Intronix team members had built outstanding RF/MW capabilities over more than 15 years of involvement in the field’s industrial, academic and research activities. Intronix services and expertise covers both 2D (PCB based) and 3D passive (Filters – couplers – diplexers) components as well as full/sub system design (5G RF chain – GNSS RF front-end – antenna feeding network – SDR-based systems, DRFS applications and DSP, etc.).
Our team is capable of designing the well-known patch and wire (array) antennas as well as antennas for 5G, automotive, IoT and many other applications. Intronix also, provides beamforming design for Tr/Tx using Digital – Analog – Hybrid methods for single and dual polarization with and without sub-array utilization.
The strong mix of industrial, academic, and R&D work that our team had built over years makes PCB design with different levels of complexity an achievable task with high quality and efficiency. PCB design related tasks like handling schematic and layout of high speed and/or high-density design for analog, digital, and mixed signals are used-to and well-practiced routine work for our team.
Intronix provides “Signal and Power Integrity Essentials Training” that covers the essentials of the five main components of signal integrity analysis (namely: transmitter, receiver, signal quality, timing and interconnect) as well as the power integrity and its interactions with signal integrity. The training is a combination of theoretical and lab (simulation) sessions for a total of 5 training days. The training brochure can be reached at https://bit.ly/SI_PI_Training
Intronix is preparing a “software defined radio essential training” that covers needed theory and provides hands on experience based on GNU Radio software and USRP hardware platform.
Adopting a specific tool and building needed skills has never been a problem for engineers with a solid background and deep understanding of the underlying theories and technologies like our team. Having said so, the tools that we recently utilized in our latest projects are: