L297D

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L297D

+BOM

IC MOTOR DRV BIPOLAR/UNIPLR 20SO

  • 제조업체ST마이크로일렉트로닉스(주)

  • 제조업체 부품 #L297D

  • 데이터시트 L297D DataSheet

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사양

속성 가치
Part Status Active
Base Product Number L297
Motor Type - Stepper Bipolar, Unipolar
Function Controller - Commutation, Direction Management
Output Configuration Pre-Driver - Half Bridge (4)
Interface Parallel
Step Resolution 1, 1/2
Applications General Purpose
Voltage - Supply 4.75V ~ 7V
Operating Temperature -40°C ~ 150°C (TJ)
Mounting Type Surface Mount
Package 20-SOIC (0.295", 7.50mm Width)
Supplier Device Package 20-SO
Packaging Tube

개요

Description

The L297D is a motor driver IC commonly used for controlling bipolar stepper motors. It serves as an interface between a microcontroller and the motor, allowing for precise control of motor operations. The L297D works in conjunction with a companion power stage, such as the L298, to drive the motor coils.
Key features of the L297D include the ability to control the motor in both half-step and full-step modes, direction control, and current sensing for overcurrent protection. It also offers an enable input to switch the motor on or off and a step clock input to control the stepping rate. The chip translates logic level inputs into the necessary signals to drive a stepper motor.
Applications of the L297D often include CNC machines, robotics, and any system requiring accurate movement control. Its versatility in controlling stepper motors makes it a popular choice in both hobbyist projects and industrial applications. For best performance, the L297D should be used with the proper configuration and compatible power drivers.

Equivalent

The L297D is a stepper motor controller IC. Equivalent or similar products include the L297, which is functionally similar without the "D" suffix, and the Texas Instruments DRV8825, which offers similar functionality with some enhancements. Another alternative is the Allegro A4988, a widely used stepper motor driver chip. When choosing a replacement, ensure compatibility with your specific motor and application requirements such as voltage, current, and interface.

Features

The L297D is a motor driver integrated circuit designed for controlling bipolar stepper motors. Key features include:
1. Bipolar Stepper Motor Control: Specifically designed to drive bipolar stepper motors, which are known for their precision and efficiency.
2. Current Control: Provides current control capabilities, allowing for microstepping and improved positioning accuracy.
3. Dual Full Bridge Drive: Contains two full bridges, enabling it to drive two coils of a bipolar stepper motor.
4. PWM Chopper Control: Utilizes PWM (Pulse Width Modulation) for controlling the current flow, reducing power dissipation and enhancing motor performance.
5. Protection Features: Includes built-in protections such as overcurrent, thermal shutdown, and undervoltage lockout to safeguard the device and connected components.
6. Compatibility: Often used in conjunction with the L298N motor driver to enhance current handling capabilities.
7. Ease of Use: Offers simple interface and control logic for easy integration into various applications.
These features make the L297D suitable for applications requiring precise control of stepper motors, such as robotics, CNC machines, and automated machinery.

Pinout

The L297D is a stepper motor controller IC used to drive bipolar and unipolar stepper motors. It has a 20-pin package. Here is a brief overview of its primary functions:
1. Clock (Pin 14): Steps the motor one increment per pulse.
2. Direction (Pin 13): Sets the rotation direction of the stepper motor.
3. Enable Input (Pin 10): Enables or disables the signal outputs.
4. Half/Full (Pin 15): Selects between half-step or full-step operation.
5. Reset (Pin 11): Resets the translator to a predefined position.
6. Output Pins (Pins 16-19): Outputs to drive the motor's power stages.
7. Control Pins (Pins 3, 4): For current control when used with an external chopper circuit.
8. Supply Pins (Pins 8, 9): For the power supply to the circuit.
The L297D operates by translating input logic signals into a sequence that drives the motor coils, facilitating precise control over motor movement. It's typically used in conjunction with an L298 or other driver stages to handle the motor's higher current requirements.

Manufacturer

The L297D is manufactured by STMicroelectronics, a leading global semiconductor company. STMicroelectronics designs, develops, manufactures, and markets a wide range of semiconductor products and solutions. The company is known for its innovative technologies and comprehensive product portfolio, which includes microcontrollers, sensors, power management components, and more.
STMicroelectronics serves a diverse array of markets, including automotive, industrial, personal electronics, and communications equipment. It focuses on delivering high-performance, energy-efficient, and reliable semiconductor solutions to address the needs of different applications and industries. Headquartered in Geneva, Switzerland, STMicroelectronics operates worldwide, with a strong presence in Europe, Asia, and the Americas. The company is recognized for its commitment to sustainability and innovation, consistently investing in research and development to drive technological advancements.

Application

The L297D is a stepper motor controller that is used in various applications requiring precise motor control. Key application areas include:
1. Robotics: Controls stepper motors for movement and positioning in robotic arms and mobile robots.
2. CNC Machines: Provides accurate motor control for milling, cutting, and engraving.
3. 3D Printers: Ensures precise layer deposition by controlling stepper motors for the printer's axes.
4. Automated Conveyors: Manages motor-driven conveyor systems for material handling.
5. Medical Devices: Utilized in equipment requiring controlled motion, such as imaging systems.
6. Industrial Automation: Facilitates precise motor control in automated manufacturing processes.

Package

The L297D is typically available in a 20-pin Dual In-line Package (DIP). This package type is commonly used for integrated circuits and provides a straightforward way to mount the chip on a printed circuit board.