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公开(公告)号:US20240419316A1
公开(公告)日:2024-12-19
申请号:US18747349
申请日:2024-06-18
Applicant: Neonode Inc.
Inventor: Björn Alexander Jubner , Björn Thomas Eriksson , Gunnar Martin Fröjdh , Simon Greger Fellin , Stefan Johannes Holmgren
IPC: G06F3/04847 , B60K35/10 , B60K35/60 , B62D1/04 , G06F3/01 , G06F3/033 , G06F3/041 , G06F3/042 , G06F3/04842 , G06F3/0487 , G06F3/0488 , G06F3/04883
Abstract: A vehicle autonomous drive system including a steering wheel, a sensor operable to identify each gesture component within a set of gesture components performed on the steering wheel by a driver of the vehicle, the set of gesture components including thumb-tap, thumb touch-and-hold, thumb-glide, hand-grab and hand-tap, a processor for an autonomous drive system in the vehicle, receiving from the sensor, a series of time-stamped, contact coordinates for the gesture components identified by the sensor, and a non-transitory computer readable medium storing instructions thereon that, when executed by the processor, cause the processor to construct compound gestures based on the series of time-stamped, contact coordinates, and to activate features of the autonomous drive system in response to the compound gestures.
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公开(公告)号:US12147631B2
公开(公告)日:2024-11-19
申请号:US18449826
申请日:2023-08-15
Applicant: Neonode Inc.
Inventor: Björn Thomas Eriksson , Sven Robert Pettersson , Stefan Johannes Holmgren , Xiatao Wang , Rozita Teymourzadeh , Per Erik Lindström , Emil Anders Braide , Jonas Daniel Justus Hjelm , Erik Anders Claes Rosengren
Abstract: A method for interacting with controls in a graphical user interface (GUI), including recording user interface gestures performed by a user, for each recorded gesture: when the gesture includes the user virtually touching a specific GUI control, applying the gesture to the specific GUI control; and when the gesture is performed without the user virtually touching a specific GUI control, identifying a particular GUI control that the user is gazing at and applying the gesture to that particular GUI control.
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公开(公告)号:US11733808B2
公开(公告)日:2023-08-22
申请号:US17385260
申请日:2021-07-26
Applicant: Neonode Inc.
Inventor: Stefan Johannes Holmgren , Sairam Iyer , Tom Richard Berglind , Karl Erik Patrik Nordström , Lars Bertil Sparf , Per Carl Sture Rosengren , Erik Anders Claes Rosengren , John Elis Gösta Karlsson , Björn Thomas Eriksson , Björn Alexander Jubner , Remo Behdasht , Simon Greger Fellin , Robin Kjell Åman , Joseph Shain
IPC: G06F3/042 , G01S17/48 , G01J1/04 , G01J1/42 , G06F3/03 , G06F1/16 , G06F3/04883 , G06F3/0488 , G06F3/02 , G06F3/0354 , G01S17/88 , G01S7/481 , A63F13/26 , A63F13/355 , A63F13/92 , G01S17/04 , A63F13/21 , A63F13/213 , A63F13/31 , A63F9/24 , G06F3/01 , A63F13/211 , A63F13/33 , A63F13/428
CPC classification number: G06F3/0421 , A63F9/24 , A63F13/21 , A63F13/213 , A63F13/26 , A63F13/31 , A63F13/355 , A63F13/92 , G01J1/0411 , G01J1/42 , G01S7/4811 , G01S7/4813 , G01S7/4815 , G01S17/04 , G01S17/48 , G01S17/88 , G06F1/169 , G06F3/017 , G06F3/021 , G06F3/0219 , G06F3/0304 , G06F3/03547 , G06F3/0428 , G06F3/0488 , G06F3/04883 , A63F13/211 , A63F13/33 , A63F13/428 , A63F2009/245 , G06F1/1616 , G06F2203/04809
Abstract: A sensor for a control panel, including a housing along an edge of the panel, light emitters projecting light along an in-air detection plane over the panel and detectors detecting reflections of the projected light, reflected by an object in the detection plane, lenses oriented such that each detector receives maximum light intensity when light enters a corresponding lens at a particular angle, whereby for each emitter-detector pair, when the object is located at a specific position in the detection plane, light emitted by the emitter of that pair is reflected by the object back through one of the lenses at the particular angle to the detector of that pair, the specific position being associated with that emitter-detector pair, and a processor configured to determine panel locations, map each location to a position in the detection plane associated with an emitter-detector pair, mapping the panel to the detection plane.
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公开(公告)号:US11650727B2
公开(公告)日:2023-05-16
申请号:US16931735
申请日:2020-07-17
Applicant: Neonode Inc.
Inventor: Björn Alexander Jubner , Björn Thomas Eriksson , Gunnar Martin Fröjdh , Simon Greger Fellin , Stefan Johannes Holmgren
IPC: G06F3/0484 , G06F3/042 , G06F3/04847 , G06F3/01 , G06F3/041 , G06F3/0488 , G06F3/04842 , B62D1/04 , B60K37/06 , G06F3/04883 , G06F3/033 , G06F3/0487
CPC classification number: G06F3/04847 , B60K37/06 , B62D1/04 , B62D1/046 , G06F3/017 , G06F3/0416 , G06F3/0421 , G06F3/0488 , G06F3/04842 , G06F3/04883 , B60K2370/141 , B60K2370/1446 , B60K2370/782 , G06F3/033 , G06F3/0487 , G06F2203/0339 , H04M2250/22
Abstract: A vehicle gesture control system for a host vehicle, the host vehicle including an adaptive cruise control or autonomous drive arrangement, the system including a sensor to detect gestures performed by a driver on the surface of a steering wheel grip in the host vehicle, the steering wheel grip including a circular tube surrounding a steering wheel that rotates about a steering column, and a processor receiving outputs from the sensor and connected to a memory unit storing instructions for the processor to activate a plurality of features of the adaptive cruise control or autonomous drive arrangement in response to a respective plurality of different gestures detected by the sensor, wherein two of the gestures represent “up” and “down” commands and include movement of the driver's thumb in opposite directions, respectively, around a lateral section of the steering wheel grip that faces the driver.
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公开(公告)号:US20220326783A1
公开(公告)日:2022-10-13
申请号:US17835981
申请日:2022-06-09
Applicant: Neonode Inc.
Inventor: Björn Thomas Eriksson , Björn Alexander Jubner , Rozita Teymourzadeh , Håkan Sven Erik Andersson , Per Carl Sture Rosengren , Xiatao Wang , Stefan Johannes Holmgren , Gunnar Martin Fröjdh , Jan Tomas Hartman , Per Oscar Sverud , Sangtaek Kim , Rasmus Dahl-Örn , Tom Richard Berglind , Karl Erik Patrik Nordström , Lars Bertil Sparf , Erik Anders Claes Rosengren , John Elis Gösta Karlsson , Remo Behdasht , Robin Kjell Åman , Joseph Shain
IPC: G06F3/01 , G06F3/042 , G06F1/16 , G06F3/04883
Abstract: Method including providing a sensor including light emitters, photodiode detectors, and lenses arranged so as to direct light beams from light emitters exiting lenses along a detection plane, and so as to direct light beams entering lenses at a specific angle of incidence onto photodiode detectors, mounting the sensor on a display presenting virtual input controls for an electronic device, such that the detection plane resides in an airspace in front of the display, activating light emitters to project light beams through lenses along the detection plane, wherein at least one of the light beams is interrupted by a finger, detecting light reflected by the finger, identifying emitters that projected the light beam that was reflected and photodiode detectors that detected the reflected light, as emitter-detector pairs, calculating display coordinates based on target positions associated with the identified emitter-detector pairs, and transmitting the calculated display coordinates to the electronic device.
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公开(公告)号:US11429230B2
公开(公告)日:2022-08-30
申请号:US17296252
申请日:2019-11-25
Applicant: Neonode Inc.
Inventor: Stefan Johannes Holmgren , Lars Bertil Sparf , Tom Richard Berglind , Charles Bruce Banter , Per Carl Johan Nohlert
IPC: G06F3/042 , B60K35/00 , G06F3/0488
Abstract: A steering wheel that includes optoelectronic components, each specific optoelectronic component including a light projector projecting light out of the steering wheel at two different angles, denoted a1 and a2, a light sensor detecting reflections of the light projected by neighboring optoelectronic components by an object above the steering wheel, a lens oriented relative to the light sensor such that the light sensor receives maximum intensity when light enters the lens at either of two particular angles, specifically, when light enters the lens at a particular angle b1, and at a particular angle b2 different than b1, wherein angle b1 views reflections of light projected at angle a1 by the optoelectronic component neighboring the specific optoelectronic component on one side, and angle b2 views reflections of light projected at angle a2 by the optoelectronic component neighboring the specific optoelectronic component on the side opposite the one side.
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公开(公告)号:US20210349569A1
公开(公告)日:2021-11-11
申请号:US17385260
申请日:2021-07-26
Applicant: Neonode Inc.
Inventor: Stefan Johannes Holmgren , Sairam Iyer , Tom Richard Berglind , Karl Erik Patrik Nordström , Lars Bertil Sparf , Per Carl Sture Rosengren , Erik Anders Claes Rosengren , John Elis Gösta Karlsson , Björn Thomas Eriksson , Björn Alexander Jubner , Remo Behdasht , Simon Greger Fellin , Robin Kjell Åman , Joseph Shain
IPC: G06F3/042 , G01S17/48 , G01J1/04 , G01J1/42 , G06F3/03 , G06F1/16 , G06F3/0488 , G06F3/02 , G06F3/0354 , G01S17/88 , G01S7/481 , A63F13/26 , A63F13/355 , A63F13/92 , G01S17/04 , A63F13/21 , A63F13/213 , A63F13/31 , A63F9/24 , G06F3/01
Abstract: A sensor determining coordinates of a proximal object, including a one-dimensional array of alternating light emitters and detectors, including a plurality of light emitters projecting light along a detection plane, and a plurality of light detectors detecting reflections of the projected light, by a reflective object in the detection plane, and a plurality of lenses mounted and oriented relative to the emitters and the detectors such that the light detectors receive maximum intensity when light enters a corresponding lens at a first particular angle, whereby for each emitter-detector pair, light emitted by the emitter of that pair passes through one of the lenses and is reflected by the object back through one of the lenses to the detector of that pair when the object is located at one of a set of positions in the detection plane, that position being associated with that emitter-detector pair.
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公开(公告)号:US10802601B2
公开(公告)日:2020-10-13
申请号:US16694018
申请日:2019-11-25
Applicant: Neonode Inc.
Inventor: Björn Thomas Eriksson , Björn Alexander Jubner , Rozita Teymourzadeh , Håkan Sven Erik Andersson , Per Carl Sture Rosengren , Xiatao Wang , Stefan Johannes Holmgren , Gunnar Martin Fröjdh , Jan Tomas Hartman , Per Oscar Sverud , Sangtaek Kim , Rasmus Dahl-Örn , Tom Richard Berglind , Karl Erik Patrik Nordström , Lars Bertil Sparf , Erik Anders Claes Rosengren , John Elis Gösta Karlsson , Remo Behdasht , Robin Kjell Åman , Joseph Shain
IPC: G06F3/01 , G06F3/042 , G06F1/16 , G06F3/0488
Abstract: A sensor, including light emitters projecting directed light beams, light detectors interleaved with the light emitters, lenses, each lens oriented relative to a respective one of the light detectors such that the light detector receives maximum intensity when light enters the lens at an angle b, whereby, for each emitter E, there exist corresponding target positions p(E, D) along the path of the light from emitter E, at which an object located at any of the target positions reflects the light projected by emitter E towards a respective one of detectors D at angle b, and a processor storing a reflection value R(E, D) for each co-activated emitter-detector pair (E, D), based on an amount of light reflected by an object located at p(E, D) and detected by detector D, and calculating a location of an object based on the reflection values and target positions.
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公开(公告)号:US20200167034A1
公开(公告)日:2020-05-28
申请号:US16775057
申请日:2020-01-28
Applicant: Neonode Inc.
Inventor: Björn Thomas Eriksson , Sven Robert Pettersson , Stefan Johannes Holmgren , Xiatao Wang , Rozita Teymourzadeh , Per Erik Lindström , Emil Anders Braide , Jonas Daniel Justus Hjelm , Erik Anders Claes Rosengren
Abstract: A sensor including lenses, light emitters, each emitter projecting light out of a lens in a particular emission direction along a detection plane, light detectors, each detector detecting maximum light intensity when light enters a lens at a particular detection angle, a table of hotspots, each hotspot corresponding to an emitter-detector pair, the hotspot being a two-dimensional location in the detection plane along the emission direction of the emitter of the pair where projected light reflected by an object placed at that location, enters the lens for the detector of the pair at the detection angle of the detector, and a processor receiving outputs from the detectors corresponding to detected amounts of projected light reflected by an object in the detection plane, and calculating a two-dimensional location of the object in the detection plane based on the received outputs and based on hotspots for synchronously activated emitter-detector pairs.
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公开(公告)号:US20200150823A1
公开(公告)日:2020-05-14
申请号:US16739142
申请日:2020-01-10
Applicant: Neonode Inc.
Inventor: Stefan Johannes Holmgren , Sairam Iyer , Tom Richard Berglind , Karl Erik Patrik Nordström , Lars Bertil Sparf , Per Carl Sture Rosengren , Erik Anders Claes Rosengren , John Elis Gösta Karlsson , Björn Thomas Eriksson , Björn Alexander Jubner , Remo Behdasht , Simon Greger Fellin , Robin Kjell Åman , Joseph Shain
IPC: G06F3/042 , G01S17/48 , G01J1/04 , G01J1/42 , G06F3/03 , G06F1/16 , G06F3/0488 , G06F3/02 , G06F3/0354 , G01S17/88 , G01S7/481 , A63F13/26 , A63F13/355 , A63F13/92 , G01S17/04 , A63F13/21 , A63F13/213 , A63F13/31 , A63F9/24 , G06F3/01
Abstract: A sensor including multiple sensor modules and a processor, each sensor module including lenses, light detectors, each detector positioned along the image plane of a lens so as to receive maximum light intensity when light enters the lens at a particular angle, light emitters, each emitter being positioned in relation to a lens so as to project light into a detection zone, an activating unit synchronously co-activating each emitter with at least one of the detectors, and a calculating unit receiving outputs from the detectors corresponding to amounts of projected light reflected by an object in the detection zone to the detectors, and calculating a two-dimensional location of the object in the detection zone based on the detector outputs and the particular angle, wherein neighboring modules monitor different detection zones, and the processor receiving outputs from the sensor modules and mapping the object location in multiple detection zones over time.
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