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    • 4. 发明授权
    • Language or script-based character set conversions per-application program
    • 基于语言或基于脚本的字符集转换每应用程序
    • US07389474B2
    • 2008-06-17
    • US10377436
    • 2003-02-28
    • Bjorn C. RettigYong GuoHouman Pournasseh
    • Bjorn C. RettigYong GuoHouman Pournasseh
    • G06F7/00
    • G06F17/2217
    • A system and method that simulate a system locale for non-Unicode application programs having languages that do not correspond to the system locale, to appropriately convert text data via a character set according to the application's native language. A shim mechanism converts the data in a program's relevant function calls based on a character set codepage for the program that corresponds to the program's language. The conversion is performed on a program-by-program basis, whereby multiple programs can properly execute simultaneously, even when programs have different languages and thus different character set codepages. Automatic language detection is provided, when possible, to determine the appropriate system locale to simulate via a corresponding codepage table. A user interface in the form of a wizard is provided to associate selected script-dependent applications with the needed conversion information, and/or to manually receive a language when automatic detection is unsuccessful.
    • 一种系统和方法,用于模拟具有不符合系统区域设置的语言的非Unicode应用程序的系统区域设置,以便根据应用程序的母语通过字符集适当地转换文本数据。 垫片机构根据与程序语言相对应的程序的字符集代码页,在程序的相关函数调用中转换数据。 该转换是在逐个程序的基础上执行的,即使程序具有不同的语言,因此不同的字符集代码页也可以同时执行多个程序。 如果可能,提供自动语言检测,以确定适当的系统区域设置,以通过相应的代码页表模拟。 提供了向导形式的用户界面,用于将选定的与脚本有关的应用与所需的转换信息相关联,和/或在自动检测失败时手动接收语言。
    • 6. 外观设计
    • Housing for high-fidelity earbud
    • USD853359S1
    • 2019-07-09
    • US29634907
    • 2018-01-25
    • Yong Guo
    • Yong Guo
    • FIG. 1 is a front, right side, top perspective view of the housing for high-fidelity earbud showing my new design;
      FIG. 2 is a rear, left side bottom perspective view thereof;
      FIG. 3 is a front elevational view thereof;
      FIG. 4 is a rear elevational view thereof;
      FIG. 5 is a left side elevational view thereof;
      FIG. 6 is a right side elevational view thereof;
      FIG. 7 is a top plan view thereof with the ear bud oriented rearwardly;
      FIG. 8 is a bottom plan view thereof;
      FIG. 9 is a front, left side, bottom perspective view of the housing for high-fidelity earbud showing my new design;
      FIG. 10 is a rear, left side, bottom perspective view thereof;
      FIG. 11 is an inverted rear elevational view thereof;
      FIG. 12 is a rear, inverted, elevational view thereof; and
      FIG. 13 is a left side elevational view thereof;
      FIG. 14 is a right side elevational view thereof;
      FIG. 15 is a top plan view thereof;
      FIG. 16 is a bottom plan view thereof; and,
      FIG. 17 is a usage perspective view thereof.
      The broken lines depict environment that forms no part of the claimed design.
    • 7. 发明申请
    • METHOD FOR PRODUCING LOWER SIZE, HIGH TENACITY AND HIGH MODULUS POLYETHYLENE FIBER
    • 用于生产较小尺寸,高密度和高模量聚乙烯纤维的方法
    • US20100187716A1
    • 2010-07-29
    • US12671962
    • 2008-09-11
    • Nianci YangYuanjun ZhangBo GaoZhiquan WuMingqing LinChuanqing WuYong GuoYunbo ZhouHaijun Lin
    • Nianci YangYuanjun ZhangBo GaoZhiquan WuMingqing LinChuanqing WuYong GuoYunbo ZhouHaijun Lin
    • B29C47/08
    • D01D5/06D01D4/02D01F6/04D02J1/228
    • The present invention discloses a process for producing low-titer, high-strength and high-modulus polyethylene fibers, comprising the following steps: dissolving the ultra-high molecular weight polyethylene into paraffin oil with a low viscosity to form a spinning solution with a concentration of 3˜15%; extruding the spinning solution through a thin spinneret with at least 10 orifices having a diameter φ of 0.7˜0.8 mm and a length/diameter ratio of 10˜12, by applying a high pressure in the range of 2.5±1.0 MPa to the spinning solution, such that the fluid in the orifices is extruded at a shear rate of 200˜3 500 sec−1; and then performing a jet stretch at a deformation rate of 200˜5 000 min−1 within an air-gap of 10˜15 mm between the spinneret and the quench bath surface; feeding the jet-stretched fluid into the quench bath to form gel filaments; extracting and drying the gel filaments; and performing a multistage ultrahigh post stretch on the dried gel filaments with a stretch ratio of 15 or less. In this process, the solution is extruded at a high rate by using a spinneret with small orifice diameter, thereby achieving a high shear rate and a high deformation rate, so the present process is a novel and effective spinning process.
    • 本发明公开了一种生产低滴度,高强度,高模量聚乙烯纤维的方法,包括以下步骤:将超高分子量聚乙烯溶解在低粘度的石蜡油中,形成浓度为 3〜15% 通过具有至少10个具有直径&孔的孔的薄喷丝板挤出纺丝溶液。 通过向纺丝溶液施加2.5±1.0MPa的高压,使得孔中的流体以200〜200的剪切速率挤出,其中0.7〜0.8mm,长径比为10〜12。 3 500秒-1; 然后在喷丝板和淬火槽表面之间的10〜15mm的气隙内以200〜5000min -1的变形率进行喷射拉伸; 将喷射流体进料到骤冷浴中以形成凝胶长丝; 提取和干燥凝胶丝; 并且在拉伸比为15以下的干燥凝胶长丝上进行多级超高拉伸。 在该方法中,通过使用孔径小的喷丝头,以高速挤出溶液,从而实现高剪切速率和高变形率,因此本方法是一种新颖有效的纺丝工艺。
    • 9. 发明申请
    • INTEGRATED REMOTE CONTROL SIGNALING
    • 综合远程控制信号
    • US20070292135A1
    • 2007-12-20
    • US11423381
    • 2006-06-09
    • Yong GuoYu-Shian LeeMingcheng XuShing-Wu P. Tzeng
    • Yong GuoYu-Shian LeeMingcheng XuShing-Wu P. Tzeng
    • H04B10/00
    • H04B10/1143H04B10/299
    • A serial transmission protocol and architecture are provided that can be used to forward remote control data between sink (e.g., DTV) and source (e.g., DVD player) devices, in addition to other data such as video and/or audio or other payload. The target device need not be in the line of sight of the remote control beam. Daisy-chained devices will pass the remote control signal to the appropriate target device, so that the user can point any remote control at the DTV or other conveniently located device in the system, and still control the actual target device. The communication channel that carries payload, processing control, and remote control data can be implemented with wired or wireless of technology (or a combination thereof). In one particular embodiment, the communication channel is implemented with a single fiber. A number of presentation and entertainment system applications that employ remote control technology (e.g., home theater, audio, and computer implemented systems) can benefit from embodiments of the present invention.
    • 提供了串行传输协议和架构,除了诸如视频和/或音频或其他有效载荷的其他数据之外,还可以用于在宿(例如,DTV)和源(例如,DVD播放器)设备之间转发远程控制数据。 目标设备不需要在远程控制光束的视线中。 菊花链式设备将通过遥控信号到相应的目标设备,以便用户可以将任何遥控器指向DTV或系统中其他方便定位的设备,并仍然控制实际的目标设备。 携带有效载荷,处理控制和遥控数据的通信信道可以用有线或无线技术(或其组合)来实现。 在一个特定实施例中,通信信道用单个光纤实现。 使用远程控制技术(例如家庭影院,音频和计算机实现的系统)的许多演示和娱乐系统应用可以受益于本发明的实施例。