Manufacturer Part Number
DRV8873SPWPRQ1
Manufacturer
Texas Instruments
Introduction
The DRV8873SPWPRQ1 is a sophisticated motor driver designed for delivering high efficiency and performance for a range of industrial and automotive applications. It integrates a fully functional driver, control, and power stage for Brushed DC motors.
Product Features and Performance
Integrated Half Bridge (2) Output Configuration
Supports Brushed DC Motor Types
Fully Integrated Driver, Control, and Power Stage
Interface via SPI for Enhanced Connectivity
Employs NMOS Technology for Improved Efficiency
Operates within a Wide Voltage Range (4.5V ~ 38V)
High Output Current Capability up to 10A
Designed for High-Temperature Operation (-40°C ~ 125°C)
Product Advantages
High-Performance Power Management and Motor Control
AEC-Q100 Qualified for Automotive Applications
Robust Design Suitable for Industrial Environments
Compact Surface Mount Technology for Space-Efficient Layouts
Key Technical Parameters
Current - Output: 10A
Voltage - Supply: 0V ~ 5.5V
Voltage - Load: 4.5V ~ 38V
Operating Temperature: -40°C ~ 125°C (TA)
Interface: SPI
Technology: NMOS
Quality and Safety Features
AEC-Q100 Automotive Grade Qualification
Designed for Reliable Operation in Extreme Temperatures
Compatibility
Supports a Variety of Brushed DC Motors
Interfaces Seamlessly with SPI Communication Protocol
Application Areas
Industrial Motor Control
Automotive Applications
Product Lifecycle
Status: Active
The DRV8873SPWPRQ1 is currently in active production with no announced date for discontinuation. Texas Instruments typically provides information on replacements or upgrades if a product is nearing the end of its lifecycle.
Several Key Reasons to Choose This Product
Advanced Integration of Control, Driver, and Power Stage
Broad Operating Voltage Range for Versatile Use
High Current Capability for Demanding Applications
Automotive-grade Reliability and Industrial-grade Robustness
Compact and Efficient Design with Surface Mount Packaging
SPI Interface for Enhanced Control Flexibility