Patent · US2010117993A1 · A1 · US
Acoustic condition sensor employing a plurality 0f mutually non-orthogonal waves
- (11) Publication number
- US2010117993A1
- (21) Application number
- 12/686,557
- (22) Filing date
- 2010-01-13
- (30) Priority date
- 1996-08-12
- (43) Publication date
- 2010-05-13
- (51) IPC
- G06F 3/043
- (52) CPC
- G06F Electric digital data processing: 3/0436, 3/0418
- (73) Assignee
- Tyco Electronics Corp
- (72) Inventors
- Joel Kent
- (54) Title
- Acoustic condition sensor employing a plurality 0f mutually non-orthogonal waves
- (57) Abstract
A touch input system, comprising a surface, adapted to receive at least one simultaneous touch inputs from human fingers; a sensor adapted to detect the at least one touch inputs and produce at least one signal representing a unique position for the at least one touch input; and a processor, adapted to receive the at least one signal and produce an output representing a touch detection and a mapping of a coordinate position on the surface for each of the simultaneous touch inputs. The system may detect, for example, two touch inputs simultaneously. The surface may be non-planar and distinct from a small solid angle section of a sphere.
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Claims (21)
- A touch input system, comprising: a surface which is neither planar nor a small solid angle section of a sphere, adapted to receive a touch input from a human finger; a sensor adapted to detect a touch and produce at least one signal representing a unique position of the touch input on the surface; a processor, adapted to receive the at least one signal and produce an output representing a touch detection and a mapping of a coordinate position on the surface.
- The touchscreen system according to claim 1, wherein the control further determines an intensity of a touch.
- The touchscreen system according to claim 1, wherein the control further determines a size of a contact area.
- The touchscreen system according to claim 1, wherein the control further analyzes a timing of changes in the output during a touch.
- The touchscreen system according to claim 1, wherein the substrate allows light to pass therethrough.
- the touch input system according to claim 1, wherein the sensor is adapted to detect a simultaneous touch at each of a plurality of positions, and the processor is adapted to produce an output representing a mapping of a coordinate position on the surface, for each of the simultaneous touches.
- The touchscreen system according to claim 6, wherein the control further determines an intensity of each of the plurality of simultaneous touches.
- The touchscreen system according to claim 6, wherein the control further determines a size of a contact area for each of the plurality of simultaneous touches.
- The touchscreen system according to claim 6, wherein the control further analyzes a timing of changes in the output over a course of the plurality of simultaneous touches.
- The touchscreen system according to claim 6, wherein an image is transmitted through the substrate.
- A touchscreen method, comprising: providing a surface which is neither planar nor a small solid angle section of a sphere, adapted to receive a touch input from a human finger; and a sensor adapted to detect a touch and produce at least one signal representing a unique position of the touch input on the surface; receiving the at least one signal and producing an output representing a touch detection and a mapping of a coordinate position on the surface.
- The method according to claim 11, further comprising determining at least one of an intensity of a touch, a size of a contact area, and a timing of changes in an output of the electronic sensor during a touch.
- the method according to claim 11, wherein the sensor is adapted to detect a simultaneous touch at each of a plurality of positions, and the output represents a mapping of a coordinate position on the surface, for each of the simultaneous touches.
- The method according to claim 13, further comprising determining an intensity of each of the plurality of simultaneous touches.
- The method according to claim 13, further comprising determining a size of a contact area for each of the plurality of simultaneous touches.
- The method according to claim 13, further comprising analyzing a timing of changes in the output over a course of the plurality of simultaneous touches.
- The method according to claim 13, wherein the substrate is light transmissive.
- The method according to claim 13, further comprising: processing the at least one signal in a manner adapted to maintain a distinction between the plurality of simultaneous touches; determining a respective difference of at least one coordinate between the plurality of simultaneous touches; and selectively producing the output at least in dependence on a relationship of the coordinate of the at least two simultaneous touches.
- A touch input system, comprising: a surface, adapted to receive a plurality of simultaneous touch inputs from human fingers; a sensor adapted to detect a plurality of simultaneous touch inputs and produce signals representing a unique position for each of the simultaneous touch inputs on the surface; a processor, adapted to receive the signals and produce an output representing a touch detection and a mapping of a coordinate position on the surface for each of the plurality of simultaneous touch inputs.
- The touch input system according to claim 19, wherein the surface is non-planar.
- The touch input system according to claim 19, wherein the control further determines at least one of an intensity of each touch, a size of a contact area of each touch, and a timing of changes in an output of the electronic sensor during each touch.
Description
The present application is a Continuation of U.S. patent application Ser. No. 11/336,694, filed on Jan. 20, 2006 (pending), which is a Continuation of U.S. patent application Ser. No. 10/827,847 filed on Apr. 20, 2004, now U.S. Pat. No. 7,061,475, which is a Continuation of U.S. patent application Ser. No. 10/178,692 filed on Jun. 22, 2002, now U.S. Pat. No. 6,723,929, which is a Divisional of U.S. patent application Ser. No. 09/220,302 filed on Dec. 23, 1998, now U.S. Pat. No. 5,986,224, which is a Divisional of U.S. patent application Ser. No. 08/695,716 filed on Aug. 12, 1996, now U.S. Pat. No. 5,854,450, each of which is expressly incorporated herein by reference.
The present invention relates to an acoustic touch position sensor, and more particularly to such a sensor wherein a coordinate position, and optionally an absorption characteristic, of an acoustic disturbance is determined by analyzing a plurality of received signals. The present invention allows the sensing system to employ waves to differ in path geometry, and/or wave characteristic type, e.g., mode, frequency, waveform, velocity, and/or wavelength. This system advantageously allows redundant position measurement and/or differential wave perturbation sensing.
Acoustic touch position sensors are well known. A common system includes two sets of transducers, each set having a different axis aligned respectively with the axes of a physical Cartesian coordinate system defined by a substrate.
Citations (26)
- US3673327A
- US4295214A
- US4550310A
- US4700176A
- US4746914A
- US4791416A
- US4644100A
- US4642423A
- US4645870A
- US4686332A
- US5129262A
- US4914624A
- US5329070A
- US5162618A
- US5177327A
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- US5260521A
- US5072427A
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- US5380959A
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- US5475835A
- US5589856A
- US5451723A
- US7683894B2
- US6255604B1
Record as JSON
{
"publication_number": "US2010117993A1",
"country": "US",
"kind": "A1",
"title": "Acoustic condition sensor employing a plurality 0f mutually non-orthogonal waves",
"abstract": "A touch input system, comprising a surface, adapted to receive at least one simultaneous touch inputs from human fingers; a sensor adapted to detect the at least one touch inputs and produce at least one signal representing a unique position for the at least one touch input; and a processor, adapted to receive the at least one signal and produce an output representing a touch detection and a mapping of a coordinate position on the surface for each of the simultaneous touch inputs. The system may detect, for example, two touch inputs simultaneously. The surface may be non-planar and distinct from a small solid angle section of a sphere.",
"claims": [
"1. A touch input system, comprising: a surface which is neither planar nor a small solid angle section of a sphere, adapted to receive a touch input from a human finger; a sensor adapted to detect a touch and produce at least one signal representing a unique position of the touch input on the surface; a processor, adapted to receive the at least one signal and produce an output representing a touch detection and a mapping of a coordinate position on the surface.",
"2. The touchscreen system according to claim 1, wherein the control further determines an intensity of a touch.",
"3. The touchscreen system according to claim 1, wherein the control further determines a size of a contact area.",
"4. The touchscreen system according to claim 1, wherein the control further analyzes a timing of changes in the output during a touch.",
"5. The touchscreen system according to claim 1, wherein the substrate allows light to pass therethrough.",
"6. the touch input system according to claim 1, wherein the sensor is adapted to detect a simultaneous touch at each of a plurality of positions, and the processor is adapted to produce an output representing a mapping of a coordinate position on the surface, for each of the simultaneous touches.",
"7. The touchscreen system according to claim 6, wherein the control further determines an intensity of each of the plurality of simultaneous touches.",
"8. The touchscreen system according to claim 6, wherein the control further determines a size of a contact area for each of the plurality of simultaneous touches.",
"9. The touchscreen system according to claim 6, wherein the control further analyzes a timing of changes in the output over a course of the plurality of simultaneous touches.",
"10. The touchscreen system according to claim 6, wherein an image is transmitted through the substrate.",
"11. A touchscreen method, comprising: providing a surface which is neither planar nor a small solid angle section of a sphere, adapted to receive a touch input from a human finger; and a sensor adapted to detect a touch and produce at least one signal representing a unique position of the touch input on the surface; receiving the at least one signal and producing an output representing a touch detection and a mapping of a coordinate position on the surface.",
"12. The method according to claim 11, further comprising determining at least one of an intensity of a touch, a size of a contact area, and a timing of changes in an output of the electronic sensor during a touch.",
"13. the method according to claim 11, wherein the sensor is adapted to detect a simultaneous touch at each of a plurality of positions, and the output represents a mapping of a coordinate position on the surface, for each of the simultaneous touches.",
"14. The method according to claim 13, further comprising determining an intensity of each of the plurality of simultaneous touches.",
"15. The method according to claim 13, further comprising determining a size of a contact area for each of the plurality of simultaneous touches.",
"16. The method according to claim 13, further comprising analyzing a timing of changes in the output over a course of the plurality of simultaneous touches.",
"17. The method according to claim 13, wherein the substrate is light transmissive.",
"18. The method according to claim 13, further comprising: processing the at least one signal in a manner adapted to maintain a distinction between the plurality of simultaneous touches; determining a respective difference of at least one coordinate between the plurality of simultaneous touches; and selectively producing the output at least in dependence on a relationship of the coordinate of the at least two simultaneous touches.",
"19. A touch input system, comprising: a surface, adapted to receive a plurality of simultaneous touch inputs from human fingers; a sensor adapted to detect a plurality of simultaneous touch inputs and produce signals representing a unique position for each of the simultaneous touch inputs on the surface; a processor, adapted to receive the signals and produce an output representing a touch detection and a mapping of a coordinate position on the surface for each of the plurality of simultaneous touch inputs.",
"20. The touch input system according to claim 19, wherein the surface is non-planar.",
"21. The touch input system according to claim 19, wherein the control further determines at least one of an intensity of each touch, a size of a contact area of each touch, and a timing of changes in an output of the electronic sensor during each touch."
],
"description_excerpt": "The present application is a Continuation of U.S. patent application Ser. No. 11/336,694, filed on Jan. 20, 2006 (pending), which is a Continuation of U.S. patent application Ser. No. 10/827,847 filed on Apr. 20, 2004, now U.S. Pat. No. 7,061,475, which is a Continuation of U.S. patent application Ser. No. 10/178,692 filed on Jun. 22, 2002, now U.S. Pat. No. 6,723,929, which is a Divisional of U.S. patent application Ser. No. 09/220,302 filed on Dec. 23, 1998, now U.S. Pat. No. 5,986,224, which is a Divisional of U.S. patent application Ser. No. 08/695,716 filed on Aug. 12, 1996, now U.S. Pat. No. 5,854,450, each of which is expressly incorporated herein by reference.\n\nThe present invention relates to an acoustic touch position sensor, and more particularly to such a sensor wherein a coordinate position, and optionally an absorption characteristic, of an acoustic disturbance is determined by analyzing a plurality of received signals. The present invention allows the sensing system to employ waves to differ in path geometry, and/or wave characteristic type, e.g., mode, frequency, waveform, velocity, and/or wavelength. This system advantageously allows redundant position measurement and/or differential wave perturbation sensing.\n\nAcoustic touch position sensors are well known. A common system includes two sets of transducers, each set having a different axis aligned respectively with the axes of a physical Cartesian coordinate system defined by a substrate.",
"cpc": [
"G06F 3/0436",
"G06F 3/0418"
],
"ipc": [
"G06F 3/043"
],
"assignees": [
"Tyco Electronics Corp"
],
"inventors": [
"Joel Kent"
],
"filing_date": "2010-01-13",
"publication_date": "2010-05-13",
"priority_date": "1996-08-12",
"application_number": "US-68655710-A",
"family_id": "39169113",
"cited_by_count": 176,
"citations": [
"US3673327A",
"US4295214A",
"US4550310A",
"US4700176A",
"US4746914A",
"US4791416A",
"US4644100A",
"US4642423A",
"US4645870A",
"US4686332A",
"US5129262A",
"US4914624A",
"US5329070A",
"US5162618A",
"US5177327A",
"US5243148A",
"US5260521A",
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"US5475835A",
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"US5451723A",
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]
}
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