Building Reliable Automation Hardware
We engineer
From PCB design to production, we engineer the hardware that powers automation, IoT and next-generation products.
Hardware engineering, end to end
From first schematic to full production, engineered by the same team throughout.
Custom PCB Design
Schematics and layouts engineered for manufacturability, not just function
Multi-Layer & High-Speed PCB Design
Controlled impedance and signal integrity for boards that can't afford to be wrong
Embedded Systems Development
Hardware and firmware designed together, by the same engineers
IoT Hardware Design
Connected devices engineered for the network they'll actually run on
Industrial Automation Systems
Control hardware engineered for the plant floor, not the lab bench
Robotics Hardware Engineering
Motion control and sensing electronics for machines that move
Why hardware teams trust us with the parts that can't fail
Hardware + Firmware, One Team
The engineers who design your schematic are the same ones who write the driver against it — so hardware bugs get caught during firmware bring-up, not six months into the field.
DFM-First Mindset
Manufacturability is reviewed against your assembly house's real capability file before layout is finalized — not discovered as a production-line surprise.
Signal Integrity Discipline
Stack-up, impedance and return-path planning are built into every high-speed design from the first placement decision, not patched in after routing.
Production-Ready From Day One
Every prototype is engineered with a documented path to volume manufacturing — test jigs, BOM discipline and ECO process included, not an afterthought.
Built for the environments your product actually lives in
Industrial Automation & Manufacturing
Control electronics and sensor systems engineered for continuous-duty plant floor environments.
Robotics
Motion control, sensing and communication hardware for robotic arms and autonomous mobile robots.
IoT & Smart Devices
Connected product hardware across BLE, WiFi, LoRa and NB-IoT, matched to real deployment constraints.
Energy & Power Electronics
Switching power design, battery management and monitoring hardware for energy systems.
Agritech
Rugged, low-power sensing hardware for field-deployed agricultural monitoring systems.
Healthcare & Medical Devices
Precision sensing and low-noise analog design for wearable and diagnostic device hardware.
Automotive & EV
CAN-connected control hardware and battery management systems for electric mobility.
Consumer Electronics
Cost-engineered, production-ready hardware for consumer product companies scaling to volume.
Silicon, protocols and tools we work in daily
Seven stages from idea to production
The same disciplined sequence on every project — nothing skipped, nothing rushed.
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01
Discovery & Requirements
We start by understanding the problem, not the part number. Working sessions with your team define functional requirements, compliance targets, cost ceilings and the constraints that will shape every decision downstream.
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02
System Architecture
Before a single trace is routed, we architect the system: block diagrams, component selection, power budgets and communication topology. This is where most field failures are prevented.
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03
Schematic & PCB Design
Schematic capture, stack-up planning and layout in Altium or KiCad, with signal integrity, thermal and EMI considerations built into the placement and routing decisions — not patched in afterward.
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04
Firmware & Embedded Development
Bare-metal drivers, RTOS tasks or embedded Linux bring-up written against the hardware we designed — so firmware and PCB are debugged together, not handed off across a wall.
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05
Prototype & Bring-Up
Assembled boards hit the bench for power-on testing, oscilloscope and logic-analyzer verification, and first-pass firmware validation. Issues get caught here, on a $200 prototype, not in a $50,000 production run.
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06
Validation & Compliance
Functional, environmental and pre-compliance EMI/EMC testing against your target standards, with a documented DFM review before anything is released to manufacturing.
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07
Production & Handover
PCB assembly coordination, test-jig development and production documentation — gerbers, BOM, assembly drawings, test procedures — so your product scales from ten units to ten thousand without redesign.
Hardware we've engineered into the field
Industrial IoT LoRaWAN Gateway
A multi-channel LoRaWAN gateway and sensor network for real-time temperature monitoring across a distributed cold-storage fleet.
Robotics BLDC Motor Controller
A compact field-oriented-control BLDC motor controller for autonomous mobile robot (AMR) drive wheels.
Agritech Soil Monitoring Node
A solar-powered, multi-depth soil moisture and temperature sensor node for large-scale precision irrigation.
EV Battery Management System
A CAN-connected battery management system for a lithium-ion pack powering an electric two-wheeler platform.
PCB, robotics, automation — rendered, not photographed
Every visual on this site is procedurally generated, the same way we approach engineering: nothing borrowed, everything built to spec.
A populated PCB — component placement, trace routing and layer planning, the foundation of every product we ship.
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Not another vendor handoff
What engineering partners say after shipping with us
Before you reach out
What stage does a project need to be at before we can start working together?
Do you sign NDAs before discussing a project?
How long does a typical PCB design and prototype cycle take?
Do you only design hardware, or do you write firmware too?
Can you take an existing product and help us scale it to production?
What design tools do you work in?
Do you handle certification (FCC/CE/BIS) for wireless products?
Where is Autoematio based, and do you work with international clients?
Have a product idea that needs real hardware?
Tell us what you're building. We'll respond with next steps, not a sales pitch.
autoematio@gmail.com