Kirill Anohin
FPGA/Embedded Software Engineer @ CrystalSpace
About
Perfection in development is a moving target. You can refine and improve endlessly, but eventually, you must draw a line and say, 'This is it; it's time to release.
Estonia
Tartu
Computer Software
Embedded Software Programming, Field-Programmable Gate Arrays (FPGA), Embedded Linux, HLS, SystemVerilog, System on a Chip (SoC), Project Management, Altium Designer, RF Design, Hardware Development, Linux, Python (Programming Language), C (Programming Language), C++, Git, DOCKS Propagator, Timeloop VTS, JSON, IT Service Management, Network Administration
Experience

Software lead at SUTS
Tartumaa, Estonia
Development of the SUTS platform and subsystems (EIS - RE.5.04.23-0489) Led a team of five software engineers, with responsibilities including: * Defining high-level software architecture * Assigning tasks and aligning team members with project goals * Reviewing pull requests * Providing technical guidance * Managing deliverables

Embedded Hardware and Software Development
Tartu, Tartumaa, Estonia
The ESTCube-2 project represents a student-led initiative to develop a CubeSat platform capable of accommodating multiple payloads. The primary payload of this project is a plasma brake, designed for deorbiting the satellite from low Earth orbit. In this project, my key responsibilities included: * Developing a power harvesting system specifically for the satellite. * Developing and resolving issues within the EC2 firmware. * Creating unit tests to ensure system reliability and performance. * Designing and fabricating printed circuit boards for the satellite's side panels. * Compiling and maintaining comprehensive documentation for the project.

Assistant Engineer
Paris, Île-de-France, France
At the Paris Observatory, my role involved the development of the Birdy-T test concept. This project is designed to simulate the characterization of celestial bodies using radio science based on specific datasets. It comprises both stationary(ground station) and mobile(trolley) units. The stationary ground unit is equipped with radio technology to communicate with a mobile unit. This interaction generates echo and Doppler measurements, which are used as input for the precise orbit determination (POD) algorithm. As a result, the mass with associated error margins is calculated. My key responsibilities for this project were: * Production of datasets. * Developing firmware for the trolley. * Creating unit and functional tests for system validation. * Preparing comprehensive documentation for the project. * Managing calls for tenders and equipment procurement. * Designed and created printed circuit boards for the project. * Developing SDR software.

IT Specialist Trainee
SA Läänemaa Haigla
Estonia, Haapsalu
The key responsibilities were monitoring hospital devices via Zabbix infrastructure, managing network security, and providing mass software deployment services.
Kirill Anohin's Contact Information
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