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Four Quadrant DC Motor Control without Microcontroller with speed control
Model: 423    

Solderable DIY project kit for Engineering & Diploma students

Product of choice for Engineering & Diploma students worldwide.

Do-It-Yourself Kit

Rs. 11,599

Rs. 9,280

Includes complete hardware with plain PCB and a pre-programmed controller for building the project. Extensive documentation for project execution including step-by-step instructions for Circuit building, Assembly procedure and Troubleshooting. Thorough understanding from the Problem definition to Circuit Design to Programming, Testing, Troubleshooting and finally building a working hardware project.

Tool Kit

(Recommended)

Rs. 0

Includes Digital Multimeter, Soldering Iron, Screw driver, Cutter, to be used with Do-It-Yourself Kit to build the project.

Loaded and Tested PCB

(Optional)

Rs. 0

Pre-soldered and tested PCB. Choose this option only if you are short on time. Only works along with the Do-It-Yourself Kit. (Can be purchased later)

Total Rs. 0

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PROJECT DESCRIPTION

The main intention of this project is to control the speed of a DC motor in alternative directions using speed control unit and to operate the motor in four quadrants:  ie, clockwise, counter clock-wise, forward brake and reverse brake.

This system uses an H-bridge motor drive IC for controlling the DC motor from  corresponding switches used by the user for pressing. The four switches are connected to the circuit for controlling the movement of the motor.

One slide switch interfaced to the circuit is for controlling the alternative direction of the DC motor. A 555 timers is used in the project to develop the required PWM pulses for speed control. The relays are used for changing the polarities of the motor as well as to apply brake to the motor. In the regenerative mode, the current is applied to the circuit in such a way that a revere torque is produced to stop the motor instantaneously .

The four-quadrant control of the DC motor is archived by the varying duty cycles from a 555 timer and their changing polarity with the H-bridge IC by appropriate switch pressing. The alternative speed control feature is achieved by a slide switch operation.

This project in future can be improved by using higher-power electronic devices to operate high- capacity DC motors. Regenerative braking for optimizing the power consumption can also be incorporated.

PROJECT HIGHLIGHTS
Easy to use, Self-explanatory kit.
All-inclusive solution kit.
Extensive audio-visuals available.
Branding-free material.
Call/mail for Tech Support from 10 am - 7 pm.
Can be Customized for Arduino, Raspberry Pi, PIC
BLOCK DIAGRAM
Four Quadrant DC Motor Control without Microcontroller
Hardware Requirements
  • Diodes
  • 555Timer
  • Relays
  • Transistors
  • Motor Driver IC
  • DC motor
  • Inverter IC
  • Push Buttons
  • Voltage Regulator
  • Transformer
Software Requirements
    None
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Tool kit cannot be purchased individually.

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Telangana, India
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