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    • 1. 发明授权
    • Storing baseline information in EEPROM
    • 将基准信息存储在EEPROM中
    • US08350821B2
    • 2013-01-08
    • US13298227
    • 2011-11-16
    • Brian Richards LandWayne Carl WestermanSteve Porter Hotelling
    • Brian Richards LandWayne Carl WestermanSteve Porter Hotelling
    • G09G5/00
    • G06F3/044G06F3/041G06F3/0418G06F2203/04104G06F2203/04108
    • Pre-stored no-touch or no-hover (no-event) sensor output values can initially be used when a sensor panel subsystem is first booted up to establish an initial baseline of sensor output values unaffected by fingers or other objects touching or hovering over the sensor panel during boot-up. This initial baseline can then be normalized so that each sensor generates the same output value for a given amount of touch or hover, providing a uniform response across the sensor panel and enabling subsequent touch or hover events to be more easily detected. After the initial normalization process is complete, the pre-stored baseline can be discarded in favor of a newly captured no-event baseline that may be more accurate than the pre-stored baseline due to temperature or other variations.
    • 传感器面板子系统首次启动时,最初可以使用预先存储的无触摸或无悬停(无事件)传感器输出值,以建立传感器输出值的初始基线,不受手指或其他触摸或悬停的物体的影响 启动期间的传感器面板。 然后可以对该初始基线进行归一化,使得每个传感器为给定量的触摸或悬停生成相同的输出值,从而在传感器面板上提供均匀的响应,并使得能够更容易地检测到随后的触摸或悬停事件。 在初始归一化过程完成之后,可以丢弃预先存储的基线,以利于新捕获的无事件基线,由于温度或其他变化,可能比预先存储的基线更准确。
    • 2. 发明申请
    • STORING BASELINE INFORMATION IN EEPROM
    • 在EEPROM中存储基线信息
    • US20120062493A1
    • 2012-03-15
    • US13298227
    • 2011-11-16
    • Brian Richards LANDWayne Carl WestermanSteve Porter Hotelling
    • Brian Richards LANDWayne Carl WestermanSteve Porter Hotelling
    • G06F3/041
    • G06F3/044G06F3/041G06F3/0418G06F2203/04104G06F2203/04108
    • Pre-stored no-touch or no-hover (no-event) sensor output values can initially be used when a sensor panel subsystem is first booted up to establish an initial baseline of sensor output values unaffected by fingers or other objects touching or hovering over the sensor panel during boot-up. This initial baseline can then be normalized so that each sensor generates the same output value for a given amount of touch or hover, providing a uniform response across the sensor panel and enabling subsequent touch or hover events to be more easily detected. After the initial normalization process is complete, the pre-stored baseline can be discarded in favor of a newly captured no-event baseline that may be more accurate than the pre-stored baseline due to temperature or other variations.
    • 传感器面板子系统首次启动时,最初可以使用预先存储的无触摸或无悬停(无事件)传感器输出值,以建立传感器输出值的初始基线,不受手指或其他触摸或悬停的物体的影响 启动期间的传感器面板。 然后可以对该初始基线进行归一化,使得每个传感器为给定量的触摸或悬停生成相同的输出值,从而在传感器面板上提供均匀的响应,并使得能够更容易地检测到随后的触摸或悬停事件。 在初始归一化过程完成之后,可以丢弃预先存储的基线,以利于新捕获的无事件基线,由于温度或其他变化,可能比预先存储的基线更准确。
    • 4. 发明授权
    • Storing baseline information in EEPROM
    • 将基准信息存储在EEPROM中
    • US08054296B2
    • 2011-11-08
    • US11650037
    • 2007-01-03
    • Brian Richards LandWayne Carl WestermanSteve Porter Hotelling
    • Brian Richards LandWayne Carl WestermanSteve Porter Hotelling
    • G09G5/00
    • G06F3/044G06F3/041G06F3/0418G06F2203/04104G06F2203/04108
    • Pre-stored no-touch or no-hover (no-event) sensor output values can initially be used when a sensor panel subsystem is first booted up to establish an initial baseline of sensor output values unaffected by fingers or other objects touching or hovering over the sensor panel during boot-up. This initial baseline can then be normalized so that each sensor generates the same output value for a given amount of touch or hover, providing a uniform response across the sensor panel and enabling subsequent touch or hover events to be more easily detected. After the initial normalization process is complete, the pre-stored baseline can be discarded in favor of a newly captured no-event baseline that may be more accurate than the pre-stored baseline due to temperature or other variations.
    • 传感器面板子系统首次启动时,最初可以使用预先存储的无触摸或无悬停(无事件)传感器输出值,以建立传感器输出值的初始基线,不受手指或其他触摸或悬停的物体的影响 启动期间的传感器面板。 然后可以对该初始基线进行归一化,使得每个传感器为给定量的触摸或悬停生成相同的输出值,从而在传感器面板上提供均匀的响应,并使得能够更容易地检测到随后的触摸或悬停事件。 在初始归一化过程完成之后,可以丢弃预先存储的基线,以利于新捕获的无事件基线,由于温度或其他变化,可能比预先存储的基线更准确。
    • 5. 发明申请
    • Storing baseline information in EEPROM
    • 将基准信息存储在EEPROM中
    • US20080158174A1
    • 2008-07-03
    • US11650037
    • 2007-01-03
    • Brian Richards LandWayne Carl WestermanSteve Porter Hotelling
    • Brian Richards LandWayne Carl WestermanSteve Porter Hotelling
    • G06F3/041
    • G06F3/044G06F3/041G06F3/0418G06F2203/04104G06F2203/04108
    • Pre-stored no-touch or no-hover (no-event) sensor output values can initially be used when a sensor panel subsystem is first booted up to establish an initial baseline of sensor output values unaffected by fingers or other objects touching or hovering over the sensor panel during boot-up. This initial baseline can then be normalized so that each sensor generates the same output value for a given amount of touch or hover, providing a uniform response across the sensor panel and enabling subsequent touch or hover events to be more easily detected. After the initial normalization process is complete, the pre-stored baseline can be discarded in favor of a newly captured no-event baseline that may be more accurate than the pre-stored baseline due to temperature or other variations.
    • 传感器面板子系统首次启动时,最初可以使用预先存储的无触摸或无悬停(无事件)传感器输出值,以建立传感器输出值的初始基线,不受手指或其他触摸或悬停的物体的影响 启动期间的传感器面板。 然后可以对该初始基线进行归一化,使得每个传感器为给定量的触摸或悬停生成相同的输出值,从而在传感器面板上提供均匀的响应,并使得能够更容易地检测到随后的触摸或悬停事件。 在初始归一化过程完成之后,可以丢弃预先存储的基线,以利于新捕获的无事件基线,由于温度或其他变化,可能比预先存储的基线更准确。
    • 6. 发明授权
    • Negative pixel compensation
    • 负像素补偿
    • US09075483B2
    • 2015-07-07
    • US11963578
    • 2007-12-21
    • Wayne Carl WestermanSteve Porter Hotelling
    • Wayne Carl WestermanSteve Porter Hotelling
    • G06F3/041G06F3/044
    • G06F3/044G06F3/0418
    • Compensation of pixels that generate erroneous readings (so-called “negative pixels”), produced when multiple touch events are generated by the same poorly grounded object on a touch sensor panel is disclosed. To minimize negative pixels, a thicker cover material and/or a lower dielectric constant can be used. Alternatively, narrower drive and sense lines can be employed. To compensate for negative pixels, a predicted negative pixel value can be computed as an indicator of pixels that are likely to be distorted. The negative pixel value for any particular pixel can be computing by summing up the touch output values for pixels in the drive line of that pixel, summing up the touch output values for pixels in the sense line of that pixel, and then multiplying these two sums. The predicted negative pixel value is added to the measured touch output value for the pixel to compensate for artificially negative readings.
    • 公开了当在触摸传感器面板上由相同的接地不良的物体产生多个触摸事件时产生错误读数(所谓的“负像素”)的像素的补偿。 为了最小化负像素,可以使用较厚的覆盖材料和/或较低的介电常数。 或者,可以采用较窄的驱动和感测线。 为了补偿负像素,可以将预测的负像素值计算为可能被失真的像素的指示符。 任何特定像素的负像素值可以通过对该像素的驱动线中的像素的触摸输出值求和,对该像素的感测线中的像素的触摸输出值求和,然后将这两个和乘以 。 将预测的负像素值添加到用于像素的测量的触摸输出值以补偿人为负读数。