CN202133800U - Optical fiber machinery splice crimping tool - Google Patents

Optical fiber machinery splice crimping tool Download PDF

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Publication number
CN202133800U
CN202133800U CN201120182008U CN201120182008U CN202133800U CN 202133800 U CN202133800 U CN 202133800U CN 201120182008 U CN201120182008 U CN 201120182008U CN 201120182008 U CN201120182008 U CN 201120182008U CN 202133800 U CN202133800 U CN 202133800U
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CN
China
Prior art keywords
optical fiber
crimping tool
connector
holders
supporting plate
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Expired - Fee Related
Application number
CN201120182008U
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Chinese (zh)
Inventor
吴灿辉
李效贤
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3M Innovative Properties Co
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3M Innovative Properties Co
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Priority to CN201120182008U priority Critical patent/CN202133800U/en
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Publication of CN202133800U publication Critical patent/CN202133800U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

The utility model relates to the field of optical fiber technology, and specially relates to the optical fiber machinery splice technology. An optical fiber machinery splice crimping tool includes the following: a pedestal; a splice crimping device, which is suitable for the arrangement of splices; first and second guide rails, which are respectively arranged at two sides of the splice crimping device; and first and second optical fiber retainers, which are respectively arranged on the first and second guide rails, and are suitable for retaining the optical fibers to be sliced with the slices. Wherein at least one of the first and second optical fiber retainers is slidable relative to the corresponding slide rail; through the slidable coupling, the optical fibers respectively retained in the first and second optical fiber retainers are inserted in the slice (A) to realize the optical fiber slice.

Description

The sub-crimping tool of a kind of mechanically splicing optical fiber
Technical field
The utility model relates to the optical fiber technology field, relates in particular to the mechanically splicing optical fiber technology.
Background technology
Compare with welding process, the mechanical splice of optical fiber have the instrument cost low, need not power supply, advantage such as simple and efficient to handle.For example, mechanically splicing optical fiber can be applied in the optical cable maintenance repairing stage, especially in Fiber to the home (FTTH), uses very extensive.
Mechanically splicing optical fiber (also claiming the optical fiber cold connector) is the optical device that connects two optical fiber through the mechanical splice mode.Particularly, mechanically splicing optical fiber four steps of generally need passing through out stripping, clean, cut and continue.At present, in above-mentioned steps, some existing mechanically splicing optical fibers do not need crimping tool when using, and only continue through manual mode, and other existing mechanically splicing optical fibers have a simple crimping plate instrument when using usually.When adopting above-mentioned connecting method; If be diameter in the aperture of bare fibre insertion cold connector of 125 μ m only with naked eyes and staff; The shake that tends to owing to staff increases the probability that end face is rebuffed, thereby not only reduces operating efficiency, can cause also that to insert loss value bigger than normal and return loss value is defective; Even more serious, even can cause optical communication to interrupt.
The utility model content
The scheme that the utility model provides is in structure and function design, to eliminate the shortcoming and deficiency that exists in the prior art at least.
A purpose of the utility model is to provide a kind of convenience sub-crimping tool of mechanically splicing optical fiber efficiently.
Another purpose of the utility model is to provide a kind of sub-crimping tool of mechanically splicing optical fiber that can be releasably attached on the on-wall type light distributor box.
At least one technical scheme of the utility model is achieved in that
The sub-crimping tool of a kind of mechanically splicing optical fiber comprises:
Pedestal;
The connector connector presser is suitable for the arrangement of connector;
First and second guide rails are arranged in the both sides of connector connector presser; And
First and second optical fiber holders are arranged on respectively on said first and second guide rails accordingly, are suitable for being kept for the jointed fiber of treating that is connected with connector;
Wherein, In first and second optical fiber holders at least one with respect to its corresponding guide rail slidably; Through being slidingly matched between at least one and the guide rail corresponding in first and second optical fiber holders with it; The optical fiber that remains on respectively on first and second optical fiber holders is inserted in the said connector, to realize continuing of optical fiber.
Further, in the utility model, the connector connector presser also comprises the trumpet type guide groove, and the trumpet type guide groove is separately positioned on two ends of connector connector presser, is positioned at the position that optical fiber inserts.
Preferably, first and second optical fiber holders are processed by sponge material.
Particularly, the optical fiber that first and second optical fiber holders have Y type xsect respectively keeps structure, is suitable for the stable jointed fiber of treating that is connected with connector of being kept for.
According to the utility model, connector connector presser, first and second optical fiber holders are configured such that connector and the optical fiber that remains on first and second optical fiber holders are tending towards coaxial.
Further, the sub-crimping tool of the mechanically splicing optical fiber that the utility model provides also comprises the crimping tool stationary installation, and the crimping tool stationary installation is suitable for crimping tool is removably installed on the on-wall type light distributor box, so that the continuing of optical fiber.
Particularly, the crimping tool stationary installation comprises:
The crimping tool base, the crimping tool base is suitable for the installation of crimping tool;
Fixing supporting plate, fixedly supporting plate is suitable for the crimping tool that is installed on the crimping tool base is fixed on the on-wall type light distributor box; And
Coupling, coupling are suitable for connecting crimping tool base and fixing supporting plate.
According to a specific embodiment of the utility model, the crimping tool base is worker's type base.
Wherein, crimping tool base, coupling and fixedly removably connect through at least one web member between the supporting plate.
Particularly, fixedly supporting plate is provided with a plurality of fixtures, and a plurality of fixtures are suitable for making crimping tool stationary installation and on-wall type light distributor box to removably connect.
The utility model has following technique effect at least:
The sub-crimping tool of the mechanically splicing optical fiber that the utility model provides through being slidingly matched between guide rail and the optical fiber holder, realizes that the stable of optical fiber continues, and reduces the probability that end face is rebuffed greatly, has improved operating efficiency, thereby has guaranteed optical communication.Further; The sub-crimping tool of the mechanically splicing optical fiber that the utility model provides; Can be fixed on reposefully through above-mentioned crimping tool stationary installation on the on-wall type light distributor box (perhaps on-wall type Multi-media box), be convenient to carry out the sub-crimping operation of mechanically splicing optical fiber in the air.
Description of drawings
In order to let the above-mentioned of the utility model and other purpose, characteristic and the advantage can be more obviously understandable, the utility model be described further below in conjunction with accompanying drawing and embodiment.
Fig. 1 is the structural representation of the sub-crimping tool of the described a kind of mechanically splicing optical fiber of specific embodiment of the utility model;
Fig. 2 is the enlarged diagram of the connector connector presser in the sub-crimping tool of the described a kind of mechanically splicing optical fiber of specific embodiment of the utility model;
Fig. 3 is the enlarged diagram of the optical fiber holder (second optical fiber holder) in the sub-crimping tool of the described a kind of mechanically splicing optical fiber of specific embodiment of the utility model;
Fig. 4 is the enlarged diagram of the optical fiber holder (second optical fiber holder) in the sub-crimping tool of the described a kind of mechanically splicing optical fiber of specific embodiment of the utility model, illustrates that bare fibre remains in this optical fiber holder;
Fig. 5 is the structural representation of the crimping tool stationary installation of the sub-crimping tool use of the described confession mechanically splicing optical fiber of specific embodiment of the utility model.
Embodiment
Describe the embodiment of the utility model below in detail, the example of said embodiment is shown in the drawings, and wherein identical from start to finish label is represented same or analogous element.The embodiment that is described with reference to the drawings below is exemplary, is intended to explain the utility model, and can not be interpreted as a kind of restriction to the utility model.
As shown in Figure 1, the utility model provides a kind of mechanically splicing optical fiber crimping tool, comprising: pedestal 10; Connector connector presser 30 is suitable for the arrangement of connector A; First and second guide rails 21,22 are arranged in the both sides of connector connector presser 30; And first and second optical fiber holders 23,24, be slidably disposed on respectively on first and second guide rails 21,22, what be suitable for being kept for being connected with connector A treats the jointed fiber (not shown); Wherein, through first and second optical fiber holders 23,24 respectively with being slidingly matched of first and second guide rails 21,22, the optical fiber that remains on respectively on first and second optical fiber holders 23,24 is inserted among the connector A, to realize continuing of optical fiber.Though first and second optical fiber holders 23,24 slidably are provided with respect to first and second guide rails 21,22 respectively among the embodiment shown in Figure 1; Yet; In another embodiment of the utility model; Also can be in first and second optical fiber holders at least one 23 or 24 slidably with respect to its corresponding guide rail 21 or 22; And through in first and second optical fiber holders at least one 23 or 24 and the guide rail 21 or 22 corresponding with it between be slidingly matched, the optical fiber that remains on respectively on first and second optical fiber holders is inserted in the said connector, to realize continuing of optical fiber.According to the utility model,, realize that the stable of optical fiber continues through adopting being slidingly matched between guide rail and the optical fiber holder; With respect to manually continuing in the prior art or conventional tool for connecting; Reduce the probability that end face is rebuffed greatly, improved operating efficiency, thereby guarantee optical communication.
Particularly, the sub-crimping tool of the mechanically splicing optical fiber that the utility model provides, as shown in Figure 2, connector connector presser 30 also comprises trumpet type guide groove 31.Trumpet type guide groove 31 is separately positioned on two ends of connector connector presser 30, is positioned at the position that optical fiber inserts.Particularly, trumpet type guide groove 31 dwindles towards the center from the distolateral of connector connector presser 30 gradually, like this, helps the guiding of optical fiber.
Preferably, first and second optical fiber holders 23,24 are processed by sponge material.In another specific embodiment, also can adopt the material of other similar sponge, for example, sponge, plastics foam, high density soft material etc.Further, first and second optical fiber holders 23,24 have same structure.Below be that example is elaborated referring to Fig. 3 and Fig. 4 with second optical fiber holder 24.Particularly, referring to Fig. 3, second optical fiber holder 24 comprises that the optical fiber with Y type xsect keeps structure 24a, constitutes the optical fiber maintaining part 24b that optical fiber keeps structure 24a, and, be suitable for the sliding part 24c that is slidingly matched with second guide rail 22.Through treating that the optical fiber that jointed fiber F is folded in Y type xsect keeps among the structure 24a, what can stably be kept for being connected with connector A treats jointed fiber F (for example seeing Fig. 4).Be when jointed fiber is not treated in placement in the optical fiber holder,, to make that the xsect of optical fiber maintenance structure 24a can V-shaped or U type owing to fit tightly each other between the optical fiber maintaining part 24b that sponge material is processed with being worth mentioning.
The sub-crimping tool of the mechanically splicing optical fiber that the utility model provides, preferably, connector connector presser 30, first and second optical fiber holders 23,24 are configured such that connector A and the optical fiber that remains on first and second optical fiber holders 23,24 are tending towards coaxial.Like this, can avoid in handshaking procedure, treating jointed fiber as far as possible and carry out manual adjustments.
As shown in Figure 2, the sub-crimping tool of the mechanically splicing optical fiber that the utility model provides further comprises crimping tool stationary installation 40.Crimping tool stationary installation 40 is suitable for crimping tool is removably installed on the on-wall type light distributor box (or similarly need in the casing of fibre junction, for example wall hanging Multi-media box), so that the continuing of optical fiber.According to the utility model, crimping tool stationary installation 40 comprises: crimping tool base 41, and fixedly supporting plate 43, and, coupling 42.Wherein, crimping tool base 41 is suitable for the installation of crimping tool 40; Fixedly supporting plate 43 is suitable for the crimping tool that is installed on the crimping tool base 41 is fixed on the on-wall type light distributor box; And coupling 42 is suitable for connecting crimping tool base 41 and fixing supporting plate 43.Like this, the sub-crimping tool of the mechanically splicing optical fiber that the utility model provides can be installed in easily to be needed on the on-wall type of the fibre junction light distributor box, so that the continuing of optical fiber.In crimping tool stationary installation shown in Figure 2, crimping tool base 41 is preferably worker's type base.Certainly, in other specific embodiment, also can adopt the crimping tool base 41 of suitable shape, as long as can stable fixing be provided for the sub-crimping tool of the mechanically splicing optical fiber of the utility model.
Particularly, as shown in Figure 2, crimping tool base 41, coupling 42 and fixedly removably connect through at least one web member 44 between the supporting plate 43.That is to say; In this specific embodiment; Crimping tool base 41 in the crimping tool stationary installation 40, coupling 42 and fixedly supporting plate 43 be respectively independent member, pass through web member 4 when needing and combine to form the crimping tool stationary installation 40 in these specific embodiments.In another specific embodiment, also can adopt the crimping tool stationary installation 40 of integral type.Preferably, web member 44 can be attachment screw, perhaps analog.
According to the utility model, the fixedly supporting plate 43 in the crimping tool stationary installation 40 is provided with a plurality of fixtures 45.A plurality of fixtures 45 are suitable for making crimping tool stationary installation 40 and on-wall type light distributor box to removably connect.Preferably, fixture 45 can be gib screw or analog.
It is following that the sub-crimping tool of mechanically splicing optical fiber that provides through the utility model carries out the preferred process of fibre junction:
At first, connector A is placed on connector connector presser 30.Then, the overlay with opening stripping pincers strip off first optical fiber exposes the naked fine part in first optical fiber, cleans naked fine part through for example isopropyl alcohol and nonwoven fabrics, yet measures and cut to obtain the naked fine length of appropriate size through conventional cutter.After this, the optical fiber of first optical fiber being inserted the Y type of first optical fiber holder of being processed by sponge material 23 keeps in the structure, and makes the connecting hole of a little higher than connector A of end face of naked fine part.Subsequently; Promote first optical fiber holder 23, it is slided towards connector connector presser 30 along first guide rail 21, in sliding process, will finely tune naked fine part downwards simultaneously; Make it get into the connecting hole of connector A smoothly; And continue to promote, when to a certain degree crooked appears in the optical fiber until connecting hole outside, stop promotion.Likewise; With the mode identical with aforesaid way, second optical fiber is placed in second optical fiber holder 24 and with it sends in the connecting hole of connector connector presser 30 opposite sides, last; Through crimping plate 11 pressed downward; Down compress the loam cake of the sub-A of mechanical splice,, thereby realize continuing of first and second optical fiber with closed mechanical splice.At last, the connector A of complete connection is taken out from connector connector presser 30, accomplish continuing of optical fiber.
The embodiment of above-mentioned the utility model only exemplary explanation the principle and the effect thereof of the utility model; But not be used to limit the utility model; Know and it will be understood by those skilled in the art that; Under the situation of spirit that does not depart from the utility model and scope, any change that the utility model is done and improving all in the scope of the utility model.The rights protection scope of the utility model, should as the application claim defined is as the criterion.

Claims (10)

1. the sub-crimping tool of mechanically splicing optical fiber is characterized in that, comprising:
Pedestal (10);
Connector connector presser (30) is suitable for the arrangement of connector (A);
First and second guide rails (21,22) are arranged in the both sides of said connector connector presser; And
First and second optical fiber holders (23,24) are arranged on respectively on said first and second guide rails accordingly, are suitable for being kept for the jointed fiber of treating that is connected with connector (A);
Wherein, In said first and second optical fiber holders at least one with respect to its corresponding guide rail slidably; Through being slidingly matched between at least one and the guide rail (21,22) corresponding in said first and second optical fiber holders (23,24) with it; The optical fiber that remains on respectively on first and second optical fiber holders (23,24) is inserted in the said connector (A), to realize continuing of optical fiber.
2. crimping tool as claimed in claim 1, wherein:
Said connector connector presser (30) also comprises trumpet type guide groove (31), and said trumpet type guide groove (31) is separately positioned on two ends of said connector connector presser (30), is positioned at the position that optical fiber inserts.
3. crimping tool as claimed in claim 1, wherein:
Said first and second optical fiber holders (23,24) are processed by sponge material.
4. crimping tool as claimed in claim 1, wherein:
The optical fiber that said first and second optical fiber holders (23,24) have Y type xsect respectively keeps structure, is suitable for the stable jointed fiber of treating that is connected with connector of being kept for.
5. crimping tool as claimed in claim 1, wherein:
Said connector connector presser (30), said first and second optical fiber holders (23,24) are configured such that connector (A) and the optical fiber that remains on said first and second optical fiber holders (23,24) are tending towards coaxial.
6. crimping tool as claimed in claim 1 also comprises:
Crimping tool stationary installation (40), said crimping tool stationary installation are suitable for said crimping tool is removably installed on the on-wall type light distributor box, so that the continuing of optical fiber.
7. crimping tool as claimed in claim 6, wherein said crimping tool stationary installation (40) comprising:
Crimping tool base (41), said crimping tool base is suitable for the installation of said crimping tool;
Fixing supporting plate (43), said fixedly supporting plate is suitable for the crimping tool that is installed on the said crimping tool base (41) is fixed on the on-wall type light distributor box; And
Coupling (42), said coupling are suitable for connecting said crimping tool base (41) and said fixedly supporting plate (43).
8. crimping tool as claimed in claim 7, wherein:
Said crimping tool base (41) is worker's type base.
9. crimping tool as claimed in claim 7, wherein:
Removably connect through at least one web member (44) between said crimping tool base (41), said coupling (42) and the said fixedly supporting plate (43).
10. crimping tool as claimed in claim 7, wherein:
Said fixedly supporting plate (43) is provided with a plurality of fixtures (45), and said a plurality of fixtures (45) are suitable for making said crimping tool stationary installation (40) and said on-wall type light distributor box to removably connect.
CN201120182008U 2011-05-27 2011-05-27 Optical fiber machinery splice crimping tool Expired - Fee Related CN202133800U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201120182008U CN202133800U (en) 2011-05-27 2011-05-27 Optical fiber machinery splice crimping tool

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201120182008U CN202133800U (en) 2011-05-27 2011-05-27 Optical fiber machinery splice crimping tool

Publications (1)

Publication Number Publication Date
CN202133800U true CN202133800U (en) 2012-02-01

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201120182008U Expired - Fee Related CN202133800U (en) 2011-05-27 2011-05-27 Optical fiber machinery splice crimping tool

Country Status (1)

Country Link
CN (1) CN202133800U (en)

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105629391B (en) * 2014-11-06 2018-05-01 扇港元器件(香港)有限公司 There is the optical fiber connector that improvement fastens between trunk and optical cable fixing piece
CN108227088A (en) * 2018-01-12 2018-06-29 张广山 A kind of caudal peduncle press-connection machine for fiber manufacturing
CN108896273A (en) * 2018-05-04 2018-11-27 秦昊烨 Test optical fiber press-contact connection apparatus and optical fiber crimp connection method
CN109382563A (en) * 2017-08-14 2019-02-26 泰科电子(上海)有限公司 Package system

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105629391B (en) * 2014-11-06 2018-05-01 扇港元器件(香港)有限公司 There is the optical fiber connector that improvement fastens between trunk and optical cable fixing piece
CN109382563A (en) * 2017-08-14 2019-02-26 泰科电子(上海)有限公司 Package system
CN109382563B (en) * 2017-08-14 2021-01-26 泰科电子(上海)有限公司 Assembly system
CN108227088A (en) * 2018-01-12 2018-06-29 张广山 A kind of caudal peduncle press-connection machine for fiber manufacturing
CN108227088B (en) * 2018-01-12 2019-11-19 卢允照 A kind of caudal peduncle press-connection machine for fiber manufacturing
CN108896273A (en) * 2018-05-04 2018-11-27 秦昊烨 Test optical fiber press-contact connection apparatus and optical fiber crimp connection method

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C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20120201

Termination date: 20160527