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TPS5430DDAR Wide Input Range, Step-Down Converter: CAD Models, Datasheet, Features [Video&FAQ]

  • Contents

Catalog

Product Overview

TPS5430DDAR Related Video Introduction

TPS5430DDAR CAD Models

TPS5430DDAR Pin Configuration

TPS5430DDAR Block Diagram

TPS5430DDAR Schematic

TPS5430DDAR Features

TPS5430DDAR Applications

TPS5430DDAR Datasheet

TPS5430DDAR Specifications

TPS5430DDAR Manufacturer

Using Warning

TPS5430DDAR FAQ

 

Product Overview

The TPS543x is a high-output-current PWM converter that integrates a low-resistance, high-side N-channel MOSFET. Included on the substrate with the listed features are a high-performance voltage error amplifier that provides tight voltage regulation accuracy under transient conditions; an undervoltagelockout circuit to prevent start-up until the input voltage reaches 5.5 V; an internally set slow-start circuit to limit inrush currents; and a voltage feedforward circuit to improve the transient response. Using the ENA pin, shutdown supply current is reduced to 18 μA typically. Other features include an active-high enable, overcurrent limiting, over-voltage protection and thermal shutdown. To reduce design complexity and external component count, the TPS543x feedback loop is internally compensated. The TPS5431 is intended to operate from power rails up to 23 V. The TPS5430 regulates a wide variety of power sources including 24 V bus.

 

The TPS543x device is available in a thermally enhanced, easy to use 8-pin SOIC PowerPAD™ package. TI provides evaluation modules and the Designer software tool to aid in quickly achieving high-performance power supply designs to meet aggressive equipment development cycles.

 

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TPS5430DDAR CAD Models

TPS5430DDAR PCB Symbol

Figure: TPS5430DDAR PCB Symbol

 

 

 TPS5430DDAR Footprint

Figure: TPS5430DDAR Footprint

 

 

 TPS5430DDAR 3D Models

Figure: TPS5430DDAR 3D Models

 

TPS5430DDAR Pin Configuration

TPS5430DDAR Pin Configuration

Figure: TPS5430DDAR Pin Configuration

 

TPS5430DDAR Block Diagram

TPS5430DDAR Block Diagram

Figure: TPS5430DDAR Block Diagram

 

TPS5430DDAR Schematic

TPS5430DDAR Schematic

Figure: TPS5430DDAR Schematic

 

TPS5430DDAR Features

  • Wide Input Voltage Range:

– TPS5430: 5.5 V to 36 V

– TPS5431: 5.5 V to 23 V

  • Up to 3-A Continuous (4-A Peak) Output Current
  • High Efficiency up to 95% Enabled by 110-mΩIntegrated MOSFET Switch
  • Wide Output Voltage Range: Adjustable Down to1.22 V with 1.5% Initial Accuracy
  • Internal Compensation Minimizes External PartsCount
  • Fixed 500 kHz Switching Frequency for SmallFilter Size
  • Improved Line Regulation and TransientResponse by Input Voltage Feed Forward
  • System Protected by Overcurrent Limiting,Overvoltage Protection and Thermal Shutdown
  • –40°C to 125°C Operating Junction TemperatureRange
  • Available in Small Thermally Enhanced 8-Pin SOPowerPAD™ Package
  • Create a Custom Design Using the TPS5430 WiththeWEBENCH® Power Designer

 

TPS5430DDAR Applications

  • Consumer: Set-top Box, DVD, LCD Displays
  • Industrial and Car Audio Power Supplies
  • Battery Chargers, High Power LED Supply
  • 12-V/24-V Distributed Power Systems

 

TPS5430DDAR Datasheet

You can download the datasheet from the link given below:

TPS5430DDAR Datasheet

 

TPS5430DDAR Specifications

Type Description
Category Integrated Circuits (ICs)
PMIC - Voltage Regulators - DC DC Switching Regulators
Mfr Texas Instruments
Series -
Part Status Active
Function Step-Down
Output Configuration Positive
Topology Buck
Output Type Adjustable
Number of Outputs 1
Voltage - Input (Min) 5.5V
Voltage - Input (Max) 36V
Voltage - Output (Min/Fixed) 1.221V
Voltage - Output (Max) 32.04V
Current - Output 3A
Frequency - Switching 500kHz
Synchronous Rectifier No
Operating Temperature -40°C ~ 125°C (TJ)
Mounting Type Surface Mount
Package / Case 8-PowerSOIC (0.154", 3.90mm Width)
Supplier Device Package 8-SO PowerPad
Base Product Number TPS5430

 

TPS5430DDAR Manufacturer

Texas Instruments Incorporated (TI) is an American technology company headquartered in Dallas, Texas, that designs and manufactures semiconductors and various integrated circuits, which it sells to electronics designers and manufacturers globally. It is one of the top 10 semiconductor companies worldwide based on sales volume.The company's focus is on developing analog chips and embedded processors, which account for more than 80% of its revenue.TI also produces TI digital light processing technology and education technology products including calculators, microcontrollers and multi-core processors. The company holds 45,000 patents worldwide as of 2016.

 

Using Warning

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

 

TPS5430DDAR FAQ

What does a step-down converter do?

A buck converter (step-down converter) is a DC-to-DC power converter which steps down voltage (while drawing less average current) from its input (supply) to its output (load).

 

How does a step up converter work?

The boost converter is used to "step-up" an input voltage to some higher level, required by a load. This unique capability is achieved by storing energy in an inductor and releasing it to the load at a higher voltage.

 

Which is more efficient step up or step down transformer?

Any differences in the efficiencies of step-up versus step-down conversion are apt to be minor compared with issues resulting from series or parallel battery connections. Step up and step down idealized converters are exactly the same thing.

 

What is difference between step down transformer and step up transformer?

A transformer that increases the voltage from primary to secondary (more secondary winding turns than primary winding turns) is called a step-up transformer. Conversely, a transformer designed to do just the opposite is called a step-down transformer.

 

Where do we use step up and step down transformers?

Step-up/down transformers are used to produce the voltage as well as reduce energy loss during the power transmission stage. Step-up transformers are used in central power stations. They allow the stations to increase the voltage to the necessary level to produce electricity.

 

TPS5430DDAR PCB Symbol, Footprint & 3D Model

National Semiconductor TPS5430DDAR

National Semiconductor

Conv DC-DC 5.5V to 36V Step Down Single-Out 1.22V to 31V 3A 8-Pin HSOIC EP T/R

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