ

 

TDA1543 Features

  • Low distortion
  • 16-bit dynamic range
  • 4 × oversampling possible
  • Single 5 V power supply
  • No external components required
  • No requirement for external deglitcher circuitry due to fast settling output current
  • Adjustable bias current
  • Internal timing and control circuits
  • I2S input format: time multiplexed, two's complement, TTL.

 

TDA1543 Pinout

The following figure is the diagram of TDA1543 pinout.

 

TDA1543 Pinout

TDA1543 Pinout

 

TDA1543 Pin Configuration

SYMBOL PIN DESCRIPTION
BCK 1 bit clock input
WS 2 word select input
DATA 3 data input
GND 4 ground
Vdd 5 +5 V supply voltage
AOL 6 left channel voltage output
Vref  7 reference voltage output
AOR 8 right channel output

 

TDA1543 Applications

  • Compact disc players
  • Digital tape or cassette
  • Recorders
  • Digital sound in TV sets
  • Digital amplifiers

 

TDA1543 CAD Models

The followings are TDA1543 Symbol, Footprint, and 3D Model.

 

TDA1543 Symbol

TDA1543 Symbol

 

TDA1543 Footprint

TDA1543 Footprint

 

TDA1543 3D Model

TDA1543 3D Model

 

TDA1543 Circuit Diagram

The followings are circuits at the input and output pins.

 

TDA1543 Circuit Diagram

TDA1543 Circuit Diagram

 

TDA1543 Block Diagram

The following figure shows the block diagram of TDA1543.

 

TDA1543 Block Diagram

TDA1543 Block Diagram

 

TDA1543 Package

The following diagram shows the TDA1543 package.

 

TDA1543 Package

TDA1543 Package

 

TDA1543 Specification

Manufacturer: Philips Semiconductors
Number of Bits: 16
Operating Temperature-Max: 85 °C
Operating Temperature-Min: -30 °C
Power Supplies: 5 V
Subcategory: Other Converters
Supply Current-Max: 60 mA
Supply Voltage-Nom: 5 V
Terminal Pitch: 2.54 mm
Terminal Position: DUAL
Terminal Form: THROUGH-HOLE

 

TDA1543 Manufacturer

Philips Semiconductors is now NXP Semiconductors. NXP Semiconductors, formerly Philips Semiconductors, has fifty years of innovation and a rich IP portfolio that firmly establishes NXP as Europe's second largest semiconductor company.

 

TDA1543 Datasheet

You can download TDA1543 datasheet from the link given below:

TDA1543 Datasheet

 

Using Warnings

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

 

TDA1543 FAQ

What is digital to analog converter examples?

An example of a DAC device is a modem. A modem requires DAC to convert data to analog signals, which can be carried by a telephone wire. Another example of a DAC device is a video adapter.

 

What are the types of digital to analog converter?

There are basically four types of Digital to Analog Converter circuits namely: Binary Weighted Resistor D/A Converter Circuit, Binary ladder or R–2R ladder D/A Converter Circuit, Segmented DAC, Delta-Sigma DAC.

 

Why do we use DAC?

DACs are commonly used in music players to convert digital data streams into analog audio signals. They are also used in televisions and mobile phones to convert digital video data into analog video signals. These two applications use DACs at opposite ends of the frequency/resolution trade-off.

 

What is difference between ADC and DAC?

An ADC takes an analog signal and converts it into a binary one, while a DAC converts a binary signal into an analog value.

 

Why do we need ADC and DAC?

Analog to Digital Converter (ADC) and Digital to Analog Converter (DAC) are very important components in electronic equipment. Since most real world signals are analog, these two converting interfaces are necessary to allow digital electronic equipments to process the analog signals.

PCB Symbol, Footprint & 3D Model

 

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