SYSTEM AND METHOD FOR DETECTING AND RESPONDING TO TOUCH INPUTS WITH HAPTIC FEEDBACK
One variation of a system for detecting and responding to touch inputs with haptic feedback includes: a magnetic element rigidly coupled to a chassis; a substrate; a touch sensor interposed between the substrate and a touch sensor surface; an inductor coupled to the substrate below the touch sensor surface and configured to magnetically couple to the magnetic element; a coupler coupling the substrate to the chassis, compliant within a vibration plane approximately parallel to the touch sensor surface, and locating the inductor approximately over the magnetic element; and a controller configured to intermittently polarize the inductor responsive to detection of a touch input on the touch sensor surface to oscillate the substrate in the vibration plane relative to the chassis.
1 . A system for detecting and responding to touch inputs with haptic feedback comprising:
a substrate;
a set of drive and sense electrode pairs arranged across the substrate;
a multi-layer inductor arranged across a set of layers of the substrate;
a magnetic element arranged below the multi-layer inductor; and
a coupler coupling the magnetic element to the substrate, compliant within a vibration plane, and locating the magnetic element below the multi-layer inductor.
2 . The system of claim 1 , further comprising a controller configured to:
detect a touch input at a first location over the substrate;
read a set of force values from the set of drive and sense electrode pairs;
interpret a first force magnitude of the input based on the set of force values; and
polarize the multi-layer inductor responsive to the first force magnitude of the first input exceeding a force threshold to oscillate the substrate in the vibration plane relative to the chassis.
3 . The inventions as shown and/or described herein.