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Boards, Modules and Accessories
ULN2003 Stepper Motor Driver Board
– Plug-and-play ULN2003 motor driver module for quick prototyping
– Compatible with 28BYJ-48 stepper motors and Arduino boards
– Robust ULN2003 driver IC, up to 500 mA per channel
– Built-in flyback diodes for protection against voltage spikes
– Quiet, stable stepping and low heat under typical loads
– Easy breadboard/shield mounting; ideal for robotics and hobby projectsSKU: n/a -
Boards, Modules and Accessories, Motors, Drivers and Wheels
28BYJ-48 Stepper Motor 5V DC
- High precision: 64 motor steps (5.625° per step) with a 1:64 gearbox for fine positioning
- Unipolar design for easy control with Arduino, Raspberry Pi and other microcontrollers
- Runs on a safe 5V DC supply ideal for battery-powered and portable projects
- Built-in gearbox increases torque and effective resolution (common effective output: 4096 steps)
- Compact, lightweight housing fits tight spaces in robotics and automation
- Compatible with ULN2003 and equivalent driver boards for plug-and-play integration
SKU: n/a
ULN2003 Stepper Motor Driver Board
Out of stock
– Plug-and-play ULN2003 motor driver module for quick prototyping
– Compatible with 28BYJ-48 stepper motors and Arduino boards
– Robust ULN2003 driver IC, up to 500 mA per channel
– Built-in flyback diodes for protection against voltage spikes
– Quiet, stable stepping and low heat under typical loads
– Easy breadboard/shield mounting; ideal for robotics and hobby projects
₨ 100 ₨ 120
Out of stock
ULN2003 Stepper Motor Driver: Reliable Motion Control
Drive stepper motors with confidence using the ULN2003 stepper motor driver. This compact module provides smooth, precise steps and reliable coil switching so your mechanisms move accurately and predictably. It is ideal for hobbyists, educators, and rapid prototyping.
Plug-and-Play ULN2003 Motor Driver Module
The ULN2003 motor driver module is designed for fast setup. Plug the header into a breadboard or shield, connect power and logic pins, and attach a compatible 5V stepper motor such as the 28BYJ-48. No complex soldering is required for most basic projects.
Key features
- ULN2003 driver IC at the core for consistent coil drive
- Supports up to 500 mA per channel (device-limited)
- Built-in flyback diodes to protect against inductive voltage spikes
- Compact PCB with standard 5-pin motor connector and input pins
- Compatible with Arduino UNO, Mega and other 5V logic controllers
Performance, Protection, and Efficiency
This high performance stepper driver integrates protection features that reduce the risk of missed steps and component stress. Flyback diodes and robust transistor arrays help keep operation quiet and temperature rise low during normal loads.
What this means for your projects
- Stable, jitter-free motion for robotics, pan/tilt heads, and CNC prototypes
- Reduced electronics failures from back-emf and voltage spikes
- Consistent stepping under varied torque conditions
Arduino Integration and Wiring
The Arduino stepper motor driver setup is straightforward. Typical connections include VCC (5V), GND, and four input pins that receive step sequence signals from an Arduino digital port. Use available libraries to send step sequences or write a simple driver to control step timing and direction.
Typical wiring (28BYJ-48)
- Motor connector to module 5-pin header
- Module VCC to 5V power supply
- Module GND to common ground with controller
- IN1–IN4 to Arduino digital pins (use driver/library to sequence)
Specifications and What’s in the Box
- Driver IC: ULN2003 transistor array
- Current handling: up to 500 mA per channel (refer to IC datasheet)
- On-board protection: flyback diodes and input resistors
- Connector: standard 5-pin stepper motor header
- Included: ULN2003 driver module (motor not included unless stated)
Compatible Projects and Use Cases
- Small robotics and pan/tilt assemblies
- Educational demos and STEM kits
- Automated models and low-load CNC prototypes
- Any 5V unipolar stepper motor like 28BYJ-48
Why Choose This ULN2003 Stepper Motor Driver
This module combines ease of use with proven hardware. It is a hobbyist favorite because it balances cost, reliability, and compatibility with popular motors and microcontrollers. Whether you are learning motion control or building a functional prototype, this driver gets you moving quickly.
Assembly and Best Practices
- Use a dedicated 5V supply for motors to avoid noise on the controller power rail
- Observe current and temperature limits; add heat sinking or limit duty cycles if needed
- Keep grounds common between controller and driver
- Test step sequences at low speed before increasing torque or speed
Product Story
After refining prototypes to solve missed steps and overheating, our team finalized a robust driver circuit based on the ULN2003 IC. The result is a dependable driver module ready for your next innovation.
Note: Pictures are for illustration purposes only.
Only logged in customers who have purchased this product may leave a review.
Vendor Information
- Store Name: College Road Electronics
- Vendor: College Road Electronics
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Address:
Microwave Electronics, Basement Azhar Shaheed Plaza, DAV College Road
Rawalpindi
Punjab
46000 - 4.80 rating from 391 reviews
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Display Modules and LCDs
Digital Thermometer & Hygrometer (HTC-2)
– Dual-function: measures temperature and humidity simultaneously.
– High-precision sensors for reliable, repeatable readings.
– Wide measurement range: -50°C to 70°C (-58°F to 158°F) and 10% to 99% RH.
– Records and displays minimum and maximum values for easy monitoring.
– Portable and versatile mounting: fold-out stand, magnetic backing, or wall mount.
– Battery powered (2 x AAA), simple Celsius/Fahrenheit switching and user-friendly controls.SKU: n/a -
DIY School Kits
T-M37 Micro Wind Power Generation DIY Learning Kit
– Educational DIY kit to build a working mini wind turbine
– Demonstrates mechanical to electrical energy conversion
– Hands-on STEM project ideal for classrooms and science fairs
– Produces measurable low-voltage DC to power small LEDs or sensors
– Easy assembly with pre-cut parts and no soldering required
– Durable, reusable components for repeated experimentsSKU: n/a -
Accessories
10x4mm Mini Round Heavy Duty Neodymium Magnets
– Compact 10 mm diameter x 4 mm thick neodymium (NdFeB) round magnets
– Heavy duty grade offering high holding force in a small form factor
– Durable Ni-Cu-Ni (nickel) plating for improved corrosion resistance
– Axially magnetized round disc ideal for fixtures, closures and alignment
– Perfect for electronics, robotics, DIY, crafts and educational projects
– Handle with care; keep away from children and magnetic-sensitive devicesSKU: n/a -
Buck, Boost Converters and Regulators
L7805 7805 Positive Voltage Regulator IC
– Fixed +5V DC output for powering 5V logic and microcontrollers
– Input voltage range: 7-35V DC
– Output current up to 1A (with appropriate heat sink)
– Built-in thermal shutdown, current limiting, and short-circuit protection
– TO-220 package for easy mounting and heat sinking
– Low cost, easy to use — ideal for DIY and educational projectsSKU: n/a -
Batteries, Cells and Power Supply
3.7V 10000mAh 1260110 37Wh LiPo Rechargeable Battery
– High-capacity 10000mAh (37Wh) lithium polymer battery
– Nominal voltage 3.7V for single-cell devices
– Slim rectangular pack: 12mm x 60mm x 110mm (approx.)
– Optional PCM protection for overcharge, over-discharge, and short circuit safety
– Lightweight design ideal for drones, robotics, power banks, and IoT projects
– Rated for 300 to 500 charge cycles depending on usage and conditionsSKU: n/a -
DIY School Kits
T-M80 Newton’s Cradle Pendulum DIY Learning Kit
– Hands-on Newton’s Cradle DIY kit that demonstrates conservation of momentum and energy
– Includes metal spheres, suspension wires, support rods, and base for assembly
– Ideal for STEM education, physics demos, and science fair projects
– Beginner-friendly assembly with clear instruction manual and basic tools
– Durable materials: wood or acrylic base with smooth metal balls for consistent performance
– Great classroom display piece for visualizing elastic collisions and Newton’s Third LawSKU: n/a


















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