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    • 1. 发明专利
    • Emi shield as optical connector
    • EMI屏蔽作为光纤连接器
    • JP2010044135A
    • 2010-02-25
    • JP2008206630
    • 2008-08-11
    • Liburdi Francescoフランシスコ・リバーディFrancesco Liburdi
    • FRANCESCO LIBURDI
    • G02B6/42H01L31/02H01S5/022
    • PROBLEM TO BE SOLVED: To provide an electromagnetic interference (EMI) shield for an optical connector. SOLUTION: The EMI shield includes a socket housing 10 having a base 10b and a canopy 10a, and forward and backward openings. The EMI shield also includes an optical transceiver 12 placed near the backward opening of a socket housing, and two components used for signal transformation from optical and electric signals. The EMI shield also includes a backward housing 14 that is placed near the backward opening of a socket housing and keeps the optical transceiver at a predetermined position, a backward shield 16 existing in the backward opening of the socket housing, and a forward shield 18 including two independent optical sub-housing shields 18a and 18b. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:为光连接器提供电磁干扰(EMI)屏蔽。 解决方案:EMI屏蔽包括具有底座10b和顶盖10a以及向前和向后开口的插座壳体10。 EMI屏蔽还包括放置在插座壳体的后开口附近的光收发器12和用于从光信号和电信号进行信号变换的两个组件。 EMI屏蔽还包括一个向后的壳体14,其放置在插座壳体的向后开口附近,并将光收发器保持在预定位置,存在于插座壳体的向后开口中的后屏蔽件16以及包括 两个独立的光学子壳体屏蔽18a和18b。 版权所有(C)2010,JPO&INPIT
    • 3. 发明授权
    • Process of making a jack-type electrical connector
    • 制造千斤顶电连接器的工艺
    • US4541174A
    • 1985-09-17
    • US616874
    • 1984-06-04
    • Francesco Liburdi
    • Francesco Liburdi
    • H01R43/16H01R43/18H01R43/24H01R43/00
    • H01R43/16H01R43/24H01R24/64H01R43/18Y10S439/937Y10T29/4922
    • The invention is a process of simultaneously making a plurality of jack-type electrical connectors characterized by the steps of molding together a plurality of housings (10); stamping and forming a plurality of groups (20) of electrical conductors (21) in the same spaced relationship as the housings (10); molding to each group of electrical conductors (21) a respective plastic member (50); placing the free ends of each group (20) of electrical conductors (21) through the passages (12) in respective housings (10) so that they extend into the housing cavities (13); forming the remaining portion of the electrical conductors (21) into the grooves (11) in respective housings (10); snapping the plastic members (50) into the recesses (18) in respective housings (10). The housings may then be separated for individual use.
    • 本发明是同时制造多个插座式电连接器的过程,其特征在于将多个壳体(10)模制在一起的步骤; 以与壳体(10)相同的间隔的关系冲压并形成多个电导体组(20); 模制到每组电导体(21)相应的塑料构件(50); 将电导体(21)的每个组(20)的自由端通过相应的壳体(10)中的通道(12)放置,使得它们延伸到壳体空腔(13)中; 将电导体(21)的剩余部分形成在各个壳体(10)中的凹槽(11)中; 将塑料构件(50)卡扣到各个壳体(10)中的凹部(18)中。 然后可以将壳体分开以供个别使用。
    • 4. 发明授权
    • IEEE 1394 to coaxial cable adapter
    • IEEE 1394到同轴电缆适配器
    • US07380044B1
    • 2008-05-27
    • US11405074
    • 2006-04-17
    • Francesco Liburdi
    • Francesco Liburdi
    • G06F13/20G06F13/12
    • H04N7/106H04L12/2832H04L12/40117H04L12/4612H04L2012/2849H04N21/23602H04N21/4342
    • An apparatus for allowing IEEE-1394-enabled devices to communicate with one another across an existing coaxial cable network in, for example, a house. Many houses have been “wired for cable” and have such a cable network in place. The network is, in its native state, unsuitable for IEEE-1394 communication. The apparatus allows processing signals from an IEEE-1394-enabled device for transmission across a coax. Signals received are converted and then provided to IEEE-1394 devices connected to the apparatus. One use for the apparatus is interconnecting audio/visual devices, for example high definition television receivers, DVD players, audio components and the like located in throughout a house to one another. DTCP encryption and decryption may be provided. The apparatus may be equipped with an optional SMI connector to allow communication over an optical fiber in lieu of the coaxial network. The apparatus is self-powered, deriving necessary power from the IEEE-1394 interface itself.
    • 一种允许IEEE-1394支持的设备通过例如房屋中的现有同轴电缆网络彼此通信的装置。 许多房屋已经“有线连接”,并且有这样的有线网络。 该网络处于原始状态,不适合IEEE-1394通信。 该装置允许处理来自IEEE-1394的设备的信号,用于通过同轴电缆进行传输。 接收的信号被转换,然后提供给连接到该设备的IEEE-1394设备。 该设备的一个用途是将整个房屋中的音频/视频设备(例如高清晰度电视接收机,DVD播放器,音频组件等)互连。 可以提供DTCP加密和解密。 该装置可以配备有可选的SMI连接器,以允许通过光纤代替同轴网络进行通信。 该装置是自供电的,从IEEE-1394接口本身获得必要的电力。
    • 5. 发明授权
    • EMI shield for optical connector
    • 用于光连接器的EMI屏蔽
    • US07367719B1
    • 2008-05-06
    • US11299404
    • 2005-12-12
    • Francesco Liburdi
    • Francesco Liburdi
    • G02B6/36
    • G02B6/4201G02B6/4269G02B6/4277
    • An electromagnetic interference (EMI) shield for an optical connector. The EMI shield has a socket housing with a base and a canopy. The socket housing also has a front and a rear opening. The EMI shield contains an optical transceiver that is placed near the rear opening of the socket housing and contains two components used for signal conversion from optical and electrical signals. The EMI shield further contains a rear housing that is placed near the rear opening of the socket housing for maintaining the optical transceiver in a predetermined position. The EMI shield also contains a rear shield that is at the rear opening of the socket housing and a front shield that includes two, independent, optical sub-housing shields.
    • 用于光连接器的电磁干扰(EMI)屏蔽。 EMI屏蔽罩有一个带有底座和顶盖的插座外壳。 插座壳体还具有前开口和后开口。 EMI屏蔽包含一个光收发器,放置在插座外壳的后开口附近,并包含两个组件,用于从光和电信号进行信号转换。 EMI屏蔽还包括后壳体,其被放置在插座壳体的后开口附近,用于将光收发器保持在预定位置。 EMI屏蔽还包含位于插座壳体的后开口处的后屏蔽件和包括两个独立的光学子壳体屏蔽件的前屏蔽件。