Real builds across the industries we work in — what each product does, which layers we built, exactly where AI accelerated the work versus where our engineers led, and the engineering-effort impact. Client names are withheld by policy; every project below is real, described by product and industry, not by company.
A wearable medical patch continuously captures patient vital signs and securely transmits physiological data for remote monitoring, giving care teams a continuous view of patient status rather than relying only on intermittent manual measurements.
A wearable continuously analyzes motion data locally to identify movement patterns associated with potential falls, enabling rapid detection without continuously transmitting raw sensor data to the cloud.
A compact smart ring continuously captures physiological and activity data while operating under extremely tight constraints around size, power consumption, wireless connectivity and sensor integration.
A wearable captures sleep and physiological signals and uses AI to transform longitudinal data into personalized sleep insights and recommendations.
A battery-free environmental sensor detects room conditions and occupancy while minimizing energy consumption and maintenance requirements.
A connected monitoring device tracks temperature and environmental conditions during transportation and storage and generates alerts when conditions move outside defined limits.
A distributed monitoring module captures thermal conditions across an EV battery pack and identifies abnormal temperature behavior for battery-management and diagnostic systems.
An in-vehicle edge-AI system analyzes driving behavior locally and detects defined safety events in real time without requiring continuous transmission of raw sensor/video data.
A connected platform collects operational telemetry from distributed solar micro-inverters and provides fleet-wide visibility into performance, device health and faults.
A modular smart-home hub connects home devices and sensors while providing local-first voice interaction and automation, reducing dependence on cloud processing.
A connected home-protection sensor combines multiple environmental signals to detect water leaks, freezing conditions and other potentially damaging events.
The platform combines occupancy and environmental sensing across a building to understand space utilization and provide intelligence for more efficient HVAC operation.
A central smart-home router/gateway connects distributed home sensors and provides a unified platform for device provisioning, monitoring, automation and user control.