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    • 1. 发明申请
    • POWER MANAGEMENT FOR INTEGRATED TOUCH SCREENS
    • 集成触摸屏电源管理
    • US20130076648A1
    • 2013-03-28
    • US13244072
    • 2011-09-23
    • Christoph Horst KRAHKevin J. WhiteYafei Bi
    • Christoph Horst KRAHKevin J. WhiteYafei Bi
    • G06F3/041
    • G06F3/0412G06F3/0418G06F3/044
    • Reducing or eliminating the effects of noise that can be generated by a power system of a touch screen device, such as a gate line voltage system that applies voltage to gate lines of the touch screen, is provided. In one example, a power supply, such as a charge pump, can be disabled during active touch sensing, such that noise from the charge pump is not generated during touch sensing. In some examples, a voltage regulator can help to maintain the gate voltage level at or above a desired threshold. In some cases, noise entering the touch sensing system can have a lasting effect on noise-sensitive components, even after the noise source is disabled. In these cases, a post-noise stabilizing system can be included to stabilize, reset, etc., noise-sensitive components of the touch sensing system, which can help to reduce or eliminate the lasting effect of noise.
    • 提供了减少或消除由触摸屏装置的电力系统产生的噪声的影响,诸如对触摸屏的栅极线施加电压的栅极线电压系统。 在一个示例中,可以在主动触摸感测期间禁用诸如电荷泵的电源,使得在触摸感测期间不产生来自电荷泵的噪声。 在一些示例中,电压调节器可以帮助将栅极电压电平维持在等于或高于所需阈值。 在某些情况下,甚至在噪声源被禁用之后,进入触摸感应系统的噪声也会对噪声敏感元件产生持久的影响。 在这些情况下,可以包括一个噪声后稳定系统来稳定,复位等触摸感应系统的噪声敏感部件,这有助于减少或消除噪音的持久影响。
    • 3. 发明申请
    • STYLUS DEVICE
    • STYLUS设备
    • US20140028634A1
    • 2014-01-30
    • US13560953
    • 2012-07-27
    • Christoph Horst KRAHMarduke YousefporKevin J. WhiteMartin Paul Grunthaner
    • Christoph Horst KRAHMarduke YousefporKevin J. WhiteMartin Paul Grunthaner
    • G06F3/033
    • G06F3/03545G06F3/033G06F3/041G06F3/044
    • Styluses capable of generating stylus stimulation signals and touch sensitive devices capable of receiving stylus stimulation signals are disclosed. In one example, a stylus can receive a stimulation signal from a touch sensor of a touch sensitive device and generate a stylus stimulation signal by changing an amplitude or frequency of the received stimulation signal. The stylus can transmit the stylus stimulation signal back into the touch sensor of the touch sensitive device. The touch sensor can generate a touch signal based on the device's own stimulation signals and the stylus stimulation signal. The touch sensitive device can process the touch signal to determine a location of the stylus on the touch sensor. The stylus can include a force sensor to detect an amount of force applied to a tip of the stylus. The stylus stimulation signal can be modulated based on the force detected by the force sensor.
    • 公开了能够产生触针刺激信号的手枪和能够接收触笔刺激信号的触敏装置。 在一个示例中,触针可以从触敏设备的触摸传感器接收刺激信号,并通过改变所接收的刺激信号的幅度或频率来产生触针刺激信号。 触控笔可以将触针刺激信号传送回触敏装置的触摸传感器。 触摸传感器可以基于设备自身的刺激信号和触针刺激信号产生触摸信号。 触敏设备可以处理触摸信号以确定触控笔在触摸传感器上的位置。 触针可以包括力传感器以检测施加到触针尖端的力的量。 可以基于由力传感器检测到的力来调制触针刺激信号。
    • 4. 发明申请
    • Power Management for Touch Controller
    • 触摸控制器电源管理
    • US20110061947A1
    • 2011-03-17
    • US12557962
    • 2009-09-11
    • Christoph Horst KRAHThomas James Wilson
    • Christoph Horst KRAHThomas James Wilson
    • G08C21/00G06F1/00
    • G06F1/3287G06F1/3215G06F1/3262G06F1/3296G06F3/041G06F3/0416Y02D50/20
    • Power management for a touch controller is disclosed. The touch controller can include a transmit section for transmitting stimulation signals to an associated touch sensor panel to drive the panel, where the touch controller can selectively adjust the transmit section to reduce power during the transmission. The touch controller can also include a receive section for receiving touch signals resulting from the driving of the panel, where the touch controller can selectively adjust the receive section to reduce power during the receipt of the touch signals. The touch controller can also include a demodulation section for demodulating the received touch signals to obtain touch event results, where the touch controller can selectively adjust the demodulation section to reduce power during the demodulation of the touch signals. The touch controller can also selectively reduce power below present low levels during idle periods. The touch controller can be incorporated into a touch sensitive device.
    • 公开了触摸控制器的电源管理。 触摸控制器可以包括用于将刺激信号发送到相关联的触摸传感器面板以驱动面板的发送部分,其中触摸控制器可以选择性地调整发送部分以减少传输期间的功率。 触摸控制器还可以包括用于接收由面板驱动产生的触摸信号的接收部分,其中触摸控制器可以选择性地调整接收部分以在接收触摸信号期间降低功率。 触摸控制器还可以包括用于解调接收到的触摸信号以获得触摸事件结果的解调部分,其中触摸控制器可以选择性地调整解调部分以在解调触摸信号期间降低功率。 触摸控制器还可以在空闲时段期间选择性地降低低于当前低电平的功率。 触摸控制器可以结合到触敏设备中。
    • 5. 发明申请
    • MODULAR STYLUS DEVICE
    • 模块式装置
    • US20140028635A1
    • 2014-01-30
    • US13560960
    • 2012-07-27
    • Christoph Horst KRAH
    • Christoph Horst KRAH
    • G06F3/033
    • G06F3/041G06F3/03545
    • Modular styluses having a base module an expansion module are disclosed. The base module can include a stylus tip, a stylus stimulation signal circuit capable of generating a stimulation signal, a processor for controlling the stylus stimulation signal circuit, and a connection interface for selectively connecting the base module to an expansion module. The expansion module can include a power source for providing power to the stylus stimulation signal circuit and the processor. The expansion module can also include one or more of a power source, camera, audio recorder, communication circuit, gyroscope, accelerometer, laser pointer, projector, or the like. The projector can be used to display an image on a surface and to allow a user to edit a document by moving the stylus across the projected image.
    • 公开了具有基座模块和扩展模块的模块化笔迹。 基座模块可以包括触针尖,能够产生刺激信号的触针刺激信号电路,用于控制触针刺激信号电路的处理器,以及用于选择性地将基本模块连接到扩展模块的连接接口。 扩展模块可以包括用于向触针刺激信号电路和处理器提供电力的电源。 扩展模块还可以包括电源,照相机,音频记录器,通信电路,陀螺仪,加速度计,激光指示器,投影仪等中的一个或多个。 该投影仪可用于在表面上显示图像,并允许用户通过在拍摄图像上移动触笔来编辑文档。
    • 7. 发明申请
    • Auto Scanning for Multiple Frequency Stimulation Multi-Touch Sensor Panels
    • 自动扫描多频刺激多点传感器面板
    • US20090189867A1
    • 2009-07-30
    • US12022572
    • 2008-01-30
    • Christoph Horst KRAHSteve Porter Hotelling
    • Christoph Horst KRAHSteve Porter Hotelling
    • G06F3/041
    • G06F3/044
    • The use of multiple stimulation frequencies and phases is disclosed to detect touch events on a touch sensor panel in a low-power state. Simultaneously during every frame, a number of rows of the touch sensor panel can be driven with a positive phase of one or more stimulation signals, and the same number of different rows can be driven with the anti-phase of those same stimulation signals. Because the same number of rows are stimulated with the in-phase and anti-phase components of the one or more stimulation signals, the resulting charges injected into a given column cancel each other out. However, a touch event will create an imbalance, and a non-zero charge will be detected. The detection of the touch event can then trigger the system to wake up, activate a panel processor, and perform a full panel scan, where the location of the touch event can be identified.
    • 公开了使用多个刺激频率和相位以在低功率状态下检测触摸传感器面板上的触摸事件。 同时在每个帧期间,可以用一个或多个刺激信号的正相驱动多个触摸传感器面板的行,并且可以用相同刺激信号的反相来驱动相同数量的不同行。 因为相同数量的行被一个或多个刺激信号的同相和反相分量刺激,所以注入给定列的所得电荷彼此抵消。 然而,触摸事件将产生不平衡,并且将检测到非零电荷。 然后,触摸事件的检测可以触发系统唤醒,激活面板处理器,并执行全面板扫描,触摸事件的位置可以被识别。
    • 8. 发明申请
    • SAR ADC WITH DYNAMIC INPUT SCALING AND OFFSET ADJUSTMENT
    • 具有动态输入放大和偏移调整的SAR ADC
    • US20110273402A1
    • 2011-11-10
    • US13187433
    • 2011-07-20
    • Steve Porter HOTELLINGChristoph Horst KRAH
    • Steve Porter HOTELLINGChristoph Horst KRAH
    • G06F3/044
    • G06F3/044G06F3/0416G06F3/05G06F2203/04106
    • An apparatus for generating an image of touch on or about a touch-sensitive surface comprising a touch panel is disclosed. The touch panel can include a plurality of touch sensors configured for detecting one or more touch events occurring at distinct locations at about the same time. Each touch event can comprise a touching of an object against the touch-sensitive surface. A plurality of receive channels can be coupled to the touch panel for generating values representative of detected touch events. The receive channels can include a charge redistribution successive approximation register digital-to-analog converter (SAR ADC) configured to convert an analog waveform into a digital representation via a binary search and outputting the digital representation to an output register. The SAR ADC architecture can be such that it the dynamic input range can be scaled and offset adjusted.
    • 公开了一种用于在包括触摸面板的触敏表面上或周围产生触摸图像的装置。 触摸面板可以包括多个触摸传感器,其被配置用于在大约相同的时间检测在不同位置发生的一个或多个触摸事件。 每个触摸事件可以包括对触摸敏感表面的物体的触摸。 可以将多个接收通道耦合到触摸面板,以产生表示检测到的触摸事件的值。 接收通道可以包括电荷再分配逐次逼近寄存器数模转换器(SAR ADC),其经配置以通过二进制搜索将模拟波形转换为数字表示,并将数字表示输出到输出寄存器。 SAR ADC架构可以使其动态输入范围可以进行缩放和偏移调整。
    • 9. 发明申请
    • METHOD TO COMPENSATE FOR THE FREQUENCY DEPENDENCE OF SENSE SIGNAL PREPROCESSING
    • 补偿感知信号预处理的频率依赖性的方法
    • US20110063229A1
    • 2011-03-17
    • US12558397
    • 2009-09-11
    • Christoph Horst KRAHYutaka Hori
    • Christoph Horst KRAHYutaka Hori
    • G06F3/041
    • G06F3/044G06F3/0418
    • Compensating for the frequency dependence of sense signal preprocessing in preprocessing channel circuitry is provided. The frequency dependence of the preprocessing channels can be modified to change a frequency dependent channel into a frequency independent channel, to change a frequency independent channel into a frequency dependent channel, or to change the frequency dependency characteristics of a frequency dependent channel. Modification of frequency dependency may be accomplished, for example, by modifying certain parameters of a preprocessing channel's components, which can include components for amplifying, filtering, phase adjusting, demodulating, decrypting, for example. A pipelined process may be used to modify the frequency dependency of multiple channels. Compensating for frequency dependencies can have multiple advantages, such as reduction of memory requirements and DIE size.
    • 提供补偿预处理通道电路中感测信号预处理的频率依赖性。 可以修改预处理信道的频率依赖性以将频率相关信道改变成与频率无关的信道,以将频率无关信道改变为频率相关信道,或者改变频率相关信道的频率依赖特性。 频率依赖性的修改可以例如通过修改预处理信道的分量的某些参数来实现,其可以包括用于放大,滤波,相位调整,解调,解密等的组件。 可以使用流水线处理来修改多个信道的频率依赖性。 补偿频率相关性可以具有多个优点,例如减少内存要求和DIE大小。