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DRV8301DCAR Controller: Datasheet PDF, CAD Models, Evaluation Board [Video&FAQ]

  • Contents

Catalog

DRV8301DCAR Description

DRV8301DCAR Related Video Instruction

DRV8301DCAR CAD Models

DRV8301DCAR Pin Configuration

DRV8301DCAR Functional Block Diagram

DRV8301DCAR Evaluation Board

DRV8301DCAR Features

DRV8301DCAR Applications

DRV8301DCAR Datasheet

Specifications: DRV8301DCAR vs DRV8302DCAR

DRV8301DCAR Manufacturer

Using Warning

DRV8301DCAR FAQ

DRV8301DCAR Description

The DRV8301 is a gate driver IC for three-phase motor drive applications. The device provides three half-bridge drivers, each capable of driving two Nchannel MOSFETs. The DRV8301 supports up to 1.7-A source and 2.3-A peak current capability. The DRV8301 can operate off of a single power supply with a wide range from 6-V to 60-V. The device uses a bootstrap gate driver architecture with trickle charge circuitry to support 100% duty cycle. The DRV8301 uses automatic handshaking when the high-side or low-side MOSFET is switching to prevent flow of current. Integrated VDS sensing of the high-side and low-side MOSFETs is used to protect the external power stage against overcurrent conditions.

 

The DRV8301 includes two current shunt amplifiers for accurate current measurement. The amplifiers support bidirectional current sensing and provide an adjustable output offset up to 3 V.

 

The DRV8301 also includes an integrated switching mode buck converter with adjustable output and switching frequency. The buck converter can provide up to 1.5 A to support MCU or additional system power needs.

 

The SPI provides detailed fault reporting and flexible parameter settings such as gain options for the current shunt amplifiers and slew rate control of the gate drivers.

 

Video:Motor Drivers: Brushless-DC Basics

DRV8301DCAR Video Description:

This video explains what a brushless-DC motor is, how it is constructed and what kind of circuit is required to spin it.

 

DRV8301DCAR CAD Models

DRV8301DCAR-PCB-Symbol

 

Figure: PCB Symbol

 

DRV8301DCAR-PCB-Footprint

 

Figure: Footprint

 

DRV8301DCAR-3D-Model

 

Figure: 3D Model

 

DRV8301DCAR Pin Configuration

DRV8301DCAR-Pin-Configuration

 

Figure: Pin Configuration

 

DRV8301DCAR Functional Block Diagram

DRV8301DCAR-Functional-Block-Diagram

 

Figure: Functional Block Diagram

 

DRV8301DCAR Evaluation Board

DRV8301DCAR-Evaluation-Board

 

Figure: Evaluation Board

 

DRV8301DCAR Features

  • 6-V to 60-V Operating Supply Voltage Range
  • 1.7-A Source and 2.3-A Sink Gate Drive CurrentCapability
  • Slew Rate Control for EMI Reduction
  • Bootstrap Gate Driver With 100% Duty CycleSupport
  • 6- or 3-PWM Input Modes
  • Dual Integrated Current Shunt Amplifiers WithAdjustable Gain and Offset
  • Integrated 1.5-A Buck Converter
  • 3.3-V and 5-V Interface Support
  • SPI
  • Protection Features:

       – Programmable Dead Time Control (DTC)

       – Programmable Overcurrent Protection (OCP)

       – PVDD and GVDD Undervoltage Lockout (UVLO)

       – GVDD Overvoltage Lockout (OVLO)

       – Overtemperature Warning/Shutdown (OTW/OTS)

       – Reported Through nFAULT, nOCTW, and SPI Registers

 

DRV8301DCAR Applications

  • 3-Phase BLDC and PMSM Motors
  • CPAPs and Pumps
  • E-bikes
  • Power Tools
  • Robotics and RC Toys
  • Industrial Automation

 

DRV8301DCAR Datasheet

You can download the datasheet from the link given below:

DRV8301DCAR-Datasheet

 

Specifications: DRV8301DCAR vs DRV8302DCAR

Product Category: Motor / Motion / Ignition Controllers & Drivers Motor / Motion / Ignition Controllers & Drivers
Product: Brushless DC Motor Controllers Fan / Motor Controllers / Drivers
Type: 3 Phase 3 Phase
Operating Supply Voltage: 6 V to 60 V 6 V to 60 V
Output Current: 1.7 A 1.7 A
Operating Supply Current: 15 mA 15 mA
Minimum Operating Temperature: - 40 ℃ - 40 ℃
Maximum Operating Temperature: + 125 ℃ + 125 ℃
Mounting Style: SMD/SMT SMD/SMT
Package / Case: HTSSOP-56 HTSSOP-56
Packaging: Reel Reel
Packaging: Cut Tape Cut Tape
Packaging: MouseReel MouseReel
Manufacturer: Texas Instruments Texas Instruments
Brand: Texas Instruments Texas Instruments
Features: Buck Step Down Converter, Current Sense Amplifier, SPI/I2C Buck Step Down Converter, Current Sense Amplifier, Hardware Management I/F
Moisture Sensitive: Yes Yes
Number of Outputs: 2 Output 2 Output
Product Type: Motor / Motion / Ignition Controllers & Drivers Motor / Motion / Ignition Controllers & Drivers
Series: DRV8301 DRV8302
Factory Pack Quantity: 2000 2000
Subcategory: PMIC - Power Management ICs PMIC - Power Management ICs
Unit Weight: 0.008356 oz 0.008356 oz

 

DRV8301DCAR 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.

 

Using Warning

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

 

DRV8301DCAR FAQ

How do you control the speed of a brushless DC motor?

Speed of a brushless dc motor can be controlled by controlling the input dc voltage / current. The higher the voltage more is the speed. Many different control algorithms have been used to provide control of BLDC motors. The motor voltage is controlled using a power transistor operating as a linear voltage regulator.

 

How does brushless motor controller work?

The rotor's magnets and stator's windings provide the rotation of the motor. They attract each other with opposite poles and repel each other with the same poles. A BLDC motor controller detects the position of the rotor either by using sensors (for example, a Hall-effect sensor) or sensorlessly.

 

How do I increase the speed of my brushless motor?

You increase the speed by increasing the frequency. If a motor base speed is 60 Hz, raising the frequency to 120 Hz will double the speed of the motor. However, if you do not keep the volt to hertz ratio constant, you will cause the motor windings to heat up.

 

Why does a brushless motor have 3 wires?

there are 3 wires because it's a 3 phase brushless system. at any given time two provide power and the other is a sensor. So even though they may split their time doing each, at a split second in time two provide power and the third is a sensor.

 

Do brushless DC motors need drivers?

As shown below, BLDC motors require a more sophisticated approach. A “motor drive” is not even necessary with brushed dc (BDC) motors in some applications. All's that's needed is an on/off switch.

 

DRV8301DCAR Documents & Media

Download datasheets and manufacturer documentation for Texas Instruments DRV8301DCAR.
PCN Assembly/Origin
PCN Design/Specification

DRV8301DCAR PCB Symbol, Footprint & 3D Model

Texas Instruments DRV8301DCAR

Texas Instruments

TEXAS INSTRUMENTS - DRV8301DCAR - MOTOR DRIVER, 3PH, 56HTSSOP

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