Hardware to Cloud, One Team
PCB design, firmware, mechanical, manufacturing, and platform integration one accountable team across every layer.

Things at Web runs product and hardware engineering electronics, firmware, mechanical, and platform integration for connected products and industrial systems.
Product engineering at Things at Web means owning the path from concept to shipping product electronics, firmware, mechanical, manufacturing, and the platform integration that connects it back to the cloud. Hardware is unforgiving; we plan for that from day one.
Things at Web runs product and hardware engineering electronics, firmware, mechanical, and platform integration for connected products and industrial systems.
Product engineering at Things at Web means owning the path from concept to shipping product electronics, firmware, mechanical, manufacturing, and the platform integration that connects it back to the cloud. Hardware is unforgiving; we plan for that from day one.
From schematic capture and PCB layout to firmware engineering, mechanical design, and partner-led manufacturing one accountable engineering team across every layer.
PCB design, firmware, mechanical, manufacturing, and platform integration one accountable team across every layer.
3D printing and CNC for mechanical, in-house bring-up for electronics and firmware. Iteration cycles measured in days, not weeks.
EMC, FCC, CE, UL considerations baked into the schematic and layout. Certification is not an after-the-fact scramble.
The core capabilities we deliver in every engagement all strict-fact, all in production today.
IoT devices, sensors, gateways, retail terminals, and edge-compute appliances shipped to production.
Schematic capture, PCB layout, EMC awareness, design-for-manufacture. Prototyping in-house, partner-led assembly.
Embedded C/C++, Rust, MicroPython, and Linux user-space on edge devices. Secure boot, signed OTA, fielded-device observability.
CAD-led mechanical design with prototyping (3D print, CNC) and partner-led tooling for production. Designed for serviceability.
Bug fixes, firmware updates, revision planning. We prefer to stay 2-3 years post-launch so fielded issues feed back into design.
Our step-by-step engagement model ensures complete transparency, predictable iterations, and full code ownership on handover.
We map your goals, audit anything that already exists, and agree on scope and success measures before any code is written.
You get a concrete plan with timeline and a named delivery team the same specialists who will actually build your product.
Working software every iteration, with direct access to the engineers. No account-manager relay, no outsourcing chain.
Full ownership of code, hosting, and design files transfers to you on handover. Ongoing operations support is optional, never lock-in.
Answers to common questions about our process, deliverables, and how we work.
Connected products (IoT devices, sensors, gateways), industrial automation hardware, point-of-sale and retail terminals, and edge-compute appliances. We have shipped products in production retail and industrial environments.
Yes schematic capture, PCB layout, EMC awareness, design-for-manufacture. We work with manufacturing partners for assembly and bring-up. Prototyping done in-house.
Yes embedded C/C++, Rust, MicroPython, and Linux user-space on edge devices. Secure boot, signed OTA, and observability for fielded devices.
CAD-led mechanical design with prototyping (3D print, CNC) and partner-led tooling for production. We design for serviceability and thermal/EMI realities, not just looks.
Yes sustained engineering, bug fixes, firmware updates, and revision planning. We prefer to stay with a product through the first 2–3 years of fielded life so issues feed back into the design.
Book a 30-minute discovery call. We'll walk through your needs, propose a concrete first wave, and tell you honestly whether it's the right fit.