EBTRO is a design house for high-performance RF, antenna, radar and electrochemical measurement systems — engineered in Istanbul, trusted from the lab bench to the orbital payload.
We design, build and integrate end-to-end measurement chains — antennas, front-ends, instrumentation, motion control, reconstruction algorithms and application software.
Broadband vector network analyzers, signal sources, switch matrices and test harnesses engineered for production-grade repeatability.
Turn-key measurement systems for antenna characterization, radar cross-section and synthetic/inverse synthetic aperture radar imaging.
Passive radiometric and active mm-wave / sub-THz imaging subsystems for concealed-object detection, short-range SAR and tomography.
Potentiostats, galvanostats and impedance analyzers for energy, bio and materials science — lab-grade precision, scalable to field deployment.
Reconstruction, super-resolution and machine-learning pipelines built on years of peer-reviewed radar-imaging research.
GaN-on-SiC power amplifier design heritage — from L-band high-PAE blocks to Ka-band SATCOM-class modules.
EBTRO operates where most teams stop: at the boundary between electromagnetic theory, hardened analog hardware, and the software that turns raw echoes into decisions. Our founding engineers have authored peer-reviewed work on mm-wave / sub-THz imaging, passive radiometry, SAR/ISAR reconstruction and GaN power amplification — and we have productized that heritage into real instruments sold to research and industrial customers.
Every EBTRO system is built from the antenna up: RF chain, motion stage, calibration, processing and the user-facing software — one vendor, one throat to choke, one roadmap.
A focused portfolio, deep in each lane — antenna & radar measurement, broadband network analysis, and precision electrochemistry.
A unified positioner-plus-RF chain turn-key range. Characterize antennas under test, measure monostatic/bistatic RCS signatures, and generate SAR imagery of scaled targets — from a single workflow.
Born from a TÜBİTAK-funded R&D program, EBTRO's VNA architecture delivers reference-grade S-parameters with a clean calibration workflow, configurable from 2-port benchtop to multi-port rack modules.
Multi-channel potentiostat / galvanostat platform with EIS, cyclic voltammetry and chronoamperometry — for battery, fuel-cell, corrosion and biosensor research labs.
Low-noise passive millimeter-wave imaging head for concealed-object detection and short-range stand-off screening. Integrates with EBTRO's auto-classification pipeline.
EBTRO's core — RF, mm-wave, sub-THz sensing, electrochemistry and GaN power — is exactly the stack the next decade of space, robotics and autonomy is asking for. Below is where we're investing.
From CubeSat-scale SAR to space-debris radar and GaN SATCOM amplifiers — the same disciplines that built EAMS1 shrink elegantly onto a satellite bus.
Cameras and LiDAR saturate humanoid perception stacks. mm-wave and sub-THz give robots abilities those sensors cannot: sight through dust, fabric and smoke, and a calibrated sense of matter.
4D mmWave radar, MIMO-SAR and passive radiometry are becoming the differentiating layer above cameras and LiDAR. EBTRO's imaging heritage maps directly onto it.
Every new physical-layer technology — from 6G to solid-state batteries to reconfigurable surfaces — needs a measurement answer. EBTRO builds it.
EBTRO's roadmap is not speculation. It is the direct continuation of a research trajectory its founders began over a decade ago and have kept publishing ever since.
Founding engineer's MSc on 3D-imaging mobile robots — the earliest thread of EBTRO's DNA in robotics perception.
Peer-reviewed work on sub-THz tomography, passive mm-wave imaging and low-noise radiometric receivers (Kharkov, URSI, APSURSI).
Published back-projection and ω-k algorithm comparisons for ground-based SAR — the mathematical core of EAMS1.
Compressed-sensing for GB-SAR / ISAR imaging, plus auto-classification of concealed objects in passive mm-wave imagery.
L-band GaN-on-SiC power amplifier research — opening the path to EBTRO's SATCOM / radar PA roadmap.
EAMS1, broadband VNA, potentiostat and PMMW-Scan product lines in customer labs; space, humanoid and autonomy frontiers in active development.
EBTRO partners with primes, startups and research institutes on custom RF, imaging and electrochemical instrumentation — from feasibility study to flight-qualified hardware.