Nine engineering lines covering the whole life of an embedded product — plus a tenth for the
enterprise software that runs on top of it. Every engagement is scoped and quoted against
your actual requirement.
The foundation of every project we take: choosing the right processor and components for
the cost, power and lifetime you need, then proving the design in simulation before it
goes to fabrication.
Architecture and component selection against cost and availability
Schematic capture with reviewed design rules
Circuit simulation of critical paths before fabrication
Costed, sourceable bill of materials
FPGA designing
For the work a microcontroller cannot do in time: parallel processing, hard real-time
control loops and high-rate data capture, implemented in programmable logic.
RTL design and IP integration
Synthesis, place-and-route and timing closure
Simulation-based functional verification
High speed interfacing to ADCs, sensors and memory
PCB designing
Multilayer circuits, RF circuits, high speed circuits and rigid-flex circuits. Layout is
where a good schematic is won or lost, so this is treated as engineering, not drafting.
Multilayer stack-up with controlled impedance
RF layout with attention to matching and keep-outs
High speed routing: length matching, return paths, EMC
Rigid-flex for constrained or moving enclosures
DFM review and complete fabrication and assembly files
Capacitive touch solutions
Touch interfaces that survive the real world — thick overlays, wet or gloved hands, and
the electrical noise of whatever sits next to them.
Touch keys, sliders, wheels and proximity sensing
Sensor geometry tuned to your overlay material and thickness
Noise immunity and false-trigger suppression
Backlit and sealed panel integration
Wireless communication solutions
Radio links designed with the antenna, the range budget and the certification path
considered from the first sketch rather than fixed afterwards.
Wi-Fi, BLE, LoRa / sub-GHz and RF module selection
Antenna placement, matching and range testing
Protocol and mesh design for battery-powered nodes
Pre-compliance awareness built into the layout
Complex digital and analog circuits, mixed circuits designing
Where measurement accuracy is the product. Precision front-ends, careful grounding and
deliberate separation of the noisy from the sensitive.
Sensor signal conditioning and amplification
ADC / DAC selection and anti-alias filtering
Mixed-signal partitioning, grounding and shielding
Isolation for industrial and high voltage environments
Embedded software
Firmware written to be read again in three years — by us or by your own team. Structured,
documented and updateable in the field.
Bare-metal and RTOS applications
Peripheral drivers and communication stacks
Bootloaders and over-the-air update paths
Production test firmware and calibration routines
IoT solutions
A complete path from the sensor to the person who acts on it: device, gateway, transport,
storage and the screen that finally shows the number.
Sensor nodes and industrial gateways
Secure provisioning and device management
Telemetry over MQTT / HTTPS with store-and-forward
Dashboards, alerting and reports — or a feed into your ERP
Power solutions
Inverters, UPS, BMS, AC/DC and DC/DC. Power design is judged on the days it is not
watched, so thermal headroom and protection come first.
Inverter and UPS topologies with transfer logic
Battery management: balancing, protection, state estimation