We provide end-to-end hardware engineering — from schematic capture and PCB layout to prototyping of high-speed circuits, power systems, PCB antenna design, and FPGA/DSP solutions. Our approach emphasizes EMI/RFI/ESD compliance, reliability, manufacturability, and component lifecycle stability, ensuring that every design meets performance, compliance, and real-world application demands across medical, defense, and industrial systems.
We create detailed circuit schematics that translate concepts into reliable hardware. Our designs emphasize signal integrity, power efficiency, reliability and compliance with safety-critical standards for medical, defense, and industrial applications.
From compact wearables to high-speed multilayer boards, we design PCBs that balance performance and manufacturability. Our expertise extends to ball grid, WiFi, Bluetooth, LoRa, and custom RF PCB antenna designs including impedance matching and EMI/EMC compliance.
We provide end-to-end support through the fabrication process — from vendor-ready Gerber files and stack-up recommendations to Bill of Material Generation & Component Procurement information to assembly coordination and in-circuit testing. Our approach ensures manufacturability, quality control, and a smooth transition to scalable production as well as procurement information to ensure availability, cost efficiency, and lifecycle stability. Our proactive approach reduces supply chain risks and supports scalable production.
We design and validate high-speed systems, including CAN/LIN, PCIe, HDMI, USB, and LVDS interfaces, alongside FPGA and DSP development. From signal integrity analysis to custom logic in VHDL, Verilog and schematic capture, we deliver reliable, performance-critical solutions.
We design efficient and reliable power systems, from high-speed switching FET circuits and precision DC-DC converters to BLDC and stepper motor drivers. Our expertise ensures robust performance, thermal stability, reliability and compliance with demanding industry standards