About Analysion
Empowered by 8co, Analysion Inc. is committed to driving innovation through advanced embedded systems, precision instrumentation, and intelligent software solutions. We develop high-performance hardware, firmware, and software platforms that enable real-time sensing, data acquisition, and decision-making across biomedical, industrial, and safety-critical applications.
With deep expertise in high-speed data acquisition and communication systems, we design solutions integrating RS232, RS485, SPI, I²C, ZigBee, Ethernet, Bluetooth, and fiber-optic technologies. Our work spans ultra-precise instruments for metrology and oceanography, biometrics kiosks, mass spectrometry systems, explosive detection technologies, and UVC sterilization platforms.
We also create modern, interactive user interfaces using tools such as Plotly Dash and Figma, delivering intuitive, real-time visualization and control for complex instruments and devices.
At the core of our innovation is the development of next-generation platforms such as HCAS (Human Collision Avoidance System)—bringing together sensor fusion, embedded intelligence, and advanced perception to enable safer, smarter environments.
Analysion Inc. combines engineering depth with system-level thinking to transform complex challenges into reliable, high-performance solutions.
Meet Our Team
Mike T.Nouei — Founder
Mike is Mike Nouei is a senior embedded systems architect and electronics engineer with over 35 years of experience developing advanced instrumentation, real-time embedded platforms, and integrated hardware–software systems. He holds multiple U.S. and Canadian patents in medical technology and scientific instrumentation, reflecting a long track record of innovation at the intersection of electronics, physics, and applied engineering.
His expertise spans high-reliability embedded system design, sensor fusion architectures, precision analog front-ends, and AI-enabled edge computing platforms. Mike has led the development of complex systems based on STM32, ESP32-S3, NVIDIA Jetson, and FPGA technologies, combining high-speed data acquisition, real-time processing, and scalable software integration.
In recent years, his focus has expanded toward intelligent safety and mobility systems, where he applies his deep background in measurement science to real-world risk detection and event analysis. He is the principal architect behind HCAS (Human Collision Avoidance System), an AI-driven platform that integrates computer vision, inertial sensing, and mobile connectivity to detect, predict, and log safety-critical events in real time.
His work bridges precision engineering with modern AI-based system design, enabling solutions that not only measure with high accuracy but also interpret and act on data in dynamic environments. As the company’s lead system architect, Mike drives product innovation, system architecture, and long-term technology strategy across both advanced instrumentation and next-generation intelligent safety platforms.


Mahyar T.Nouei PhD.— Founder
Mahyar T.Nouei is a multidisciplinary AI and robotics systems expert with over a decade of experience in machine learning, computer vision, and real-time intelligent systems. He specializes in developing advanced perception and decision-making platforms for biomedical, industrial, and safety-critical applications.
Mahyar has led the design and deployment of AI-driven systems for biometrics kiosks, airport automation, and large-scale industrial environments, with deep expertise in LLMs, computer vision, 3D perception, and ROS-based robotics systems. His work spans from edge AI deployment on embedded platforms such as NVIDIA Jetson to large-scale data-driven systems integrating smart sensors and real-time analytics.
With a strong academic foundation, including a Ph.D. in Applied Mathematics focused on fuzzy systems and risk modeling, Mahyar brings a unique combination of theoretical depth and practical engineering execution. He has contributed to multiple patents, peer-reviewed publications, and technical books, particularly in medical AI, intelligent decision systems, and advanced analytics.
At Analysion, Mahyar leads the development of AI-powered sensing and perception technologies, playing a key role in advancing platforms such as HCAS, where machine learning, sensor fusion, and embedded intelligence converge to enable real-time hazard awareness and autonomous decision systems.


Reza Khalily— Senior Software Engineer
Reza Khalily is a senior software architect and AI systems expert with over two decades of experience in designing, developing, and leading complex software platforms across enterprise, industrial, and intelligent systems domains. He brings deep expertise in software architecture, model-driven development, and high-performance system design, combined with advanced capabilities in computer vision, machine learning, and robotics.
Reza has led the development of 3D perception systems using RGB-D cameras, enabling real-time object detection, segmentation, and measurement in industrial environments. His work integrates technologies such as OpenCV, PCL, CGAL, and ROS, delivering scalable vision pipelines and virtual sensing systems for applications including automated inspection and smart conveyor systems.
His expertise in machine learning spans classical and modern approaches, including SVMs, Gaussian Mixture Models, neural networks, and deep learning architectures. He has developed intelligent systems for applications such as airport self-service kiosks, object classification, and anomaly detection, combining data-driven models with real-world deployment constraints.
Reza also brings strong capabilities in robotic simulation and GPU programming, with research focused on large-scale swarm robotics systems using OpenCL for high-performance computation. In parallel, he has extensive experience in meta-programming and model-driven development, designing domain-specific languages (DSLs), compilers, and code generation frameworks using EMF, Xtext, and C++ template programming to automate complex software system creation.
In enterprise systems, Reza has held key roles as architect, consultant, and project manager, leading the design of core banking systems, transaction processing platforms, and large-scale distributed applications, with deep expertise in Java-based systems, bytecode manipulation, and system dependency analysis.
More recently, he has focused on Large Language Models (LLMs) and transformer-based AI systems, developing enterprise-grade platforms using techniques such as RAG (Retrieval-Augmented Generation), fine-tuning, and AI-driven knowledge systems.
At Analysion, Reza serves as a key technology leader, contributing to AI architecture, intelligent software platforms, and advanced perception systems, supporting next-generation solutions such as HCAS, where real-time sensing, AI, and embedded intelligence converge.


Mahmoud Matin— Senior Mechatronic Engineer
Mahmoud Matin is a Mechatronics Engineer and Full-Stack Developer with over a decade of experience designing and delivering integrated hardware–software systems. His work spans intelligent application development, embedded system integration, and scalable cloud-connected platforms.
He has led the development of advanced software solutions such as a Construction Management System that automates complex operational workflows, improving efficiency, traceability, and decision-making. By incorporating AI-driven capabilities—including data extraction, pattern recognition, and process optimization—he enables systems to transition from static tools into adaptive, intelligent platforms.
With a strong foundation in Mechanical Engineering, Mahmoud brings a systems-level perspective that bridges physical systems, embedded control, and modern software architectures. His expertise includes designing end-to-end solutions that integrate sensors, IoT devices, and real-time data pipelines into robust user-facing applications.
He is particularly focused on intelligent systems, IoT-enabled instrumentation, and automation platforms where hardware, firmware, and software converge to create high-impact engineering solutions.


