Sirotics Start a project
Work Capabilities

Practices

Applied AI Spatial computing & XR Physical AI & robotics

Product studio

Product research Product design Product engineering

Regulated health

Digital health Clinical trials & evidence

More

AI Research Sectors Approach Insights About Start a project

Product innovation consultancy

We turn frontier technology into products that ship.

Sirotics works at the edge of applied AI, spatial computing and robotics, then carries that work all the way through research, design, engineering and clinical validation, into markets where being interesting isn't enough.

Scroll

Applied AI · Spatial computing · Robotics, brought through product research, design and engineering into digital health, medical devices and clinical research.

ISO 13485
IEC 62304
ISO 14971
IEC 62366 human factors
21 CFR Part 11
HL7 FHIR
ROS 2
OpenXR
Edge inference
IEC 60601
CDISC SDTM
ISO 27001
WCAG 2.2
Zephyr RTOS
ISO 13485
IEC 62304
ISO 14971
IEC 62366 human factors
21 CFR Part 11
HL7 FHIR
ROS 2
OpenXR
Edge inference
IEC 60601
CDISC SDTM
ISO 27001
WCAG 2.2
Zephyr RTOS

How we're built

Three layers,
one team.

Most firms hand you one of these. Deep technical capability with no route to a product, or a tidy product process with no real engineering underneath it.

We run all three together, because that is the only way emerging technology actually reaches a user, and survives a regulator.

Layer 01

Practices

The technical depth

Small, senior teams who have shipped in these domains before. They run feasibility, de-risk the hard parts early, and stay on the programme through production rather than handing over a report.

Layer 02

Product studio

The delivery engine

Research, design and engineering working as one group on a single backlog. Industrial design sits next to firmware; human factors sits next to the requirements that verification will be written against.

Layer 03

Regulated health

Where the bar is highest

Our deepest sector. Quality, risk and evidence are designed in from the first sprint, not retrofitted six months before submission, which is where most programmes lose a year.

Capabilities

Eight practices that
work on one programme.

You can engage any one of these on its own. Most clients come for one and stay for three, because the handoffs between them are where programmes usually break.

See capabilities in full

Applied AI

Perception, multimodal systems and decision support, built with the evaluation harnesses that prove they behave.

  • Computer vision & sensor fusion
  • LLM & multimodal systems
  • Evaluation, red-teaming, drift monitoring
  • On-device & edge inference
Explore

Spatial computing & XR

Immersive systems for training, simulation and therapy, built for real headsets and real users, not demo loops.

  • VR / AR / MR application development
  • Simulation & digital twins
  • Procedural & surgical training
  • Haptics, comfort & interaction design
Explore

Physical AI & robotics

The next front in the AI race. Perception, learning and control for machines that act in the real world, sensors through to deployed fleets.

  • Sensing, sensor fusion & dynamic vision sensors
  • Embodied AI, robot foundation models & sim-to-real
  • Drones, mobile robots & manipulators
  • New robot R&D, automation & fleet deployment
Explore

Product research

Before anything gets built: who it's for, what it has to do, and whether it can actually win.

  • Generative & ethnographic research
  • Human factors (IEC 62366, FDA HFE)
  • Technology & IP landscaping
  • Business case & roadmap strategy
Explore

Product design

Industrial design, interaction design and design systems that survive contact with manufacturing.

  • Industrial design & CMF
  • UX / UI & design systems
  • Looks-like / works-like prototyping
  • Accessibility & inclusive design
Explore

Product engineering

Electronics, firmware, mechanical and software under one roof, through DFM and into production.

  • Electronics & PCB design
  • Embedded firmware & RTOS
  • Mechanical, DFM & tooling
  • Cloud, mobile & systems engineering
Explore

Digital health

Connected products in regulated environments, software as a medical device, wearables, diagnostics and the platforms behind them.

  • SaMD & digital therapeutics
  • Wearables & remote monitoring
  • Interoperability (FHIR, DICOM)
  • Cybersecurity, HIPAA & GDPR
Explore

Clinical trials & evidence

Technology that makes studies actually run, and evidence that holds up with regulators and payers.

  • Decentralised & hybrid trial platforms
  • eCOA / ePRO, eConsent, wearable endpoints
  • Digital biomarker development
  • 21 CFR Part 11 & GxP validation
Explore

AI research

A research practice,
not a research slide.

Anyone can build an AI demo in a fortnight. Almost nobody can turn one into a system that runs unattended, behaves predictably on their own data, and holds up in front of a customer.

We run active research on the things that actually block that: memory and long-context systems, agentic architectures, LLM adaptation, in-house data extraction, evaluation science, on-device efficiency, and enterprise adoption, where most programmes quietly stall.

It produces things that leave the building.

Kerneta, the open .dai memory format behind DaiDocs, began as an internal answer to a client problem and is now a Sirotics spinout. It ranks 2nd on LongMemEval-S, the AI memory benchmark, at a third of the tokens of the system above it.

Approach

Frame it, de-risk it,
then build it.

Almost every programme that goes badly went wrong before anyone wrote code. The wrong problem, an unvalidated assumption in the middle of the architecture, or a regulatory pathway chosen after the design was locked.

We spend the first weeks finding the parts of your programme most likely to kill it, and we test those first, while changing course is still cheap.

Why Sirotics

Built to carry a
programme, not a phase.

We are deliberately senior and deliberately small. You get the people who scoped your work doing your work, which is the whole reason the model holds together.

8 Practice areas that staff a single, joined-up programme team
Hardware
+ software
Electronics, firmware, mechanical and cloud in one group, not two vendors
ISO 13485
aligned
Design controls, risk and traceability run from day one, not bolted on
24 wks From first call to a scoped discovery sprint with a decision at the end

Senior by default

No pyramid. The engineers and designers in your kickoff are the ones on your programme in month nine.

Evidence-shaped from the start

Claims, endpoints and the evidence needed to support them are defined before the architecture hardens around them.

You own everything

IP, source, design history and toolchains are yours. We build so that your team can take it over, and we plan for that handover.

Sirotics is taking on new programmes

Tell us the part
you're worried about.

The fastest way to work out whether we're a fit is a 30-minute call about the riskiest thing on your roadmap. No deck required.