Mechatronics & Robotics Engineer·Embedded Systems·Mechanical Design·Robot Control

I design and build robotic systems from mechanical concept to working prototype.

I am a Mechatronics and Robotics Engineer focused on developing complete robotic and embedded systems. My work combines CAD, prototyping, electronics, firmware, CAN motor control, sensing, computer vision, and web-based control. I enjoy taking projects from an initial concept through integration, testing, and a working physical prototype.

Based in Germany · Open to relocation across Germany (esp. Bavaria / the south) · Available full-time for robotics & mechatronics roles

Projects

Four systems taken from concept through mechanical design, electronics, firmware and real-world testing.

AXYS 3-DOF robotic arm mounted on the Unitree Go2 quadruped
P-01

AXYS — Robotic Arm for Unitree Go2

A wirelessly teleoperated 3-DOF robotic arm designed and integrated as a functional extension of the Unitree Go2 quadruped. I developed the mechanical structure, electrical architecture, embedded control, CAN motor communication, sensing, computer-vision targeting, and the browser-based control interface — enabling the robot to press buttons, operate switches, and manipulate targets in its environment.

Three DM-J4340 motors over CAN, an ESP32-CAM for video and target selection, ultrasonic distance feedback, and force sensing to confirm contact. The interface adds manual joint control, motor enabling, standby/collapse motions, safety locking, zero calibration, and an automated pressing workflow.

  • Unitree Go2
  • CAN Bus
  • ESP32
  • Computer Vision
  • SolidWorks
  • Inverse Kinematics
  • Web Control

M.Eng. thesis project · TH Deggendorf

Horse using the motorized treat feeder in a real stable
P-02

Automated Horse Training & Feeding System

A closed-loop embedded training system that detects a horse's defecation posture using an IMU-based tail sensor and wirelessly activates a motorized treat feeder. It logs the event time, horse identity, and GPS position while providing live monitoring and manual control through a web dashboard. Assembled and validated in real farm conditions.

The ESP32 tail unit detects the target posture, uses re-arm logic to avoid false triggers, and sends an RF command to the feeder. Each event is stored with timestamp, GPS coordinates, and horse identity — creating a structured dataset for future adaptive control.

  • ESP32
  • IMU & GPS
  • Wireless RF
  • Web Dashboard
  • Motor Control
  • IoT
  • Data Logging

Field-tested end to end · Deployed dashboard

Adaptive three-finger robotic gripper, open configuration
P-03

Adaptive Three-Finger Robotic Gripper

A fully parametric, FDM-manufacturable gripper with three independently driven articulated fingers. Each finger has two phalanges and a dedicated spur-gear mechanism, allowing both power grasps and precision pinch grips on differently shaped objects. Designed in SolidWorks and validated for loads up to 3 kg.

Fingers are placed symmetrically at 120° intervals with modular, replaceable construction, letting the gripper conform to irregular objects.

  • SolidWorks
  • Mechanism Design
  • Spur Gears
  • FDM Printing
  • Kinematics
  • Parametric Design
  • Load Testing

B.Eng. graduation project · Assiut University

Field photo of the Go2 with navigation hardware — coming soon
P-04

Autonomous Navigation for Unitree Go2

An autonomous navigation prototype for the Unitree Go2 integrating route planning, obstacle detection, and emergency-stop logic into a deployable robotic system. I also designed the mounting structure, electronics housing, brackets, and wiring arrangement for clean integration on the robot platform.

Completed during my working-student position at TH Deggendorf (Oct 2025 – Jan 2026).

  • Autonomous Navigation
  • Unitree Go2
  • Obstacle Detection
  • Hardware Integration

Working student · TH Deggendorf

Skills & Tech Stack

A multidisciplinary profile spanning mechanical design, embedded control, and robotics software.

Mechanical Design

  • SolidWorks
  • AutoCAD
  • Creo
  • RoboDK
  • MuJoCo
  • Parametric Modelling
  • Mechanism Design
  • Kinematics
  • Gear & Linkage Design
  • Design for Manufacturing
  • FDM 3D Printing
  • Prototyping
  • Assembly Design
  • PCB Design

Embedded & Control

  • ESP32
  • Embedded C
  • C++
  • Arduino
  • CAN Bus
  • Motor Control
  • Sensor Integration
  • IMU
  • GPS
  • Ultrasonic Sensing
  • Force Sensing
  • Wireless RF
  • PLC / SPS Fundamentals

Software & Robotics

  • Python
  • MATLAB
  • Computer Vision
  • Forward & Inverse Kinematics
  • Autonomous Navigation
  • Obstacle Detection
  • Web Dashboards
  • IoT Systems
  • Data Logging
  • Live GPS Mapping
  • Git
  • Technical Documentation

Engineering Strengths

  • End-to-End System Development
  • Hardware–Software Integration
  • Rapid Prototyping
  • Real-World Testing
  • Troubleshooting
  • Cost-Aware Engineering
  • Cross-Functional Coordination

Experience & Education

Oct 2025 – Jan 2026 TH Deggendorf

Working Student — Robotics

Developed an autonomous navigation prototype for the Unitree Go2 (route planning, obstacle detection, emergency-stop logic) and designed the on-robot mounting, electronics housing, and wiring.

2023 – 2026 TH Deggendorf, Germany

M.Eng. — Mechatronics & Cyber-Physical Systems

Thesis: AXYS — Design & Implementation of a Wirelessly Teleoperated Robotic Arm as a Functional Extension of the Unitree Go2 Using Embedded and Web-Based Control Technology. (Completion planned July 2026.)

2016 – 2021 Assiut University, Egypt

B.Eng. — Mechatronics & Robotics

Thesis: Design & Development of a Three-Finger Versatile Robotic Gripper — practical robotic product design, non-defined object handling, and camera-supported vision.

Let's build something

Open to full-time robotics & mechatronics roles across Germany — with a focus on Bavaria and the south.

Languages Arabic Native English Bilingual German Conversational · B1 academic