Our projects

Embedded Application Platforms

Embedded application boards provide a versatile foundation for diverse computing and control tasks. Designed to accommodate 8, 16, 32, and 64-bit processors, these platforms enable efficient performance across various applications. 8-bit and 16-bit microcontroller-based solutions are well-suited for compact control systems, offering reliability in automation and embedded environments. 32-bit processor boards, often built on scalable architectures, deliver enhanced computational capabilities, making them ideal for real-time processing and advanced embedded applications. 64-bit platforms provide high-performance computing power, supporting complex workloads with increased scalability and efficiency.

Each of these boards typically integrates development environments and support for multiple programming languages, allowing both hobbyists and professionals to explore embedded systems, automation, and high-performance computing.

Communication/Control Systems

Wired and wireless communication systems are essential for various applications, facilitating efficient data exchange and control functions. Synchronous and asynchronous serial communication protocols provide the framework for reliable data transfer. At the same time, technologies like ISM band wireless, Zigbee, and Bluetooth facilitate short-range communication in IoT applications, home automation, and industrial control. These systems leverage various frequencies and modulation techniques to ensure robust connectivity, low power consumption, and scalability, making them integral to modern digital infrastructure.

Power Systems

Power control systems for various applications like Single/Three Phase AC Induction Motor (ACIM) drivers, brushless DC motor drivers, induction ovens, AC/DC converter inverters, and chargers, as well as switched-mode and linear power supplies, typically incorporate advanced control algorithms such as PWM (Pulse Width Modulation) for efficient energy management. These systems must ensure precise control of voltage, current, and frequency to enhance performance and stability. Key components include microcontrollers or DSPs for processing, IGBTs or MOSFETs for switching, and feedback mechanisms for real-time adjustments, along with thermal management and protective features to ensure reliability and safety across diverse operational environments.

IOT Systems

IoT applications are transforming various sectors through optimized integration of smart technologies: in home automation, systems enhance comfort and energy efficiency by enabling remote control and automation of lighting and appliances; in eldercare, IoT devices monitor health parameters and provide alerts, promoting independence while ensuring safety; transportation leverages IoT for real-time tracking and route optimization, reducing costs and emissions; manufacturing benefits from predictive maintenance and real-time monitoring, improving productivity while minimizing downtime; in agriculture, IoT sensors optimize irrigation and crop management, maximizing yield while conserving resources; energy management utilizes smart grids and meters to balance supply and demand, enhancing efficiency and sustainability; and environment monitoring employs IoT for real-time data collection on air and water quality, aiding in pollution control efforts and informing public health decisions, all while balancing performance, cost, and user needs.

Safety Critical Systems

IEC 61508 is a critical international standard that outlines the requirements for ensuring functional safety in electrical, electronic, and programmable electronic safety-related systems (E/E/PE or E/E/PES). It provides a framework for the entire lifecycle of safety-related systems, including risk assessment, design, implementation, validation, and certification phases. The standard emphasizes the importance of fulfilling safety integrity levels (SILs) to mitigate risks associated with system failures, guiding practitioners in developing systems that reliably perform safety functions throughout their operational life while supporting rigorous documentation for regulatory compliance and assurance.