Manufacturer Part Number
ATA6832C-PIQW
Manufacturer
Microchip Technology
Introduction
The ATA6832C-PIQW is a high-performance, half-bridge (H-bridge) driver IC designed for a wide range of applications, including DC motors, solenoids, and other inductive loads. This device offers a comprehensive set of features and protection mechanisms to ensure reliable and efficient operation in various industrial and consumer applications.
Product Features and Performance
Half-bridge (H-bridge) configuration for bidirectional control of inductive loads
Output current rating of up to 1A per channel
Wide supply voltage range of 5.5V to 40V
Operating temperature range of -40°C to 150°C
Low on-resistance of 800mΩ for both the low-side and high-side MOSFETs
PWM and SPI interface for control and feedback
Supported load types: inductive, capacitive, and resistive
Product Advantages
Efficient and reliable operation for a wide range of applications
Comprehensive protection features to ensure safety and longevity
Flexible interface options (PWM and SPI) for easy integration
Compact and space-saving package (18-VFQFN Exposed Pad)
Key Reasons to Choose This Product
Robust and versatile design for demanding industrial and consumer applications
Optimized performance and efficiency to maximize system performance
Comprehensive protection features to safeguard the device and connected loads
Ease of integration and flexibility in system design
Quality and Safety Features
Open-load detection
Over-temperature protection
Short-circuit protection
Under-voltage lockout (UVLO)
Compatibility
The ATA6832C-PIQW is designed to be compatible with a wide range of systems and applications that require half-bridge (H-bridge) motor control functionality.
Application Areas
DC motor control
Solenoid actuation
Stepper motor control
Industrial automation
Home appliances
Robotics
Product Lifecycle
The ATA6832C-PIQW is currently in the Obsolete phase of its product lifecycle. Customers should contact our website's sales team for information on equivalent or alternative models that may be available.