JPH10201026A - Breaker - Google Patents

Breaker

Info

Publication number
JPH10201026A
JPH10201026A JP9000009A JP997A JPH10201026A JP H10201026 A JPH10201026 A JP H10201026A JP 9000009 A JP9000009 A JP 9000009A JP 997 A JP997 A JP 997A JP H10201026 A JPH10201026 A JP H10201026A
Authority
JP
Japan
Prior art keywords
case
tank
insulating
circuit breaker
pair
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.)
Granted
Application number
JP9000009A
Other languages
Japanese (ja)
Other versions
JP3777693B2 (en
Inventor
Ryoichi Nakanishi
良一 中西
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.)
Meidensha Corp
Meidensha Electric Manufacturing Co Ltd
Original Assignee
Meidensha Corp
Meidensha Electric Manufacturing Co Ltd
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 Meidensha Corp, Meidensha Electric Manufacturing Co Ltd filed Critical Meidensha Corp
Priority to JP00000997A priority Critical patent/JP3777693B2/en
Publication of JPH10201026A publication Critical patent/JPH10201026A/en
Application granted granted Critical
Publication of JP3777693B2 publication Critical patent/JP3777693B2/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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  • Gas-Insulated Switchgears (AREA)
  • High-Tension Arc-Extinguishing Switches Without Spraying Means (AREA)

Abstract

PROBLEM TO BE SOLVED: To provide a breaker which allows its vacuum interruptor to be replaced easily. SOLUTION: A pair of vacuum interruptors 30 are stored in parallel inside a nearly bottomed cylinder shaped case 29 which is made of insulating material and has a bottom and fixed lead bars 30a are connected to terminals 31 which airtightly pass through the bottom of the case 29. Meanwhile, a connection conductor 35 which passes through moving lead bars 30b slidably are connected to the case 29 through a bolt 38, and an insulating supporting section 29c for supporting a main circuit conductor, etc., is formed as an integral part of the case 29.

Description

【発明の詳細な説明】DETAILED DESCRIPTION OF THE INVENTION

【0001】[0001]

【発明の属する技術分野】本発明は遮断器に関し、真空
インタラプタの交換作業が容易にできるようにしたもの
である。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a circuit breaker, which is capable of easily replacing a vacuum interrupter.

【0002】[0002]

【従来の技術】従来の遮断器を用いたガス絶縁開閉装置
の構造を図5に示す。図のように、気密に形成されると
ともに絶縁ガスが充填されたタンク4とタンク1とが設
けられる。タンク4は、ユニット4aとユニット4bと
を二点鎖線の位置で結合して構成されている。タンク4
内には真空インタラプタを内蔵した遮断器5が収容さ
れ、ケーブルヘッド7が断路器6を介して遮断器5に接
続される一方、タンク1内の母線3が断路器2を介して
遮断器5に接続されている。ケーブルヘッド7は、ケー
ブル8を介して電力送り出し用の変電所9に接続され、
ケーブル8には開閉器10と断路器11とが接続されて
いる。
2. Description of the Related Art The structure of a conventional gas insulated switchgear using a circuit breaker is shown in FIG. As shown in the figure, a tank 4 and a tank 1 which are formed airtight and filled with an insulating gas are provided. The tank 4 is configured by connecting the unit 4a and the unit 4b at a position indicated by a two-dot chain line. Tank 4
A circuit breaker 5 having a built-in vacuum interrupter is accommodated therein, and a cable head 7 is connected to the circuit breaker 5 via a disconnector 6, while a bus 3 in the tank 1 is connected to the circuit breaker 5 via a disconnector 2. It is connected to the. The cable head 7 is connected to a substation 9 for sending out electric power via a cable 8,
A switch 8 and a disconnector 11 are connected to the cable 8.

【0003】斯かるガス絶縁開閉装置において、遮断器
5を構成する図示しない真空インタラプタを交換するに
は、変電所9の開閉器10を開にしてタンク4内の絶縁
ガスを抜き取ったのちにタンク4内から遮断器5を取り
外し、遮断器5内の真空インタラプタを新しいものに交
換し、前記と逆の手順で遮断器5をタンク4内に組み込
む。
In such a gas insulated switchgear, in order to replace a vacuum interrupter (not shown) constituting the circuit breaker 5, the switch 10 of the substation 9 is opened, the insulating gas in the tank 4 is extracted, and then the tank is removed. The circuit breaker 5 is removed from the inside of the tank 4, the vacuum interrupter in the circuit breaker 5 is replaced with a new one, and the circuit breaker 5 is installed in the tank 4 in the reverse procedure.

【0004】[0004]

【発明が解決しようとする課題】ところが、大きなタン
ク4内の絶縁ガスを抜いてタンク4を分解したのちに遮
断器5を取り出さねばならないため、真空インタラプタ
の交換のための作業が面倒である。また、真空インタラ
プタの交換の際にはタンク4内の絶縁ガスを全て抜き取
るため、電気設備として使用できない。
However, since the circuit breaker 5 must be taken out after the tank 4 is disassembled by removing the insulating gas in the large tank 4, the work for replacing the vacuum interrupter is troublesome. Further, when the vacuum interrupter is replaced, the insulating gas in the tank 4 is completely removed, so that it cannot be used as electric equipment.

【0005】そこで本発明は、斯かる課題を解決した遮
断器を提供することを目的とする。
[0005] Therefore, an object of the present invention is to provide a circuit breaker that solves the above problem.

【0006】[0006]

【課題を解決するための手段】斯かる目的を達成するた
めの請求項1に係る遮断器の構成は、絶縁材料により形
成された略有底筒形状のケースの内部に、一対の真空イ
ンタラプタを、固定リード棒がケースの底部側となるよ
うに並列に並べて収容し、ケースの底部を気密に貫通す
るとともにケースの内側で夫々の固定リード棒と個別に
導通する端子を設ける一方、対となる真空インタラプタ
の可動リード棒を夫々摺動自在に挿通した挿通孔を有す
る接続導体を着脱自在にケースの内面に結合し、夫々の
真空インタラプタと接続導体との間には圧縮ばねを設
け、絶縁ガスが充填されたタンクの開口部を、前記ケー
スで閉塞し、前記ケースがタンクの内部に位置するとと
もに前記ケースの内部がタンクの外部へ開口する状態で
タンクに取り付け得るようにし、前記ケースにおける前
記一対の端子の間から突出する絶縁支持部を設け、当該
絶縁支持部にはタップ穴を形成した固定用インサートを
埋設したことを特徴とする。
According to a first aspect of the present invention, there is provided a circuit breaker comprising a pair of vacuum interrupters inside a substantially bottomed cylindrical case formed of an insulating material. The terminals are arranged side by side so that the fixed lead rods are located on the bottom side of the case, and the terminals of the case are provided airtightly through the bottom of the case and provided individually with the respective fixed lead rods inside the case. A connection conductor having an insertion hole through which a movable lead rod of a vacuum interrupter is slidably inserted is detachably connected to an inner surface of the case, and a compression spring is provided between each vacuum interrupter and the connection conductor, and an insulating gas is provided. May be closed with the case, and the case may be attached to the tank in a state where the case is located inside the tank and the inside of the case is open to the outside of the tank. And thus, the insulating support portion protruding from between the pair of terminals in the case provided, in the insulating supporting part, characterized in that embedded fixed insert forming a tapped hole.

【0007】[0007]

【発明の実施の形態】以下、本発明を図面に示す実施例
に基づいて詳細に説明する。
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS Hereinafter, the present invention will be described in detail based on an embodiment shown in the drawings.

【0008】本発明による遮断器を設けたガス絶縁開閉
装置の構成を、図1に示す。図のように、機器タンク1
3の上部中央に接続タンク14が接続され、接続タンク
14の右側には三相絶縁スペーサ17を介して母線タン
ク15が接続されている。16は接続タンク14の左側
の開口部を塞ぐ蓋である。この母線タンク15は接続タ
ンク14の左側に接続するようにしてもよい。これらの
3つのタンクは、ガスシール用パッキン,ボルトを介し
て相互に結合されている。
FIG. 1 shows the configuration of a gas-insulated switchgear provided with a circuit breaker according to the present invention. As shown, the equipment tank 1
A connection tank 14 is connected to the center of the upper part of 3, and a bus bar tank 15 is connected to the right side of the connection tank 14 via a three-phase insulating spacer 17. Reference numeral 16 denotes a lid for closing the left opening of the connection tank 14. The bus tank 15 may be connected to the left side of the connection tank 14. These three tanks are connected to each other via gas seal packing and bolts.

【0009】機器タンク13内には遮断器18と、ケー
ブルを接続するためのケーブルヘッド19とが設けら
れ、ケーブルヘッド19は主回路導体20,接地開閉器
21,断路器22を介して遮断器18に接続されてい
る。23は支持碍子である。一方、母線タンク15内に
は母線24が収容され、母線24は断路器25,主回路
導体26,27を介して遮断器18に接続されている。
機器タンク13の外部には操作手段28が設けられ、操
作手段28は遮断器18に連動連結されている。
A circuit breaker 18 and a cable head 19 for connecting a cable are provided in the equipment tank 13. The cable head 19 is connected to the circuit breaker via a main circuit conductor 20, a grounding switch 21, and a disconnecting switch 22. 18. 23 is a support insulator. On the other hand, a bus 24 is accommodated in the bus tank 15, and the bus 24 is connected to the circuit breaker 18 via a disconnector 25 and main circuit conductors 26 and 27.
Operating means 28 is provided outside the equipment tank 13, and the operating means 28 is linked to the circuit breaker 18.

【0010】次に、遮断器18の構成を詳細に説明す
る。図3に示すように、一対の真空インタラプタ30を
収容するためのケース29が設けられる。ケース29は
絶縁材料により略有底筒形状に形成したものであり、ケ
ース29の内部を上下に仕切るための仕切部29aと、
ケース29を機器タンク13に取り付けるためのフラン
ジ部29bとを有する。ケース29内の仕切部29aの
上下には一対の真空インタラプタ30が、その固定リー
ド棒30aを底部に対向させた状態で収容されている。
Next, the structure of the circuit breaker 18 will be described in detail. As shown in FIG. 3, a case 29 for housing a pair of vacuum interrupters 30 is provided. The case 29 is formed in an approximately cylindrical shape with a bottom by using an insulating material, and includes a partition portion 29a for vertically partitioning the inside of the case 29;
And a flange 29b for attaching the case 29 to the equipment tank 13. A pair of vacuum interrupters 30 are accommodated above and below the partition portion 29a in the case 29 with the fixed lead bar 30a facing the bottom.

【0011】ケース29の底部には、底部を気密に貫通
する一対の端子31が設けられ、端子31の内端部には
嵌合穴32が形成されるとともに、嵌合穴32にはマル
チコンタクト33を介して固定リード棒30aが嵌合さ
れている。上部の端子31はボルト34を介して前記主
回路導体27に結合される一方、下部の端子31はボル
ト34を介して前記主回路導体20に結合されている。
A pair of terminals 31 is provided at the bottom of the case 29 in an airtight manner through the bottom. A fitting hole 32 is formed at the inner end of the terminal 31. The fixed lead bar 30a is fitted through the connection 33. The upper terminal 31 is coupled to the main circuit conductor 27 via a bolt 34, while the lower terminal 31 is coupled to the main circuit conductor 20 via a bolt 34.

【0012】真空インタラプタ30の可動リード棒30
bどうしを接続するために接続導体35が設けられる。
接続導体35には一対の挿通孔が形成されるとともに夫
々の挿通孔には集電コンタクト36を介して摺動自在に
可動リード棒30bが挿通されている。ケース29にお
ける仕切部29aの右端には取付金具37が埋設されて
おり、接続導体35の中央部がボルト38を介して着脱
自在に取付金具37に結合されている。そして、真空イ
ンタラプタ30が動かないように拘束するため、夫々の
真空インタラプタ30と接続導体35との間には圧縮ば
ね39が設けられている。
The movable lead rod 30 of the vacuum interrupter 30
A connection conductor 35 is provided for connecting b.
A pair of insertion holes are formed in the connection conductor 35, and the movable lead bar 30 b is slidably inserted into each of the insertion holes via a current collecting contact 36. A mounting bracket 37 is embedded at the right end of the partition 29 a in the case 29, and a central portion of the connection conductor 35 is detachably connected to the mounting bracket 37 via a bolt 38. A compression spring 39 is provided between each vacuum interrupter 30 and the connection conductor 35 in order to restrain the vacuum interrupter 30 from moving.

【0013】図2に示すように、機器タンク13には開
口部13aが形成され、開口部13aにはパッキン40
を介して取付板41が取り付けられている。取付板41
には連絡孔41aが形成され、連絡孔41aの左側には
パッキン42を介してケース29のフランジ部29bが
結合される一方、右側にはパッキン43aを介して仕切
板43が取り付けられている。取付板41には操作手段
28が取り付けられ、操作手段28に連動連結されて左
右方向へ往復移動する絶縁ロッド44がパッキン44a
を介して気密に仕切板43を貫通している。
As shown in FIG. 2, an opening 13a is formed in the equipment tank 13, and a packing 40 is formed in the opening 13a.
The mounting plate 41 is mounted via the. Mounting plate 41
Is formed with a flange portion 29b of the case 29 via a packing 42 on the left side of the communication hole 41a, and a partition plate 43 is mounted on the right side thereof via a packing 43a. The operating means 28 is attached to the mounting plate 41, and the insulating rod 44, which is linked to the operating means 28 and reciprocates in the left-right direction, has a packing 44a.
Through the partition plate 43 in an airtight manner.

【0014】最後に、絶縁ロッド44と真空インタラプ
タ30との連結部の構造を図3に基づいて説明する。絶
縁ロッド44の先端に連結部材45の中央部が結合され
る一方、連結部材45の両端を貫通する延長ボルト46
の先端が夫々の可動リード棒30bの先端に螺合されて
いる。そして、夫々の延長ボルト46に挿通されたバネ
受け47と連結部材45との間には、延長ボルト46を
囲繞する圧接ばね48が設けられている。
Finally, the structure of the connecting portion between the insulating rod 44 and the vacuum interrupter 30 will be described with reference to FIG. The center of the connecting member 45 is connected to the tip of the insulating rod 44, while the extension bolt 46 penetrates both ends of the connecting member 45.
Are screwed into the ends of the respective movable lead bars 30b. A press-contact spring 48 that surrounds the extension bolt 46 is provided between the spring receiver 47 inserted into each extension bolt 46 and the connecting member 45.

【0015】以上のように、母線タンク15と、接続タ
ンク14を含めた機器タンク13と、ケース18との内
部が夫々気密に構成され、夫々の3つの空間には絶縁ガ
スが個別に充填されている。
As described above, the interiors of the bus tank 15, the equipment tank 13 including the connection tank 14, and the case 18 are airtightly constructed, and the three spaces are individually filled with insulating gas. ing.

【0016】次に、斯かる遮断器の作用を説明する。図
1に示すように、主回路導体20は遮断器18を構成す
るケース29と絶縁支持部29cを介して支持される。
Next, the operation of the circuit breaker will be described. As shown in FIG. 1, the main circuit conductor 20 is supported via a case 29 forming the circuit breaker 18 and an insulating support portion 29c.

【0017】真空インタラプタ30を交換するには、以
下の手順で行う。まず、図2において操作手段28を取
り外したのちに、仕切板43に取り付けた図示しないバ
ルブ等を介してケース29内の絶縁ガスを抜き取る。次
に仕切板43を取り外し、図3に示すボルト38を取り
外す。すると、図4に示すように絶縁ロッド44を右方
へ引っ張ることにより、一対の真空インタラプタ30を
ケース29から外部へ引き出すことができる。
The procedure for replacing the vacuum interrupter 30 is as follows. First, after removing the operation means 28 in FIG. 2, the insulating gas in the case 29 is extracted through a valve or the like (not shown) attached to the partition plate 43. Next, the partition plate 43 is removed, and the bolt 38 shown in FIG. 3 is removed. Then, as shown in FIG. 4, the pair of vacuum interrupters 30 can be pulled out of the case 29 by pulling the insulating rod 44 rightward.

【0018】このあとは、新しい真空インタラプタ30
を絶縁ロッド44に取り付けたのちに前記と逆の手順で
ケース29内に真空インタラプタ30を挿入して取り付
け、仕切板43を取り付けたのちにケース29内に絶縁
ガスを充填し、最後に操作手段28を取り付ける。
Thereafter, a new vacuum interrupter 30
Is attached to the insulating rod 44, the vacuum interrupter 30 is inserted into the case 29 in the reverse order to the above, and then the partition plate 43 is attached. 28 is attached.

【0019】真空インタラプタの交換作業の際に、機器
タンク内の絶縁ガスを抜き取る必要がないので、従来の
ように送り出し側の開閉器を開にする必要がない。
Since there is no need to remove the insulating gas from the equipment tank when replacing the vacuum interrupter, there is no need to open the delivery-side switch unlike the prior art.

【0020】なお、本実施例では絶縁支持部により主回
路導体を支持する構成にしたが、絶縁支持部にその他の
部品を支持するようにしてもよい。
In this embodiment, the main circuit conductor is supported by the insulating support. However, other components may be supported by the insulating support.

【0021】[0021]

【発明の効果】以上の説明からわかるように、請求項1
に係る遮断器によれば絶縁材料からなるケースの内部に
真空インタラプタを並列に並べて収容するので、遮断器
が小形化される。また、機器を収容するタンクの開口部
をケースで閉塞し、ケースがタンクの内部に位置すると
ともにケースの内部がタンクの外部へ開口する状態でケ
ースを取り付けることにより、タンクの内部とは分離し
た状態でケースの内部に絶縁ガスを充填することがで
き、タンク内の絶縁ガスを抜くことなくケース内の真空
インタラプタを交換することができることになり、真空
インタラプタの交換作業が容易になる。更に、タンク内
の絶縁ガスを抜かずに真空インタラプタの交換ができる
ので、従来のように送り出し側の開閉器を開にする必要
がない。このほか、ケースに絶縁支持部を設けたので、
タンクに新たに絶縁部材を取り付けることなく導体等を
支持でき、部品点数が減少するとともにガス絶縁開閉装
置の小形化につながる。
As can be seen from the above description, claim 1
According to the circuit breaker according to (1), the vacuum interrupters are arranged in parallel and housed inside the case made of an insulating material, so that the circuit breaker is downsized. In addition, the opening of the tank containing the equipment was closed with a case, and the case was attached to the case with the case positioned inside the tank and the inside of the case opened to the outside of the tank, thereby separating the inside of the tank from the inside of the tank. In this state, the inside of the case can be filled with the insulating gas, and the vacuum interrupter in the case can be replaced without removing the insulating gas in the tank, so that the work of replacing the vacuum interrupter becomes easy. Further, since the vacuum interrupter can be replaced without removing the insulating gas in the tank, there is no need to open the delivery-side switch unlike the related art. In addition, the case is provided with an insulating support,
The conductor and the like can be supported without attaching a new insulating member to the tank, which reduces the number of parts and leads to downsizing of the gas insulated switchgear.

【図面の簡単な説明】[Brief description of the drawings]

【図1】本発明による遮断器を用いたガス絶縁開閉装置
の構成図。
FIG. 1 is a configuration diagram of a gas insulated switchgear using a circuit breaker according to the present invention.

【図2】本発明による遮断器と操作手段との関係に係
り、(a)は正面図、(b)は(a)の左側面図。
2 (a) is a front view, and FIG. 2 (b) is a left side view of FIG. 2 (a), relating to the relationship between the circuit breaker and the operating means according to the present invention.

【図3】本発明による遮断器の構成に係り、(a)は断
面図、(b)は(a)のA−A矢視図。
FIGS. 3A and 3B relate to a configuration of a circuit breaker according to the present invention, wherein FIG. 3A is a cross-sectional view, and FIG.

【図4】本発明による遮断器における作用説明図。FIG. 4 is an operation explanatory view of the circuit breaker according to the present invention.

【図5】従来の遮断器を用いたガス絶縁開閉装置の構成
図。
FIG. 5 is a configuration diagram of a gas-insulated switchgear using a conventional circuit breaker.

【符号の説明】[Explanation of symbols]

13…機器タンク 13a…開口部 29…ケース 29c…絶縁支持部 29d…インサート 29e…タップ穴 30…真空インタラプタ 30a…固定リード棒 30b…可動リード棒 31…端子 35…接続導体 38…ボルト 39…圧縮ばね DESCRIPTION OF SYMBOLS 13 ... Equipment tank 13a ... Opening 29 ... Case 29c ... Insulation support part 29d ... Insert 29e ... Tapped hole 30 ... Vacuum interrupter 30a ... Fixed lead rod 30b ... Movable lead rod 31 ... Terminal 35 ... Connection conductor 38 ... Bolt 39 ... Compression Spring

Claims (1)

【特許請求の範囲】[Claims] 【請求項1】 絶縁材料により形成された略有底筒形状
のケースの内部に、一対の真空インタラプタを、固定リ
ード棒がケースの底部側となるように並列に並べて収容
し、ケースの底部を気密に貫通するとともにケースの内
側で夫々の固定リード棒と個別に導通する端子を設ける
一方、対となる真空インタラプタの可動リード棒を夫々
摺動自在に挿通した挿通孔を有する接続導体を着脱自在
にケースの内面に結合し、夫々の真空インタラプタと接
続導体との間には圧縮ばねを設け、 絶縁ガスが充填されたタンクの開口部を、前記ケースで
閉塞し、前記ケースがタンクの内部に位置するとともに
前記ケースの内部がタンクの外部へ開口する状態でタン
クに取り付け得るようにし、 前記ケースにおける前記一対の端子の間から突出する絶
縁支持部を設け、当該絶縁支持部にはタップ穴を形成し
た固定用インサートを埋設したことを特徴とする遮断
器。
A pair of vacuum interrupters are accommodated in a substantially cylindrical case having a bottom formed of an insulating material, with a pair of vacuum interrupters arranged side by side so that a fixed lead bar is on the bottom side of the case. While providing terminals that penetrate airtightly and conduct individually with each fixed lead rod inside the case, connection conductors with insertion holes through which the movable lead rods of the paired vacuum interrupters are slidably inserted are detachable. A compression spring is provided between each vacuum interrupter and the connection conductor, and the opening of the tank filled with the insulating gas is closed by the case, and the case is placed inside the tank. An insulating support portion protruding from between the pair of terminals in the case so as to be attached to the tank while being positioned and the inside of the case is open to the outside of the tank. Provided, breaker, characterized in that embedded the locking insert to form a tapped hole in the insulating support.
JP00000997A 1997-01-06 1997-01-06 Breaker Expired - Lifetime JP3777693B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP00000997A JP3777693B2 (en) 1997-01-06 1997-01-06 Breaker

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP00000997A JP3777693B2 (en) 1997-01-06 1997-01-06 Breaker

Publications (2)

Publication Number Publication Date
JPH10201026A true JPH10201026A (en) 1998-07-31
JP3777693B2 JP3777693B2 (en) 2006-05-24

Family

ID=11462471

Family Applications (1)

Application Number Title Priority Date Filing Date
JP00000997A Expired - Lifetime JP3777693B2 (en) 1997-01-06 1997-01-06 Breaker

Country Status (1)

Country Link
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP2034501A1 (en) * 2007-09-07 2009-03-11 Eaton Electric B.V. Quickly exchangeable switching device in fixed type medium voltage switchgear system

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP2034501A1 (en) * 2007-09-07 2009-03-11 Eaton Electric B.V. Quickly exchangeable switching device in fixed type medium voltage switchgear system
WO2009031900A1 (en) * 2007-09-07 2009-03-12 Eaton Electric B.V. Quickly exchangeable switching device in fixed type medium voltage switchgear system
CN101796602A (en) * 2007-09-07 2010-08-04 伊顿电气公司 Quickly exchangeable switching device in fixed type medium voltage switchgear system
US8043129B2 (en) 2007-09-07 2011-10-25 Eaton Electric B.V. Quickly exchangeable switching device in fixed type medium voltage switchgear system

Also Published As

Publication number Publication date
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