Touchscreen panel haptics
Touchscreen system for generating haptic excitations comprises: a touchscreen panel (91, figure 35) for measuring force and/or capacitance; one or more first and one or more second piezoelectric transducers, e.g. discrete ceramic piezoelectric transducers 86, arranged to generate excitations in the...
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creator | Silviu Toma Babak Bastani |
description | Touchscreen system for generating haptic excitations comprises: a touchscreen panel (91, figure 35) for measuring force and/or capacitance; one or more first and one or more second piezoelectric transducers, e.g. discrete ceramic piezoelectric transducers 86, arranged to generate excitations in the panel; a pressure and/or capacitance sensing module 71 configured to measure force and/or a capacitance from the panel. Haptic driving module 98 drives the first and second transducers at first and second frequencies, the difference of these frequencies being a beat or beating frequency perceptible by human skin, or at a modulated carrier frequency perceptible by human skin. In an aspect the first and second piezoelectric transducers, which may be arranged in linear arrays 95, 96, generate excitations along first and second lines, the second line being inclined to the first line at an angle selected to cause Moire fringes. Each piezoelectric transducer 86 may comprise a first electrode, a second electrode and a layer of piezoelectric material. May be used to generate haptic vibrations in a mobile device, e.g. a smartphone or tablet, in silent mode or to provide tactile user feedback relating to input. |
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Haptic driving module 98 drives the first and second transducers at first and second frequencies, the difference of these frequencies being a beat or beating frequency perceptible by human skin, or at a modulated carrier frequency perceptible by human skin. In an aspect the first and second piezoelectric transducers, which may be arranged in linear arrays 95, 96, generate excitations along first and second lines, the second line being inclined to the first line at an angle selected to cause Moire fringes. Each piezoelectric transducer 86 may comprise a first electrode, a second electrode and a layer of piezoelectric material. 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Haptic driving module 98 drives the first and second transducers at first and second frequencies, the difference of these frequencies being a beat or beating frequency perceptible by human skin, or at a modulated carrier frequency perceptible by human skin. In an aspect the first and second piezoelectric transducers, which may be arranged in linear arrays 95, 96, generate excitations along first and second lines, the second line being inclined to the first line at an angle selected to cause Moire fringes. Each piezoelectric transducer 86 may comprise a first electrode, a second electrode and a layer of piezoelectric material. May be used to generate haptic vibrations in a mobile device, e.g. a smartphone or tablet, in silent mode or to provide tactile user feedback relating to input.</abstract><oa>free_for_read</oa></addata></record> |
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subjects | CALCULATING COMPUTING COUNTING DEVICES OR ARRANGEMENTS, THE OPTICAL OPERATION OF WHICH ISMODIFIED BY CHANGING THE OPTICAL PROPERTIES OF THE MEDIUM OF THEDEVICES OR ARRANGEMENTS FOR THE CONTROL OF THE INTENSITY,COLOUR, PHASE, POLARISATION OR DIRECTION OF LIGHT, e.g.SWITCHING, GATING, MODULATING OR DEMODULATING ELECTRIC DIGITAL DATA PROCESSING FREQUENCY-CHANGING NON-LINEAR OPTICS OPTICAL ANALOGUE/DIGITAL CONVERTERS OPTICAL LOGIC ELEMENTS OPTICS PHYSICS TECHNIQUES OR PROCEDURES FOR THE OPERATION THEREOF |
title | Touchscreen panel haptics |
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