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    • 5. 发明申请
    • HYBRID SCALABLE CODING
    • 混合可扩展编码
    • US20080181298A1
    • 2008-07-31
    • US11627457
    • 2007-01-26
    • Xiaojin ShiHsi-Jung WuJames Oliver Normile
    • Xiaojin ShiHsi-Jung WuJames Oliver Normile
    • H04N7/32H04N7/26
    • H04N21/23439H04N19/156H04N19/30H04N19/40H04N19/46H04N21/234327H04N21/235H04N21/2662H04N21/435H04N21/84
    • Systems, apparatuses and methods whereby coded bitstreams are delivered to downstream end-user devices having various performance capabilities. A head-end encoder/video store generates a primary coded bitstream and metadata for delivery to an intermediate re-encoding system. The re-encoding system recodes the primary coded bitstream to generate secondary coded bitstreams based on coding parameters in the metadata. Each secondary coded bitstream is matched to a conformance point of a downstream end-user device. Coding parameters for each conformance point can be derived from the head-end encoder encoding original source video to generate the secondary coded bitstreams and extracting information from the coding process/results. The metadata can then can be communicated as part of the primary coded bitstream (e.g., as SEI) or can be communicated separately. As a result, the complexity of the secondary coded bitstream is appropriately scaled to match the capabilities of the downstream end-user device to which it is delivered.
    • 其中编码比特流被传送到具有各种性能能力的下游终端用户设备的系统,设备和方法。 头端编码器/视频存储器产生主编码比特流和元数据以传送到中间重编码系统。 重编码系统基于元数据中的编码参数来重新编码主编码比特流以生成辅助编码比特流。 每个辅助编码比特流与下游终端用户设备的一致性点匹配。 可以从编码原始源视频的前端编码器导出用于每个一致性点的编码参数,以生成辅助编码比特流并从编码处理/结果中提取信息。 然后可以将元数据作为主编码比特流的一部分(例如,作为SEI)传送或者可以单独通信。 结果,二次编码比特流的复杂度被适当地缩放以匹配其被传递到的下游终端用户设备的能力。
    • 7. 发明申请
    • On-chip decompression engine
    • 片上减压引擎
    • US20080162920A1
    • 2008-07-03
    • US11650183
    • 2007-01-03
    • Thomas James Wilson
    • Thomas James Wilson
    • G06F12/16
    • G06F9/4401H03M7/30
    • Embodiments of the present invention are directed to a microcontroller which includes a Register Load Assist engine. The microcontroller can include no or minimal non-volatile memory which stores boot data. Thus, most of the boot data can be stored at a non-volatile memory external to the microcontroller. An external circuit can read the externally positioned non-volatile memory and send compressed boot data to the microcontroller. The boot data can be originally stored in compressed form in the external non-volatile memory or it can be compressed by the external circuit. The boot data can be received by the microcontroller and saved in an intermediate location in the microcontroller's internal volatile memory. The RLA engine can then uncompress the boot data and store various portions of it in their final destinations (such as, for example, in respective registers).
    • 本发明的实施例涉及一种包括寄存器负载辅助引擎的微控制器。 微控制器可以包括没有或最小的存储引导数据的非易失性存储器。 因此,大多数引导数据可以存储在微控制器外部的非易失性存储器中。 外部电路可以读取外部定位的非易失性存储器,并将压缩的引导数据发送到微控制器。 引导数据可以原始地以压缩形式存储在外部非易失性存储器中,或者可以由外部电路压缩。 引导数据可以由微控制器接收并保存在微控制器内部易失性存储器的中间位置。 然后,RLA引擎可以解压缩引导数据并将其存储在其最终目的地(例如,在相应寄存器中)的各种部分。
    • 8. 发明申请
    • Full scale calibration measurement for multi-touch surfaces
    • 多点触摸表面的全尺寸校准测量
    • US20080158176A1
    • 2008-07-03
    • US11650039
    • 2007-01-03
    • Brian Richards LandSteven Porter HotellingRichard Wei Kwang Lim
    • Brian Richards LandSteven Porter HotellingRichard Wei Kwang Lim
    • G06F3/041
    • G06F3/0418
    • Normalization of regions of a sensor panel capable of detecting multi-touch events, or a sensor panel capable of detecting multi-hover events, is disclosed to enable each sensor in the sensor panel to trigger a virtual button in a similar manner, given the same amount of touch or hover. Each sensor produces an output value proportional to the level or amount of touch or hover. However, due to processing, manufacturing and physical design differences, the sensor output values can vary from region to region or panel to panel for a given amount of touch or hover. To normalize the sensor output values across regions, gain and offset information can be obtained in advance, stored in nonvolatile memory, and later used to normalize the sensor output values so that all regions in the sensor panel can trigger virtual buttons similarly, providing a uniform “response function” at any location on the sensor panel.
    • 公开了能够检测多触摸事件的传感器面板的区域的归一化,或者能够检测多悬停事件的传感器面板,以使得传感器面板中的每个传感器能够以类似的方式触发虚拟按钮,给定相同的方式 触摸量或悬停量。 每个传感器产生与触摸或悬停的水平或数量成比例的输出值。 然而,由于处理,制造和物理设计差异,传感器输出值可以在给定量的触摸或悬停之间因地区或面板到面板而变化。 为了在区域之间规范化传感器输出值,可以提前获得增益和偏移信息,存储在非易失性存储器中,然后用于归一化传感器输出值,以便传感器面板中的所有区域可以类似地触发虚拟按钮,从而提供均匀 传感器面板上任何位置的“响应功能”。
    • 10. 发明申请
    • NOISE DETECTION IN MULTI-TOUCH SENSORS
    • 多触发传感器的噪声检测
    • US20080158169A1
    • 2008-07-03
    • US11619584
    • 2007-01-03
    • Sean Erik O'ConnorWayne Carl Westerman
    • Sean Erik O'ConnorWayne Carl Westerman
    • G06F3/041H04M1/00
    • G06F3/0418
    • Multi-touch touch-sensing devices and methods are described herein. The touch sensing devices can include multiple sense points, each of which can be stimulated with a plurality of periodic waveforms having different frequencies to measure a touch value at the sense point. Noise at one or more of the frequencies can interfere with this measurement. Therefore, various noise detection (and rejection) techniques are described. The noise detection techniques include two-clean-frequency noise detection, one-clean-frequency noise rejection, and combined two-clean-frequency/one-clean-frequency noise detection. Each of the noise detection techniques can include statistical analyses of the sample values obtained. The touch sensing methods and devices can be incorporated into interfaces for a variety of electronic devices such as a desktop, tablet, notebook, and handheld computers, personal digital assistants, media players, and mobile telephones.
    • 这里描述了多触摸触摸感测装置和方法。 触摸感测装置可以包括多个感测点,每个感测点可以用具有不同频率的多个周期波形来刺激,以测量感测点处的触摸值。 一个或多个频率的噪声可能会干扰此测量。 因此,描述了各种噪声检测(和拒绝)技术。 噪声检测技术包括二清洁频率噪声检测,单清频率噪声抑制和组合二清洁频率/单清频率噪声检测。 每个噪声检测技术可以包括所获得的样本值的统计分析。 触摸感测方法和装置可以并入用于各种电子设备的接口,例如台式机,平板电脑,笔记本电脑和手持式计算机,个人数字助理,媒体播放器和移动电话。