See how structured radiation exit areas and encapsulation enable OLEDs to emit directional prof
See how a wearable pillow sleeve with integrated thumb opening and cushion fill provides ambide
See how a vibrating blanket integrates heating, sound, and programmable wake-up control to enha
See how segmented radiation exit areas with oriented charge carrier transport layers enable dir
See how a flexible OLED integrates touch sensing and emits infrared to UV radiation using doped
See how structured radiation exit areas with prisms and microlenses enable directional emission
See how multi-layer OLEDs with segmented emission and transport layers enable customizable colo
An alarm is silenced only after the user lifts and drinks from a water cup, using orientation sensing to prevent easy snoozing.
A pillow combines vibration, sound, and scent alarms to improve wake-up reliability while also playing calming audio for sleep.
Factory-preset wearable alerts improve daily remembrance reliability without requiring user programming or adding complex interfaces.
A movable magnetic circuit and elastic guides create discreet linear vibration in portable objects with lower power use and easier integration.
Sensor data measures when a sleeping user responds to test stimuli, enabling a calibrated wake-up sequence that is effective and less disruptive.
A movable magnetic circuit with resilient guides creates linear vibration in compact portable alarms while cutting size, complexity, and power use.
A curved vibrator, elastic support, and magnetic drive extend haptic output down to 20 Hz while fitting wearable surfaces for localized feedback.
Time-scaled prompt patterns shift user start times away from peaks, reducing concentrated server processing and communication load.
A dummy time-stamp lets the receiver generate a clock before packet arrival, then switch to true time-stamps for synchronous audio playback.