JP2006156103A - Cable run switch device and electric drum device having the cable run switch device - Google Patents

Cable run switch device and electric drum device having the cable run switch device Download PDF

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JP2006156103A
JP2006156103A JP2004344382A JP2004344382A JP2006156103A JP 2006156103 A JP2006156103 A JP 2006156103A JP 2004344382 A JP2004344382 A JP 2004344382A JP 2004344382 A JP2004344382 A JP 2004344382A JP 2006156103 A JP2006156103 A JP 2006156103A
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electric circuit
power
electric
load
time
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JP4498899B2 (en
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Susumu Sato
佐藤  進
Masao Tsukada
正男 塚田
Kinya Tanabe
欣也 田辺
Tatsuya Kitagawa
達也 北川
Ken Aoyama
謙 青山
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Fuji Electric Co Ltd
Toyota Motor Corp
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Fuji Electric Systems Co Ltd
Toyota Motor Corp
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a cable run switch device that ensures safety by cutting off feeding if detecting the connection of a load to cable runs within a fixed time of recovery from a service interruption, and eliminates a troublesome routine recovery operation by maintaining feeding if detecting no load connection to the cable runs; and an electric drum device having the cable run switch device. <P>SOLUTION: A timer means 40 for providing a timing operation of a predetermined time t1 from a recovery time point is connected between cable runs 11 and 12 on a load side of a cable run switch 20 for breaking the cable runs in response to an operation command. If a current detection means 50 for detecting a load current produces a detection output during the timing operation t1 of the timer means 40, the operation command Tc is applied to the cable run switch 20 to break a feed line. <P>COPYRIGHT: (C)2006,JPO&NCIPI

Description

本発明は、例えば電動工具等の負荷に給電する電路に介挿して用いられる電路開閉装置及びこの電路開閉装置を備えた電工ドラム装置に関するものであり、特に、停電後に復電した際の上記負荷たる電動工具等に関係する作業者や器物等の安全を利便性を犠牲にすることなく確保できるようにしたこの種の装置に関する。   The present invention relates to, for example, an electric circuit switchgear that is inserted in an electric circuit that supplies power to a load such as an electric tool, and an electric drum device that includes the electric circuit switchgear, and in particular, the load when power is restored after a power failure. The present invention relates to an apparatus of this type that can ensure the safety of workers and equipment related to a power tool or the like without sacrificing convenience.

一般に、電気ドリルその他の電動工具や溶接機等の電気機器を電工ドラム等から電源をとって用いる現場において、停電がある程度の時間に亘って継続した場合、停電の原因を調査し復電させるために、作業者が電源元まで行って状態を確認し、原因の調査及び除去を行っている。このため、作業者が電動工具や溶接機等から離れている状態にあったり、或いは他の作業者等が復電の操作に向かい元の作業者は復電操作の様子を認識できないといった状態が発生する。   In general, when a power outage continues for a certain period of time at a site where electric equipment such as an electric drill or other electric tool or welding machine is powered from an electric drum, etc., to investigate the cause of the power outage and restore power In addition, the operator goes to the power source to check the state, and investigates and removes the cause. For this reason, there is a state where the worker is away from the electric tool, the welding machine, or the like, or the other worker is facing the power recovery operation and the original worker cannot recognize the state of the power recovery operation. appear.

従って、復電したときに、上述のような電気機器が不用意に作動を再開して器物や人体に損傷を与えてしまう虞がないようにする配慮が求められる。また、漏電遮断器がハンドルオンの状態で停電状態が一定時間以上継続した後復電した場合、負荷であるモータの状態も確認できないままで急に再起動したり、ヒータ類のスイッチの切り忘れによって火災が発生したりすることを予防する機能が求められる。   Therefore, when power is restored, consideration is required to prevent the above-described electrical equipment from inadvertently resuming operation and damaging objects and human bodies. Also, if the power breaker continues for a certain period of time with the earth leakage circuit breaker turned on and then recovers, the motor may be restarted suddenly without confirming the load, or the heaters may be forgotten to switch off. A function to prevent the occurrence of a fire is required.

上述のような要請に応える復電時遮断機能付漏電遮断器が従来提案されている。この従来の提案における復電時遮断機能付漏電遮断器は、漏電遮断器の開路部の電源側に電路間の電圧の変化に所定の遅延をもって応答する遅延回路設け、この遅延回路の出力端に継電器の駆動部を接続している。そして、前記漏電遮断器の負荷側の何れか2本の電路間に、トリップコイルと前記継電器のブレーク接点とを直列接続した回路と、本来の漏電遮断器として機能するための漏電検出回路部(零相変流器出力の増幅回路部)とを並列に接続した構成を有する。   Conventionally, an earth leakage circuit breaker with a function of interrupting power recovery that meets the above-described requirements has been proposed. In this conventional proposal, the leakage breaker with a power interruption function is provided on the power supply side of the open circuit portion of the leakage breaker with a delay circuit that responds to a change in voltage between the electric circuits with a predetermined delay, and at the output terminal of this delay circuit. The drive part of the relay is connected. A circuit in which a trip coil and a break contact of the relay are connected in series between any two electric circuits on the load side of the leakage breaker, and a leakage detection circuit unit for functioning as an original leakage breaker ( The amplifier circuit section of the zero-phase current transformer output) is connected in parallel.

このような構成の従来の復電時遮断機能付漏電遮断器では、停電発生後も遅延回路の時定数に応じた一定時間が経過するまでは上述のブレーク接点は開切状態を維持しているため、この一定時間内では前記漏電遮断器の負荷側の電路の電圧が復電によって確立してもトリップコイルに給電されることがなく遮断器は閉路状態を維持する。従って、瞬時停電毎に漏電遮断器のハンドルがトリップして給電が断たれる不都合がなく、一方、停電時間が一定時間以上に亘って継続した場合は、継電器のブレーク接点が閉成するため、前記漏電遮断器の負荷側の電路の電圧が復電によって確立すると直ちにトリップコイルに給電され、遮断器は開切状態に移行、即ちトリップする(例えば特許文献1)。
特開平09−115412号公報(段落0001〜0010、図1、図3)
In the conventional earth leakage circuit breaker with the power interruption function having such a configuration, the above-described break contact is maintained in the open state until a certain time corresponding to the time constant of the delay circuit elapses after the power failure occurs. For this reason, even if the voltage of the electric circuit on the load side of the earth leakage circuit breaker is established by power recovery within this fixed time, the trip coil is not supplied with power and the circuit breaker maintains a closed state. Therefore, there is no inconvenience that the handle of the earth leakage circuit breaker trips every momentary power failure and the power supply is cut off.On the other hand, if the power failure time continues for a certain time or more, the break contact of the relay is closed. As soon as the voltage on the load side of the earth leakage breaker is established by power recovery, the trip coil is supplied with power, and the circuit breaker shifts to an open state, that is, trips (for example, Patent Document 1).
JP 09-115412 (paragraphs 0001 to 0010, FIGS. 1 and 3)

上述した従来の技術は次に述べるような課題を残している。即ち、特許文献1に開示された技術では、敢えて遅延回路を設けて短時間の停電には応動しないように構成されているため、遅延回路の時定数の値によっては短時間の停電後に復電すると、直ちに負荷側の電動工具等に給電が再開されることになるが、例えば作業者が電気ドリルの刃先に指で触れていたり、刃先が設備等の器物に触れているときに不用意に給電が再開されれば、急にその刃先が回転して作業者が負傷してしまったり器物が損傷を被る虞もある。   The conventional technology described above has the following problems. That is, in the technique disclosed in Patent Document 1, a delay circuit is intentionally provided so as not to respond to a short-time power failure. Therefore, depending on the value of the time constant of the delay circuit, the power is restored after a short-time power failure. Then, power supply to the load-side power tool etc. is resumed immediately.For example, when the operator touches the blade edge of the electric drill with a finger or the blade edge touches equipment such as equipment. If the power supply is resumed, the cutting edge may suddenly rotate and the operator may be injured or the object may be damaged.

一方、上述のような短時間ではなく一定時間継続した停電の後に復電した場合は、継電器のブレーク接点が閉成しているため、前記漏電遮断器の負荷側の電路の電圧が復電によって確立すると、実際に負荷が接続されているか否かに関わらず、一律にトリップすることになる。遅延回路の時定数の値が適切であれば、上述のように不用意に給電が再開されてしまう虞がなく安全確保の上では望ましい状態であるとも言える。   On the other hand, when power is restored after a power failure that has continued for a certain time instead of a short time as described above, the break contact of the relay is closed, so that the voltage on the load side of the leakage breaker is Once established, it will trip uniformly regardless of whether the load is actually connected or not. If the value of the time constant of the delay circuit is appropriate, it can be said that it is a desirable state in terms of ensuring safety without the possibility of inadvertent resumption of power supply as described above.

しかしながら、作業者が安全確保のために既に電動工具その他の負荷をコンセントから切り離したりスイッチを切ったりする安全措置を講じている場合にも、それに無関係に必ず一度は遮断器がトリップしてしまうのでは、安全確保の視点からも意味がないばかりでなく、既に安全措置を講じたか否かに因らず一律に復帰操作を行わなくてはならなくなる等、利便性の点では寧ろ不利になってしまう。   However, if the operator has already taken safety measures such as disconnecting the power tool or other load from the outlet or switching it off to ensure safety, the circuit breaker will always trip once regardless of this. However, it is not only meaningful from the viewpoint of ensuring safety, but it is also disadvantageous in terms of convenience, such as having to perform a return operation uniformly regardless of whether safety measures have already been taken. End up.

本発明は、上述したような従来技術における課題に着目してなされたものであり、比較的短時間の停電の後に復電した場合にも、復電後一定時間内に電路に負荷が接続されていることが検出されれば給電を断って安全を確保する一方、復電後一定時間内に電路に負荷が接続されていることが検出されないときには給電を維持し、敢えて一律に復帰操作行わなくてはならないといった無駄と煩わしさを一掃したこの種の電路開閉装置及びこの電路開閉装置を備えた電工ドラム装置を提供することを目的としている。   The present invention has been made paying attention to the problems in the prior art as described above, and even when power is restored after a relatively short power failure, a load is connected to the electric circuit within a certain time after power restoration. If it is detected, the power supply is turned off to ensure safety.On the other hand, if it is not detected that a load is connected to the circuit within a certain time after the power recovery, the power supply is maintained, and no return operation is performed. It is an object of the present invention to provide an electric circuit switch device of this type that eliminates waste and annoyance that must not be performed, and an electric drum device including the electric circuit switch device.

上記課題を解決するべく、本願では次に列記するような技術を提案する。
(1)電源に接続される受電端と負荷に給電する給電端との間の電路に介挿され、供給された作動指令に応答して当該電路を開切する電路開閉器と、前記受電端に供給される電源に係る停電発生後の復電時点から所定時間の限時動作を行うように配設されたタイマ手段と、前記電路開閉器の負荷側の電路の電流を検出するように配設され前記タイマ手段による限時動作時間内に電流が検出されたときには当該作動指令を前記電路開閉器に与える電流検出手段と、を備えたことを特徴とする電路開閉装置。
In order to solve the above-described problems, the present application proposes the following techniques.
(1) An electric circuit switch that is inserted in an electric circuit between a power receiving end connected to a power source and a power feeding end that supplies power to the load and opens the electric circuit in response to a supplied operation command, and the power receiving end Timer means arranged to perform a time-limited operation for a predetermined time from the time of power restoration after the occurrence of a power failure relating to the power supplied to the power supply, and arranged to detect the current of the electric circuit on the load side of the electric circuit switch And a current detection means for providing an operation command to the electric circuit switch when a current is detected within a time limit operation time by the timer means.

(2)前記タイマ手段は、前記電路開閉器の負荷側の電路間に接続され、復電による電路間の電圧の立ち上がりに同期して限時動作を開始するように構成されていることを特徴とする(1)の電路開閉装置。
(3)前記電流検出手段は、前記タイマ手段の限時動作期間中閉路状態を維持するメイク接点が電流検出コイルに直列に介挿されていることを特徴とする(1)、(2)の何れか一に記載の電路開閉装置。
(2) The timer means is connected between the load-side electric circuits of the electric circuit switch, and is configured to start a timed operation in synchronization with a rise in voltage between the electric circuits due to power recovery. The electric circuit switchgear according to (1).
(3) The current detection means is characterized in that a make contact that maintains a closed state during a time limit operation period of the timer means is inserted in series in the current detection coil. The electric circuit switchgear according to claim 1.

(4)前記電路開閉器は、前記作動指令に応答して当該電路を開切するように構成された漏電遮断器であることを特徴とする(1)〜(3)のいずれか一に記載の電路開閉装置。
(5)前記電路開閉器は、前記作動指令に応答して当該電路を開切するように構成されたサーキットブレーカであることを特徴とする(1)〜(4)のいずれか一に記載の電路開閉装置。
(6)前記(1)〜(5)のいずれか一に記載の電路開閉装置を巻き取りドラム筐体内に備えたことを特徴とする電工ドラム装置。
(4) The electric circuit switch is an earth leakage circuit breaker configured to open the electric circuit in response to the operation command, according to any one of (1) to (3), Electric circuit switchgear.
(5) The circuit breaker is a circuit breaker configured to open the circuit in response to the operation command, (1) to (4), Electric circuit switchgear.
(6) An electric drum apparatus comprising the winding circuit casing in the winding circuit case according to any one of (1) to (5).

比較的短時間の停電の後に復電した場合にも、復電後一定時間内に電路に負荷が接続されていることが検出されれば直ちに給電を断って確実に安全を確保する一方、復電後一定時間内に電路に負荷が接続されていることが検出されないときには給電を維持し、安全措置を講じたか否かに因らず一律に復帰操作行わなくてはならないといった無駄と煩わしさを一掃したこの種の電路開閉装置及びこの電路開閉装置を備えた電工ドラム装置を具現することができる。   Even when power is restored after a relatively short power failure, if it is detected that a load is connected to the circuit within a certain period of time after power is restored, power is immediately turned off to ensure safety, while power is restored. When it is not detected that a load is connected to the electric circuit within a certain period of time after power is supplied, power supply is maintained, and the return operation must be performed uniformly regardless of whether or not safety measures have been taken. It is possible to embody such a type of electric circuit switching device that has been wiped out, and an electric drum device including this electric circuit switching device.

以下、本発明の実施の形態を図面を参照して説明する。
図1は本発明を適用した電路開閉装置を表わす回路図である。図中、プラグ10より負荷側の各電路11,12は後述する作動指令に応答して当該電路を開切する電路開閉器である漏電遮断器(ELCB:Earth Leakage Circuit Breaker)20の各接点21,22を介して各負荷L1,L2,L3,L4に給電し得るようになされた各コンセント31,32,33,34に各接続されている。尚、電路開閉器としては、このようなELCBに替えて、作動指令に応答して当該電路を開切するように構成されたサーキットブレーカを適用してもよい。
Hereinafter, embodiments of the present invention will be described with reference to the drawings.
FIG. 1 is a circuit diagram showing an electric circuit switching device to which the present invention is applied. In the drawing, the electric circuits 11 and 12 on the load side of the plug 10 are each contact 21 of an earth leakage circuit breaker (ELCB) 20 which is an electric circuit switch for opening and closing the electric circuit in response to an operation command described later. , 22 to the respective outlets 31, 32, 33, 34 that can supply power to the loads L 1, L 2, L 3, L 4. As the electric circuit switch, a circuit breaker configured to open the electric circuit in response to an operation command may be applied instead of such an ELCB.

漏電遮断器20の負荷側の電路11,12間には、停電後に復電した時点、即ち、電路11,12間の電圧の立ち上がりにおける所定時点を時間の起算点として所定の限時動作(例えば、500ミリ秒〜1秒程度)を行うタイマ手段としてのタイマ40の限時回路部41が接続されている。また、電路11にはCT(そのコイル)51が装架され、このコイル51に上述のタイマ40の限時動作を行うメイク接点42と漏電遮断器20への作動指令(トリップ指令Tc)を発する増幅回路52が直列に接続されている。   Between the electric circuits 11 and 12 on the load side of the earth leakage breaker 20, a predetermined time-limited operation (for example, a time when power is restored after a power failure, that is, a predetermined time point at the rising of the voltage between the electric circuits 11 and 12, for example, A time limit circuit unit 41 of a timer 40 is connected as a timer means for performing (from about 500 milliseconds to 1 second). In addition, a CT (its coil) 51 is mounted on the electric circuit 11, and an amplification command 42 for issuing an operation command (trip command Tc) to the make contact 42 and the earth leakage breaker 20 for performing the time limit operation of the timer 40 described above. A circuit 52 is connected in series.

これらコイル51、メイク接点42、及び、増幅回路52が図示のように閉回路をなして、電流検出手段50が構成される。この電流検出手段50は、電路開閉器(漏電遮断器20)の負荷側の電路11(12でもよい)の電流をコイル51によって検出するように配設され、タイマ手段(タイマ40)による限時動作時間内に電流が検出されたときには作動指令(トリップ指令Tc)を電路開閉器20に与える。メイク接点42はタイマ40の限時動作期間中閉路状態を維持する。   The coil 51, the make contact 42, and the amplifier circuit 52 form a closed circuit as shown in the figure, and the current detection means 50 is configured. This current detection means 50 is arranged so as to detect the current of the load-side electric circuit 11 (may be 12) of the electric circuit switch (leakage breaker 20) by means of the coil 51, and the time limit operation by the timer means (timer 40). When the current is detected within the time, an operation command (trip command Tc) is given to the electric circuit switch 20. The make contact 42 is kept closed during the time limit operation period of the timer 40.

図2は、図1の装置において一定時間以上停電が継続した後復電し、復電後所定時間内に負荷電流が検出された場合の動作を説明するためのタイミング図である。図2(a)は、プラグ10から供給される電源の停電の発生と復電の状況を、図2(b)は、タイマ40のメイク接点42の開閉のタイミングを、図2(c)は、CT50による電路11の負荷電流の検出状況を、図2(d)は、トリップ指令Tcの発生のタイミングを、図2(e)は、漏電遮断器(ELCB)20の接点21,22の開閉状況を夫々表している。   FIG. 2 is a timing diagram for explaining the operation when power is restored after a power failure continues for a certain time or more in the apparatus of FIG. 1 and a load current is detected within a predetermined time after power restoration. 2A shows the occurrence of power failure and power recovery of the power supplied from the plug 10, FIG. 2B shows the opening / closing timing of the make contact 42 of the timer 40, and FIG. FIG. 2D shows the generation timing of the trip command Tc, and FIG. 2E shows the opening and closing of the contacts 21 and 22 of the leakage breaker (ELCB) 20. Each situation is represented.

図2(a)のタイミングで停電が一定時間以上継続した後復電すると、図2(b)のように、復電したタイミングでタイマ40が限時動作を開始し、所定の負荷監視時間t1(本実施形態では500ミリ秒〜1秒程度)の期間中メイク接点42が閉成してその状態を維持する。図2(c)のように、この負荷監視時間t1内に負荷電流が検出されると、図2(d)に表されたように、電流検出手段50の増幅回路52は直ちにトリップ指令Tcを発して漏電遮断器(ELCB)20に与える。このトリップ指令Tcに応じて、図2(e)に表わされたように、漏電遮断器(ELCB)20はその接点21,22を開切する。   When the power failure continues for a certain time or more at the timing shown in FIG. 2A, the timer 40 starts the time limit operation at the timing when the power is restored as shown in FIG. 2B, and the predetermined load monitoring time t1 ( In the present embodiment, the make contact 42 is closed during the period of about 500 milliseconds to 1 second) and the state is maintained. As shown in FIG. 2C, when the load current is detected within the load monitoring time t1, as shown in FIG. 2D, the amplifier circuit 52 of the current detection means 50 immediately outputs the trip command Tc. And give to the earth leakage breaker (ELCB) 20. In response to the trip command Tc, the earth leakage breaker (ELCB) 20 opens its contacts 21 and 22 as shown in FIG.

上述のように、本実施形態の装置では、停電が一定時間以上継続した後復電したときには、復電したタイミングから所定の負荷監視時間t1の期間中負荷電流の発生を監視し、この期間t1内に負荷電流の発生が検出されたときには直ちに漏電遮断器(ELCB)20の接点21,22を開切して負荷への給電を断ち、負荷として繋がれた電気ドリルやその他の電気機器等が不用意に再起動してしまう危険を回避し、人や器物の安全を確保する。   As described above, in the apparatus according to the present embodiment, when a power failure continues for a certain time or longer and power is restored, generation of load current is monitored during a predetermined load monitoring time t1 from the power restoration timing, and this period t1 When the occurrence of load current is detected, the contacts 21 and 22 of the earth leakage breaker (ELCB) 20 are immediately opened to cut off the power supply to the load, and an electric drill or other electric equipment connected as a load Avoid the danger of inadvertent restarts and ensure the safety of people and equipment.

図3は、図1の装置において一定時間以上停電が継続した後復電し、復電後所定時間内に負荷電流が検出されなかった場合の動作を説明するためのタイミング図である。図2におけると同様に、図3(a)は、プラグ10から供給される電源の停電の発生と復電の状況を、図3(b)は、タイマ40のメイク接点42の開閉のタイミングを、図3(c)は、CT50による電路11の負荷電流の検出状況を、図3(d)は、トリップ指令Tcの発生のタイミング(この場合は発生しない)を、図3(e)は、漏電遮断器(ELCB)20の接点21,22の開閉状況(この場合は閉成状態を維持する)を夫々表している。   FIG. 3 is a timing diagram for explaining the operation in the case where the power failure continues in the apparatus of FIG. 1 for a certain time or more and power is restored and no load current is detected within a predetermined time after power restoration. As in FIG. 2, FIG. 3A shows the occurrence of power failure and power recovery of the power supplied from the plug 10, and FIG. 3B shows the timing of opening and closing the make contact 42 of the timer 40. 3 (c) shows the detection status of the load current of the electric circuit 11 by CT50, FIG. 3 (d) shows the generation timing of the trip command Tc (not generated in this case), and FIG. The switching states of the contacts 21 and 22 of the earth leakage breaker (ELCB) 20 (in this case, the closed state is maintained) are shown.

図3(a)のタイミングで停電が一定時間以上継続した後復電すると、図3(b)のように、復電したタイミングでタイマ40が限時動作を開始し、所定の負荷監視時間t1(本実施形態では500ミリ秒〜1秒程度)の期間中メイク接点42はその閉成状態を維持する点は図2を参照して既述の状況と同様である。しかしながら、図3では、図3(c)のように、この負荷監視時間t1内には負荷電流が検出されず、この期間t1を経過した後に負荷電流が検出される場合を想定している。   When the power failure continues for a certain time or more at the timing shown in FIG. 3A, the timer 40 starts a time limit operation at the timing when the power is restored as shown in FIG. 3B, and the predetermined load monitoring time t1 ( In the present embodiment, the makeup contact 42 maintains its closed state during a period of about 500 milliseconds to 1 second), which is similar to the situation described above with reference to FIG. However, in FIG. 3, it is assumed that the load current is not detected within the load monitoring time t1, and the load current is detected after the period t1 has elapsed, as shown in FIG. 3C.

これは、例えば、停電後復電前に、作業者が安全確保のために既に電動工具その他の負荷をコンセント31〜34から切り離したり電気機器のスイッチを切ったりする安全措置を講じている場合や、復電後のタイミングで初めてコンセントに負荷を繋いで稼動させるような場合である。このような場合では、既に安全確保の措置が講じられているか、或いは、本来的に既述のような危惧が存在しない場合であるから、さらに重ねて安全のために遮断器をトリップさせて給電を断つようなことは無用である。   This may be the case, for example, when the operator has already taken safety measures to disconnect the power tool or other load from the outlets 31 to 34 or to switch off the electrical equipment to ensure safety before power is restored after a power failure. This is the case when a load is connected to an outlet for the first time after power is restored. In such a case, measures to ensure safety have already been taken, or there is essentially no fear as described above. It is useless to sever.

従って、図3(d)に表わされたように、電流検出手段50の増幅回路52はトリップ指令Tcを発するに到らず、図3(e)に表わされたように、漏電遮断器(ELCB)20はその接点21,22の閉成状態を維持する。このため、負荷監視時間t1を経過した後に正規の操作で再起動させたか、或いはまた、新たに稼動し始めた負荷機器は、一旦給電を断たれて接点21,22の再投入操作を俟たねば作動できなくなる等の不便を被ることなく正常に稼動状態を維持することができる。尚、以上において、漏電遮断器(ELCB)20自体は零相電流を検出してトリップする通常の漏電遮断器としての機能を有するものである点については、他の周知のELCBと同様である。   Therefore, as shown in FIG. 3D, the amplifier circuit 52 of the current detecting means 50 does not issue the trip command Tc, and as shown in FIG. (ELCB) 20 maintains the closed state of its contacts 21 and 22. For this reason, after the load monitoring time t1 has elapsed, the load device that has been restarted by a normal operation or has started to operate newly has been turned off once and asked to restart the contacts 21 and 22 The operation state can be normally maintained without inconvenience such as being unable to operate. In the above description, the leakage breaker (ELCB) 20 itself has a function as a normal leakage breaker that detects and trips the zero-phase current, and is similar to other well-known ELCBs.

図4は図1の電路開閉装置を備えた電工ドラム装置を表わす図である。図4において図1との対応部は同一の符号により示してある。図示の電工ドラム装置100は、先端にプラグ10が設けられ図1の各電路11,12に連なる導線を被覆内の導体として有する電気コード15を巻き取る中空円筒状の巻き取りドラム筐体110と、この巻き取りドラム筐体110の両側面に設けられた鍔状のフランジ部材121及び122とを有するドラム部130と、このドラム部130を支持して自立させる金属パイプ等で構成された支持フレーム140とを含んで構成されている。尚、フランジ部材121の外周近傍位置には外部に突出するようにして巻き取り操作用の取っ手123が設けられ、支持フレーム140にはその頂上位置に公知の運搬用把手141が付設されている。   FIG. 4 is a diagram showing an electric drum apparatus provided with the electric circuit switching device of FIG. In FIG. 4, corresponding parts to those in FIG. 1 are denoted by the same reference numerals. The illustrated electric drum apparatus 100 includes a hollow cylindrical take-up drum casing 110 that winds up an electric cord 15 provided with a plug 10 at the tip and having a conductive wire connected to each of the electric paths 11 and 12 of FIG. A drum frame 130 having flange-shaped flange members 121 and 122 provided on both side surfaces of the take-up drum casing 110, and a support frame constituted by a metal pipe or the like that supports the drum section 130 and is self-supporting. 140. In addition, a handle 123 for winding operation is provided in the vicinity of the outer periphery of the flange member 121 so as to protrude to the outside, and a known carrying handle 141 is attached to the support frame 140 at the top position.

巻き取りドラム筐体110内には、図1を参照して既述の漏電遮断器(ELCB)20と、各コンセント31〜34、及び、タイマ40と電流検出手段50等を含んで構成される負荷停止回路60が収納され、それらが図示のように巻き取りドラム筐体110の一方の側板部111側に、各個の機能に適った姿勢及び配置で部分的に露呈するように配設されている。   The take-up drum casing 110 includes the above-described earth leakage breaker (ELCB) 20 with reference to FIG. 1, outlets 31 to 34, a timer 40, a current detection means 50, and the like. The load stop circuit 60 is accommodated, and as shown in the drawing, the load stop circuit 60 is disposed on one side plate portion 111 side of the take-up drum casing 110 so as to be partially exposed in a posture and arrangement suitable for each function. Yes.

図4のような電工ドラム装置100を用い、その各コンセント31〜34から電源をとるようにして電気ドリルその他の電動工具や溶接機等の電気機器を用いれば、図1乃至図3を参照して説明したような便宜を全面的に享受でき、一定時間の停電の後に復電したときに、電気機器が不用意に作動を再開して器物や人体に損傷を与えてしまう虞や、ヒータ類のスイッチの切り忘れによって火災が発生したりする虞が一掃される。   If the electric drum apparatus 100 as shown in FIG. 4 is used, and an electric drill or other electric tool such as an electric tool or a welding machine is used by taking power from the respective outlets 31 to 34, refer to FIGS. If the power is restored after a power failure for a certain period of time, electrical equipment may inadvertently resume operation and damage equipment or the human body. The risk of fires due to forgetting to turn off the switch is cleared.

尚、この電工ドラム装置100を用いる当初においては、電気コード15先端のプラグ10を電源に接続してから、図2および図3を参照して説明した負荷監視時間t1が経過するのを待って電動工具等の負荷を起動させる必要がある。しかしながら、既述のようにこの負荷監視時間t1は例えば500ミリ秒〜1秒程度に設定されるので、電工ドラム装置100の電気コード15を例えば10数メートル引き出して先端のプラグ10を電源に接続した作業者が歩行速度で電工ドラム装置100の設置位置に戻って来るまでには負荷監視時間t1は既に経過しているものと見込まれ、通常の場合、負荷監視時間だけ待機することが電工ドラム装置100を用いる場合の利便性を損なう虞はない。   At the beginning of using the electric drum device 100, after the plug 10 at the tip of the electric cord 15 is connected to the power source, the load monitoring time t1 described with reference to FIGS. 2 and 3 is awaited. It is necessary to activate a load such as a power tool. However, as described above, since the load monitoring time t1 is set to, for example, about 500 milliseconds to 1 second, the electric cord 15 of the electric drum device 100 is pulled out by, for example, a few dozen meters and the plug 10 at the tip is connected to the power source. The load monitoring time t1 is expected to have already passed until the worker who has returned to the installation position of the electric drum device 100 at the walking speed, and in an ordinary case, the electric drum may wait for the load monitoring time. There is no risk of impairing convenience when using the device 100.

本発明を適用した電路開閉装置を表わす回路図である。It is a circuit diagram showing the electric circuit switchgear to which this invention is applied. 図1の装置において一定時間以上停電が継続した後復電し、復電後所定時間内に負荷電流が検出された場合の動作を説明するためのタイミング図である。FIG. 3 is a timing diagram for explaining an operation when power is restored after a power failure continues for a certain time or more in the apparatus of FIG. 1 and a load current is detected within a predetermined time after power restoration. 図1の装置において一定時間以上停電が継続した後復電し、復電後所定時間内に負荷電流が検出されなかった場合の動作を説明するためのタイミング図である。FIG. 3 is a timing diagram for explaining an operation when power is restored after a power failure continues for a certain time or longer in the apparatus of FIG. 1 and a load current is not detected within a predetermined time after power restoration. 図1の電路開閉装置を備えた電工ドラム装置を表わす図である。It is a figure showing the electric drum apparatus provided with the electrical circuit switching device of FIG.

符号の説明Explanation of symbols

10…プラグ、11,12…電路、15…電気コード、20…漏電遮断器(ELCB)、21,22…接点、31,32,33,34…コンセント、40…タイマ、41…限時回路部、42…メイク接点、50…電流検出手段、51…CT、52…増幅回路、100…電工ドラム装置、110…巻き取りドラム筐体、111…側板部、121,122…フランジ部材、123…取っ手、130…ドラム部、140…支持フレーム、141…運搬用把手   DESCRIPTION OF SYMBOLS 10 ... Plug, 11, 12 ... Electric circuit, 15 ... Electric cord, 20 ... Earth leakage breaker (ELCB), 21, 22 ... Contact, 31, 32, 33, 34 ... Outlet, 40 ... Timer, 41 ... Time limit circuit part, 42 ... make contact, 50 ... current detection means, 51 ... CT, 52 ... amplifier circuit, 100 ... electric drum device, 110 ... winding drum casing, 111 ... side plate, 121,122 ... flange member, 123 ... handle, 130 ... drum part, 140 ... support frame, 141 ... handle for transportation

Claims (6)

電源に接続される受電端と負荷に給電する給電端との間の電路に介挿され、供給された作動指令に応答して当該電路を開切する電路開閉器と、前記受電端に供給される電源に係る停電発生後の復電時点から所定時間の限時動作を行うように配設されたタイマ手段と、前記電路開閉器の負荷側の電路の電流を検出するように配設され前記タイマ手段による限時動作時間内に電流が検出されたときには当該作動指令を前記電路開閉器に与える電流検出手段と、を備えたことを特徴とする電路開閉装置。   An electric circuit switch that is inserted in an electric circuit between a power receiving end connected to a power source and a power feeding end that supplies power to the load and opens the electric circuit in response to a supplied operation command, and is supplied to the power receiving end Timer means arranged to perform a time-limited operation for a predetermined time from the time of power recovery after the occurrence of a power failure relating to the power source, and the timer arranged to detect the current of the electric circuit on the load side of the electric circuit switch An electric circuit switching device comprising: current detection means for giving an operation command to the electric circuit switch when a current is detected within a time limit operation time by the means. 前記タイマ手段は、前記電路開閉器の負荷側の電路間に接続され、復電による電路間の電圧の立ち上がりに同期して限時動作を開始するように構成されていることを特徴とする請求項1に記載の電路開閉装置。   The timer means is connected between the load-side electric circuits of the electric circuit switch, and is configured to start a timed operation in synchronization with a rise in voltage between the electric circuits due to power recovery. The electric circuit switchgear according to 1. 前記電流検出手段は、前記タイマ手段の限時動作期間中閉路状態を維持するメイク接点が電流検出コイルに直列に介挿されていることを特徴とする請求項1〜2の何れか一項に記載の電路開閉装置。   3. The current detection unit according to claim 1, wherein a make contact that maintains a closed state during a time limit operation period of the timer unit is inserted in series with a current detection coil. Electric circuit switchgear. 前記電路開閉器は、前記作動指令に応答して当該電路を開切するように構成された漏電遮断器であることを特徴とする請求項1〜3のいずれか一項に記載の電路開閉装置。   The electric circuit switch according to any one of claims 1 to 3, wherein the electric circuit switch is an earth leakage circuit breaker configured to open the electric circuit in response to the operation command. . 前記電路開閉器は、前記作動指令に応答して当該電路を開切するように構成されたサーキットブレーカであることを特徴とする請求項1〜4のいずれか一項に記載の電路開閉装置。   The electric circuit switch according to any one of claims 1 to 4, wherein the electric circuit switch is a circuit breaker configured to open the electric circuit in response to the operation command. 請求項1〜5のいずれか一項に記載の電路開閉装置を巻き取りドラム筐体内に備えたことを特徴とする電工ドラム装置。   An electric drum apparatus comprising the electric circuit switching device according to any one of claims 1 to 5 in a winding drum casing.
JP2004344382A 2004-11-29 2004-11-29 Electric circuit switch device and electric drum device equipped with the electric circuit switch device Expired - Fee Related JP4498899B2 (en)

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