ASPIRING ROBOTICIST

Hi, I am Jarif Ahmed, a mechatronics engineering student at Kent State University, with a keen interest in robotics, embedded systems, autonomous technologies, and AI. My academic endeavors concentrate on integrating mechanical systems, electronics, and software to build devices that address real-world issues.

My technological interests include robotics, C/C++ programming, algorithms, control systems, and autonomous robots. I take pleasure in building projects and researching how intelligent machines may focus on practical issues in healthcare, automation, and transportation.

My long-term objective is to become a robotics engineer specializing in sophisticated autonomous systems and human-assistive technology. I am especially interested in research and engineering positions that advance the frontiers of robotics and intelligent systems.

I am open and interested in engaging with engineers, researchers, and students involved in robotics, automation, and intelligent systems.

PEACE BE UPON YOU

Skills

Hardware Design

Programming and AI

Computer-Aided Design for robotic systems and hardware. Creating designs for efficiency and better performance. 3D Modeling and simulation.

C/C++, Python, and Matlab. Building efficient algorithms, artificial intelligence, computer vision, object detection, prototyping, and physical simulations for verification.

PCB Design, signals and schematics, electrical components, sensor integration, motor control

Robotics

Electronics

STM32 microcontroller programming, embedded devices. Arduino and Raspberry Pi projects. ROS Gazebo development and control systems

Overhead workbench shot, cool-toned workshop LED light, digital oscilloscope displaying green waveforms, soldering iron station, robotic arm linkage, high contrast shadows
Overhead workbench shot, cool-toned workshop LED light, digital oscilloscope displaying green waveforms, soldering iron station, robotic arm linkage, high contrast shadows
THE WORKBENCH

Rapid prototyping laboratory.

Equipped for complete hardware execution. The dedicated lab space features a professional workbench optimized for high-precision SMD soldering, multi-layer PCB assembly, and rapid 3D printing.

Real-time diagnostics and firmware debugging are handled via digital oscilloscopes and logic analyzers, ensuring every physical linkage operates within microsecond tolerances.

COLLABORATION

Initialize new project.

Available for mechatronics engineering roles, laboratory research, and physical prototyping collaborations. Submit your system specifications or project inquiries to initiate integration.