Medical & Life-Science Systems
Low-noise sensing, isolation, traceability, reliability, optics and embedded control for medical hardware.

Primary Electrical Engineering Systems
These are the branches most directly involved in architecture, component selection, implementation, verification and lifecycle support for this application.

Sensors, MEMS & Instrumentation
Inertial, pressure, optical, magnetic, thermal and chemical sensing and instrumentation.
Open system →
Analog & Mixed-Signal
Amplifiers, filters, data converters, timing, references and mixed-signal interfaces.
Open system →
Photonics & Optoelectronics
Lasers, detectors, transceivers, modulators, silicon photonics and optical interconnect.
Open system →
PCB Architecture & Design
Board architecture, stackups, layout, HDI, flex/rigid-flex and DFM.
Open system →
SI / PI / EMC / ESD
Transmission lines, SerDes, PDN, return paths, grounding, emissions, immunity and ESD.
Open system →
Processors & Compute Devices
CPU, GPU, MCU, DSP, SoC and AI-accelerator hardware.
Open system →
Manufacturing, Test & Reliability
Fabrication, SMT, inspection, ICT/JTAG, environmental test and failure analysis.
Open system →Cross-System Interfaces
Electrical design does not stop at the board boundary. These interfaces define where electrical decisions must be coordinated with the other Aurora engineering divisions.