User interface
US-9223401-B1 · Dec 29, 2015 · US
US9665223B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9665223-B2 |
| Application number | US-201414578294-A |
| Country | US |
| Kind code | B2 |
| Filing date | Dec 19, 2014 |
| Priority date | Dec 20, 2013 |
| Publication date | May 30, 2017 |
| Grant date | May 30, 2017 |
A practical reading order for non-experts. Skip the full description unless you need deep technical detail.
What the patent document calls the invention.
A short plain-language summary of the technical disclosure.
Who owns or filed the patent and who is credited as inventor.
Filing, priority, publication, and grant dates set the timeline.
The legal scope of protection — read this for what is actually claimed.
Technology tags used to group this patent with similar filings.
Prior art links and similar publications in this corpus.
Official abstract text for this publication.
The general field of the invention is that of capacitive dongles used with visualization devices including a capacitive touch-sensitive surface comprising a matrix of conductive rows and columns, the dongle being arranged on said touch-sensitive surface in operational use, the dongle operating in send mode and in receive mode, The dongle according to the invention includes: means for sending periodic analogue signals sent at a specific frequency known as the dangle frequency; a ring-shaped flat conductive metal part connected to said sending means, said part intended to be placed on said touch-sensitive surface; means for receiving the received signals output by said conductive metal part; means for analyzing said digitized received signals; means for storing the sent and analyzed signals; a digital communication interface.
Opening claim text (preview).
What is claimed is: 1. A capacitive dongle intended to be used with a visualization device including a capacitive touch-sensitive surface comprising a matrix of conductive rows and columns, the capacitive dongle being arranged on the capacitive touch-sensitive surface in an operational use, the capacitive dongle operating in a send mode and in a receive mode, the capacitive dongle comprising: a voltage generator coupled to a digital-to-analog converter (DAC) that are used to send periodic analog signals, the periodic analog signals are sent with at least one specific frequency, wherein the specific frequency is a dongle frequency; a ring-shaped flat conductive metal part connected to the DAC that is coupled to the voltage generator, the ring-shaped flat conductive metal part is placed on the capacitive touch-sensitive surface, wherein variations in capacitance are detected on the conductive rows of the capacitive touch-sensitive surface that are caused by the placement of the capacitive dongle having a symmetrical profile that includes two peaks spaced apart by an inner diameter of the ring surrounding a central trough, wherein the symmetrical profile is identical over the conductive columns of the capacitive touch-sensitive surface; an analog transmission-reception sub-assembly coupled to an analog-to-digital converter (ADC) that is used to receive a received signals output of the ring-shaped flat conductive metal part; a synchronous demodulator circuit and an envelope detector that are coupled to a digital processor used to analyze digitized received signals from the received signals output; a storage device to store the sent periodic analog signals and the analyzed digitized received signals; and a digital communication interface. 2. The capacitive dongle according to claim 1 , wherein “the envelope” detector detects signals sent by the capacitive touch-sensitive surface within a range of determined amplitudes and frequencies so as to detect the presence of the capacitive touch-sensitive surface, the envelope detector operating in passive mode, wherein the passive mode operates without transmission of signals by the voltage generator coupled to the digital-to-analog converter (DAC); and wherein the synchronous demodulator circuit operates at the dongle frequency or frequencies so as to communicate in the receiving mode with the capacitive touch-sensitive surface. 3. The capacitive dongle according to claim 1 , wherein the thickness of the ring-shaped flat conductive metal part is substantially equal to one pitch of the matrix of conductive row and columns of the capacitive touch-sensitive surface. 4. The capacitive dongle according to claim 1 , wherein the capacitive dongle includes a suction cup device that holds the capacitive dongle in place on the capacitive touch-sensitive surface. 5. A visualization device including a capacitive touch-sensitive surface that exchanges data with a capacitive dongle, the capacitive dongle being arranged on the capacitive touch-sensitive surface in an operational use, the capacitive dongle operating in a send mode and in a receive mode, the capacitive dongle comprising: a voltage generator coupled to a digital-to-analog converter (DAC) that are used to send periodic analog signals, the periodic analog signals are sent with at least one specific frequency, wherein the specific frequency is a dongle frequency; a ring-shaped flat conductive metal part connected to the DAC that is coupled to the voltage generator, the ring-shaped flat conductive metal part is placed on the capacitive touch-sensitive surface; an analog transmission-reception sub-assembly coupled to an analog-to-digital converter (ADC) that is used to receive a received signals output of the ring-shaped flat conductive metal part; a synchronous demodulator circuit and an envelope detector that are coupled to a digital processor used to analyze digitized received signals from the received signals output; for a storage device to store the sent periodic analog signals and the analyzed digitized received signals; a digital communication interface; and the capacitive touch-sensitive surface including a matrix of conductive rows and columns, wherein the capacitive touch-sensitive surface recognizes a determined profile corresponding to variations in capacitance induced on the matrix of conductive rows and columns by the ring-shaped flat conductive metal part, when the capacitive dongle is placed on the capacitive touch-sensitive surface, wherein the variations in capacitance are detected on the conductive rows of the capacitive touch-sensitive surface that are caused by the placement of the capacitive dongle having a symmetrical profile that includes two peaks spaced apart by an inner diameter of the ring surrounding a central trough, wherein the symmetrical profile is identical over the conductive columns of the capacitive touch-sensitive surface, and the capacitive touch-sensitive surface sends and receives at the specific dongle frequency. 6. The visualization device according to claim 5 , further comprising a screen that includes a specific place marked by a particular symbol reserved for a site of the capacitive dongle. 7. A method of communication between a capacitive dongle and a visualization device, wherein the visualization device includes a capacitive touch-sensitive surface that exchanges data with the capacitive dongle, the capacitive dongle being arranged on the capacitive touch-sensitive surface in an operational use, the capacitive dongle operating in a send mode and in a receive mode, the method comprising: sending periodic analog signals with a voltage generator coupled to a digital-to-analog converter (DAC), the periodic analog signals sending at least one specific frequency, wherein the specific frequency is a dongle frequency; placing a ring-shaped flat conductive metal part on the capacitive touch-sensitive surface, the ring-shaped flat conductive metal part connected to the DAC that is coupled to the voltage generator, wherein variations in capacitance are detected on the conductive rows of the capacitive touch-sensitive surface that are caused by the placement of the capacitive dongle having a symmetrical profile that includes two peaks spaced apart by an inner diameter of the ring surrounding a central trough, wherein the symmetrical profile is identical over the conductive columns of the capacitive touch-sensitive surface; receiving a received signals output of the ring-shaped conductive metal part with an analog transmission-reception sub-assembly coupled to an analog-to-digital converter (ADC); analyzing digitized received signals from the received signals output with a synchronous demodulator circuit and an envelope detector that are coupled to a digital processor; storing the sent periodic analog signals and the analyzed digitized received signals with a storage device; and providing a digital communication interface. 8. The method according to claim 7 , when the capacitive dongle is placed on the capacitive touch-sensitive surface, further comprising: recognizing, by the touch-sensitive surface, a determined profile of the ring-shaped flat conductive metal part of the dongle; recognizing, by the envelope detector, signals sent by the capacitive touch-sensitive surface in operation; preparing the capacitive dongle in an operating mode of the capacitive touch-sensitive surface, wherein the operating mode includes at least one of the send mode and the receive mode, wherein at least switching to one of the send mode for sending the dongle frequencies and the receive mode for receiving the dongle frequencies; and operating in a dongle mode when the capacitive touch-sensitive surface and the capacitive dongle excha
Digitisers structurally integrated in a display · CPC title
Accessories therefor, e.g. mouse pads · CPC title
Specific input/output arrangements not covered by G06F3/01 - G06F3/16 (other optical apparatus G02B27/00) · CPC title
by capacitive means · CPC title
using a grid-like structure of electrodes in at least two directions, e.g. using row and column electrodes · CPC title
Related publications grouped by family.
Answers are generated from the same data shown on this page.