PROPRIETARY IOT HARDWARE

Coredii™ Posture Cushion

A high-ticket, sensor-driven physical system designed to validate unit economics and cross-border supply chains through a targeted executive pilot run in New Zealand.

SYSTEM ARCHITECTURE

Technical architecture

Industrial-grade physical hardware engineered for real-time postural feedback and adaptive physical correction, built to institutional standards for demanding executive environments.

01 / SENSORS
02 / PNEUMATICS
03 / TELEMETRY

Sensor Array

Adaptive Airbags

Companion App

Embedded sensor nodes track micro-movements across key spinal pressure points with millisecond latency, transmitting continuous spatial telemetry.

A pneumatic cell matrix dynamically inflates and deflates to correct posture in real time, utilizing adaptive airbag technology.

Dedicated mobile client interfaces stream diagnostic telemetry directly to secure enterprise endpoints, providing actionable posture analytics.

Macro studio photograph of premium technical textiles integrated with copper sensor nodes, high contrast lighting, focused on structural seams.
Macro studio photograph of premium technical textiles integrated with copper sensor nodes, high contrast lighting, focused on structural seams.
OPERATIONAL ROADMAP

Market entry

We validate our operational frameworks by launching high-ticket physical assets. Our phased commercialization strategy prioritizes immediate unit profitability over premature mass-market scale.

UNIT ECONOMICS

100-unit pilot validation

Our initial 100-unit pilot run in New Zealand de-risks the manufacturing supply chain at a premium NZD 3,500 price point, establishing clear unit economics with executive early adopters.