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IRS20955S: CAD Models, Datasheet, Features [FAQ]

  • Contents

Catalog

IRS20955S Product Overview

IRS20955S CAD Models

IRS20955S Pin Configuration

IRS20955S Block Diagram

IRS20955S Typical Connection

IRS20955S Features

IRS20955S Applications

IRS20955S Package

IRS20955S Datasheet

IRS20955S Specifications

IRS20955S Manufacturer

Using Warning

IRS20955S FAQ

 

IRS20955S Product Overview

For use in Class D audio amplifier applications, the IRS20955S is a high voltage, high speed MOSFET driver with a floating PWM input.

 

Without using any external shunt resistors, bi-directional current sensing may identify over-current problems for both positive and negative load currents. A programmable reset timer and a secure protection sequence against overcurrent circumstances are provided by an integrated protection control block.

 

For enhanced audio performance, including lower THD and lower audio noise floor, the internal deadtime generation block enables accurate gate switching and optimal deadtime configuration.

 

IRS20955S CAD Models

The following figure is IRS20955S Footprint.

 

 

Figure: Footprint

 

IRS20955S Pin Configuration

The following figure is IRS20955S Pin Configuration.

 

 

Figure: Pin Configuration

 

Pin Number Pin Name Description
1 VDD Floating input positive supply
2 CSD Shutdown timing capacitor, referenced to VSS
3 IN PWM non-inverting input, in phase with HO
4 VSS Floating input supply return
5 NC  
6 VREF 5 V reference output for setting OCSET
7 OCSET Low-side over-current threshold setting, referenced to COM
8 DT Input for programmable deadtime, referenced to COM
9 COM Low-side supply return
10 LO Low-side output
11 VCC Low-side logic supply
12 NC  
13 VS High-side floating supply return
14 HO High-side output
15 VB High-side floating supply
16 CSH High-side over-current sensing input, referenced to VS

IRS20955S Block Diagram

The following figure is IRS20955S Block Diagram.

 

 

Figure: Block Diagram

 

IRS20955S Typical Connection

The following figure is IRS20955S Typical Connection.

 

 

Figure: Typical Connection

 

IRS20955S Features

  • Floating PWM input enables easy half-bridgeimplementation
  • Programmable bidirectional over-current protectionwith self-reset function
  • Programmable preset deadtime for improved THD performances
  • High noise immunity
  • ±100 V ratings deliver up to 500 W in output power
  • 3.3 V/5 V logic compatible input
  • Operates up to 800 kHz
  • RoHS compliant

 

IRS20955S Applications

  • Audio amplifier
  • Switch mode power supplies
  • Variable-frequency drives

 

IRS20955S Package

The following figure is IRS20955S Package.

 

 

Figure: Package

 

IRS20955S Datasheet

You can download the datasheet from the link given below:

 

IRS20955S Datasheet

 

IRS20955S Specifications

Type Description
Category Integrated Circuits (ICs)
Audio Special Purpose
Mfr Infineon Technologies
Series -
Package Tube
Product Status Obsolete
Function Line Driver
Applications Audio Systems
Number of Channels 2
Interface Analog
Voltage - Supply 10V ~ 18V
Operating Temperature -40°C ~ 125°C (TA)
Specifications -
Mounting Type Surface Mount
Package / Case 16-SOIC (0.154", 3.90mm Width)
Supplier Device Package 16-SOIC
Base Product Number IRS20955SPBF

IRS20955S Manufacturer

Siemens Semiconductors changed their name to Infineon Technologies on April 1st, 1999. a vibrant, adaptable business focused on success in the cutthroat, rapidly evolving field of microelectronics. Leading global manufacturer, supplier, and designer of a wide variety of semiconductors used in several microelectronic applications is Infineon. Digital, mixed-signal, and analog integrated circuits, as well as discrete semiconductor components, make up the product line of Infineon.

 

Using Warning

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

 

IRS20955S FAQ

What does a Mosfet driver do?

In order to quickly and thoroughly switch the gate of a MOSFET, a MOSFET driver IC converts TTL or CMOS logical signals to a higher voltage and greater current. A small-signal logic level MOSFET can normally be driven via a microcontroller's output pin.

 

How do I choose a mosfet driver?

Make sure the power MOSFETs you select have ratings that are at least equal to the voltage of the power supply and the maximum current the motor needs. Keep in mind that you must provide room for error. Select a MOSFET whose drain-to-source voltage rating (VDS) exceeds the supply voltage by at least 20%.

 

How can MOSFET be used as a motor driver?

Typically, a power transistor serves as the link between the MOSFET driver and the motor. This could be a MOSFET, an Insulated Gate Bipolar Transistor, or a bipolar transistor (IGBT). The MOSFET driver can be utilized to directly drive the motor in some applications involving tiny Brushless DC motors or stepper motors.

 

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