Develops aerodynamic, propulsion, and rigid-body dynamics models for multirotor, fixed-wing, and hybrid UAV platforms, creating and refining high-fidelity 6-DOF nonlinear and linearized flight dynamic models that incorporate actuator, environmental, and sensor effects. Builds and supports SIL and HIL simulation environments using tools such as MATLAB/Simulink, ROS, and Gazebo, while collaborating closely with hardware, avionics, GNC, and test teams to ensure models accurately reflect real aircraft behavior. Continuously investigates advanced modeling techniques and produces detailed technical documentation, testing protocols, and performance analyses to validate algorithms & predict system performance.
Detail
Leads end-to-end avionics and GNC architecture, integration, and flight readiness for UAV platforms, optimized for SWaP-C, performance, and reliability. Defines modular, scalable system architectures and drives critical trade studies across compute, sensing, communications, and redundancy while ensuring compliance with DO-178, DO-254, DO-160, and MIL-STD standards through robust design assurance and governance. Oversees verification and validation from bench integration and SIL/HIL to ground and flight testing, including flight test planning, safety analyses, risk assessments, and mission readiness milestones.
Detail
The role involves developing and maintaining embedded UAV flight software for real-time control, sensor fusion, and autonomous missions using C/C++, Python, and ROS. It includes avionics integration in compliance with standards such as DO-178C, along with the development of drivers, simulations, and analysis tools. Responsibilities also encompass HIL, ground, and flight testing with data-driven optimization and issue resolution. The position requires close collaboration with hardware and GNC teams, thorough documentation, and ongoing research aligned with FAA and EASA regulatory requirements.
Detail
Develops lower- and upper-level flight control algorithms for UAV systems, performing stability and performance analyses to enhance flight capabilities. Designs and implements state estimation, sensor fusion, and calibration algorithms, including Kalman filtering and precise positioning, to improve navigation accuracy and autonomy. Works on sensor selection, anomaly detection, and navigation autonomy while collaborating closely with hardware and software teams to ensure seamless GNC system integration. Conducts functional testing, flight test planning, execution, and post-flight analysis, and produces comprehensive technical documentation covering algorithms, test plans, and performance results.
Detail
The role focuses on developing and integrating embedded UAV firmware from low-level drivers to autopilot systems using C/C++, ARM, FPGA, RTOS, and embedded AI, in compliance with safety-critical standards such as DO-178C. It includes simulation, HIL, and flight testing with structured debugging and fault resolution to ensure reliable autonomy. The position also involves cross-functional coordination, change management, and prototyping optimized protocols and interfaces, while driving innovation through embedded AI and robust technical documentation.
Detail
The role focuses on developing and integrating AI/ML algorithms for UAV autonomy using computer vision, deep and reinforcement learning. It includes designing intelligent embedded platforms, managing datasets, and training and validating models with frameworks such as PyTorch and TensorFlow. Responsibilities also cover researching and prototyping real-time algorithms like SLAM and object detection, optimizing performance, and supporting deployment. Close collaboration, automated testing, version control, and adherence to clean code and lifecycle standards are essential.
Detail
Leads the design of UAV electronic systems, including avionics, power distribution, grounding, and communications, with schematics and PCB layouts using Altium Designer. Performs simulations and analyses in LTSpice/MATLAB for thermal, signal, power, and EMI/EMC compliance with MIL-STD standards. Plans and executes prototype testing, flight integration, reliability assessments, and failure analyses to drive system improvements. Collaborates with software, mechanical, and production teams on integration, engineering changes, and fault resolution. Advances UAV reliability through innovative architectures, autonomous controls, and thorough documentation to support indigenous projects.
Detail
Develops lower- and upper-level flight control algorithms for UAV systems, enhancing stability, maneuverability, and overall flight performance. Designs and implements guidance, navigation, and control algorithms for autonomous operations, including path planning, trajectory optimization, and stabilization, while tuning control systems such as PID, MPC, and LQR. Builds and utilizes simulation environments like MATLAB/Simulink, ROS, and Gazebo to validate algorithms and predict system behavior. Supports field testing by analyzing flight data, iterating on GNC designs, and collaborating with hardware and software teams for seamless system integration. Produces detailed technical documentation, conducts functional tests, and plans and participates in flight test activities to ensure reliable and safe UAV operations
Detail
Brings experience across relational databases, GIS and navigational systems, and multimedia frameworks, with a strong background in image processing using GPU/CUDA, AR/VR technologies, and modern web and cross-platform frameworks. Hands-on with embedded Linux development, DevOps and CI/CD pipelines, and adherence to aerospace quality standards such as AS9100, STANAG, and AQAP. Demonstrates a strong quality and execution mindset through certifications, backend and automation testing expertise, team leadership, and a continuous focus on operational excellence driven by documentation, training, and structured action plans.
Detail
Leads 2D and 3D harness architecture development for UAV avionics, power, and ground systems, including schematics, routing, and BOMs using tools like Capital Harness or E3.series. Conducts simulations for harness integrity, including crosstalk, voltage drop, thermal derating, and EMC, refining designs to meet IPC-A-620 and MIL-STD-810 standards. Manages prototyping, assembly, and validation with continuity, pull-force, and environmental tests, enhancing reliability. Collaborates with procurement, manufacturing, and cross-functional teams for integration, issue resolution, and scaling from prototypes to low-volume production.
Detail
This role manages end-to-end procurement of materials and equipment in line with aerospace and military standards, ensuring optimal cost, quality, and lead time. It involves working closely with Chinese and international suppliers using advanced Chinese language skills for negotiations, technical coordination, and contract execution. The position supports Production and R&D through cost and manufacturability analysis, oversees logistics, customs clearance, ERP reporting, and delivery tracking, and ensures strong supplier performance by managing nonconformities and driving corrective and preventive actions.
Detail
It is very valuable for us to support the training of our teammates and to see their development in our staff consisting of young and dynamic teams. We grant the right of academic leave to our personnel who continue their Master's and Doctorate education.
By supporting continuous development, we continue the training and development activities of our employees.
We provide shuttle services on the so that the transportation of our teammates can be in the safest and best conditions.
We care about you and your health.
In addition, we provide complementary health insurance, which is one of our fringe benefits, to all our personnel, enabling them to benefit.
“Let your feet touch the sky too. Didn’t we all have a plane? Wasn’t it the excitement of all of us at one time to fold a white paper carefully and release it into the sky? Now, how about building a plane with national and local capital and the same excitement and desire that we have from those days? Are you ready to call out to the sky at Bayraktar Technology Pakistan, where the majority of its employees are young engineers and technicians? We would be happy to see you among our young team who work hard, try and make mistakes but never give up, with the same determination and determination for this flag, for this land, for this homeland.”
Human Resources Team
In order to apply for a job with our company, you must visit our website (career.baykartech.pk). When you click on the "Career" button on our website, you will be directed to the Bayraktar Technology Pakistan Career screen. You can view our positions by clicking on the "Open Positions" heading, and you can reach our "Job Application" form by clicking the "Apply" button at the bottom of the advertisement you want to submit your application to. When you fill in the information in the form and upload the relevant documents (Resume, Transcript and Cover Letter) and click the "Send" button, your job application will be completed.
You can submit your job applications to our company through our "Website".
All candidates who have applied for a job in our company receive feedback regarding their application status.
If your process related to your job application that you submitted to our company has been completed, you can apply for a job again with us.