Tomas Thoresen
Industrial System Architect @AMD
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WORK HISTORY
Industrial System Architect @AMD
Munich, DE
EDUCATION
Vestfold University College
Electronic and Computer Engineering
SKILLS
ABOUT TOMAS THORESEN
Passionate about pushing the boundaries of what’s possible in Industrial, Robotics and Medical field. Excited to be at the forefront of innovation, bridging agentic AI and open source LLM to empower next-gen robotics! Proud to collaborate with leading robotics companies, leveraging AMD embedded solutions—from Ryzen to Versal and Zynq Ultrascale+—and delivering cost-optimized performance for highly demanding industrial, robotic, and medical applications.With a deep commitment to functional safety and expert experience in motor control, I’m driving forward robotic applications that shape the future of automation and human interaction.Passionate about pushing the boundaries of what’s possible in robotics—especially in high-precision, critical environments.Let\'s connect if you want to talk robotics, AI, embedded tech, or open source innovation!#Robotics #AgenticAI #AMD #Ryzen #Versal #ZynqUltrascalePlus #MedicalRobotics #IndustrialAutomation #OpenSource #LLM #FunctionalSafety #MotorControl* Agentic AI: Designing and deploying autonomous systems with agent-oriented architectures for robotics.* LLM Open Source Retraining: Experienced in fine-tuning and retraining Large Language Models on open datasets for robotics applications* Robotic & Humanoid Companies: Collaboration with industry leaders to integrate advanced AI and embedded solutions into humanoid form factors and manipulators.* Functional Safety: Expert in IEC 61508 & ISO 13849 compliance for safety-critical robotic* AMD Embedded Technology: Specialization in high-performance and cost-optimized AMD silicon- Ryzen: Edge AI and control tasks in robotics- Versal: Adaptive SoCs for AI acceleration and real-time robotics- Zynq Ultrascale+: Flexible motor control and control for sensor fusion and safety systems in medical & industrial robots- Embedded+- Combining compute and low latency + high bandwidth.* Motor Control (FOC): Implementing precise field-oriented control strategies for brushless motors in mobile and fixed robots.* Application Focus: Industrial automation, medical robotics, and smart robotics—from proof of concept to mass production.
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