Abstract:
A method of creating a resistive pathway for an electronic assembly is disclosed. In one embodiment, the pathway can be formed with a resistive film in conjunction with a conductive adhesive and a coverlay. In another embodiment, the resistive film, the conductive adhesive and the coverlay can be relatively transparent. In yet another embodiment, the resistive pathway can couple directly with traces on an electronic assembly saving space and easing assembly.
Abstract:
Disclosed embodiments relate to a display deformation detection system (14) that detects display deformations based upon changes in resistance and/or capacitance. In one embodiment, a method includes measuring a baseline comprising a baseline resistance or a baseline capacitance or both of a conductive mesh (100) disposed within or overlaid on the display panel (12). The method further includes detecting a change in the baseline resistance or the baseline capacitance or both and calculating a change location where the change in the baseline resistance or the baseline capacitance or both occurred. The method also includes calculating a magnitude of the change in the baseline resistance or the baseline capacitance or both.
Abstract:
Data can be written to a sub-pixel by applying a voltage to the sub-pixel's data line. A large change in voltage on a data line can affect the voltages on adjacent data lines due to capacitive coupling between data lines. The resulting change in voltage on these adjacent data lines can give rise to visual artifacts in the data lines' corresponding sub-pixels. Various embodiments of the present disclosure serve to prevent or reduce the appearance of these visual artifacts by inserting guard lines between data lines to reduce the mutual capacitance between data lines. In other embodiments, a pixel having multiple gate lines can be used to selectively turn on and turn off different sub-pixels which, in turn, can reduce or eliminate the appearance of visual artifacts.
Abstract:
A self-capacitive touch sensor panel configured to have a portion of both the touch and display functionality integrated into a common layer is provided. The touch sensor panel includes a layer with circuit elements that can switchably operate as both touch circuitry and display circuitry such that during a touch mode of the device the circuit elements operate as touch circuitry and during a display mode of the device the circuit elements operate as display circuitry. The touch mode and display mode can be time multiplexed. By integrating the touch hardware and display hardware into common layers, savings in power, weight and thickness of the device can be realized.
Abstract:
Systems and methods for preventing parasitic capacitances within liquid crystal displays are provided. A display panel according to an embodiment may include, for example, a pixel (42) with a pixel electrode (50) and a transistor (48) coupled to a gate line (44). Additionally, the pixel (42) may include a shielding conductor (76) interposed between the pixel electrode (50) and the gate line (44). The shielding conductor (76) may shield the pixel electrode (50) from a parasitic capacitance with the gate line (44) by causing a parasitic capacitance (78) to form between the gate line (44) and the shielding conductor (76) instead of between the gate line (44) and the pixel electrode (50).
Abstract:
A self-capacitive touch sensor panel configured to have a portion of both the touch and display functionality integrated into a common layer is provided. The touch sensor panel includes a layer with circuit elements that can switchably operate as both touch circuitry and display circuitry such that during a touch mode of the device the circuit elements operate as touch circuitry and during a display mode of the device the circuit elements operate as display circuitry. The touch mode and display mode can be time multiplexed. By integrating the touch hardware and display hardware into common layers, savings in power, weight and thickness of the device can be realized.
Abstract:
Systems, methods, and devices relating to directly bonding electrode pads of a flexible printed circuit (FPC) to electrode pads of a glass substrate are provided. In one example, such a system may include a glass substrate with electrode pads and an FPC with corresponding electrode pads. A joining edge of each electrode pad of the FPC may couple directly to a joining edge of a corresponding electrode pad of the glass substrate, without an intervening conductive adhesive layer or an anisotropic conductive film (ACF) layer, or a combination thereof.
Abstract:
A vehicle (110) is provided that includes a protection system configured to mitigate hazards to vehicle occupants (115) posed by dynamic elements (140) located within proximity of the vehicle. The vehicle can, in response to determining that a dynamic element (140) is moving along a trajectory that intersects a sweep volume (120) of a vehicle portal (107), selectively restrict operation of the portal so that an occupant is restricted from opening the portal into a volume through which the dynamic element may pass. The vehicle can restrict portal operation in response to detecting external dynamic elements that are not within an occupant's field of vision. The vehicle can communicate a limited selection of vehicle sensor data, including representations of a detected dynamic element, to a user device (740) supporting an authorized user (750) in response to detecting that the dynamic element is within a certain proximity of the vehicle.
Abstract:
Some embodiments provide an autonomous navigation system which can navigate a vehicle through an environment according to a selected comfort profile, where the comfort profile associates a particular set of occupant profiles and a particular set of driving control parameters, so that the vehicle is navigated based on the particular set of driving control parameters. The comfort profile is selected based on a determined correlation between the occupants detected in the vehicle interior and the occupants specified by the set of occupant profiles included in the comfort profile. The driving control parameters included in a comfort profile can be adjusted based on monitoring occupants of the vehicle for feedback when the vehicle is being autonomously navigated according to the comfort profile.
Abstract:
Disclosed embodiments relate to a display temperature detection system that can detect temperature variations in different regions of a display panel. The temperature measuring display system includes a display panel that provides graphical images. Further, the temperature measuring display system includes temperature measurement circuitry. The temperature measurement circuitry includes one or more thermal diodes, transistors, or a mesh layer useful to determine at least one temperature measurement of the display panel.