Patents Issued in January 9, 2020
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Publication number: 20200012337Abstract: A technique for dynamic augmented reality media creation includes an analysis of reality content received by a device. Augmentation data is identified based on the analysis of the reality content, and then the augmentation data is displayed to the user via the device. A capture module determines whether the reality content meets capture event criteria and, if the criteria is met, augmented reality content is created and captured prior to a display of the augmentation data to the user.Type: ApplicationFiled: September 18, 2019Publication date: January 9, 2020Inventor: Corville O. Allen
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Publication number: 20200012338Abstract: A technique for dynamic augmented reality media creation includes an analysis of reality content received by a device. Augmentation data is identified based on the analysis of the reality content, and then the augmentation data is displayed to the user via the device. A capture module determines whether the reality content meets capture event criteria and, if the criteria is met, augmented reality content is created and captured prior to a display of the augmentation data to the user.Type: ApplicationFiled: September 18, 2019Publication date: January 9, 2020Inventor: Corville O. Allen
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Publication number: 20200012339Abstract: An electronic device determines information about a target and provides the information to another electronic device that has an obstructed view of the target. The other electronic device displays an image of the target with an orientation and a location of the target.Type: ApplicationFiled: September 19, 2019Publication date: January 9, 2020Inventors: Philip Lyren, Robert Lyren
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Publication number: 20200012340Abstract: An electronic device determines information about a target and provides the information to another electronic device that has an obstructed view of the target. The other electronic device displays an image of the target with an orientation and a location of the target.Type: ApplicationFiled: September 19, 2019Publication date: January 9, 2020Inventors: Philip Lyren, Robert Lyren
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Publication number: 20200012341Abstract: A method for improving user interaction with a virtual environment includes presenting the virtual environment to a user on a display, measuring a gaze location of a user's gaze relative to the virtual environment, casting an input ray from an input device, measuring an input ray location at a distal point of the input ray, and snapping a presented ray location to the gaze location when the input ray location is within a snap threshold distance of the input ray location.Type: ApplicationFiled: July 9, 2018Publication date: January 9, 2020Inventors: Sophie STELLMACH, Sheng Kai TANG, Casey Leon MEEKHOF, Julia SCHWARZ, Nahil Tawfik SHARKASI, Thomas Matthew GABLE
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Publication number: 20200012342Abstract: Method and apparatus are disclosed for gaze detection of occupants for vehicle displays. An example vehicle includes a panoramic display including polarized displays. The example vehicle also includes a controller to identify a primary operator interface and a primary passenger interface and detect, via one or more cameras, an operator gaze and a passenger gaze. The controller also is to present the primary operator interface to an operator via one of the polarized displays corresponding with the operator gaze and present the primary passenger interface to a passenger via one of the polarized displays corresponding with the passenger gaze.Type: ApplicationFiled: July 9, 2018Publication date: January 9, 2020Inventors: Ali Hassani, Erick Michael Lavoie, Mark Larry
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Publication number: 20200012343Abstract: According to the present invention, a method of displaying status information for a device to a user comprises receiving a control command for controlling the device to display the status information, determining the user's location, selecting other areas than where the user is located as mapping candidate areas, and selecting at least any one or more of the mapping candidate areas as a mapping area and displaying the status information in the mapping area in a projection fashion. Embodiments of the present invention may be related to artificial intelligence (AI) modules, unmanned aerial vehicles (UAVs), robots, augmented reality (AR) devices, virtual reality (VR) devices, and 5G service-related devices.Type: ApplicationFiled: September 17, 2019Publication date: January 9, 2020Applicant: LG ELECTRONICS INC.Inventors: Jichan MAENG, Beomoh KIM, Taehyun KIM, Wonho SHIN, Jonghoon CHAE
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Publication number: 20200012344Abstract: Assemblies and techniques are described herein for use with a data glove. The data glove includes sensors configured to translate movement and forces associated with a human hand to the digital domain.Type: ApplicationFiled: June 21, 2019Publication date: January 9, 2020Inventors: Keith A. McMillen, Kyle Lobedan, Conner Lacy, William Walls, Brent Allen
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Publication number: 20200012345Abstract: According to some embodiments, a haptic feedback component is configured to generate haptic feedback in accordance with movement of a user. The haptic feedback component includes a frame having a size and shape for receiving an appendage of a user, a flexible beam member coupled to the frame, and a haptic feedback element that is coupled to the flexible beam member, wherein the haptic feedback element actuates in response to receiving an electrical signal so as to cause the flexible beam member to displace from an initial configuration to a modified configuration such as to direct the haptic feedback towards the appendage.Type: ApplicationFiled: September 16, 2019Publication date: January 9, 2020Inventors: Paul X. Wang, Alex Lehmann, Michael Y. Cheung
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Publication number: 20200012346Abstract: The system and methods described herein determine a subject's indication of attention to a first and a second sensory stimuli. The system determines a sensory evoked response of the subject by calculating the statistical relationship between the subject's neural response to the stimuli and a signal feature of the first and the second sensory stimuli. A magnitude value of the sensory evoked response is extracted to determine whether the subject attended-to or ignored the sensory stimuli. The system will select the stimuli that elicited the greater indication of attention, and then trigger further processing by a computer. Such processing can include selecting future content for improving safety warnings, educational materials, or advertisements or further processing can include controlling and navigating a brain computer user interface.Type: ApplicationFiled: March 2, 2018Publication date: January 9, 2020Inventors: Nicholas Schiff, Chananel Braiman, Chagit Reichenbach
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Publication number: 20200012347Abstract: Systems and methods for automatic haptic generation for video content are disclosed. One illustrative system described herein includes a processor executing non-transitory program code configured to receive an audio signal; identify an audio property associated with the audio signal; receive a video signal; identify a video property associated with the video signal, wherein the video property corresponds to the audio property; determine a haptic effect based at least in part on the audio property and the video property; and output a haptic signal associated with the haptic effect.Type: ApplicationFiled: July 9, 2018Publication date: January 9, 2020Inventors: Liwen Wu, Jamal Saboune, Juan Manuel Cruz-Hernandez
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Publication number: 20200012348Abstract: Embodiments of the present invention are directed toward electronic devices configured to produce haptic effects, and to haptic enabled film overlays for pressure sensitive surfaces. The systems and methods for haptic enabled film overlays include a processor and a plurality of sensors, a pressure sensitive touch surface coupled to the plurality of sensors and configured to detect a user interaction, and an overlay including a tactile user interface and a plurality of haptic output devices, the overlay being configured to provide a haptic effect in response to the user interaction.Type: ApplicationFiled: July 12, 2019Publication date: January 9, 2020Inventor: William S. RIHN
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Publication number: 20200012349Abstract: A haptic information presentation system uses a human sensory characteristic or illusion to suitably control a physical quantity, and causes a person to feel a force which cannot exist physically, or a haptic sensory physical characteristic.Type: ApplicationFiled: July 15, 2019Publication date: January 9, 2020Inventors: Norio Nakamura, Yukio Fukui, Masataka Sakai, Natsuo Koda, Koji Osaki
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Publication number: 20200012350Abstract: Various of the disclosed embodiments related to improved processing systems for human-computer interaction. Particularly, various of the disclosed embodiments employ heuristics, alone or in combination, to more readily identify user gestures and their characteristics. For example, some embodiments employ a “gesture zone” heuristic, boundary planes for angle adjustment heuristic, and average velocity measurements heuristic, to more readily detect the performance of a swipe gesture and the direction of the gesture. Some embodiments may also use the heuristics in connection with a gesture state machine for assessing the user's progress in performing a gesture.Type: ApplicationFiled: July 8, 2018Publication date: January 9, 2020Inventor: Terence Tay
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Publication number: 20200012351Abstract: The present disclosure provides a method, a device and a readable storage medium for processing a control instruction based on gesture recognition, the method including: obtaining a trigger-gesture-recognition instruction; capturing a set of to-be-recognized images corresponding to a to-be-recognized user according to the trigger-gesture-recognition instruction, where the set of to-be-recognized images includes to-be-recognized images of multiple frames; determining location information of a hand of the to-be-recognized user respectively in each frame of the to-be-recognized images via a preset body recognizing model; and according to the location information, obtaining gesture information corresponding to the hand via a preset gesture recognizing model; and according to the gesture information corresponding to the hand, obtaining a control instruction corresponding to the gesture information.Type: ApplicationFiled: June 27, 2019Publication date: January 9, 2020Inventor: Chen ZHAO
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Publication number: 20200012352Abstract: The present invention relates to a wearable input and output kit for a mobile device. The input and output kit includes a finger-wearable input device separated from the mobile device, comprising a finger sleeve configured to wear on a thumb of a user having a fingerprint identification module to verify an identity of the user, and a button generating an input signal representing a mouse event in response to a press from an index finger of the user, and sending the input signal to the mobile device; and a wearable near-eye display device separated from the mobile device and the finger-wearable input device, receiving an output information from the mobile device and showing the output information for the user to see.Type: ApplicationFiled: July 6, 2018Publication date: January 9, 2020Inventor: Tsai-Hsien YANG
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Publication number: 20200012353Abstract: An electronic device include a housing, a touchscreen display viewable through a portion of the housing, a wireless communication circuitry disposed inside the housing, a processor disposed inside the housing and operatively connected to the touchscreen display and the wireless communication circuitry, and a memory operatively connected to the processor. The memory stores instructions that, when executed, cause the processor to receive a first signal indicating a charging state of a battery from an external electronic device including the battery through the wireless communication circuitry, and to provide a user interface corresponding to charging of the battery, based at least partially on the first signal.Type: ApplicationFiled: June 5, 2019Publication date: January 9, 2020Inventors: Yongwoon KIM, Jinwan AN
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Publication number: 20200012354Abstract: A multi-functional human interface device includes a control unit and a first multi-functional input button. The first multi-functional input button includes a cover unit configured to receive a touch input of a user's finger, an electrode unit including a transmitter and a receiver to form an electric field, an elastic unit configured to move from a first height to a second height when a first pressure is applied from the cover unit and configured to move back to the first height when the first pressure from the cover unit is released, and a switch unit configured to generate an electric signal representing an input of a predetermined letter.Type: ApplicationFiled: September 1, 2017Publication date: January 9, 2020Applicant: INNOPRESSO, INC.Inventor: Eunhyung CHO
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Publication number: 20200012355Abstract: A wearable device is disclosed. The wearable device can comprise a housing; a crown; a proximity sensor; and a processor. The crown can be configured to receive input from a user. The proximity sensor can be configured to generate a field of view encompassing a first area adjacent to the housing and further configured to generate an output signal corresponding to whether an object is present within the field of view. The processor can be configured to determine, based on the output signal, whether the input corresponds to an intentional input or an unintentional input.Type: ApplicationFiled: July 6, 2018Publication date: January 9, 2020Inventors: David D. DASHEVSKY, Prashanth HOLENARSIPUR, Stephen N. SWEET
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Publication number: 20200012356Abstract: A switch system includes: a projection; a plurality of switches that are arranged on a side surface of the projection along a circumferential direction, each switch detecting touch to the side surface of the projection by an operator as on or off; and a determiner that acquires on/off states of the switches, and determines a rotational direction of an operator's finger along the circumferential direction of the projection based on a current on/off state currently acquired from each switch and a previous on/off state previously acquired from each switch.Type: ApplicationFiled: June 13, 2019Publication date: January 9, 2020Applicant: FUJITSU COMPONENT LIMITEDInventor: Masaki HORIKAWA
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Publication number: 20200012357Abstract: According to various embodiments, there is provided a computer mouse movable relative to a tracking surface on which the computer mouse is placed, the computer mouse including: a housing; a magnetic element provided on the housing; and a control circuit configured to control a magnetic attraction force between the magnetic element and a ferromagnetic material on the tracking surface.Type: ApplicationFiled: February 17, 2017Publication date: January 9, 2020Inventor: Jian Yao LIEN
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Publication number: 20200012358Abstract: Touch-based input devices, such as a stylus, can receive tactile input from a user. The tactile input functions can be performed by a touch sensor, such as a capacitive sensing device. A touch sensor can be integrated into a stylus in a low profile form. Tactile input can be received at the user's natural grip location. Furthermore, the stylus can effectively distinguish between tactile inputs from a user and disregard sustained tactile inputs that are provided while the user simply holds the stylus at the user's natural grip location.Type: ApplicationFiled: July 6, 2018Publication date: January 9, 2020Inventors: Blake R. MARSHALL, Reza NASIRI MAHALATI, Wing Kong LOW, Izhar BENTOV, Ashwin Kumar ASOKA KUMAR SHENOI, Henry N. TSAO, Supratik DATTA, Wesley W. ZUBER, Nandita VENUGOPAL, Karan S. JAIN
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Publication number: 20200012359Abstract: A stylus is described for controlling a computer device. The stylus comprises at least one user control and a contact sensor configured to detect a contact between the controller device and a touch surface. The stylus is configured to: detect an activation of the user control; whilst the user control continues to be activated, detecting, using the contact sensor, whether a contact between the controller device and a touch surface has occurred and transmitting a first control signal when a contact is detected, where no contact is detected, transmitting a second control signal when the user control is deactivated.Type: ApplicationFiled: January 31, 2018Publication date: January 9, 2020Inventors: Kristofer JAKOBSON, Nicklas OHLSSON, Pablo JAVIER CASES MÖLLER
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Publication number: 20200012360Abstract: A pointing device is provided. In one implementation, the pointing device includes a body, a control member received in a recess of the body and rotatable with respect to the body, a first rotation tracking sensor arranged in the recess and configured to track a rotation of the control member about a first axis and a second axis perpendicular to the first axis in a Cartesian coordinate system that is defined with respect to the recess, and a second rotation tracking sensor arranged in the recess and configured to track a rotation of the control member about a third axis perpendicular to the first and second axes in the Cartesian coordinate system. An associated method of manufacturing the pointing device is also provided.Type: ApplicationFiled: March 3, 2017Publication date: January 9, 2020Inventors: Hao ZHUANG, Wensheng YAO, Bin ZHAI, Junhong SUN
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Publication number: 20200012361Abstract: In various embodiments, electronic devices such as thin-film transistors and/or touch-panel displays incorporate bilayer capping layers and/or barrier layers.Type: ApplicationFiled: July 16, 2019Publication date: January 9, 2020Inventors: Helia JALILI, Francois DARY, Barbara COX
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Publication number: 20200012362Abstract: An electronic device includes a processor and a housing having a first surface, a second surface, and a side surface. A touch screen display is exposed through a first area of the first surface. An optical sensor is disposed under a second area of the first surface that is adjacent to the first area. The optical sensor receives and/or emits an infrared ray. The first surface includes a substantially transparent glass layer, an opaque layer disposed between the glass layer and the second surface, and a color layer disposed between the opaque layer and the glass layer. The opaque layer includes an opening, a location and a size of which correspond to at least a portion of the optical sensor when viewed from the first surface. The optical sensor receives and/or emits the infrared ray through the opening, the color layer, and the glass layer.Type: ApplicationFiled: September 18, 2019Publication date: January 9, 2020Inventors: Seo Hyun Kim, Seung Taek Oh, Seok Gyu Lee
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Publication number: 20200012363Abstract: The present disclosure provides a display panel, a display device and manufacturing method of the display panel. The display panel includes a display area and a peripheral area located at a periphery of the display area, a light transmittance region is provided in the peripheral region; at least one first sub-pixels is provided at positions corresponding to the light transmittance regions, wherein at least one of the first sub-pixels is provided with a first thin film transistor, the first thin film transistor is connected with the first gate line, the first data line, and the first pixel electrode, wherein the first gate line is floating; a first pixel electrode is disposed in at least one of the first sub-pixels; and at least one first sensing electrode has an orthogonal projection on a base substrate partially overlapped with an orthogonal projection of the at least one first sub-pixel.Type: ApplicationFiled: July 3, 2019Publication date: January 9, 2020Applicants: BEIJING BOE OPTOELECTRONICS TECHNOLOGY CO., LTD., BOE TECHNOLOGY GROUP CO., LTD.Inventors: Pengcheng TIAN, Zhengxin ZHANG, Xin LI
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Publication number: 20200012364Abstract: Disclosed is a touch screen, comprising a touch area, provided with a plurality of first conductive lines extending along a first direction and a plurality of second conductive lines extending along a second direction, and the second conductive line is insulated from and overlapped with the first conductive line, and each of the first conductive lines comprises a plurality of first sensing electrodes arranged at intervals and connecting strips, and each of the second conductive lines comprises a plurality of second sensing electrodes arranged at intervals and connecting bridges; a U-shaped notch area is disposed in the touch area, and the U-shaped notch area intercepts at least one first conductive line or/and at least one second conductive line; the first conductive line intercepted by and located at two sides of the U-shaped notch area is connected electrically to achieve connection to the bonding area of the touch screen.Type: ApplicationFiled: December 26, 2018Publication date: January 9, 2020Inventor: Jian YE
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Publication number: 20200012365Abstract: A system and method for determining position information. The method includes selecting a column, a first row, and a second row of a capacitive sensor array. The first row and second row intersect with the column of the capacitive sensor array. The method further includes measuring a differential capacitance between the first row and the second row and utilizing the differential capacitance in determining a location of an object proximate to the capacitive sensor array.Type: ApplicationFiled: July 12, 2019Publication date: January 9, 2020Applicant: Cypress Semiconductor CorporationInventors: Nathan Y. Moyal, Dana Jon Olson
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Publication number: 20200012366Abstract: An input device is provided and including a substrate; a plurality of first metal or alloy electrodes provided along a first direction on a main surface of the substrate; a plurality of second metal or alloy electrodes provided along a second direction intersecting with the first direction on the same surface as the main surface; and a protective film covering the plurality of first metal or alloy electrodes and the plurality of second metal or alloy electrodes.Type: ApplicationFiled: September 16, 2019Publication date: January 9, 2020Inventors: Koji ISHIZAKI, Hayato KURASAWA, Hiroshi MIZUHASHI
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Publication number: 20200012367Abstract: A flexible display device and a method of driving a flexible display device, in which the method of driving the flexible display device includes detecting a capacitance change with respect to at least some coordinates of a display area, determining whether bending is occurring through the detected capacitance change, and setting a driving mode in response to a result of the step of determining whether bending is occurring. The driving mode is converted into a bending mode when it is determined that bending is occurring, and the driving mode is set into a force touch mode when it is determined that bending is not occurring.Type: ApplicationFiled: September 20, 2019Publication date: January 9, 2020Inventors: Young Seok SEO, Won-Ki HONG, Jung Hyun KIM, Hyoung Wook JANG
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Publication number: 20200012368Abstract: A shift register driving a touch display device generates shifted pulse signals shifted by a specified phase. The shift register includes unit circuits connected in multiple stages. Each unit circuit includes an output terminal, an input transistor, an output transistor, and a pull-up transistor. The input transistor is controlled by a first control signal and outputs a high-level voltage to a first node based on the value of a trigger signal. The output transistor outputs the shifted pulse signal, which is synchronous with a clock control signal, based on the value of the high-level voltage of the first node. A blank period is inserted between the Nth unit circuit and the (N+1)th unit circuit. After the blank period, the pull-up transistor clamps the voltage of the output terminal of the (N+1)th unit circuit at a high-level voltage.Type: ApplicationFiled: September 6, 2018Publication date: January 9, 2020Inventors: YU-FU WENG, CHIEN-WEN LIN, TZU-YU CHENG
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Publication number: 20200012369Abstract: The disclosure discloses an array substrate, a method for fabricating the same, a display panel, and a display device, and the array substrate includes: a base substrate, a pressure-sensitive component, a plurality of dual-gate transistors, and a plurality of pixel transistors, where the pressure-sensitive component includes a first electrode layer, a pressure-sensitive layer, and a second electrode layer which are arranged on the base substrate in that order, and the second electrode layer includes a plurality of second electrodes arranged corresponding to the respective dual-gate transistors in a one-to-one manner; and the dual-gate transistors and the pixel transistors are arranged above the second electrode layer, and each of the plurality of second electrodes is electrically connected with a bottom-gate electrode in a corresponding dual-gate transistor, so that a pressure can be detected.Type: ApplicationFiled: January 11, 2018Publication date: January 9, 2020Inventors: Yuzhen Guo, Xue Dong, Haisheng Wang, Chun-wei Wu, Xueyou Cao, Yingming Liu, Xiaoliang Ding, Chih-Jen Cheng
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Publication number: 20200012370Abstract: The present disclosure provides a touch control panel, a method for manufacturing the touch control panel, and a display device. The touch control panel includes a substrate, a touch control electrode, and a plurality of conductive connection lines. The substrate includes a first side surface and a second side surface that are oppositely disposed. The touch control electrode is formed on the first side surface, which includes sensing electrodes and driving electrodes that are alternately arranged. The plurality of conductive connection lines are formed on the second side surface, which are configured to connect the driving electrodes and the sensing electrodes to a touch control chip.Type: ApplicationFiled: May 25, 2019Publication date: January 9, 2020Inventors: Hongqiang LUO, Jianjun WU
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Publication number: 20200012371Abstract: A touch substrate, a driving method of a touch substrate, a preparation method of a touch substrate, and a touch device are disclosed. The touch substrate includes an underlying substrate and a touch layer, and the touch layer is on the underlying substrate. The touch layer includes a plurality of touch electrodes which are electrically separated from each other, each of the touch electrodes overlaps with an edge area of the touch substrate in a direction perpendicular to the underlying substrate, and each of the touch electrodes is electrically connected with a touch signal line on the underlying substrate in the edge area. The touch substrate can improve the pixel aperture ratio of the display area, so that the touch device including the touch substrate can achieve better display effect.Type: ApplicationFiled: June 18, 2019Publication date: January 9, 2020Applicant: BOE TECHNOLOGY GROUP CO., LTD.Inventors: Shengji YANG, Xue DONG, Xiaochuan CHEN, Hui WANG, Pengcheng LU
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Publication number: 20200012372Abstract: A touch panel includes a substrate, a photosensitive layer, a metal nanowire layer and a photosensitive conductive layer. The metal nanowire layer and the photosensitive layer are formed on a display area and a peripheral area of the substrate. The photosensitive conductive layer is formed on the metal nanowire layer on the peripheral area. A removal region and a reserved region of both the photosensitive conductive layer and the photosensitive layer are defined by an exposure process. At the display area, the photosensitive layer and the metal nanowire layer in the removal region are removed by a developer to form a touch sensing electrode. At the peripheral area, the photosensitive conductive layer, the photosensitive layer and the metal nanowire layer in the removal region are removed by a developer to form a peripheral conductive trace. The touch sensing electrode is electrically connected to the peripheral conductive trace.Type: ApplicationFiled: June 27, 2019Publication date: January 9, 2020Inventors: Chen-Hsin Chang, Chia-Hao Hsu, Shan-Yu Wu
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Publication number: 20200012373Abstract: A display device is disclosed. In one aspect, the display device includes a substrate including a display area and a non-display area adjacent to the display area and a display member formed over the substrate in the display area. The display device also includes an encapsulation layer formed over the display member and encapsulating the display member together with the substrate and a plurality of first touch lines formed over the encapsulation layer in the display area. The first touch lines extend in a first direction. The display device further includes a plurality of second touch lines formed on the same layer as the first touch lines in the display area. The second touch lines extend in the first direction and are spaced apart from the first touch lines.Type: ApplicationFiled: September 6, 2019Publication date: January 9, 2020Inventors: Yong-Hwan PARK, Jong Seok KIM, Chi Wook AN, Seong Jun LEE, Sang Hyun JUN
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Publication number: 20200012374Abstract: A display device with an input function is provided having a plurality of pixel parts arranged at intervals in a first direction and a second direction intersecting the first direction, and a display region including a plurality of light-transmitting parts arranged in the gap portions of the pixel parts, the pixel parts include at least one pixel provided with light-emitting elements, the light-transmitting part includes a sensor electrode for detecting electrostatic capacitance.Type: ApplicationFiled: September 17, 2019Publication date: January 9, 2020Inventor: Takayuki NAKANISHI
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Publication number: 20200012375Abstract: A display apparatus includes a display panel, a touch sensing unit, and a touch driving circuit. The touch sensing unit includes a transmission touch line. The touch driving circuit provides a touch driving signal to the transmission touch line. The touch driving circuit may include a switch group and a control switch group. The switch group may include a plurality of switch devices, each of which has one end connected to the transmission touch line. The control switch group may be connected to the other end of at least a portion of the switch devices, include a plurality of control switch devices and a capacitor device, and receive a driving voltage and a ground voltage. The touch driving signal has N voltage levels, where N is a natural number of 3 or more.Type: ApplicationFiled: July 5, 2019Publication date: January 9, 2020Applicant: SEOUL NATIONAL UNIVERSITY, R&DB FOUNDATIONInventors: Deog-Kyoon Jeong, Youngmin Park, Sangjine Park, Jiheon Park, Jonghyun Oh, Sanghune Park
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Publication number: 20200012376Abstract: A device and a touch sensor having a substrate and a plurality of columns of electrodes disposed on a side of the substrate. Each column has a drive electrode and a plurality of sense electrodes. The columns include a first column, a second column, and one or more interior columns between the first and second columns. The drive electrode of a particular interior column has a main electrode line that extends a length of the particular interior column. A first sense electrode and a second sense electrode of the sense electrodes of the particular interior column are located on opposite sides of the drive electrode. The touch sensor may also include one or more ground lines. The substrate may have two opposite ends corresponding to opposite edges of the touch sensor, and the first column and the second column are disposed on the opposite ends of the substrate.Type: ApplicationFiled: July 10, 2019Publication date: January 9, 2020Applicant: Neodrón LimitedInventor: Matthew Trend
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Publication number: 20200012377Abstract: A touch control driving unit includes a shift register circuit, a strobe circuit and an output circuit, wherein the shift register circuit includes a first control port, an input port and a triggering signal output port, is connected to the strobe circuit, and is configured to generate a triggering signal; the strobe circuit includes a second control port and a strobe signal port, is connected to the shift register circuit, and is configured to control the output circuit; and the output circuit includes an output port, a stable level port and a touch control signal port, and is configured to output a stable level or a touch control signal under control of the strobe circuit.Type: ApplicationFiled: July 18, 2019Publication date: January 9, 2020Inventors: Xueguang HAO, Cheng LI
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Publication number: 20200012378Abstract: An apparatus and a method for processing a split view in a portable device. The method of processing a split view in a portable device, includes: displaying a plurality of applications as a split view corresponding to split display regions of a display unit; displaying an input panel on a display region of an application of the plurality of applications that did not call for the input panel when the input panel is called; and processing data input through the input panel by an application calling the input panel.Type: ApplicationFiled: August 23, 2019Publication date: January 9, 2020Inventors: Youngri KIM, Bonghee HAN, Sungjin YOON, Yujin LEE, Wonkyu PARK
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Publication number: 20200012379Abstract: A display device including a display panel, a plurality of gripping sensors at a side of the display device and configured to detect a gripping of the side of the display device, and a plurality of touch sensors on the display panel and configured to generate a sensing output signal based on sensing input signals, in which the sensing input signals having different enable voltages are applied to the plurality of touch sensors, and the different enable voltages are determined according to the gripping.Type: ApplicationFiled: September 17, 2019Publication date: January 9, 2020Inventors: Won-Ki HONG, Jong Seo LEE
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Publication number: 20200012380Abstract: A display device with a touch sensor having a display function and a touch sensor function is provided. The display device includes a first substrate including a pixel electrode; a first electrode along a first direction; and a second substrate including a second electrode that includes patterns of electrodes along a second direction crossing the first direction and that faces the first electrode and the pixel electrode, wherein upon the display function being activated, the pixel electrode is supplied with a pixel signal, and the second electrode is supplied with common voltage, and upon the touch sensor function being activated, the first electrode is applied with a first signal and the second electrode is configured to receive the first signal to be a second signal as a touch detecting signal.Type: ApplicationFiled: September 17, 2019Publication date: January 9, 2020Inventors: Naosuke FURUTANI, Hayato KURASAWA, Makoto HAYASHI
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Publication number: 20200012381Abstract: A noise immunity of a detected capacitance is prevented or inhibited from lowering on a driving electrode different in width from the other driving electrodes, provided in an input device. A touch panel serving as an input device has a plurality of driving electrodes extending in an X-axis direction and arranged in a Y-axis direction intersecting with the X-axis direction, and a driving electrode arranged outside one side of an arrangement of the driving electrodes and extending in the X-axis direction. Further, the touch panel TP1 has a plurality of detecting electrodes extending in the Y-axis direction and arranged in the X-axis direction. The width of the driving electrode is smaller than the widths of the driving electrodes and the detecting electrode includes an expanding portion for expanding the area of the detecting electrode on the side opposite to the plurality of driving electrodes via the driving electrode.Type: ApplicationFiled: September 17, 2019Publication date: January 9, 2020Inventors: Yasuyuki TERANISHI, Takafumi SUZUKI, Kohei AZUMI
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Publication number: 20200012382Abstract: The touch screen system includes a touch input detector for detecting a touch input in order to obtain a touch result value through the touch screen, and detecting at least two of a time interval of the detected touch input, a touch area of the touch input, a touch intensity of the touch input, or a temperature of the touch input, a touch type classifier for outputting whether the detected touch input is a normal touch or a false touch from a learned AI model, and a communicator for communicating with the server, the communicator transmitting to the server, and the server includes an AI model learner for generating the learned AI model. According to the present disclosure, it is possible to determine the touch error by using the AI, the AI based false touch recognition technology, and the 5G network.Type: ApplicationFiled: September 16, 2019Publication date: January 9, 2020Inventor: Jae Ho LEE
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Publication number: 20200012383Abstract: A method for response control of a touch screen is disclosed. Whether there is a crack on the touch screen is determined. A crack area where the crack is located in the touch screen is determined. The crack area includes a plurality of touch points, each touch point having a response sensitivity to a touch event of the touch screen. A response strategy of the crack area to the touch event of the touch screen is adjusted. A mobile terminal and a non-transitory computer-readable storage medium are also disclosed.Type: ApplicationFiled: September 16, 2019Publication date: January 9, 2020Applicant: GUANGDONG OPPO MOBILE TELECOMMUNICATIONS CORP., LTD.Inventors: Hao Wang, Qiang Zhang, Tong Han, Rendong Shi, Mingqiang Guo
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Publication number: 20200012384Abstract: A touch sensor includes: a plurality of first sensor electrode columns disposed in a sensing area, the plurality of first sensor electrode columns each including one or more first sensor electrodes; a plurality of second sensor electrode columns alternately disposed with the first sensor electrode columns in the sensing area, the plurality of second sensor electrode columns each including a plurality of second sensor electrodes having a length defined by a longitudinal axis and a width extending in a direction across the length; a plurality of lines connected to the first sensor electrode columns and the second sensor electrode columns; and a pad unit including a plurality of pads connected to the lines, wherein at least some of the second sensor electrodes have a width that varies along the longitudinal axis of its respective second electrodes.Type: ApplicationFiled: September 17, 2019Publication date: January 9, 2020Inventors: Gwang Bum KO, Hyun Jae NA, Hyoung Wook Jang, Ye Ri Jeong, Jeong Yun Han
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Publication number: 20200012385Abstract: Touch events can be detected using an ultrasound input device coupled to a surface, such as a surface of a piece of furniture or electronic device. The ultrasound input device can generate ultrasonic waves in the surface, the reflections of which can be measured by the ultrasound input device. When a touch is made to the surface (e.g., opposite the ultrasound input device), the physical contact can absorb some of the energy of the outgoing ultrasonic waves (e.g., the originally transmitted wave and any subsequent outgoing reflections). Energy measurements associated with the measured reflections can thus be used to identify touch events. Various techniques can be used to make the energy measurements and reduce identification of false touch events.Type: ApplicationFiled: September 13, 2019Publication date: January 9, 2020Applicant: UltraSense Systems, Inc.Inventors: Hao-Yen Tang, Mo Maghsoudnia, Man-Chia Chen
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Publication number: 20200012386Abstract: A touch control device is provided and includes a base substrate and a metal pattern on the base substrate. The metal pattern includes a first metal pattern and a second metal pattern. The first metal pattern and the second metal pattern are in different layers. The first metal pattern includes a first touch control electrode and a first virtual graphic that is insulated from the first touch control electrode. The second metal pattern includes a second touch control electrode and a second virtual graphic that is insulated from the second touch control electrode. An organic projection of the metal pattern to the base substrate is a regular grid.Type: ApplicationFiled: April 29, 2019Publication date: January 9, 2020Applicants: HEFEI XINSHENG OPTOELECTRONICS TECHNOLOGY CO., LTD., BOE TECHNOLOGY GROUP CO., LTD.Inventors: Xinxiu ZHANG, Shifeng XU, Xiaodong XIE, Lei ZHANG, Min HE, Tengfei ZHONG, Bin PANG