摘要:
A method for operating a touch sensitive user interface is provided. The touch sensitive user interface comprises a touch sensitive surface (3) and at least two force sensitive sensors (15-66). The touch sensitive surface (3) is configured to provide a touch information indicating touch positions (6, 8) of at least two concurrent touches (5, 7) on the touch sensitive surface (3). The at least two force sensitive sensors (15- 66) are mounted at the touch sensitive surface (3) at different predetermined locations (11-14). Each of the at least two force sensitive sensors (15-66) is configured to generate a corresponding force information depending on a force being exerted on the corresponding force sensitive sensor (15-66). According to the method, the touch positions (6, 8) are determined based on the touch information and the force information is received from the at least two force sensitive sensors (15-66). Based on the at least two touch positions (6, 8), the force information from the force sensitive sensors (15-66) and the predetermined locations (11-14) of the force sensitive sensors (15-66) a corresponding touch force is determined for each of the concurrent touches (5, 7).
摘要:
A liquid crystal display with a force sensitive display surface has a liquid crystal layer between a liquid crystal control layer and a window layer. A color filter layer with color filters or a 3D filter layer with 3D barrier units may be provided between the liquid crystal layer and the window layer. The control, window, color or 3D filter layer comprises an electrically conductive sensor structure comprising piezoresistive material for sensing the force applied by a user's finger on the display, and the sensor structure may, additionally, provide capacitance varying for sensing the touch position.
摘要:
A force sensitive touch sensor (100) is provided. The sensor (100) comprises an insulating support layer (101) and an electrically conductive sensor structure (102). The electrically conductive sensor structure (102) comprises a piezoresistive material and is configured to provide a resistance varying in response to a force being applied to the insulating support layer (101). The piezoresistive material comprises graphene.
摘要:
An electronic device includes a first touch panel disposed on a first side of the device. The first touch panel receives a first touch input. The electronic device further includes a display disposed on the first side of the device, and a touch interface disposed on a second side of the device, where the second side is different than the first side. The touch interface receives a second touch input. A control unit receives an indication of the first touch input from the first touch panel and receives an indication of the second touch input from the touch interface. The control unit further determines alterations to a three dimensional view of the display in the x, y and/or z directions based on the first touch input, and rotates the three dimensional view on the display angularly in accordance with movement of the second touch input.
摘要:
A non-invasive method of monitoring a biological parameter concerning a bodily fluid of a subject, e.g., blood glucose of a human subject. The method includes: placing an electrode against a site of the skin of the subject; measuring impedance of the skin and determining the parameter therefrom; and using substantially the same site in another determination. Another non-invasive monitoring method includes: exposing a skin site to an aqueous salt solution for a pre-determined first period of time; removing excess of the solution from the site; measuring impedance at the site; exposing the site to the solution for a pre-determined second period of time and repeating the removing and measuring steps. It is determined whether the impedance measured falls within a pre-determined range. The latter exposure and removal steps are repeated, if necessary, until two consecutive impedance measurements within the pre-determined range are obtained.
摘要:
An input interface (3) comprises a display (23), a window (21) overlaid on the display (23), and a housing (13-15) supporting the window (21). A first sensor arrangement (31, 32) is configured to sense a position of a touch action on the window (21) in two dimensions. The first sensor arrangement (31, 32) comprises a first plurality of conductive traces (32). A second sensor arrangement (41-43) is configured to sense a magnitude of a force applied by the touch action onto the window (21). The second sensor arrangement (41-43) comprises a second plurality of conductive traces (41, 42) and a force sensing material (43). The first plurality of conductive traces (32) and the second plurality of conductive traces (41, 42) are positioned on an inner face (30) of the window (21) and attached to the inner face (30) of the window (21). The force sensing material (43) is attached to the inner face (30) of the window (21) such that the force sensing material (43) contacts the second plurality of conductive traces (41, 42).
摘要:
A device and method for image manipulation is provided. The image manipulation may be performed as a function of a three dimensional user input and image or application specific data regarding the displayed image to be manipulated. The three dimensional input may be in the form of a two dimensional position on a touch screen and a measured force in the third dimension. The image or application specific data may be in the form of a maximum depth value indicating the maximum depth of the displayed image. The system may be configured to adjust the image based on a percentage of the measured user input force and a threshold force. The image may be adjusted based on the percentage and the maximum depth.