
UltraSense developed the world’s smallest and most integrated 3D ultrasound sensor ushering a new era for user interfaces to be reimagined.
The paradigm shift from mechanical to digital continues to evolve. Now virtually any material, with any thickness can become a button or gesture.
Target Applications
Previous image
Next image
It’s what’s beneath the surface that creates the experience
Any Material. Any Thickness
Thick metal, glass, plastic, wood are no match for ultrasound
Eliminate False Triggers
Unique 3D ultrasound sensor technology and machine learning are breakthroughs that have challenged competing strain gauge and surface acoustic wave solutions
Highly Localized Touch Area
Focused and controlled ultrasound beam with force sensing makes touch areas super precise and responsive, ideal for buttons even with gloves and external cover cases
All-in-One
System-on-Chip (SoC)
One Sensor = One Button
Transducer + ASIC in a monolithic silicon die. Designed for standalone operation from Host processor
Easy Integration &
Self-Calibration
Sensor attachment to the product’s enclosure in production is a quick and simple calibration and is a one-time self-calibration test taking mere seconds
MULTIFUNCTIONAL TOUCH & GESTURE USER INTERFACE
Tap, Tap & Hold, Multi-Tap, Swipe…
Not just a button, a whole
user interface
- Multifunctional interface using just one sensor
- Selectable sensitivities depending on application
- Discern touch input materials (finger, latex, cloth)
- Sense through dirt, lotions & natural oils
- Water rejection
SINGLE TAP
DOUBLE TAP
TAP & HOLD
MULTI-TOUCH
MULTI-TOUCH
SWIPE
Our TouchPoint sensors use revolutionary 3D ultrasound technology to turn any surface into a button or a gesture.
Sense through stainless steel, ceramic, glass, leather, plastic and wood to
create a new user experience. No more mechanical buttons, enclosure cutouts,
waterproofing or the need for special surface materials.
create a new user experience. No more mechanical buttons, enclosure cutouts,
waterproofing or the need for special surface materials.