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DRV8210DRLR
+BOM12-V, 1.76-A BRUSHED DC MOTOR DR
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ManufacturerTexas Instruments
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Mfr. Part #DRV8210DRLR
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In Stock4082
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Specifications
| Attribute | Value |
| Part Status | Active |
| Mounting Type | Surface Mount |
| Package / Case | SOT-563, SOT-666 |
| Supplier Device Package | SOT-563 |
| Base Product Number | DRV8210 |
| Motor Type - Stepper | Bipolar |
| Motor Type - AC, DC | Brushed DC |
| Function | Driver - Fully Integrated, Control and Power Stage |
| Output Configuration | Half Bridge (2) |
| Interface | PWM |
| Technology | NMOS |
| Applications | Brushed DC, Camera |
| Current - Output | 1.76A |
| Voltage - Supply | 1.65V ~ 11V |
| Voltage - Load | 1.65V ~ 11V |
| Operating Temperature | -40°C ~ 125°C (TA) |
Overview
Description
Key features include PWM control for speed regulation, built-in current sensing, and thermal shutdown protection to ensure reliability. The device supports multiple control modes, including phase control and PWM control, allowing flexible motor operation. Its compact size and low power consumption make it suitable for various applications, including robotics, automation systems, and consumer electronics.
The DRV8210 is housed in a 10-pin VQFN package, facilitating easy integration into designs. Overall, it provides a robust solution for efficient motor control in diverse applications.
Equivalent
Features
1. Dual H-Bridge Configuration: Allows control of two DC motors or one stepper motor.
2. Wide Voltage Range: Operates from 2.5V to 10.8V, suitable for various applications.
3. High Output Current: Capable of delivering up to 1.5A per channel, enabling robust motor control.
4. Integrated Protection Features: Includes overcurrent protection, thermal shutdown, and undervoltage lockout to ensure reliability.
5. PWM Control: Supports pulse width modulation for speed control and direction changes.
6. Low Standby Current: Reduces power consumption when the system is idle.
7. Compact Package: Available in a 20-pin HTQFP package, ideal for space-constrained designs.
8. Fault Output: Provides a fault indication signal for system diagnostics.
These features make the DRV8210DRLR suitable for robotics, automation, and general motor control applications.
Pinout
Pin Count: 16 pins
Pin Functions:
1. VM (Pin 1): Motor supply voltage.
2. GND (Pin 2): Ground reference.
3. AIN2 (Pin 3): Input for control signal.
4. AIN1 (Pin 4): Input for control signal.
5. SLEEP (Pin 5): Sleep mode control.
6. FAULT (Pin 6): Fault indication output.
7. nFAULT (Pin 7): Active-low fault output.
8. OUTA (Pin 8): Output to motor terminal A.
9. OUTB (Pin 9): Output to motor terminal B.
10. nSLEEP (Pin 10): Active-low sleep control.
11. VCP (Pin 11): Charge pump output.
12. VREG (Pin 12): Internal regulator output.
13. CB (Pin 13): Capacitor connection for charge pump.
14. CA (Pin 14): Capacitor connection for charge pump.
15. GND (Pin 15): Ground reference (duplicate).
16. NC (Pin 16): No connect (not used).
The DRV8210DRLR supports various control modes and provides integrated protection features, making it suitable for motor control applications.
Manufacturer
The DRV8210DRLR specifically is a dual H-bridge motor driver, designed to control DC brushed and stepper motors in applications such as robotics, automation, and medical devices. TI's extensive focus on innovation and high-performance solutions makes it a leader in the semiconductor industry, catering to a wide range of electronic applications. Their commitment to research and development, along with a robust product portfolio, reinforces their reputation as a reliable provider of electronic components.
Application
1. Robotics: For controlling DC motors in robotic systems.
2. Automated Guided Vehicles (AGVs): To drive wheels or other moving components.
3. Actuators: In industrial automation for linear or rotational motion.
4. Home Appliances: Such as washing machines or robotics vacuum cleaners.
5. 3D Printers: To control stepper motors for precise movements.
6. Drones: For managing motor functions in UAVs.
Its versatility and efficiency make it suitable for any application requiring precise motor control.