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    • 1. 发明授权
    • Optical connector for connecting a plurality of optical plugs to a
connector housing
    • 用于将多个光学插头连接到连接器壳体的光学连接器
    • US5528711A
    • 1996-06-18
    • US360355
    • 1994-12-21
    • Shin'ichi IwanoRyo NagaseKazunori KanayamaEtsuji SugitaYasuhiro Ando
    • Shin'ichi IwanoRyo NagaseKazunori KanayamaEtsuji SugitaYasuhiro Ando
    • G02B6/38H01R13/62G02B6/36
    • G02B6/3893G02B6/3817G02B6/3821G02B6/3825G02B6/3849G02B6/3869G02B6/3875G02B6/3879G02B6/3897H01R13/62G02B6/3822G02B6/3877
    • To realize an optical fiber connector coupled or decoupled by simple insertion and removal operation without applying ferrule connecting force to other elements (package board or back panel), the optical connector comprises a first housing (33); a second housing (34); a third housing (36) slidably housed within the second housing; a first engage mechanism (37, 38) provided between the second and third housings, for engaging these two housings when the first and third housings are not coupled; a second engage mechanism (39, 40) provided between the first and third housings, for engaging these two housings when the first housing is coupled to second and third housings; a first release member (41) provided for the first housings, for releasing the first engage mechanism when the third housing is engaged to the first housing; and a second release member (42) provided for the second housing, for releasing the second engage mechanism when the second housing is coupled to the third housing or the first housing is decoupled from the second and third housings. Further, to allow the optical connector to be preferably applicable to a plug-in connector with the smallest possible dimensions and with the highest possible package density, a novel connector floating structure, a novel slidable ferrule supporting structure, a strong optical plug connecting mechanism, a reliable optical plug or jack insertion structure, a cleanable and replaceable connector jack, etc. are also disclosed.
    • 为了实现通过简单的插入和移除操作而耦合或解耦的光纤连接器,而不将套圈连接力施加到其它元件(封装板或后面板)上,光学连接器包括第一壳体(33); 第二壳体(34); 可滑动地容纳在所述第二壳体内的第三壳体(36) 设置在所述第二和第三壳体之间的第一接合机构(37,38),用于当所述第一和第三壳体未联接时,用于接合所述两个壳体; 设置在第一和第三壳体之间的第二接合机构(39,40),用于当第一壳体联接到第二和第三壳体时接合这两个壳体; 为所述第一壳体设置的第一释放构件(41),用于当所述第三壳体接合到所述第一壳体时释放所述第一接合机构; 以及为第二壳体设置的第二释放构件(42),用于当第二壳体联接到第三壳体或者第一壳体与第二壳体和第三壳体分离时,用于释放第二接合机构。 此外,为了使光连接器优选适用于具有最小可能尺寸和最高可能封装密度的插入式连接器,新型连接器浮动结构,新型可滑动套圈支撑结构,强光插头连接机构, 还公开了可靠的光插头或插座插入结构,可清洁和可更换的连接器插座等。
    • 3. 发明授权
    • Optical jack for plug-jack optical connector
    • 插头插孔光连接器用光插孔
    • US5673346A
    • 1997-09-30
    • US703690
    • 1996-08-27
    • Shin'ichi IwanoRyo NagaseKazunori KanayamaEtsuji SugitaYasuhiro Ando
    • Shin'ichi IwanoRyo NagaseKazunori KanayamaEtsuji SugitaYasuhiro Ando
    • G02B6/38H01R13/62
    • G02B6/3893G02B6/3817G02B6/3821G02B6/3825G02B6/3849G02B6/3869G02B6/3875G02B6/3879G02B6/3897H01R13/62G02B6/3822G02B6/3877
    • To realize an optical fiber connector coupled or decoupled by simple insertion and removal operation without applying ferrule connecting force to other elements (package board or back panel), the optical connector comprises a first housing (33); a second housing (34); a third housing (36) slidably housed within the second housing; a first engage mechanism (37, 38) provided between the second and third housings, for engaging these two housings when the first and third housings are not coupled; a second engage mechanism (39, 40) provided between the first and third housings, for engaging these two housings when the first housing is coupled to second and third housings; a first release member (41) provided for the first housings, for releasing the first engage mechanism when the third housing is engaged to the first housing; and a second release member (42) provided for the second housing, for releasing the second engage mechanism when the second housing is coupled to the third housing or the first housing is decoupled from the second and third housings. Further, to allow the optical connector to be preferably applicable to a plug-in connector with the smallest possible dimensions and with the highest possible package density, a novel connector floating structure, a novel slidable ferrule supporting structure, a strong optical plug connecting mechanism, a reliable optical plug or jack insertion structure, a cleanable and replaceable connector jack, etc. are also disclosed.
    • 为了实现通过简单的插入和移除操作而耦合或解耦的光纤连接器,而不将套圈连接力施加到其它元件(封装板或后面板)上,光学连接器包括第一壳体(33); 第二壳体(34); 可滑动地容纳在所述第二壳体内的第三壳体(36) 设置在所述第二和第三壳体之间的第一接合机构(37,38),用于当所述第一和第三壳体未联接时,用于接合所述两个壳体; 设置在第一和第三壳体之间的第二接合机构(39,40),用于当第一壳体联接到第二和第三壳体时接合这两个壳体; 为所述第一壳体设置的第一释放构件(41),用于当所述第三壳体接合到所述第一壳体时释放所述第一接合机构; 以及为第二壳体设置的第二释放构件(42),用于当第二壳体联接到第三壳体或者第一壳体与第二壳体和第三壳体分离时,用于释放第二接合机构。 此外,为了使光连接器优选适用于具有最小可能尺寸和最高可能封装密度的插入式连接器,新型连接器浮动结构,新型可滑动套圈支撑结构,强光插头连接机构, 还公开了可靠的光插头或插座插入结构,可清洁和可更换的连接器插座等。
    • 4. 发明授权
    • Optical connector
    • 光连接器
    • US5537501A
    • 1996-07-16
    • US360358
    • 1994-12-21
    • Shiniichi IwanoRyo NagaseKazunori KanayamaEtsuji SugitaYasuhiro Ando
    • Shiniichi IwanoRyo NagaseKazunori KanayamaEtsuji SugitaYasuhiro Ando
    • G02B6/38H01R13/62
    • G02B6/3817G02B6/3821G02B6/3825G02B6/3849G02B6/3869G02B6/3875G02B6/3879G02B6/3893G02B6/3897H01R13/62G02B6/3822G02B6/3877
    • To realize an optical fiber connector coupled or decoupled by simple insertion and removal operation without applying ferrule connecting force to other elements (package board or back panel), the optical connector comprises a first housing (33); a second housing (34); a third housing (36) slidably housed within the second housing; a first engage mechanism (37, 38) provided between the second and third housings, for engaging these two housings when the first and third housings are not coupled; a second engage mechanism (39, 40) provided between the first and third housings, for engaging these two housings when the first housing is coupled to second and third housings; a first release member (41) provided for the first housings, for releasing the first engage mechanism when the third housing is engaged to the first housing; and a second release member (42) provided for the second housing, for releasing the second engage mechanism when the second housing is coupled to the third housing or the first housing is decoupled from the second and third housings. Further, to allow the optical connector to be preferably applicable to a plug-in connector with the smallest possible dimensions and with the highest possible package density, a novel connector floating structure, a novel slidable ferrule supporting structure, a strong optical plug connecting mechanism, a reliable optical plug or jack insertion structure, a cleanable and replaceable connector jack, etc. are also disclosed.
    • 为了实现通过简单的插入和移除操作而耦合或解耦的光纤连接器,而不将套圈连接力施加到其它元件(封装板或后面板)上,光学连接器包括第一壳体(33); 第二壳体(34); 可滑动地容纳在所述第二壳体内的第三壳体(36) 设置在所述第二和第三壳体之间的第一接合机构(37,38),用于当所述第一和第三壳体未联接时,用于接合所述两个壳体; 设置在第一和第三壳体之间的第二接合机构(39,40),用于当第一壳体联接到第二和第三壳体时接合这两个壳体; 为所述第一壳体设置的第一释放构件(41),用于当所述第三壳体接合到所述第一壳体时释放所述第一接合机构; 以及为第二壳体设置的第二释放构件(42),用于当第二壳体联接到第三壳体或者第一壳体与第二壳体和第三壳体分离时,用于释放第二接合机构。 此外,为了使光连接器优选适用于具有最小可能尺寸和最高可能封装密度的插入式连接器,新型连接器浮动结构,新型可滑动套圈支撑结构,强光插头连接机构, 还公开了可靠的光插头或插座插入结构,可清洁和可更换的连接器插座等。
    • 5. 发明授权
    • Optical connector plug
    • 光连接器插头
    • US5404416A
    • 1995-04-04
    • US22391
    • 1993-02-24
    • Shinichi IwanoRyo NagaseKazunori KanayamaEtsuji SugitaYasuhiro Ando
    • Shinichi IwanoRyo NagaseKazunori KanayamaEtsuji SugitaYasuhiro Ando
    • G02B6/38H01R13/00H01R13/62H01R13/64G02B6/36
    • G02B6/3893G02B6/3807G02B6/3817G02B6/3821G02B6/3825G02B6/3831G02B6/3849G02B6/3869G02B6/3875G02B6/3879G02B6/3897G02B6/3822G02B6/3877
    • To provide an optical connector which can slidably and stably support the optical connector element (ferrule) within the connector housing without increasing the axial length of the ferrule, the optical connector plug comprising: (a) a plug housing (202) formed with a shoulder portion (253) between a large hollow portion (254) and a small hollow portion (252) and formed with no projection between said two portions; (b) a plug ferrule (201) connected to an optical fiber (204) and formed with a flange portion (201b) slidably fitted into the large hollow portion of said plug housing and an end portion (201a) passed through the small hollow portion of said plug housing; and (c) a spring (203) housed within said plug housing to urge the flange portion of said plug ferrule against the shoulder portion (253) of said plug housing. A mated jack ferrule (201) is fitted to the small hollow portion (252) of said plug housing (202) via a sleeve holder (206) having a floating slit sleeve (205) therewithin so as to absorb an axial dimensional fitting error between the plug ferrule and the jack ferrule by axially urging the flange portion (201b) of said plug ferrule by an inner end of the sleeve holder (206) against said spring (203).
    • 为了提供一种光学连接器,其可以在不增加套圈的轴向长度的情况下可滑动地且稳定地支撑连接器壳体内的光学连接器元件(套圈),光学连接器插头包括:(a)形成有肩部 在大的中空部分(254)和小的中空部分(252)之间的部分(253),并且在所述两个部分之间没有形成凸起; (b)连接到光纤(204)并形成有可滑动地装配到所述插头壳体的大中空部分中的凸缘部分(201b)的插头套圈(201a)和穿过所述小中空部分的端部(201a) 的所述插头壳体; 和(c)容纳在所述插头壳体内的弹簧(203),以将所述插头套圈的凸缘部分推靠在所述插头壳体的肩部(253)上。 配合插座套圈(201)通过其中具有浮动狭缝套(205)的套筒保持器(206)装配到所述插头壳体(202)的小中空部分(252)上,以便吸收其间的轴向尺寸拟合误差 通过套筒保持器(206)的内端轴向推动所述插头套圈的凸缘部分(201b)抵靠所述弹簧(203),插头套圈和插座套圈。
    • 7. 发明授权
    • Polarization maintaining optical fiber connector including positioning
flange and method utilizing same
    • 偏光维持光纤连接器包括定位法兰及其使用方法
    • US5216733A
    • 1993-06-01
    • US848895
    • 1992-03-10
    • Ryo NagaseYasuhiro Ando
    • Ryo NagaseYasuhiro Ando
    • G02B6/38
    • G02B6/3851G02B6/3812G02B6/3843G02B6/3861G02B6/3863
    • This invention presents a method and an apparatus for adjusting the axial orientation angle between the principal axis of a polarization maintaining fiber (PMF) and a ferrule with ease and precision. The invented ferrule is composed of a ferrule body, having a through hole into which a PMF is inserted, and a ring-shaped flange, having a keyway on the circumferential rim, installed on the outer periphery of the ferrule body. An engaging part is provided on the periphery to restrain the forward movement of the ferrule body by engaging with the flange. The invented ferrule enables adjustment of the axial angle, between the principal axis of the PMF and the keyway of the flange, to be made after adhesively bonding the PMF onto the ferrule body and polishing the end of the fiber. Therefore, the axial angle adjustment is carried out conveniently and accurately, without being affected by the processing effects, such as curing of the adhesive. Further, when the cable joint is made by joining the plugs, even if the spring compression forces, acting to press together the ferrule bodies, acted on the flange, the forward movement of the flange is restrained by the engaging part, thereby minimizing the adverse residual stress effects on the optical performance properties of the cable.
    • 本发明提供了一种方法和装置,用于容易且精确地调节偏振保持光纤(PMF)的主轴与套圈之间的轴向取向角。 本发明的套圈由插入有PMF的通孔和环形凸缘的环形凸缘构成,环形凸缘安装在套圈本体的外周上。 在周边设置有接合部,以通过与凸缘接合来限制套圈主体的向前运动。 本发明的套圈能够将PMF的主轴与凸缘的键槽之间的轴向角度调整为在将PMF粘合到套圈体上并抛光光纤的端部之后进行。 因此,轴向角度调整方便,准确地进行,而不受加工效果的影响,例如粘合剂的固化。 此外,当通过连接插头制造电缆接头时,即使用于将套圈本体压在一起的弹簧压力作用在凸缘上,凸缘的向前移动被接合部分约束,从而最小化不利的 残余应力对电缆光学性能的影响。
    • 9. 发明授权
    • Parallel redundancy encoding apparatus
    • 并行冗余编码装置
    • US06336192B1
    • 2002-01-01
    • US09249488
    • 1999-02-12
    • Takeshi SakamotoNobuyuki TanakaYasuhiro Ando
    • Takeshi SakamotoNobuyuki TanakaYasuhiro Ando
    • G06F1100
    • H04L25/14
    • A channel-to-channel skew compensation apparatus is provided with N number of frame synchronization circuits 11 for generating frame signals to indicate data position of parallel data on a common time axis for each data transmission channel; a reference timing determination circuit 16 for determining a reference timing based on N frame signals output from the frame synchronization circuit 11; a skewing amount detection section 15 for generating N skewing amount signals according to the reference timing determined by the reference timing determination circuit 16; and a timing compensation section 13 for adjusting output timing of parallel data for each transmission channel according to the skewing amount signal generated by the skewing amount detection section 15.
    • 通道间通道偏移补偿装置具有N个帧同步电路11,用于产生用于指示每个数据传输通道的公共时间轴上并行数据的数据位置的帧信号; 基准定时确定电路16,用于基于从帧同步电路11输出的N帧信号确定基准定时; 倾斜量检测部分15,用于根据由基准定时确定电路16确定的基准定时产生N个倾斜量信号; 以及定时补偿部13,用于根据由倾斜量检测部15生成的倾斜量信号来调整各传输路径的并行数据的输出定时。