Edge Computing & Immersive Systems

Making the edge the core of immersive experiences.

A Canadian system design and integration firm focused on edge computing and immersive interaction systems, delivering ultra-low-latency, multi-user AR/VR platforms for venues, industry, healthcare, education, and retail.

Advanced semiconductor chip on circuit board
Company positioning

Designed for real-time immersive infrastructure

We bridge hardware reference design, sensor fusion, graphics acceleration, and deployment engineering so customers can launch immersive systems faster without building the full edge stack from scratch.

<20ms

Motion-to-photon target for responsive AR/VR interaction at the edge.

90Hz

Frame delivery target aligned to p95/p99 frame time performance discipline.

46

Concurrent sensor streams supported per system node, including vision and motion sources.

Multi-user

Built for shared, concurrent, venue-scale or enterprise collaborative experiences.

Core capabilities

Full-stack edge system design

From board-level architecture to visual pipeline tuning, the offering is structured to remove latency, integration, and deployment bottlenecks.

Hardware system architecture
  • Edge node reference design for PCIe, DDR, MIPI, and 10GbE.
  • Custom board and subsystem design for performance-constrained environments.
  • Secure boot architecture and remote operations readiness from day one.
Perception software performance
  • Multi-sensor fusion across RGB-D, IMU, LiDAR, and microphone arrays.
  • Graphics and vision pipeline acceleration through reprojection, fusion, and encoding optimization.
  • Containerized deployment with real-time profiling and performance diagnostics.
Typical solutions

Built around high-value immersive use cases

Each solution model can be adapted for reference design engagements, integrated deployments, or scaled productization.

Advanced semiconductor chip manufacturing and AI edge computing

Industrial AR assembly and remote expert support

Support hands-free workflows, guided assembly, on-site diagnostics, and expert collaboration with low-latency sensor-aware overlays.

  • Factory-floor AR assistance.
  • Remote troubleshooting and guided maintenance.
  • Sensor-rich environments with reliable uplink and edge processing.

Venue-scale multi-user VR/AR systems

Deploy synchronized, shared interactive experiences for attractions, branded activations, museums, or entertainment venues with consistent frame delivery and low perceived lag.

Digital twin and immersive retail

Connect physical spaces to real-time visual experiences for showroom interaction, space simulation, guided product discovery, and digital twin visualization.

Medical and educational simulation training

Create realistic training environments for healthcare and instruction where responsiveness, scenario control, and multi-user coordination matter.

  • Interactive simulation modules.
  • Instructor-managed training sessions.
  • Integration of visual, motion, and audio sensing streams.
Humanoid robot and AI smart manufacturing
Customer value

Why customers buy

The value proposition is speed, reliability, and lower technical risk for teams building immersive edge systems under real-world constraints.

60%

Faster development cycles

Shorten edge system development through reusable reference architecture and integration expertise.

11ms

Frame time discipline

Target p95 and p99 frame time requirements for 90Hz-class immersive performance.

Secure

Operational resilience

Embed secure boot, remote management, and deployment visibility into the full lifecycle.

Engagement models

Flexible partnership structure

The offering can enter at concept stage, subsystem stage, or commercialization stage depending on customer maturity and volume requirements.

Reference design

Accelerate feasibility, architecture decisions, and prototype validation.

Custom boards

Develop tailored hardware for target sensors, throughput, and environmental requirements.

Software integration

Integrate sensing, rendering, transport, orchestration, and profiling into one deployable stack.

ODM production

Transition successful designs into scalable manufacturing and field deployment.