LOADING
AYKINAYEngineering & Research
We connect fundamental research with engineered systems — building rigorous, verifiable technology at the intersection of computation, hardware and emerging disciplines.
01Capability areas
AYKINAY is organized around three areas of practice that reinforce each other — research, engineering and systems.
Patient, long-horizon research across emerging technology domains — from theoretical foundations to working prototypes.
Full-stack engineering across software, firmware, hardware and physical systems — from sensor to interface.
End-to-end systems thinking — low-level interfaces, operational platforms and the protocols that connect them.
02Research focus
Research areas are framed as technical directions, not promises of active programmes. Each one connects physical systems, embedded computation and rigorous verification.
High-performance, low-power and specialised computing architectures, including accelerator systems and novel compute substrates.
Methods and infrastructure for reliable, deployable intelligent systems — from model design to runtime and evaluation.
Custom electronics, firmware and embedded platforms designed for demanding physical and operational constraints.
Autonomous and tele-operated robotic systems, including perception, control and physical integration.
On-board systems, propulsion research and platforms for atmospheric and space applications.
Underwater and surface platforms, marine sensing and resilient systems for harsh aquatic environments.
03Engineering philosophy
A working framework that connects research questions to engineered systems. Used as a reference model — actual programs may follow different paths depending on scope, partners and constraints.
01
Define the problem, survey the prior art and identify open questions.
02
Sketch architectures, evaluate trade-offs and converge on a direction.
03
Build the system with rigorous, reviewable engineering practice.
04
Produce a working artefact that can be tested, measured and improved.
05
Harden the prototype into an operational system — documented and maintainable.
04Current initiatives
A selection of documented designs and research concepts. Stages reflect the current evidence in the project records; they do not imply production, operational deployment or qualification.
A parametric OpenSCAD mechanical structure for a 3U CubeSat, organized around continuous rails, internal plates and accessible electronics interfaces.
An original, documented 36 × 36 mm four-layer flight-control PCB architecture centered on an STM32H7-class controller.
A KiCad hardware project for an STM32-based flight controller with inertial, barometric and optional navigation sensing.
A documented first-board architecture study for an i.MX 8M Mini-class Linux single-board computer.
A lightweight graphical operating-system experiment for the Raspberry Pi Pico, using LVGL and an SPI TFT display.
An in-development quantum-sensing research project centered on photodiode readout, signal conditioning and control electronics.
05Collaboration
AYKINAY publishes work with its scope and development stage clearly marked. Collaboration, research inquiries and technical discussions are welcomed through the channels listed on the contact page.