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JP4093475B2 - Splice unit - Google Patents

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Publication number
JP4093475B2
JP4093475B2 JP2003163475A JP2003163475A JP4093475B2 JP 4093475 B2 JP4093475 B2 JP 4093475B2 JP 2003163475 A JP2003163475 A JP 2003163475A JP 2003163475 A JP2003163475 A JP 2003163475A JP 4093475 B2 JP4093475 B2 JP 4093475B2
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JP
Japan
Prior art keywords
unit
main body
outer chassis
optical fiber
unit main
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.)
Expired - Fee Related
Application number
JP2003163475A
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Japanese (ja)
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JP2004361893A (en
Inventor
競 高木
Original Assignee
河村電器産業株式会社
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 河村電器産業株式会社 filed Critical 河村電器産業株式会社
Priority to JP2003163475A priority Critical patent/JP4093475B2/en
Publication of JP2004361893A publication Critical patent/JP2004361893A/en
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Publication of JP4093475B2 publication Critical patent/JP4093475B2/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Description

【0001】
【発明の属する技術分野】
本発明は、光配線盤やラック等にマウントして取り付けられ、光ファイバの接続部と余長を収納するためのスプライスユニットに関する。
【0002】
【従来の技術】
従来のスプライスユニットは、箱状に形成したユニット本体の内部に光ファイバ心線の融着部と余長とを収納するための融着トレイを収納し、融着トレイはレールによって前後方向にスライド可能に設けられている。また、ユニット本体の前面に光ファイバコード同士をコネクタ接続するための多数のアダプタが設けられたアダプタパネルを開閉可能に蝶着されている。アダプタパネルの裏面の下部には光ファイバコードの余長を収納するための余長収納部が張設されている。ユニット本体の左右側面にはマウント部が張設され、ラック等の内部に立設されたマウントアングルにマウント部を当接させ螺着して固定される(例えば、特許文献1参照。)。
【0003】
【特許文献1】
特開2002−372634号公報(第3−4頁、第6,9図)
【0004】
【発明が解決しようとする課題】
従来のスプライスユニットは融着トレイが前後方向にスライド可能に設けられて配線作業性を向上させているが、ユニット本体から融着トレイが完全に突出する構造ではなく、ユニット本体内に手を差し入れて狭い空間で作業を行わなければならないので作業性が悪いという欠点があった。
【0005】
そこで上記問題点に鑑み、本発明の目的は、光ファイバの配線作業性が良好なスプライスユニットを提供することである。
【0006】
【課題を解決するための手段】
上記目的を達成するために、箱状のユニット本体の内部に光ファイバコードの余長光ファイバ心線の融着部を収納可能にしたスプライスユニットにおいて、ユニット本体の前面に光ファイバコード同士をコネクタ接続するための多数のアダプタが設けられたアダプタパネルを観音開き式に開閉自在に蝶着するとともに、ユニット本体を少なくとも前面が開放した箱状のアウターシャーシに収納してアウターシャーシに対しユニット本体をスライド可能にし、ユニット本体をアウターシャーシに収納した状態に保持するためのロック部と、ユニット本体をアウターシャーシから引き出した際に脱落を防止するためのストッパーとを備えたことを特徴とする。
【0007】
【発明の実施の形態】
スプライスユニットはユニット本体とアウターシャーシとで構成し、ユニット本体の前面は多数のアダプタが設けられたアダプタパネルが開閉自在に蝶着され、ユニット本体は前面を開口したアウターシャーシに前後方向にスライド可能に収納される。ユニット本体の前面下部にはラッチが設けられ、アウターシャーシに収納した際に飛び出さないように保持することができ、また、ユニット本体の下面のレールの長孔にアウターシャーシに固定された棒状のストッパーが挿通して設けられ、ユニット本体を引き出した際に脱落しないようにされている。
【0008】
【実施例】
本発明に係るスプライスユニットの実施例を図1〜図5の添付図面に基づいて説明する。
【0009】
スプライスユニット1は、ユニット本体2と、アウターシャーシ3とで構成し、ユニット本体2は矩形状の底板4と、左右側板5とで前面と背面と上面を開放した箱状に形成され、上面は天板6が前部のネジ7と後部の引っ掛け爪8によって着脱可能に閉塞されている。
【0010】
ユニット本体2の前面は光ファイバコード9同士をコネクタ接続するための多数のアダプタ10が設けられた2枚のアダプタパネル11が左右側板5の前端縁に観音開き式に開閉自在に蝶着されて取り付けられている。アダプタパネル11の夫々の開放端にはラッチ12が設けられている。ラッチ12は押し操作するとアダプタパネル11の裏面に突出した先端の径が大きくなり、引き操作すると先端の径が小さくなる構造になっており、アダプタパネル11を閉塞するとユニット本体2の底板4の前端中央に立設した係合片13の係合孔14にラッチ12の先端が挿通するため、その状態でラッチ12を押し操作すると先端の径が係合孔14より大きくなって係合してアダプタパネル11を固定することができる。また、アダプタパネル11を開放するにはラッチ12を引き操作して係合片13との係合を解除して行う。
【0011】
アダプタパネル11は下端が前方に張設され、光ファイバコード9を支持するための支持部15が形成されている。これによってアダプタ10の前面側接続口に光ファイバコード9を接続すると垂れ下がった部分が支持部15に支持されるので自重による負荷がかからず、破損を防止することができる。アダプタ10に接続した光ファイバコード9は支持部15の端部に形成されたコード結束用スリット孔16に挿通して設けられた結束バンド17で結束され、外側に出線される。
【0012】
底板4は多数の通気用スリット18が形成され、軽量化も図られ、また、光ファイバコード9を保持するための結束バンド等を挿通させて設けるためにも用いられる。底板4の上面には光ファイバ心線同士を接続した融着部と、その融着時に発生する余長とを収納するための融着トレイ19が配設されている。底板4の下面には奥行き方向へ延びるレール20が左右両端と中央に設けられている。
【0013】
アウターシャーシ3は前面と背面と上面を開放した箱状に形成され、左右側板21の上端部を内側方向に折曲してユニット本体2を前後方向にスライド可能に収納する。ユニット本体2の左右側板5の上端部もアウターシャーシ3の折曲部に沿うように内側方向に折曲形成されている。アウターシャーシ3の底板4の後端部はコードクランプ22が設けられ、コードクランプ22の前方にはフレキシブルダクト23の一端が固定され、他端はユニット本体2の後端部に固定されている。アウターシャーシ3の背面から導入した光ファイバコード9はコードクランプ22によって保持され、フレキシブルダクト23内を挿通してユニット本体2内へ配線される。
【0014】
ユニット本体2内に導入された光ファイバコード9を配線するにはアウターシャーシ3からユニット本体2を引き出して行う。引き出すには、まず、アウターシャーシ3とユニット本体2とのロックを解除する。アウターシャーシ3とユニット本体2はロック部としてのラッチ24によって係脱自在にされており、ラッチ24の構造はユニット本体2のアダプタパネル11のラッチ12と同様であり、アウターシャーシ3の底板25の前端部に設けた係合片26の係合孔27にユニット本体2の前端下部に設けられたラッチ24の先端が係脱可能になっている。
【0015】
ユニット本体2をアウターシャーシ3から引き出した際にユニット本体2が脱落しないようにアウターシャーシ3にはストッパー28が設けられている。ストッパー28は棒状に形成され、ユニット本体2のレール20の長手方向に形成された長孔29に挿通し、両端をアウターシャーシ3の左右側板21に固定して設けられている。これによってユニット本体2を引き出してもストッパー28が長孔29の端部に当たるので脱落しない。
【0016】
ユニット本体2を引き出した後、アダプタパネル11を開放し、天板6を取り外してユニット本体2内の配線を行う。尚、配線の際に発生した余長はユニット本体2の底板4上に丸めて収納しておく。ユニット本体2の前面と上面が開放できるため、配線作業性が非常に良好である。配線が完了したら天板6を取り付け、アダプタパネル11を閉塞し、ラッチ12をロックしてアダプタパネル11を固定する。それから、ユニット本体2をアウターシャーシ3内に押し込み、ラッチ24によってロックしておく。尚、光ファイバコードの接続変更だけであれば、天板7を取り外さずにアダプタパネル11を開放させるだけで行うことができる。
【0017】
アウターシャーシ3の左右側板21には光配線盤(図示せず)や通信機器等を収納するためのラック(図示せず)等にマウント取り付けできるように左右に張設されたマウント部30が設けられ、マウント部30は2個の挿通孔31が穿設されている。マウント部30を光配線盤やラック等の内部に立設されたマウントアングルに前面側から当接させ、挿通孔31に前面側から取付ネジを挿通させてマウントアングルに螺着固定することによりスプライスユニット1を取り付けることができる。
【0018】
尚、本実施例において、ユニット本体のスライド構造、ストッパー構造やロック構造等、スプライスユニットの構造について限定はなく、本発明の趣旨を逸脱しない範囲で適宜変更可能である。
【0019】
【発明の効果】
以上説明したように、箱状のユニット本体の内部に光ファイバコードの余長光ファイバ心線の融着部を収納可能にしたスプライスユニットにおいて、ユニット本体の前面に光ファイバコード同士をコネクタ接続するための多数のアダプタが設けられたアダプタパネルを観音開き式に開閉自在に蝶着するとともに、ユニット本体を少なくとも前面が開放した箱状のアウターシャーシに収納してアウターシャーシに対しユニット本体をスライド可能にし、ユニット本体をアウターシャーシに収納した状態に保持するためのロック部と、ユニット本体をアウターシャーシから引き出した際に脱落を防止するためのストッパーとを備えたことにより、光ファイバの配線作業性が良いという効果がある。
【図面の簡単な説明】
【図1】本発明に係るスプライスユニットの斜視図である。
【図2】本発明に係るスプライスユニットを引き出した状態の斜視図である。
【図3】本発明に係るスプライスユニットの正面図である。
【図4】本発明に係るスプライスユニットの平面図である。
【図5】本発明に係るスプライスユニットの右側面図である。
【符号の説明】
1…スプライスユニット
2…ユニット本体
3…アウターシャーシ
11…アダプタパネル
20…レール
24…ラッチ
26…係合片
27…係合孔
28…ストッパー
29…長孔
[0001]
BACKGROUND OF THE INVENTION
The present invention relates to a splice unit that is mounted and mounted on an optical wiring board, rack, or the like, and that accommodates an optical fiber connection portion and an extra length.
[0002]
[Prior art]
The conventional splice unit stores a fusion tray for storing the fusion part and extra length of the optical fiber core wire inside the box-shaped unit body, and the fusion tray slides in the front-rear direction by the rail. It is provided as possible. Further, an adapter panel provided with a large number of adapters for connecting the optical fiber cords to each other on the front surface of the unit main body is hinged so as to be openable and closable. A surplus length storage portion for storing the surplus length of the optical fiber cord is stretched at the lower part of the back surface of the adapter panel. Mount portions are stretched on the left and right side surfaces of the unit main body, and the mount portions are brought into contact with and screwed to mount angles erected inside a rack or the like (see, for example, Patent Document 1).
[0003]
[Patent Document 1]
JP 2002-372634 A (pages 3-4, FIGS. 6, 9)
[0004]
[Problems to be solved by the invention]
The conventional splice unit is provided with a fusion tray that can slide in the front-rear direction to improve wiring workability. However, the fusion tray does not completely protrude from the unit main body, but a hand is inserted into the unit main body. In addition, there is a drawback that workability is poor because work must be performed in a narrow space.
[0005]
Accordingly, in view of the above problems, an object of the present invention is to provide a splice unit with good optical fiber wiring workability.
[0006]
[Means for Solving the Problems]
To achieve the above object, in the splice unit and the interior of the box-shaped unit body can accommodate the extra length and fused portion of the optical fiber of the optical fiber cord, an optical fiber cord between the front of the unit body An adapter panel with a large number of adapters for connector connection is hinged so that it can be opened and closed in a double- split manner, and the unit main body is stored in a box-shaped outer chassis with at least the front open, and the unit main body is stored in the outer chassis. Is provided with a lock portion for holding the unit main body in a state of being housed in the outer chassis, and a stopper for preventing the unit main body from falling off when the unit main body is pulled out from the outer chassis.
[0007]
DETAILED DESCRIPTION OF THE INVENTION
The splice unit consists of a unit main body and an outer chassis. The front of the unit main body is hinged so that an adapter panel with a large number of adapters can be opened and closed. The unit main body can be slid in the front-rear direction on the outer chassis with the front open. It is stored in. A latch is provided at the lower front of the unit body, and it can be held so that it does not pop out when stored in the outer chassis. A stopper is inserted to prevent it from falling off when the unit body is pulled out.
[0008]
【Example】
An embodiment of a splice unit according to the present invention will be described with reference to the accompanying drawings of FIGS.
[0009]
The splice unit 1 is composed of a unit main body 2 and an outer chassis 3, and the unit main body 2 is formed in a box shape with a rectangular bottom plate 4 and left and right side plates 5 with the front, back and top surfaces open. The top plate 6 is detachably closed by a front screw 7 and a rear hooking claw 8.
[0010]
The front surface of the unit body 2 is attached with two adapter panels 11 provided with a large number of adapters 10 for connecting the optical fiber cords 9 to each other by being hinged to the front end edges of the left and right side plates 5 so as to be openable and closable. It has been. A latch 12 is provided at each open end of the adapter panel 11. The latch 12 has a structure in which the diameter of the tip protruding from the back surface of the adapter panel 11 increases when the latch 12 is pushed, and the diameter of the tip decreases when the latch 12 is pulled. When the adapter panel 11 is closed, the front end of the bottom plate 4 of the unit body 2 is closed. Since the leading end of the latch 12 is inserted into the engaging hole 14 of the engaging piece 13 erected in the center, when the latch 12 is pushed in this state, the diameter of the leading end becomes larger than the engaging hole 14 and the adapter 12 is engaged. The panel 11 can be fixed. The adapter panel 11 is opened by pulling the latch 12 and releasing the engagement with the engagement piece 13.
[0011]
The lower end of the adapter panel 11 is stretched forward, and a support portion 15 for supporting the optical fiber cord 9 is formed. As a result, when the optical fiber cord 9 is connected to the front-side connection port of the adapter 10, the hanging portion is supported by the support portion 15, so that a load due to its own weight is not applied and breakage can be prevented. The optical fiber cord 9 connected to the adapter 10 is bundled by a bundling band 17 provided through a cord bundling slit hole 16 formed at the end of the support portion 15 and is led out to the outside.
[0012]
The bottom plate 4 is formed with a large number of ventilation slits 18 to reduce the weight, and is also used to insert a binding band for holding the optical fiber cord 9. On the upper surface of the bottom plate 4, a fusion tray 19 is disposed for storing a fusion part in which optical fiber cores are connected to each other and a surplus length generated during the fusion. Rails 20 extending in the depth direction are provided on the lower surface of the bottom plate 4 at both the left and right ends and the center.
[0013]
The outer chassis 3 is formed in a box shape with the front, back, and top surfaces open, and the upper ends of the left and right side plates 21 are folded inward to house the unit body 2 slidably in the front-rear direction. Upper ends of the left and right side plates 5 of the unit body 2 are also bent inward so as to follow the bent portion of the outer chassis 3. A cord clamp 22 is provided at the rear end portion of the bottom plate 4 of the outer chassis 3, one end of the flexible duct 23 is fixed in front of the cord clamp 22, and the other end is fixed to the rear end portion of the unit body 2. The optical fiber cord 9 introduced from the back surface of the outer chassis 3 is held by a cord clamp 22 and is inserted into the flexible duct 23 and wired into the unit main body 2.
[0014]
Wiring the optical fiber cord 9 introduced into the unit main body 2 is performed by pulling the unit main body 2 out of the outer chassis 3. In order to pull it out, first, the outer chassis 3 and the unit body 2 are unlocked. The outer chassis 3 and the unit main body 2 are detachable by a latch 24 as a lock portion. The structure of the latch 24 is the same as that of the latch 12 of the adapter panel 11 of the unit main body 2. The front end of the latch 24 provided at the lower front end of the unit main body 2 can be engaged with and disengaged from the engagement hole 27 of the engagement piece 26 provided at the front end.
[0015]
A stopper 28 is provided on the outer chassis 3 so that the unit body 2 does not fall off when the unit body 2 is pulled out from the outer chassis 3. The stopper 28 is formed in a rod shape, is inserted into a long hole 29 formed in the longitudinal direction of the rail 20 of the unit body 2, and both ends are fixed to the left and right side plates 21 of the outer chassis 3. Accordingly, even when the unit body 2 is pulled out, the stopper 28 hits the end of the long hole 29 so that it does not fall off.
[0016]
After the unit body 2 is pulled out, the adapter panel 11 is opened, the top plate 6 is removed, and wiring in the unit body 2 is performed. The surplus length generated during wiring is rolled up and stored on the bottom plate 4 of the unit body 2. Since the front surface and the upper surface of the unit body 2 can be opened, wiring workability is very good. When the wiring is completed, the top plate 6 is attached, the adapter panel 11 is closed, the latch 12 is locked, and the adapter panel 11 is fixed. Then, the unit main body 2 is pushed into the outer chassis 3 and locked by the latch 24. If the connection of the optical fiber cord is only changed, the adapter panel 11 can be opened without removing the top plate 7.
[0017]
The left and right side plates 21 of the outer chassis 3 are provided with mount portions 30 that are stretched to the left and right so that they can be mounted on an optical wiring board (not shown), a rack (not shown) for storing communication equipment, or the like. The mount portion 30 is provided with two insertion holes 31. Splice by mounting the mount 30 from a front side to a mount angle standing upright inside an optical distribution board, rack, etc., and inserting a mounting screw into the insertion hole 31 from the front side and screwing and fixing to the mount angle. Unit 1 can be attached.
[0018]
In this embodiment, the structure of the splice unit, such as the slide structure of the unit main body, the stopper structure, and the lock structure, is not limited, and can be changed as appropriate without departing from the spirit of the present invention.
[0019]
【The invention's effect】
As described above, the connector in the splicing unit in which the interior of the box-shaped unit body can accommodate the extra length and fused portion of the optical fiber of the optical fiber cord, an optical fiber cord between the front of the unit body The adapter panel with a number of adapters for connection is hinged in an openable manner so that it can be opened and closed. The unit body is housed in a box-shaped outer chassis with at least the front open, and the unit body is slid against the outer chassis. Optical fiber wiring work by providing a lock part for holding the unit body in the outer chassis and a stopper for preventing the unit body from falling off when the unit body is pulled out from the outer chassis. There is an effect that the nature is good.
[Brief description of the drawings]
FIG. 1 is a perspective view of a splice unit according to the present invention.
FIG. 2 is a perspective view showing a state in which a splice unit according to the present invention is pulled out.
FIG. 3 is a front view of a splice unit according to the present invention.
FIG. 4 is a plan view of a splice unit according to the present invention.
FIG. 5 is a right side view of the splice unit according to the present invention.
[Explanation of symbols]
DESCRIPTION OF SYMBOLS 1 ... Splice unit 2 ... Unit main body 3 ... Outer chassis 11 ... Adapter panel 20 ... Rail 24 ... Latch 26 ... Engagement piece 27 ... Engagement hole 28 ... Stopper 29 ... Long hole

Claims (1)

箱状のユニット本体の内部に光ファイバコードの余長光ファイバ心線の融着部を収納可能にしたスプライスユニットにおいて、前記ユニット本体の前面に光ファイバコード同士をコネクタ接続するための多数のアダプタが設けられたアダプタパネルを観音開き式に開閉自在に蝶着するとともに、前記ユニット本体を少なくとも前面が開放した箱状のアウターシャーシに収納して該アウターシャーシに対し前記ユニット本体をスライド可能にし、前記ユニット本体を前記アウターシャーシに収納した状態に保持するためのロック部と、前記ユニット本体を前記アウターシャーシから引き出した際に脱落を防止するためのストッパーとを備えたことを特徴とするスプライスユニット。In splicing unit in which the fused portion of the excess length and the optical fiber of the optical fiber cord in the interior of the box-shaped unit body to be housed, the front enclosure number for a connector connecting the optical fiber cord with each other in the body The adapter panel provided with the adapter is hinged so as to be openable and closable in a double swing manner, and the unit main body is housed in a box-shaped outer chassis with at least the front open so that the unit main body can slide relative to the outer chassis. A splice comprising: a lock portion for holding the unit main body in a state accommodated in the outer chassis; and a stopper for preventing the unit main body from falling off when the unit main body is pulled out from the outer chassis. unit.
JP2003163475A 2003-06-09 2003-06-09 Splice unit Expired - Fee Related JP4093475B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2003163475A JP4093475B2 (en) 2003-06-09 2003-06-09 Splice unit

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2003163475A JP4093475B2 (en) 2003-06-09 2003-06-09 Splice unit

Publications (2)

Publication Number Publication Date
JP2004361893A JP2004361893A (en) 2004-12-24
JP4093475B2 true JP4093475B2 (en) 2008-06-04

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Cited By (35)

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