Manufacturer Part Number
DRV8873HPWPR
Manufacturer
texas-instruments
Introduction
The DRV8873HPWPR is a highly-integrated, dual H-bridge motor driver from Texas Instruments. It is designed to control small to medium-sized brushed DC and unipolar stepper motors in a wide range of industrial applications.
Product Features and Performance
Dual H-bridge design capable of driving two brushed DC or unipolar stepper motors
Output current up to 10A per channel
Operating voltage range of 4.5V to 38V
Wide operating temperature range of -40°C to 125°C
Integrated protection features including overcurrent, overtemperature, and undervoltage lockout
Small 24-pin HTSSOP package for space-constrained designs
Product Advantages
Highly-integrated solution reducing external component count
Robust protection features enhancing system reliability
Broad operating voltage and temperature range for versatile applications
Small package size enabling compact motor drive designs
Key Reasons to Choose This Product
Reliable and efficient motor control
Ease of design and implementation
Flexible and scalable for a variety of industrial applications
Cost-effective solution with Texas Instruments' quality and support
Quality and Safety Features
Integrated overcurrent, overtemperature, and undervoltage protection
Robust package and design for industrial environments
Complies with relevant safety standards
Compatibility
The DRV8873HPWPR is compatible with a wide range of brushed DC and unipolar stepper motors commonly used in industrial automation, robotics, and other motion control applications.
Application Areas
Industrial automation and control
Robotics and motion control systems
Factory automation equipment
Medical devices and instrumentation
Product Lifecycle
The DRV8873HPWPR is an active product in our website's sales team portfolio. There are no immediate plans for discontinuation. However, as technology evolves, customers are advised to check with our website's sales team or their local sales representatives for the latest product information and availability of any potential alternative or equivalent models.