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    • 4. 发明授权
    • Method and apparatus for repairing fiber optic cable
    • 修复光缆的方法和装置
    • US4699460A
    • 1987-10-13
    • US399495
    • 1982-07-19
    • Otto I. Szentesi
    • Otto I. Szentesi
    • G02B6/38G02B6/44
    • G02B6/3823G02B6/3825G02B6/3835G02B6/3887G02B6/4467
    • Disclosed is a method and apparatus for quickly joining one set of optical fibers to another set followed by permanent repair. The basic apparatus comprises two frames, each having a cross member containing a plurality of spaced apart optical fiber connectors; optical fibers optically connecting one connector in one frame to a corresponding connector in the other frame; at least one means in each frame to anchor a cable to the frame; and a bracket means attached to each frame between that frame's connectors and anchor means. A bare fiber adapter is also disclosed adapted to removably receive an optical fiber coaxially. On one end of the bare fiber adapter is a means affixed thereto for removably securing an optical fiber within the adapter.The repair method of a severed fiber optic cable involves the use of the above described apparatus as follows:Cable ends to be joined are stripped and secured in each frame. Bare fiber adapters are then removably secured to the terminal portions of the optical fibers of both cable ends sought to be optically connected to one another. Thereafter, the bare fiber adapters of one cable end are connected to the connectors of one frame and a like procedure carried out with the bare fiber adapters of the other cable end and frame to restore optical communication. After first routing traffic over other fibers, bare fiber adapters of a given fiber are removed and the fibers optically joined together in a more permanent fashion. When there is not enough slack in the damaged cable to join the fibers directly, a piece of spare cable has to be stripped and adhered to the frames to carry out permanent joining. Subsequently, the bare fiber adapters of the corresponding fiber sought to be permanently connected are removed and the fibers are permanently joined to each other in a predetermined manner.
    • 公开了一种用于将一组光纤快速连接到另一组,然后进行永久性修复的方法和装置。 基本装置包括两个框架,每个框架具有包含多个间隔开的光纤连接器的横向构件; 将一个框架中的一个连接器光学地连接到另一个框架中的相应连接器的光纤; 每个框架中至少有一个装置将电缆固定到框架上; 以及附接到该框架的连接器和锚定装置之间的每个框架的支架装置。 还公开了一种适于可同轴地可移除地接收光纤的光纤适配器。 裸光纤适配器的一端是固定在其上的装置,用于可拆卸地将光纤固定在适配器内。 切断的光纤电缆的修复方法包括使用上述设备,如下所述:要连接的电缆端部被剥离并固定在每个框架中。 然后将裸露的光纤适配器可拆卸地固定到想要彼此光学连接的两个电缆端部的光纤的端子部分。 此后,一个电缆端的裸光纤适配器连接到一个框架的连接器,并且与另一个电缆端和框架的裸光纤适配器一样进行,以恢复光通信。 在首先通过其他光纤路由流量之后,去除给定光纤的裸光纤适配器,并且光纤以更永久的方式光学连接在一起。 当损坏的电缆没有足够的松弛直接连接纤维时,必须剥去一条备用电缆并粘附到框架上以进行永久连接。 随后,去除了寻求永久连接的相应光纤的裸光纤适配器,并且纤维以预定的方式永久地彼此接合。
    • 5. 发明授权
    • Splicing tray for optical fibers
    • 光纤接头托盘
    • US4627686A
    • 1986-12-09
    • US639585
    • 1984-08-10
    • Otto I. Szentesi
    • Otto I. Szentesi
    • G02B6/44G02B6/36
    • G02B6/4454G02B6/4452
    • A splicing tray for optical fibers and fiber optic cable comprising a base, optical fiber storage facilities disposed on the periphery of the base and an optical fiber receiving means attached to the base, the receiving means including a plurality of slots and a holding means, the slots formed by longitudinally upstanding sidewalls and the holding means, disposed along a terminal portion of the receiving means, having first and second communicating slots, the first slot having a transverse dimension larger than a like dimension of said second slot, both of said first and second slots of the holding means communicating with one of the first mentioned slots.
    • 一种用于光纤和光缆的拼接托盘,包括设置在基座周边的基座,光纤存储设备和附接到基座的光纤接收装置,所述接收装置包括多个狭槽和保持装置, 由沿着接收装置的端子部分设置的纵向直立的侧壁和保持装置形成的槽具有第一和第二连通槽,第一槽的横向尺寸大于所述第二槽的相似尺寸, 所述保持装置的第二槽与所述第一个槽中的一个槽通信。
    • 9. 发明授权
    • Interconnection enclosure having a connector port and preterminated optical connector
    • 互连外壳具有连接器端口和预先终止的光连接器
    • US06856748B1
    • 2005-02-15
    • US10674696
    • 2003-09-30
    • Robert B. Elkins, IIJames P. LutherLars K. NielsenOtto I. SzentesiHieu V. Tran
    • Robert B. Elkins, IIJames P. LutherLars K. NielsenOtto I. SzentesiHieu V. Tran
    • G02B6/38G02B6/00G02B6/44
    • G02B6/444G02B6/3825G02B6/3897
    • An interconnection enclosure comprising at least one connector port operable for receiving a connector pair and a preterminated optical connector received in the at least one connector port, wherein the preterminated optical connector is adapted to be withdrawn from the exterior of the enclosure without entering the enclosure. The enclosure further comprising a tether means, a bend radius control means and a sealing means. An interconnection enclosure comprised of two halves held together by a fastening means, the enclosure defining an end wall and defining at least one connector port opening through the end wall for receiving a preterminated optical connector, the enclosure housing further defining an opening for receiving a distribution cable extending therethrough, wherein the preterminated optical connector is adapted to be withdrawn from the exterior of the enclosure without entering the enclosure.
    • 一种互连外壳,包括至少一个连接器端口,该连接器端口可操作用于接收容纳在所述至少一个连接器端口中的连接器对和预先终止的光学连接器,其中所述预灭灭的光学连接器适于在不进入所述外壳的情况下从所述外壳的外部撤出。 外壳还包括系绳装置,弯曲半径控制装置和密封装置。 一个由两个半部组成的互连外壳,该两个半部由紧固装置固定在一起,外壳限定一个端壁,并限定通过该端壁的至少一个连接器开口,用于接收一个预先终止的光学连接器,该外壳外壳进一步限定用于接收一个分配的开口 电缆延伸穿过其中,其中预灭火的光学连接器适于从外壳的外部取出而不进入外壳。
    • 10. 发明授权
    • Fiber optic interconnection enclosure having a forced air system
    • 具有强制空气系统的光纤互连外壳
    • US6044193A
    • 2000-03-28
    • US113908
    • 1998-07-10
    • Otto I. SzentesiJon Paul Segelhorst
    • Otto I. SzentesiJon Paul Segelhorst
    • G02B6/38G02B6/44G02B6/00
    • G02B6/4452G02B6/3897
    • The fiber optic interconnection enclosure, such as a fiber optic distribution frame or the like, effectively limits the entry of particles, such as dust and other contaminants, into the enclosure. For example, the fiber optic interconnection enclosure can maintain a greater pressure, i.e., a positive pressure, within the internal cavity defined by the enclosure than outside of the internal cavity so as to effectively limit the entry of particles into the internal cavity, even as the door of the fiber optic interconnection enclosure is repeatedly opened and closed. The fiber optic interconnection enclosure generally includes at least one fan to draw air into the internal cavity through an air inlet port defined by the cabinet and to circulate the air through the internal cavity in order to reduce the number of particles that settle upon or are transferred to the end faces of the optical fibers or other surfaces within the internal cavity. By filtering the air drawn into the internal cavity, at least some of the particles are removed from the air drawn into the internal cavity. In addition, by expelling at least some of the air that has circulated within the internal cavity through a vent, a number of the particles that may have been otherwise trapped within the internal cavity can also be expelled prior to settling upon the end face of an optical fiber or other surfaces within the internal cavity.
    • 诸如光纤分配框架之类的光纤互连外壳有效地限制了诸如灰尘和其它污染物的颗粒进入外壳中。 例如,光纤互连外壳可以在由外壳限定的内部空腔内保持比内部空腔外部更大的压力,即正压力,以便有效地限制颗粒进入内部空腔,即使是 光纤互连外壳的门反复打开和关闭。 光纤互连外壳通常包括至少一个风扇,以通过由机柜限定的进气口将空气吸入内部空腔,并使空气循环通过内部空腔,以减少沉积在或转移的颗粒数量 到光纤的端面或内腔内的其他表面。 通过过滤吸入内腔的空气,至少一些颗粒从被吸入内腔的空气中去除。 此外,通过排出通过排气口在内腔内循环的空气中的至少一些空气,也可以将许多可能已被捕获在内腔内的颗粒排出,然后沉降到 光纤或内腔内的其他表面。