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ULN2003 Stepper motor driver

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GH¢ 14.00


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    ULN2003 Stepper motor driver

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    GH¢ 14.00 14.0 GHS GH¢ 14.00

    ₦ 1,600.00

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    The ULN2003 is a high-voltage, high-current Darlington transistor array designed to drive various loads, including stepper motors, relays, and other high-power devices. It features seven Darlington pairs with common-emitter connections, making it ideal for interfacing between low-power control signals and high-power devices. The ULN2003 is commonly used in applications such as robotics, CNC machines, and industrial automation. 
    Key Features:
    • 7 NPN Darlington pairs per package
    • Output current (single output) up to 500 mA
    • High-voltage outputs: up to 50V
    • Integrated clamp diodes for inductive load driving
    • Inputs compatible with TTL and 5V CMOS logic
    • Built-in base resistors for easy interface with microcontrollers
    Technical Specifications:
    • Package Type: 16-pin DIP, SOIC
    • Output Current: 500 mA per channel
    • Output Voltage: 50V maximum
    • Input Voltage: 5V TTL/CMOS compatible
    • Clamp Diode: Yes (integrated)
    • Pin Configuration: 7 Darlington pairs with common emitters
    • Operating Temperature Range: -20°C to +85°C
    Applications:
    • Stepper motor driving
    • Relay driving
    • Lamp and LED displays
    • Logic buffers
    • Line drivers
    Usage:
    1. Connect the inputs of the ULN2003 to the control signals from a microcontroller or logic circuit.
    2. Connect the outputs of the ULN2003 to the loads, such as the windings of a stepper motor.
    3. Provide appropriate power supply to the motor or other loads.
    4. Use appropriate software or control logic to drive the inputs, thereby controlling the connected loads.
    Caution:
    • Ensure proper heat dissipation if driving high currents through multiple channels.
    • Verify correct power supply voltage and connections before powering the device.
    • Follow the manufacturer's guidelines for safe operation.
    Datasheet: For detailed technical specifications, refer to the ULN2003 Datasheet.
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