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    • 31. 发明授权
    • Integrating external voices
    • 整合外部声音
    • US07395208B2
    • 2008-07-01
    • US10260184
    • 2002-09-27
    • Georgios ChrysanthakopoulosBrian L. Schmidt
    • Georgios ChrysanthakopoulosBrian L. Schmidt
    • G01L11/00G01L21/00
    • A63F13/424A63F13/10A63F13/12A63F13/87A63F2300/572A63F2300/6063G10L19/00G10L19/0019
    • Integrating voice communication into a game console to minimize or eliminate voice data processing by a primary processor. Input voice data from a microphone or a network is processed by a secondary processor and stored in a circular buffer. Drift between storing and reading the processed voice data may result from differing data rates, interrupts, and other latencies. If the circular buffer, accumulates an amount of data that exceeds a predefined threshold corresponding to a human perceptible latency, a pointer in the circular buffer is reset, so that only a portion of the processed voice data is output. A stream of packet contexts each indicate a location and length of voice data in the circular buffer to be output. Preferably, the output voice data is encoded in a standard digital format, such as universal serial bus. The output voice data may be communicated to a network or a sound transducer.
    • 将语音通信集成到游戏机中以最小化或消除主处理器的语音数据处理。 从麦克风或网络输入语音数据由二级处理器处理并存储在循环缓冲器中。 存储和读取已处理语音数据之间的漂移可能是由不同的数据速率,中断和其他延迟引起的。 如果循环缓冲器累积超过与人类可感知等待时间相对应的预定义阈值的数据量,则循环缓冲器中的指针被重置,从而仅输出一部分经处理的语音数据。 分组上下文流每个表示要输出的循环缓冲器中的语音数据的位置和长度。 优选地,输出语音数据以诸如通用串行总线的标准数字格式编码。 输出语音数据可以被传送到网络或声音传感器。
    • 36. 发明授权
    • Strategies for reading information from a mass storage medium using a cache memory
    • 使用高速缓冲存储器从大容量存储介质读取信息的策略
    • US07747823B2
    • 2010-06-29
    • US12029304
    • 2008-02-11
    • Brian L. SchmidtJonathan E. LangeTimothy R. Osborne
    • Brian L. SchmidtJonathan E. LangeTimothy R. Osborne
    • G06F12/08
    • G06F12/0866G06F12/0862
    • Cache management strategies are described for retrieving information from a storage medium, such as an optical disc, using a cache memory including multiple cache segments. A first group of cache segments can be devoted to handling the streaming transfer of a first type of information, and a second group of cache segments can be devoted to handling the bulk transfer of a second type of information. A host system can provide hinting information that identifies which group of cache segments that a particular read request targets. A circular wrap-around fill strategy can be used to iteratively supply new information to the cache segments upon cache hits by performing pre-fetching. Various eviction algorithms can be used to select a cache segment for flushing and refilling upon a cache miss, such as a least recently used (LRU) algorithm or a least frequently used (LFU) algorithm.
    • 描述了用于使用包括多个高速缓存段的高速缓冲存储器从存储介质(例如光盘)检索信息的高速缓存管理策略。 第一组缓存段可以用于处理第一类型的信息的流传输,并且第二组高速缓存段可用于处理第二类型的信息的批量传送。 主机系统可以提供用于标识特定读取请求所针对的哪一组缓存段的提示信息。 循环回卷填充策略可以用于通过执行预取来在缓存命中时向缓存段迭代地提供新的信息。 可以使用各种驱逐算法来选择用于在高速缓存未命中冲洗和重新填充的高速缓存段,例如最近最少使用(LRU)算法或最不常用的(LFU)算法。
    • 38. 发明申请
    • Method of Sealing a capacitor fill port
    • 密封电容器填充口的方法
    • US20080307621A1
    • 2008-12-18
    • US12228680
    • 2008-08-14
    • Brian L. Schmidt
    • Brian L. Schmidt
    • H01G9/00
    • H01G9/004A61N1/375A61N1/3956H01G9/08Y10T29/417
    • An apparatus comprising a capacitor stack, including one or more substantially planar anode layers, and one or more substantially planar cathode layers. Additionally, the capacitor has a case having a first opening and a second opening, the first opening sized for passage of the capacitor stack, and a cover substantially conforming to the first opening and sealingly connected to the first opening. Also, the capacitor includes a plate substantially conforming to the second opening and sealingly connected to the second opening, the plate defining an aperture. Additionally, the capacitor includes a plug substantially conforming to the aperture in the plate, the plug sealingly connected to the plate. The capacitor stack is disposed in the case, and the terminal is in electrical connection with the case and at least one capacitor electrode.
    • 一种包括电容器堆叠的装置,包括一个或多个基本上平面的阳极层以及一个或多个基本平坦的阴极层。 此外,电容器具有壳体,其具有第一开口和第二开口,第一开口的尺寸设置成用于电容器叠层的通过,以及基本上符合第一开口并密封地连接到第一开口的盖。 此外,电容器包括基本上符合第二开口并且密封地连接到第二开口的板,该板限定孔。 此外,电容器包括基本上符合板中的孔的插头,插头密封地连接到板。 电容器堆叠设置在壳体中,并且端子与壳体和至少一个电容器电极电连接。
    • 39. 发明申请
    • Lamination of Lithium Battery Elements for Implantable Medical Devices
    • 用于植入式医疗器械的锂电池元件的层压
    • US20080221629A1
    • 2008-09-11
    • US11684317
    • 2007-03-09
    • Adam J. MorganDaniel J. FosterBrian L. Schmidt
    • Adam J. MorganDaniel J. FosterBrian L. Schmidt
    • A61N1/02
    • A61N1/378H01M4/04H01M4/405H01M4/70H01M10/052H01M10/0585Y10T29/10Y10T29/49108Y10T29/53139
    • A method includes the step of providing a sheet of lithium and a sheet of substrate material. The method further includes the step of pressing the sheet of lithium and the sheet of substrate material together in a die, the die having at least one surface that includes a plurality of force concentrating features configured to create regions of relatively higher pressure and regions of relatively lower pressure in at least one of the sheet of lithium and the sheet of substrate material. In another embodiment, a method includes the steps of providing a sheet of lithium material and a substrate material, and applying force to the sheet of lithium and the sheet of substrate material to form a plurality of protrusions on at least one of the sheet of lithium and the sheet of substrate material. The method includes the further step of pressing at least a portion of the sheet of lithium to the substrate material with sufficient force to at least partially deform the protrusions.
    • 一种方法包括提供一片锂片和一片基片材料的步骤。 该方法还包括将模具中的锂片和基片材料压在一起的步骤,所述模具具有至少一个表面,所述至少一个表面包括多个强制聚焦特征,所述力集中特征被构造成产生相对较高压力的区域和相对较大的区域 在锂片和基片材料片中的至少一个中降低压力。 在另一个实施方案中,一种方法包括以下步骤:提供锂材料片和基底材料片,并且将力施加到锂片和基片材料片上,以在锂片中的至少一个上形成多个突起 和基片材料片。 该方法包括进一步的步骤,用足够的力将片状锂的至少一部分压到衬底材料上,以至少部分地使突起变形。
    • 40. 发明申请
    • STRATEGIES FOR READING INFORMATION FROM A MASS STORAGE MEDIUM USING A CACHE MEMORY
    • 使用高速缓存存储器从大容量存储介质读取信息的策略
    • US20080133839A1
    • 2008-06-05
    • US12029304
    • 2008-02-11
    • Brian L. SchmidtJonathan E. LangeTimothy R. Osborne
    • Brian L. SchmidtJonathan E. LangeTimothy R. Osborne
    • G06F12/08
    • G06F12/0866G06F12/0862
    • Cache management strategies are described for retrieving information from a storage medium, such as an optical disc, using a cache memory including multiple cache segments. A first group of cache segments can be devoted to handling the streaming transfer of a first type of information, and a second group of cache segments can be devoted to handling the bulk transfer of a second type of information. A host system can provide hinting information that identifies which group of cache segments that a particular read request targets. A circular wrap-around fill strategy can be used to iteratively supply new information to the cache segments upon cache hits by performing pre-fetching. Various eviction algorithms can be used to select a cache segment for flushing and refilling upon a cache miss, such as a least recently used (LRU) algorithm or a least frequently used (LFU) algorithm.
    • 描述了用于使用包括多个高速缓存段的高速缓冲存储器从存储介质(例如光盘)检索信息的高速缓存管理策略。 第一组缓存段可以用于处理第一类型的信息的流传输,并且第二组高速缓存段可用于处理第二类型的信息的批量传送。 主机系统可以提供用于标识特定读取请求所针对的哪一组缓存段的提示信息。 循环回卷填充策略可以用于通过执行预取来在缓存命中时向缓存段迭代地提供新的信息。 可以使用各种驱逐算法来选择用于在高速缓存未命中冲洗和重新填充的高速缓存段,例如最近最少使用(LRU)算法或最不常用的(LFU)算法。