Manufacturer Part Number
BD6873KN-E2
Manufacturer
ROHM Semiconductor
Introduction
The BD6873KN-E2 is a highly integrated, full-bridge motor driver IC designed for driving small brushed DC and bipolar stepper motors. It features a wide input voltage range, high output current capability, and various protection functions, making it suitable for a variety of applications, particularly in camera modules and other compact electronic devices.
Product Features and Performance
Bipolar stepper motor and brushed DC motor driver
Wide operating voltage range of 2.5V to 5.5V
High output current of up to 500mA
Integrated control and power stage in a single package
Serial interface for easy control and configuration
Thermal shutdown, overcurrent, and undervoltage protection
Small 48-pin VFQFN package (7.2x7.2mm) for compact designs
Product Advantages
Highly integrated solution for compact motor control applications
Wide operating voltage range supports various system requirements
High output current capability for driving a variety of motor types
Comprehensive protection features to ensure reliable and safe operation
Small footprint package ideal for space-constrained designs
Key Reasons to Choose This Product
Optimized for small brushed DC and bipolar stepper motor applications
Seamless integration of control and power stages simplifies design
Robust protection features ensure reliable performance in demanding environments
Compact package enables space-efficient implementation in various devices
Quality and Safety Features
Thermal shutdown protection to prevent overheating
Overcurrent protection to safeguard the motor and driver
Undervoltage lockout to ensure safe operation
Compatibility
Suitable for use with a wide range of brushed DC and bipolar stepper motors
Application Areas
Camera modules
Portable electronics
Industrial automation equipment
Robotics and mechatronics
Product Lifecycle
The BD6873KN-E2 is an obsolete product and has been discontinued by the manufacturer. Customers are advised to contact our website's sales team for information on available alternative or equivalent models that may suit their specific requirements.