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JPS62272208A - Fusion splicing device for constant polarization optical fiber - Google Patents

Fusion splicing device for constant polarization optical fiber

Info

Publication number
JPS62272208A
JPS62272208A JP11590486A JP11590486A JPS62272208A JP S62272208 A JPS62272208 A JP S62272208A JP 11590486 A JP11590486 A JP 11590486A JP 11590486 A JP11590486 A JP 11590486A JP S62272208 A JPS62272208 A JP S62272208A
Authority
JP
Japan
Prior art keywords
optical fiber
cores
arm
fusion splicing
clamp
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
JP11590486A
Other languages
Japanese (ja)
Inventor
Kenichiro Ito
伊藤 憲一郎
Takeshi Yamada
剛 山田
Tsutomu Onodera
勤 小野寺
Mikio Yoshinuma
吉沼 幹夫
Yasuyuki Kato
康之 加藤
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Fujikura Ltd
Nippon Telegraph and Telephone Corp
Original Assignee
Fujikura Ltd
Nippon Telegraph and Telephone Corp
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Fujikura Ltd, Nippon Telegraph and Telephone Corp filed Critical Fujikura Ltd
Priority to JP11590486A priority Critical patent/JPS62272208A/en
Priority to CA000537461A priority patent/CA1302692C/en
Priority to EP91100516A priority patent/EP0427705A1/en
Priority to DE8787107350T priority patent/DE3784372T2/en
Priority to EP87107350A priority patent/EP0246636B1/en
Publication of JPS62272208A publication Critical patent/JPS62272208A/en
Priority to US07/379,690 priority patent/US4986843A/en
Priority to US07/633,764 priority patent/US5149350A/en
Priority to US07/686,747 priority patent/US5156663A/en
Priority to US07/686,750 priority patent/US5147434A/en
Pending legal-status Critical Current

Links

Classifications

    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B6/00Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings
    • G02B6/24Coupling light guides
    • G02B6/36Mechanical coupling means
    • G02B6/38Mechanical coupling means having fibre to fibre mating means
    • G02B6/3801Permanent connections, i.e. wherein fibres are kept aligned by mechanical means
    • G02B6/3803Adjustment or alignment devices for alignment prior to splicing
    • G02B6/3805Adjustment or alignment devices for alignment prior to splicing with a fibre-supporting member inclined to the bottom surface of the alignment means
    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B6/00Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings
    • G02B6/24Coupling light guides
    • G02B6/255Splicing of light guides, e.g. by fusion or bonding
    • G02B6/2551Splicing of light guides, e.g. by fusion or bonding using thermal methods, e.g. fusion welding by arc discharge, laser beam, plasma torch

Landscapes

  • Physics & Mathematics (AREA)
  • Engineering & Computer Science (AREA)
  • Plasma & Fusion (AREA)
  • General Physics & Mathematics (AREA)
  • Optics & Photonics (AREA)
  • Mechanical Coupling Of Light Guides (AREA)

Abstract

PURPOSE:To reinforce the connection of optical fibers without twisting the fibers by fitting a twist preventing device to a fusing machine after fusing the optical fiber cores to clamp the cores so as not to rotate the cores round respective axes and then removing the device from the fusing machine. CONSTITUTION:After fusion splicing the optical fiber cores 10, the twist preventing device 40 is set up on stands 54 for a splicing device body 16. Then, the cores 10 are clamped down on the outsides of respective rotary mechanisms 24 by clamping means 56 and then rotary clamps 29 are opened. After the end of screening, fiber clamps 20 and sheath clamps 22 are opened. Since the rotary mechanisms 24 are inclined in the front down direction, the spliced optical fiber core 10 is formed like a V-shape having a large aperture, and when the cores 10 are removed from the device 40, a sag is generated. Therefore, the left and right halves 43, 44 of an arm 42 are slightly opened to remove the sag. Then, the whole device 40 is removed from the body 16 while clamping the cores 10. Then, the spliced part is reinforced without twisting the cores.

Description

【発明の詳細な説明】 3、発明の詳細な説明 [産業上の利用分野] この発明は2定偏波光ファイバの融着接続装置に関する
もので、特に融着後の定偏波光ファイバの接続部に、ネ
ジリの加わるのを防止する機構に関するものである。
[Detailed Description of the Invention] 3. Detailed Description of the Invention [Field of Industrial Application] This invention relates to a fusion splicing device for dual polarization optical fibers, and in particular, to a splicing device for dual polarization optical fibers after fusion splicing. The invention relates to a mechanism for preventing twisting.

[発明の背景] 第1図において、lOは光ファイバ心線の全体で、12
は光ファイバ、14はシース部分。
[Background of the Invention] In FIG. 1, lO is the entire optical fiber core, 12
is an optical fiber, and 14 is a sheath part.

また、16は接続装置本体、18は放電電極である。Further, 16 is a main body of the connecting device, and 18 is a discharge electrode.

光ファイバ12をファイバクランプ20が押え、またシ
ース部分14をシースクランプ22が押え、光ファイバ
心線10のx、y方向の誠心と2方向の調節を行う。
The optical fiber 12 is held down by a fiber clamp 20, and the sheath portion 14 is held down by a sheath clamp 22, thereby adjusting the center of the optical fiber 10 in the x and y directions and in two directions.

定偏波光ファイバ特有のものとして、回転機構24が設
けられる。
A rotation mechanism 24 is provided as a feature unique to a constant polarization optical fiber.

固定アーム26の先端に回転クランプ29の固定部分3
0が、また可動アーム28の先端に回転クランプ29の
IIf動部分32が、それぞれ設けてあり、カム34を
回して、回転クランプ29に光ファイバ心線10を横か
ら挟む。
The fixed part 3 of the rotating clamp 29 is attached to the tip of the fixed arm 26.
0 and an IIf moving part 32 of a rotary clamp 29 are provided at the tip of the movable arm 28, and by rotating the cam 34, the optical fiber core 10 is laterally sandwiched between the rotary clamp 29.

ダイアル36を使って、光ファイバ心線10をクランプ
したまま、その軸を中心として、アーム26.28ごと
回転させ、複屈折軸(θ軸)の調心を行う、なお、手動
でなく、モーターで自動回転させる場合もある。
Using the dial 36, while clamping the optical fiber core 10, rotate the entire arm 26 and 28 around its axis to align the birefringence axis (θ axis).Note that the birefringence axis (θ axis) is aligned using a motor rather than a manual operation. In some cases, it may be rotated automatically.

[発明が解決しようとする問題点] 上記のようにθ軸の調心を行うと1回転クランプ29か
ら外側の光ファイバ心線にネジリが加わる。
[Problems to be Solved by the Invention] When the θ-axis is aligned as described above, twist is applied to the outer optical fiber from the one-turn clamp 29.

融着後、光ファイバ心1110を融着機からとり外して
、接続部の補強を行うが、心線lOを融着機からとり外
すために、ファイバクランプ20゜シースクランプ22
1回転クランプ29のすべてを解除すると、ネジリが、
接続部に直接加わるようになる。
After fusion, the optical fiber core 1110 is removed from the fusion splicer and the joint is reinforced. In order to remove the core 10 from the fusion splicer, a fiber clamp 20° and a sheath clamp 22 are used.
When all of the one-turn clamps 29 are released, the torsion is removed.
It will be added directly to the connection.

定偏波光ファイバの特性は接続部のネジリに敏感である
ので、ネジリが接続部に加わらない状態で補強すること
が望まれる。
Since the characteristics of a polarization-controlled optical fiber are sensitive to torsion at the connection portion, it is desirable to reinforce the connection portion in a state where no torsion is applied to the connection portion.

[問題を解決するための手段] この発明は、光ファイバ心線10の融着後、ネジリ防止
装置40を融着機にとりつけ、それにより光ファイバ心
線10を軸回りに回転できないようにクランプし、それ
から融着機からとり外すようにすることにより、上記の
要望を満たすようにしたものである。
[Means for Solving the Problem] The present invention attaches a torsion prevention device 40 to the fusion splicer after welding the optical fiber coated wire 10, thereby clamping the optical fiber coated wire 10 so that it cannot rotate around its axis. The above-mentioned requirement is satisfied by having the fusion splicer and then removing it from the fusion machine.

[実施例] 第1図、第2図において、40はネジリ防止装この全体
で1次に述べるアーム42とクランプ手段56とからな
る。
[Embodiment] In FIGS. 1 and 2, reference numeral 40 denotes a torsion prevention device, which as a whole consists of an arm 42 and a clamping means 56, which will be described first.

7−ム42は、たとえば四角断面の細長い棒状ものであ
る。左半分43と右半分44とに分割可能で、左半分4
3の端面から突出させた連結棒46に右を分44の端部
をスライド自在に嵌合させ、連結棒46にとりつけたピ
ン48と右半分44に設けた長孔50とによりスライド
の範囲を限定している。
The 7-mem 42 is, for example, an elongated bar-shaped member with a square cross section. Can be divided into left half 43 and right half 44, left half 4
The end of the right half 44 is slidably fitted onto the connecting rod 46 protruding from the end surface of the right half 44, and the sliding range is limited by the pin 48 attached to the connecting rod 46 and the long hole 50 formed in the right half 44 Limited.

アーム42の両端からクランプ手段56を突出させる。Clamping means 56 are made to protrude from both ends of the arm 42.

第1図のII−■断面を拡大して、第2図に示した。FIG. 2 shows an enlarged cross-section taken along line II--■ in FIG. 1.

58は丸棒状の軸で、その基部をアーム42に固定し、
先端にU字形のyt60を形成している。
58 is a round bar-shaped shaft, the base of which is fixed to the arm 42;
A U-shaped yt60 is formed at the tip.

この溝60内に光ファイバ心線10が入る。The optical fiber core 10 is inserted into this groove 60.

軸58にスリーブ62をスライド自在にかぶせる。その
基部は、アーム42に設けた四部41の中にスライド自
在に入りこんでおり、バネ64により第2図で左方に付
勢される。
A sleeve 62 is slidably placed over the shaft 58. Its base part is slidably inserted into the four parts 41 provided on the arm 42, and is biased to the left in FIG. 2 by a spring 64.

軸58にピン66とりつけ、それをスリーブ62に設け
た長孔68に係合させて、スリーブ62の脱出を防止し
、かつスリーブ62の移動範囲を制限する。スリーブ6
2に操作用のつまみ70を固定する。
A pin 66 is attached to the shaft 58 and engaged with a long hole 68 provided in the sleeve 62 to prevent the sleeve 62 from coming off and to limit the range of movement of the sleeve 62. sleeve 6
An operating knob 70 is fixed to 2.

つまみ70に指をかけてスリーブ62をアーム42の方
に移動させ(第2図の状態)、溝6oに光ファイバ心線
10を入れ、指を離す、すると、スリーブ62はバネ6
4の力で復帰し、その先端で光ファイバ心線10を溝6
0の側面に押付けてクランプする。その結果光ファイバ
心線10は軸回りに回転できなくなる。
Put your finger on the knob 70, move the sleeve 62 toward the arm 42 (the state shown in FIG. 2), insert the optical fiber core 10 into the groove 6o, and release your finger.
It returns with a force of 4, and the optical fiber core 10 is inserted into the groove 6 with its tip.
Press it against the side of 0 and clamp it. As a result, the optical fiber core 10 cannot rotate around the axis.

接続装置本体16の上面に、2木の丸棒状のス左 ケンド54直立させておく。On the top surface of the connection device main body 16, there are two wooden round bar-shaped slots. Kendo 54 Keep it upright.

それにアーム42に設けた長孔52を嵌合させて、ネジ
リ防止装置4o全体を接続装置本体16に着脱自在にと
りつける。
The long hole 52 provided in the arm 42 is fitted into it, and the entire torsion preventing device 4o is detachably attached to the connecting device main body 16.

[作 用] (1)光ファイバ心線10の融着接続が終ったら。[Work] (1) After the fusion splicing of the optical fiber core 10 is completed.

上記のように、ネジリ防止装ff140を接続装置本体
16のスタンド54にセットする。そして、クランプ手
段56によって、光ファイバ心mlOを、各回転機構2
4の外側においてクランプする。
As described above, the twist prevention device ff140 is set on the stand 54 of the connection device main body 16. Then, the clamping means 56 holds the optical fiber core mlO in each rotating mechanism 2.
Clamp on the outside of 4.

(2) それから回転クランプ29を開く、スクリーニ
ングの終了後、さらにファイバクランプ20゜シースク
ランプ22を開く。
(2) Then, open the rotating clamp 29. After the screening is completed, further open the fiber clamp 20° and the sheath clamp 22.

(3)回転機構24は面下りに傾斜しているため、接続
した光ファイバ心線1oは、開さの大きいV形になって
いて、装置から外する、たるみができる。
(3) Since the rotation mechanism 24 is tilted downward, the connected optical fiber core 1o has a large V-shape, which allows it to be removed from the device and slackened.

そこで、アーム42の左半分43と右半分44間を少し
開いて、たるみをなくす。
Therefore, the left half 43 and right half 44 of the arm 42 are slightly opened to eliminate slack.

それからネジリ防止装2t40の全体を、光ファイバ心
線10をクランプしたまま、接続装置本体16から外す
Then, the entire torsion prevention device 2t40 is removed from the connection device main body 16 while the optical fiber core wire 10 is still clamped.

それから、接続部の補強を行う。Then, reinforce the connections.

1発明の効果】 接続部のネジリに敏感な定偏波光ファイバを。1. Effects of the invention] Constant polarization optical fiber that is sensitive to twisting of the connection.

融着したままの状態で補強できるようになる。It becomes possible to reinforce the bond while it remains fused.

【図面の簡単な説明】[Brief explanation of the drawing]

第1図は本発明の実施例の概略平面図で、そのII −
IIの拡大断面を第2図に示す。 lO:光ファイバ心線 12:光ファイバ14:シース
部分 16:接続装置本体20:ファイバクランプ 2
2ニジ−スクランプ24:回転機構   26:[7i
I定アーム28:可動アーム  29:回転クランプ3
0:固定部分   32:可動部分 40:ネジリ防止装fi42:アーム 46:連結線    56:クランプ手段58:軸  
  60:溝 62ニスリーブ
FIG. 1 is a schematic plan view of an embodiment of the present invention, and its II-
An enlarged cross section of II is shown in FIG. lO: Optical fiber core wire 12: Optical fiber 14: Sheath portion 16: Connection device body 20: Fiber clamp 2
2-screw clamp 24: Rotating mechanism 26: [7i
I constant arm 28: Movable arm 29: Rotating clamp 3
0: Fixed part 32: Movable part 40: Torsion prevention device fi42: Arm 46: Connection line 56: Clamping means 58: Shaft
60: groove 62 sleeve

Claims (2)

【特許請求の範囲】[Claims] (1)光ファイバ心線をクランプしかつその軸を中心に
して回転させることのできる機構を備えた定偏波光ファ
イバの融着接続装置において、細長いアームの両端にク
ランプ手段をとりつけたネジレ防止装置を備え、そのア
ームを接続装置本体に設けたスタンドに着脱自在にとり
つけることができるようにするとともに、それをとりつ
けたとき、クランプ手段の先端で光ファイバ心線をクラ
ンプすることができるようにしたことを特徴とする、定
偏波光ファイバの融着接続装置。
(1) In a polarization-controlled optical fiber fusion splicer equipped with a mechanism capable of clamping the optical fiber core and rotating it around its axis, a torsion prevention device has clamping means attached to both ends of an elongated arm. The arm can be detachably attached to a stand provided on the main body of the connecting device, and when the arm is attached, the optical fiber can be clamped at the tip of the clamping means. A fusion splicing device for polarization-controlled optical fibers, characterized by the following.
(2)アームが、長さ方向に伸縮自在であることを特徴
とする、特許請求の範囲第1項に記載の定偏波光ファイ
バの融着接続装置。
(2) The fusion splicing device for polarization-controlled optical fibers according to claim 1, wherein the arm is extendable and retractable in the length direction.
JP11590486A 1986-05-20 1986-05-20 Fusion splicing device for constant polarization optical fiber Pending JPS62272208A (en)

Priority Applications (9)

Application Number Priority Date Filing Date Title
JP11590486A JPS62272208A (en) 1986-05-20 1986-05-20 Fusion splicing device for constant polarization optical fiber
CA000537461A CA1302692C (en) 1986-05-20 1987-05-20 Apparatus for fusion-splicing a pair of polarization maintaining opticalfibers
EP91100516A EP0427705A1 (en) 1986-05-20 1987-05-20 Apparatus for fusion-splicing a pair of polarization maintaining optical fibers
DE8787107350T DE3784372T2 (en) 1986-05-20 1987-05-20 DEVICE FOR MERGING OPTICAL FIBERS WITH POLARIZATION PRESERVATION.
EP87107350A EP0246636B1 (en) 1986-05-20 1987-05-20 Apparatus for fusion-splicing a pair of polarization maintaining optical fibers
US07/379,690 US4986843A (en) 1986-05-20 1989-07-11 Apparatus for fusion-splicing a pair of polarization maintaining optical fibers
US07/633,764 US5149350A (en) 1986-05-20 1990-12-26 Apparatus for fusion-splicing a pair of polarization maintaining optical fibers
US07/686,747 US5156663A (en) 1986-05-20 1991-04-16 Apparatus for fusion-splicing a pair of polarization maintaining optical fibers
US07/686,750 US5147434A (en) 1986-05-20 1991-04-16 Apparatus for fusion-splicing a pair of polarization maintaining optical fibers

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP11590486A JPS62272208A (en) 1986-05-20 1986-05-20 Fusion splicing device for constant polarization optical fiber

Publications (1)

Publication Number Publication Date
JPS62272208A true JPS62272208A (en) 1987-11-26

Family

ID=14674086

Family Applications (1)

Application Number Title Priority Date Filing Date
JP11590486A Pending JPS62272208A (en) 1986-05-20 1986-05-20 Fusion splicing device for constant polarization optical fiber

Country Status (1)

Country Link
JP (1) JPS62272208A (en)

Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5810722A (en) * 1981-07-10 1983-01-21 Matsushita Electric Ind Co Ltd Production of electrochromic display device

Patent Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5810722A (en) * 1981-07-10 1983-01-21 Matsushita Electric Ind Co Ltd Production of electrochromic display device

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