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    • 3. 发明授权
    • System for controlling an automatic transmission throttle valve and method of use
    • 控制自动变速箱节流阀的系统及其使用方法
    • US06855091B1
    • 2005-02-15
    • US10434120
    • 2003-05-09
    • Stephen G. Holmes
    • Stephen G. Holmes
    • F02D9/02F02D9/10F02D11/04F16H59/30
    • F02D11/04F02D9/1065F02D2009/0255Y10T477/693
    • A system for controlling a transmission throttle valve allows the transmission response to be quickly adjusted. The system includes an adapter assembly which is mounted on the rotatable throttle member of a fuel management device. A cam assembly is selectively positionable on the adapter assembly so as to adjust the rate of throttle valve cable pull. The cam assembly has guide pins which move within guide slots on the adapter assembly. The cam assembly also has an adjustment slot which receives an adjustment screw connected to the adapter assembly. The cam assembly is positioned on the adapter assembly so that the adjustment screw occupies a desired location along the adjustment slot, and then the adjustment screw is tightened to lock the cam assembly in place.
    • 用于控制变速器节流阀的系统允许快速调节变速器响应。 该系统包括安装在燃料管理装置的可旋转节流部件上的适配器组件。 凸轮组件可选择性地定位在适配器组件上,以便调节节流阀电缆拉动的速率。 凸轮组件具有在适配器组件上的引导槽内移动的导销。 凸轮组件还具有接收连接到适配器组件的调节螺钉的调节槽。 凸轮组件定位在适配器组件上,使得调节螺钉沿着调节槽占据期望的位置,然后拧紧调节螺钉以将凸轮组件锁定就位。
    • 4. 发明授权
    • Handheld graphics text processing system and method
    • 手持图形文字处理系统及方法
    • US07463260B1
    • 2008-12-09
    • US11005763
    • 2004-12-06
    • Stephen G. Holmes
    • Stephen G. Holmes
    • G06T15/00
    • G06T1/20G06K9/00986G06K9/228G06K9/24G06K2209/01G06Q40/12
    • Information associated with representation of textual information can be captured, stored and manipulated in a convenient and efficient automated manner that conserves resources. A handheld text image processing device can include a camera, a graphics processing component, a text processing component and a memory. The camera captures digital picture information associated with text on an object. The graphics processing component performs graphics processing on the digital picture information that facilitate text recognition (e.g., transforms, rotations, etc.). The text processing component recognizes representations of the text in the digital picture information and converts the digital picture information associated with the text into a text file format. The memory stores the information in a text file format. The text file format can represent the textual information utilizing less bits than a file format in which the text information is captured. The text information can also be communicated in a text file format.
    • 与文本信息的表示相关联的信息可以以方便和有效的自动化方式被捕获,存储和操纵,从而节省资源。 手持式文本图像处理装置可以包括相机,图形处理部件,文本处理部件和存储器。 相机拍摄与物体上的文字相关的数字图片信息。 图形处理组件对促进文本识别(例如,变换,旋转等)的数字图像信息执行图形处理。 文本处理部件识别数字图像信息中的文本的表示,并将与文本相关联的数字图像信息转换为文本文件格式。 内存以文本文件格式存储信息。 文本文件格式可以使用比获取文本信息的文件格式少的位来表示文本信息。 文本信息也可以以文本文件格式传送。
    • 5. 发明授权
    • System for controlling an automatic transmission throttle valve
    • 控制自动变速箱节气门的系统
    • US06575875B2
    • 2003-06-10
    • US09767059
    • 2001-01-22
    • Stephen G. Holmes
    • Stephen G. Holmes
    • F16H5930
    • F02D11/04F02D2009/0257F02D2009/0279Y10T74/2045Y10T477/693
    • A system (20) for controlling a transmission throttle valve in a vehicle having a fuel management device (500) having a rotatable linkage member (508) includes an adapter plate (22) which is mountable beneath the fuel management device (500), a bracket (26) which is connectable to the adapter plate (22), and a throttle valve cable (30) which is connectable to the bracket (26). Throttle valve cable (30) has a tubular housing (32) which is fixedly connectable to bracket (26) and a cable (34) which is slidably disposed within tubular housing (32), the cable (34) having a first end (36) and an opposite second end connectable to the transmission throttle valve. First end (36) is selectively connectable along a slot (40. Different first end (36) connection positions along slot (40) result in correspondingly different rates of cable pull and therefore different transmission responses.
    • 一种用于控制具有燃料管理装置(500)的车辆中的变速器节流阀的系统(20),其具有可旋转连杆构件(508),包括安装在燃料管理装置(500)下方的适配器板(22) 可连接到适配板(22)的支架(26)和可连接到支架(26)的节气门电缆(30)。 节流阀电缆(30)具有可固定地连接到支架(26)的管状壳体(32)和可滑动地设置在管状壳体(32)内的电缆(34),电缆(34)具有第一端 )和可连接到变速器节流阀的相对的第二端。 第一端(36)可沿着槽(40)有选择地连接。沿着槽(40)的不同的第一端(36)连接位置导致相应不同的电缆拉动速率并因此导致不同的传输响应。
    • 6. 发明授权
    • Method and system for synchronizing audio processing modules
    • 用于同步音频处理模块的方法和系统
    • US07983772B2
    • 2011-07-19
    • US12005911
    • 2007-12-27
    • Stephen G. Holmes
    • Stephen G. Holmes
    • G06F17/00
    • G11B20/10527G06F3/16G11B20/10037G11B2020/10546G11B2020/1062
    • Embodiments of the present invention provide an audio system having wholly independent audio processing modules. The audio system includes a plurality of audio processing modules, a clock manager, a sample rate converter and a buffer. The audio processing modules are communicatively coupled to the clock manager and the buffer. The sample rate converter is communicatively coupled to the clock manager and the buffer. The buffer provides for storing audio data generated and consumed by the audio processing modules. The clock manager provides for determining the clock source of each audio processing module. The clock manager also provides for configuring the audio processing modules and the sample rate converter as a function the clock source of each audio processing module. The sample rate converter provides for synchronizing a flow rate of audio data generated by a first audio processing module and a flow rate of audio data consumed by a second audio processing module, when the clock source of the first and second audio processing modules are different.
    • 本发明的实施例提供一种具有完全独立音频处理模块的音频系统。 音频系统包括多个音频处理模块,时钟管理器,采样率转换器和缓冲器。 音频处理模块通信地耦合到时钟管理器和缓冲器。 采样率转换器通信地耦合到时钟管理器和缓冲器。 缓冲器用于存储由音频处理模块生成和消耗的音频数据。 时钟管理器提供用于确定每个音频处理模块的时钟源。 时钟管理器还提供将音频处理模块和采样率转换器配置为每个音频处理模块的时钟源的功能。 当第一和第二音频处理模块的时钟源不同时,采样率转换器提供使由第一音频处理模块产生的音频数据的流率和第二音频处理模块所消耗的音频数据的流率同步。
    • 7. 发明授权
    • Method and system for synchronizing audio processing modules
    • 用于同步音频处理模块的方法和系统
    • US07574274B2
    • 2009-08-11
    • US10824759
    • 2004-04-14
    • Stephen G. Holmes
    • Stephen G. Holmes
    • G06F17/00
    • G11B20/10527G06F3/16G11B20/10037G11B2020/10546G11B2020/1062
    • Embodiments of the present invention provide an audio system having wholly independent audio processing modules. The audio system includes a plurality of audio processing modules, a clock manager, a sample rate converter and a buffer. The audio processing modules are communicatively coupled to the clock manager and the buffer. The sample rate converter is communicatively coupled to the clock manager and the buffer. The buffer provides for storing audio data generated and consumed by the audio processing modules. The clock manager provides for determining the clock source of each audio processing module. The clock manager also provides for configuring the audio processing modules and the sample rate converter as a function the clock source of each audio processing module. The sample rate converter provides for synchronizing a flow rate of audio data generated by a first audio processing module and a flow rate of audio data consumed by a second audio processing module, when the clock source of the first and second audio processing modules are different.
    • 本发明的实施例提供一种具有完全独立音频处理模块的音频系统。 音频系统包括多个音频处理模块,时钟管理器,采样率转换器和缓冲器。 音频处理模块通信地耦合到时钟管理器和缓冲器。 采样率转换器通信地耦合到时钟管理器和缓冲器。 缓冲器用于存储由音频处理模块生成和消耗的音频数据。 时钟管理器提供用于确定每个音频处理模块的时钟源。 时钟管理器还提供将音频处理模块和采样率转换器配置为每个音频处理模块的时钟源的功能。 当第一和第二音频处理模块的时钟源不同时,采样率转换器提供使由第一音频处理模块产生的音频数据的流率和第二音频处理模块所消耗的音频数据的流率同步。