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    • 1. 发明授权
    • OPTISCHER VERBINDER
    • EP1728112B1
    • 2010-12-15
    • EP05706955.1
    • 2005-01-21
    • MOLEX INCORPORATED
    • SCHEMPP, OttoGERNER, Mathias
    • G02B6/42
    • G02B6/421G02B6/3835G02B6/4292
    • The invention relates to a connector for producing multimedia connections in motor vehicles in accordance with the MOST® standard. The invention aims at providing an optical connector that can be produced in an easy, rapid and economical manner, which ensures optical connection with reduced damping and grater precision and constancy. The MOST connector comprises at least one optical connecting element (12, 14) with a fiber receiving sheath (32, .33) in which the optical fiber section (72, 74) is arranged, wherein said optical fiber section (72, 74) is fixed directly in the fiber receiving sheath (32, 33) by means of clamping elements (52a-52d). According to the invention, the fiber receiving sheath (32, 33) has a front side (39) in the area of the front optical connecting surface (82) of the optical fiber section (72, 74) and the clamping elements (52a-52d) or latches are spaced longitudinally from the front side (39) of the fiber receiving sheath.
    • 本发明涉及一种用于根据MOST®标准在机动车辆中产生多媒体连接的连接器。 本发明旨在提供一种能够以简单,快速和经济的方式制造的光学连接器,其确保光学连接,减少阻尼和磨碎机精度和稳定性。 该MOST连接器包括至少一个光学连接元件(12,14),该光学连接元件具有光纤部分(72,74)布置在其中的光纤接收护套(32,33),其中所述光纤部分(72,74) 通过夹紧元件(52a-52d)直接固定在光纤接收护套(32,33)中。 根据本发明,光纤接收护套(32,33)在光纤部分(72,74)的前光学连接表面(82)的区域中具有前侧(39),并且夹持元件(52a- 52d)或闩锁与光纤接收护套的前侧(39)纵向间隔开。
    • 2. 发明公开
    • OPTICAL CONNECTOR ASSEMBLY
    • 光连接器组件
    • EP1853957A1
    • 2007-11-14
    • EP06707336.1
    • 2006-02-28
    • Molex Incorporated
    • SCHEMPP, OttoGERNER, Mathias
    • G02B6/38G02B6/42
    • G02B6/421G02B6/3897G02B6/4249G02B6/4292
    • The invention relates to an optical connector assembly for connecting optical waveguides to electro-optical components, in particular for producing multimedia connections in motor vehicles, for example in accordance with the MOST® standard. The connector assembly comprises a connector (12) having a mating connector receptacle (16) for receiving a complementary mating connector (112), the mating connector (112) for forming the mating connection with the connector (12), the optical waveguide (128), which is held at a contact end (138) by means of the mating connector (112) in order to establish an optical connection between the optical waveguide (128) and the electro-optical component (58) when the mating connection is formed between the connector (12) and the mating connector (112), and the electro-optical component (58), which is arranged on a rear side (22) of the connector (12) and has an optically active area (428) having a predetermined diameter for coupling optical signals in/out, the connector (12) having a connection element (68) for receiving the optical waveguide (128), an optical coupling element (28) being arranged in the connector (12) between the optical waveguide (128) and the electro-optical component (58) for transmitting light waves from the optical waveguide (128) to the electro-optical component (58), or vice versa, and the coupling element (28) comprising an essentially cylindrical optical waveguide section (318), which has a larger diameter than the optical waveguide (128).