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    • 32. 发明授权
    • Method for automatically setting transfer mode in line interface device
    • 在线路接口设备中自动设置传输模式的方法
    • US07346004B2
    • 2008-03-18
    • US10358340
    • 2003-02-05
    • Yoon-Jin KuYoung-Seok Kim
    • Yoon-Jin KuYoung-Seok Kim
    • H04L1/00
    • H04L1/243
    • Disclosed is a method for setting a transfer mode in a line interface device for supporting at least two modes. The method for automatically setting a data transfer mode of a line interface device includes the steps of: a) reading all modes supportable in a line interface mode, generating a test message for requesting a loopback operation according to the order of the read modes, and transmitting the test message via a transmission line; b) upon receiving the test message within a predetermined period of time, setting a transfer mode used for transferring the test message to a data conversion mode of the line interface device, and informing a main controller of the system of the data conversion mode setup; c) repeatedly performing the steps (a) and (b) to set the next mode according to the order of the modes, if the test message for requesting the loopback operation message is not received within the predetermined period of time; and d) transmitting a mode setup denial message to the main controller of the system, if it is impossible to set a mode after a mode setup trial has been applied to all the read modes.
    • 公开了一种用于设置用于支持至少两种模式的线路接口装置中的传送模式的方法。 用于自动设置线路接口设备的数据传输模式的方法包括以下步骤:a)读取在线路接口模式下可支持的所有模式,根据读取模式的顺序产生用于请求环回操作的测试消息;以及 通过传输线发送测试消息; b)在预定时段内收到测试消息后,将用于传送测试消息的传送模式设置为线路接口设备的数据转换模式,并向系统的主控制器通知数据转换模式设置; c)如果在预定时间段内没有接收到用于请求回送操作消息的测试消息,则重复执行步骤(a)和(b)以根据模式的顺序设置下一个模式; 以及d)如果在模式设置试用已应用于所有读取模式之后不可能设置模式,则将模式设置拒绝消息发送到系统的主控制器。
    • 35. 发明授权
    • MPEG-2 decoding system and method
    • MPEG-2解码系统及方法
    • US07400652B2
    • 2008-07-15
    • US10861205
    • 2004-06-04
    • Kwan-Lae KimSung-Jin ParkJun-Ho KohYoung-Seok KimYun-Je Oh
    • Kwan-Lae KimSung-Jin ParkJun-Ho KohYoung-Seok KimYun-Je Oh
    • H04H20/28H04H11/02
    • H04N21/4383H04N5/4401H04N21/4334H04N21/434H04N21/4345H04N21/4384
    • In an MPEG-2 decoding system, a transport decoder decodes a transport packet corresponding to a Program Identification (PID) from an input transport stream, and retrieves a Program Association Table/Program Map Table PAT/PMT) from the stream when it is requested to retrieve Program Specific lnformation (PSI). A pre-decoder checks PSI stored in a PSI memory in response to a request to change to a desired channnel, reads PIDs of transport packets for a Packetized Elementary Stream (PES) of a program corresponding to the desired channel from the PSI memory to provide it to the transport decoder, receives the PAT/PMT and updates the contents of the memory using the PAT/PMT. After decoding, PSI previously extracted therefrom is stored in the memory. PIDs of transport packets for the PES of desired program are obtained referring to the stored PSI, and transport packets having the PIDs are retrieved and decoded.
    • 在MPEG-2解码系统中,传输解码器从输入传输流解码对应于节目识别(PID)的传输分组,并且在请求时从流中检索节目关联表/节目映射表PAT / PMT) 检索程序特定信息(PSI)。 响应于要改变到所需信道的请求,预解码器检查存储在PSI存储器中的PSI,从PSI存储器读取对应于期望信道的节目的分组化基本流(PES)的传输分组的PID,以提供 它到传输解码器,接收PAT / PMT,并使用PAT / PMT更新存储器的内容。 在解码之后,先前提取的PSI被存储在存储器中。 通过存储的PSI获得所需节目的PES的传输分组的PID,并且检索并解码具有PID的传输分组。
    • 36. 发明授权
    • Double-coated optical fiber
    • 双层光纤
    • US07088897B2
    • 2006-08-08
    • US10783244
    • 2004-02-20
    • Young-Seok KimSung-Koog OhJae-Ho Lee
    • Young-Seok KimSung-Koog OhJae-Ho Lee
    • G02B6/02G02B6/22
    • G02B6/245G02B6/02395
    • A double-coated optical fiber and method includes providing a core that serves as a light transmission medium. A cladding surrounds the core and has a smaller reflective index than the core. A primary coating layer is formed of a UV-cured polymer around the clad, and a secondary coating layer is formed of a UV-cured polymer around the primary coating layer, to a thickness ranging from about 22 to 37.5 μm in order to obtain a coating strip force ranging from about 1.0 to 1.63 N and a dynamic stress corrosion parameter ranging from 20 to 29. The primary and secondary coating layers can be formed by a wet on wet or wet on dry process.
    • 双层光纤和方法包括提供用作光传输介质的芯。 包层围绕核心并且具有比核心更小的反射指数。 初级涂层由包层周围的紫外线固化聚合物形成,第二涂层由主涂层周围的紫外线固化聚合物形成,厚度范围为22-37.5μm,以获得 涂层条带力范围为约1.0至1.63N,动态应力腐蚀参数为20至29.初级和次级涂层可以通过湿法或湿法干法形成。
    • 37. 发明申请
    • Connector assembly for corrosive gas supply pipe
    • 用于腐蚀性气体供应管的连接器组件
    • US20060061100A1
    • 2006-03-23
    • US11202499
    • 2005-08-12
    • Do-In ChoiYoung-Seok KimYun-Je OhJong-Hun Lee
    • Do-In ChoiYoung-Seok KimYun-Je OhJong-Hun Lee
    • F16L17/00
    • F16L9/18F16L49/06
    • A connector assembly for coupling a corrosive gas supply pipe with a glass tube in an apparatus for fabricating an optical fiber preform using vapor deposition is disclosed. The connector assembly includes a first connector formed on an inner periphery thereof with a threaded portion, a second connector having a stepped surface on an inner surface and formed on an outer periphery with a threaded portion threadedly engaged with the first connector, an O-ring installed in the first connector and in close contact with the stepped surface when the second connector is threadedly engaged with the first connector, and resilient means for urging the O-ring against the stepped surface. The connector assembly consistently applies a resilient force to the O-ring functioning as a seal between the first and second connectors. For a long-running operation, even though the O-ring is cured, the fitting maintains a consistent sealing state to prevent metal material from being oxidized by the corrosive gas. As a result, fine oxidized metal particulars do not infiltrate into the gas supply pipe to prevent the optical fiber preform from deteriorating.
    • 公开了一种用于在用于使用气相沉积制造光纤预制件的装置中将腐蚀性气体供应管与玻璃管连接的连接器组件。 连接器组件包括在其内周上形成有螺纹部分的第一连接器,在内表面上具有台阶表面的第二连接器,并且在外周上形成有与第一连接器螺纹接合的螺纹部分,O形环 安装在第一连接器中并且当第二连接器与第一连接器螺纹接合时与台阶表面紧密接触;以及弹性装置,用于将O形环推压到台阶表面。 连接器组件一致地向作为第一和第二连接器之间的密封件的O形环施加弹性力。 对于长时间运行的操作,即使O形圈固化,配件保持一致的密封状态,以防止金属材料被腐蚀性气体氧化。 结果,细小的氧化金属细节不会渗入气体供应管中,以防止光纤预制件变质。