Turnkey control electronics for real products.
Full-stack hardware design under one roof — the board, the firmware, the on-device intelligence and the cloud it reports to. Built by the team that designs and ships its own boards.
- 01Board design
- 02Multi-layer PCB
- 03Firmware
- 04Edge-AI
- 05Cloud dashboard
Four skills under one roof.
Most hardware firms cover one or two of these. We do all four in-house — so the firmware is written for the board it runs on, and the cloud is designed for the data the device actually sends.
Twinedge Dev V2 · one of our shipping boards- 01
Embedded firmware
Bare-metal to RTOS, OTA-ready.
- 02
Multi-layer PCB
Schematic to layout, with in-house DFM.
- 03
On-device AI
Real-time inference, no cloud dependency.
- 04
Connected cloud
Fleet telemetry, OTA updates and dashboards.
Five steps, requirement to production.
Every project runs the same path. At each step you get something concrete to review before we move on.
- 01
Requirement
Scope, constraints and target cost — agreed before any design starts.
You getRequirement documentScope, constraints and target cost - 02
Schematic & PCB
Multi-layer design, from schematic to layout.
You getSchematics & layout filesMulti-layer PCB design, reviewed - 03
Firmware
Bare-metal to RTOS, OTA-ready from day one.
You getFirmwareBare-metal or RTOS, OTA-ready - 04
Prototype & test
Bring-up, validation and iteration on real boards.
You getTest reportsBring-up and validation on real boards - 05
Production
DFM, assembly and deployment.
You getProduction-ready filesManufacturing and assembly data
Real products, for real clients.
Client names stay private — the engineering doesn't have to. Two builds, described by sector.
Legacy weighing-scale retrofit
A Wi-Fi control board that brings connectivity to existing weighing scales — no new instrument needed.
Point-of-care height measurement
A Wi-Fi height-measurement device built for point-of-care use.
Eight sectors, one engineering core.
From the factory floor to the farm, the clinic and the classroom — control electronics look different in each, but the stack underneath is the same.
- 01
Manufacturing & Automation
Industry 4.0 control, monitoring & predictive maintenance.
- 02
Agriculture & Irrigation
Networked control where Wi-Fi can't reach the field.
- 03
Healthcare IoT
Connected devices for point-of-care and clinical settings.
- 04
Education & STEM
Hands-on learning kits for schools & universities.
- 05
Smart Buildings & Home
Connected lighting, energy & appliance control.
- 06
Weighing & Instrumentation
Connectivity retrofits for legacy instruments.
- 07
SMEs & Startups
Turnkey control electronics for real products.
- 08
Drones & Aerial Services
Flight control for agri-spray, mapping & STEM.
We design for Indian conditions.
Latency, cost, privacy and connectivity-independence are pushing AI inference to run on the hardware. In India, that shift isn't a trend to chase — it's the correct architecture for the conditions we already build for.
Patchy connectivity
Broadband doesn't reach the field. The device must think on its own.
How we designLocal logic first — the device keeps working when the link drops.
Power instability
Systems must survive cuts and erratic 3-phase supply.
How we designFirmware and power design that ride through cuts and resume cleanly.
Cost sensitivity
Imported solutions price out the Indian buyer.
How we designA target cost agreed at requirement stage — designed to it, not around it.
Data localisation
Keeping data on-device is becoming a requirement, not an option.
How we designInference and data kept on the device wherever the product allows.
Pick where we come in.
Join us at the stage that fits your team. Every engagement starts with the same requirement step, so scope and cost are clear up front.
Design only
Requirement, schematic and multi-layer PCB layout, handed over as design files.
Best whenYou have your own prototyping and manufacturing partners.
Design + prototype
Everything in design, plus firmware, board bring-up and validation on real hardware.
Best whenYou need a working prototype to test, demo or pitch.
Design to production
The full five steps — through DFM, assembly and deployment.
Best whenYou want one team accountable from first sketch to shipped product.
Firmware & cloud
Firmware, on-device AI and fleet cloud for hardware you already have.
Best whenYour board exists — it needs to get smarter, connected or updatable.
Don't start from a blank schematic.
Our shipping ESP32-S3 and ESP32-C6 boards are proven platforms. Building your product on top of one — or on a derivative of it — can cut design and bring-up time.
See our boards
Horizon Gen 1
Twinedge Dev V2
Horizon Dev-2 C6
Hexon Atom C6
Before you brief us.
Anything we haven't covered here — just ask.