Start with the hardware we have built.
Prototype 3.0 records pressure, motion and environmental data across both feet, with synchronized output for analysis.
Prototype 2.0 proved pressure sensing worked.
Four pressure zones in each insole collected data from both feet. External wires supplied power and carried the readings back out.
The setup produced usable pressure data. It also showed the limits of a tethered, pressure-only system.
Prototype 2.0
Wired pressure sensing
- Pressure
- 4 zones
- Footwear
- Both feet
- Data
- Wired
- Power
- External
Prototype 3.0 cut the wires and added context.
Rechargeable power and wireless data offload made the system portable. Six-axis motion sensing, temperature and humidity now sit alongside the four pressure zones.
Readings from both feet share timestamps and export as synchronized CSV files. The prototype is now being evaluated and validated.
How the data moves
- Inside the footwear
- Pressure, motion, temperature and humidity are recorded while the wearer moves.
- Across both feet
- Readings from the left and right footwear share timestamps.
- For analysis
- The system exports synchronized CSV files for review and validation.
- Partner review
- Qualified partners can inspect the built prototype and its electronics architecture.
- Under NDA
- Engineering specifications, component architecture and test data
Prototype 4.0 moves more of the work onboard.
The next build is planned around longer, more self-contained recording. It adds denser pressure sensing, real-time synchronization, onboard storage and low-power Bluetooth.
Satellite positioning, faster charging and a battery fuel gauge are also part of the target specification for Q1 2027.
Prototype 4.0
Target: Q1 2027
- Pressure
- 8 zones
- Motion
- 9-axis
- Timing
- Real-time
- Storage
- On-device
- Connection
- Bluetooth LE
- Position
- Satellite
- Charging
- Fast charge
Prototype 5.0 broadens what the platform can sense and do.
This generation extends the platform beyond pressure and motion. The roadmap includes chemical sensing, heart-rate and muscle-activity inputs, partner integrations and haptic feedback.
Energy harvesting and channel-sounding trilateration remain development objectives. No public delivery date has been set.
Prototype 5.0
Future capabilities
- Pressure
- 10+ zones
- Motion
- 9-axis
- Environment
- E-nose
- Timing
- Real-time
- Integration
- Partner systems
- Position
- Trilateration
- Power
- Energy harvesting
- Biosensing
- Heart + muscle
- Feedback
- Haptic