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    • 11. 发明专利
    • Touch controller architecture
    • AU2014208228A1
    • 2015-02-19
    • AU2014208228
    • 2014-07-30
    • APPLE INC
    • SHAHPARNIA SHAHROOZYOUSEFPOR MARDUKE
    • G06F3/041
    • A touch controller that can configure touch circuitry according to a scan plan, which can define a sequence of scan events to be performed on a touch panel is disclosed. The touch controller can include a configurable transmit section to generate stimulation signals to drive the panel, a configurable receive section to receive and process touch signals from the panel, and a configurable memory to store the touch signals. The touch controller can also include a programmable scan engine to configure the transmit section, the receive section, and the memory according to the scan plan. The touch controller advantageously provides more robust and flexible touch circuitry to handle various types of touch events at the panel. An active stylus that can generate stimulation signals that can be detected by the touch controller during various touch events at the panel is also disclosed. 100-4 104 ------------------ - 102 - 166 106 Slave Drive: 144 140| Controller| 114 -r142 152 MUX+ Drive --- | Controller ----------- --- 1Cnrle aSlave Sense Circuitry 108 Sense Circuitry -- 1507t 148 156$ Spectral Analyzer Touch Processor Wireless i 128 '------------+ *Communication -- Host Processor Chip a 10132 : 130 Program Storage Display Device
    • 14. 发明专利
    • Negative pixel compensation
    • AU2010202693B2
    • 2012-06-21
    • AU2010202693
    • 2010-06-28
    • APPLE INC
    • LAND BRIAN RICHARDSYOUSEFPOR MARDUKEHOTELLING STEVEN PORTER
    • G06F3/041
    • Negative pixel compensation in a touch sensitive device is disclosed. The device can compensate for a negative pixel effect in touch signal outputs due to poor grounding of an object touching the device. To do so, the device can switch to a configuration to measure the grounding condition of the touching object and use the measurement to compensate the touch output values from the device accordingly. In the switched configuration, a first set of lines of the device can be switched between a coupling to a stimulation signal input to drive the device, a coupling to a capacitance signal output to output a signal indicative of the object's grounding condition, and a coupling to ground. A second set of lines of the device can be coupled to a touch signal output to output a signal indicative of the object's touch at the device. In addition or alternatively, in the switched configuration, the first set of lines of the device can be switched to function as the second set of lines and vice versa. The grounding signal can be applied to the touch signal to compensate for the negative pixel effect.
    • 15. 发明专利
    • Negative pixel compensation
    • GB2471772B
    • 2012-01-25
    • GB201011402
    • 2010-07-07
    • APPLE INC
    • LAND BRIAN RICHARDSYOUSEFPOR MARDUKEHOTELLING STEVEN PORTER
    • G06F3/044G06F3/041
    • Negative pixel compensation in a touch sensitive device is disclosed. The device can compensate for a negative pixel effect in touch signal outputs due to poor grounding of an object touching the device. To do so, the device can switch to a configuration to measure the grounding condition of the touching object and use the measurement to compensate the touch output values from the device accordingly. In the switched configuration, a first set of lines of the device can be switched between a coupling to a stimulation signal input to drive the device, a coupling to a capacitance signal output to output a signal indicative of the object's grounding condition, and a coupling to ground. A second set of lines of the device can be coupled to a touch signal output to output a signal indicative of the object's touch at the device. In addition or alternatively, in the switched configuration, the first set of lines of the device can be switched to function as the second set of lines and vice versa. The grounding signal can be applied to the touch signal to compensate for the negative pixel effect.
    • 16. 发明专利
    • Touch screen with shared display and touch elements
    • GB2474098A
    • 2011-04-06
    • GB201013997
    • 2010-08-20
    • APPLE INC
    • HOTELLING STEVEN PORTERYOUSEFPOR MARDUKECHANG SHIH CHANGZHONG JOHN Z
    • G06F3/044
    • An integrated touch screen display includes multi-function circuit element/s that form part of the display circuitry of the display system that generates an image on the display, and also form part of the touch sensing circuitry of a touch sensing system that senses one or more touches on or near the display. For example, one or more circuit elements of the display pixel stack can form a conductive portion of the touch sensing system, such as a charge collector, which can be operated with switches and conductive lines to sense touch. In an embodiment a common electrode xVcom415 in a fringe field switching LCD can serve as a multifunction circuit element. Using transistors S1, S2 and S3 the common electrodes can operate as a charge collected in a charge transfer capacitive touch sensing system. A xVcom Bridge 423 can connect xVcom of one pixel to be xVcom of an adjacent pixel. During a display phase transistor S1 417 performs switching of data lines 413 to connect data lines to pixel electrodes 416 and transistor S2 419 can switch xVcom lines. During touch operation S1 can be switched off and transistor S2 and transistor S3 can be switched to xVcom and data lines respectively and alternatively so as to operate the charge transfer capacitive sensor.