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DRV8872DDAR

Updated: 2026-08-06

Overview

The DRV8872DDAR is a robust H-bridge motor driver IC from Texas Instruments, capable of driving brushed DC motors up to 3.6A continuous current. Designed for industrial and consumer applications, it integrates multiple protection features including overcurrent, overtemperature, and undervoltage lockout. In electronics recycling operations, this component is commonly recovered from motor control boards in appliances, power tools, and automated equipment. Its standardized SOIC-8 package makes it identifiable for salvage operations, though proper testing is required to verify functionality in reused applications.

Structure and Working Principle

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The IC contains four MOSFETs arranged in an H-bridge configuration, allowing bidirectional current flow to the motor. PWM input signals control both speed and direction, while integrated current regulation maintains stable operation. Key internal components include gate drive circuitry, charge pump for high-side N-channel MOSFETs, and current sense amplifier. The device operates on a wide 4.5-45V range, making it suitable for various battery-powered and line-operated systems. In recycled applications, special attention should be paid to the condition of the thermal pad (exposed on package bottom) which is critical for heat dissipation.

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Key Features

The DRV8872DDAR offers industry-leading 95% efficiency through advanced MOSFET technology and synchronous rectification. Its integrated current sensing eliminates the need for external shunt resistors in many applications. Protection features include automatic fault recovery, making it particularly valuable in refurbished systems. The device supports both independent and PH/EN control interfaces, providing flexibility in system design. For recyclers, these robust protection mechanisms increase the likelihood of recovering functional units from end-of-life equipment.

Application Areas

Primary applications include HVAC blower controls, power tools, robotics, and industrial automation systems. In recycling contexts, it's commonly found in discarded appliances (3+ years old), electric vehicles components, and manufacturing equipment. The component is particularly valuable for refurbished medical equipment due to its high reliability and protection features. Electronics recyclers in Taiyuan frequently encounter these drivers in industrial control boards from local manufacturing facilities.

Maintenance and Precautions

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When salvaging DRV8872DDAR chips, inspect for visible damage including cracked packages or burnt pins. Always discharge capacitors on host boards before removal to prevent ESD damage. For reused components, conduct bench testing with current-limited power supplies. Note that prolonged exposure to moisture in discarded electronics may require baking (125°C for 24 hours) before reuse in sensitive applications. Proper handling with grounded tools is essential to prevent damage to the IC's sensitive gate structures.

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B2B Procurement Guide

When sourcing recycled DRV8872DDAR components, request batch testing reports showing functional yield rates. Verify traceability to original equipment to assess likely usage history. Quality indicators include consistent solder pad appearance and intact manufacturer markings. For large industrial recycling projects in Taiyuan, consider arranging on-site testing with sample motor loads. Price negotiations should account for testing costs and typical 70-85% functional recovery rates from e-waste streams.

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