JP4813939B2 - Electric lock state detection mechanism - Google Patents

Electric lock state detection mechanism Download PDF

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JP4813939B2
JP4813939B2 JP2006076968A JP2006076968A JP4813939B2 JP 4813939 B2 JP4813939 B2 JP 4813939B2 JP 2006076968 A JP2006076968 A JP 2006076968A JP 2006076968 A JP2006076968 A JP 2006076968A JP 4813939 B2 JP4813939 B2 JP 4813939B2
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藤久 浦田
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美和ロック株式会社
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本発明は、電動アクチュエータによってデッドボルトを進退させる電気錠の施錠状態或いは解錠状態を検知する電気錠の状態検知機構に関する。   The present invention relates to an electric lock state detection mechanism that detects a locked state or an unlocked state of an electric lock that causes a dead bolt to advance and retract by an electric actuator.

ホテルの居室扉やマンションのエントランス扉等には、遠隔操作で施解錠が可能となる電気錠の設けられることがある。この種の電気錠では、電動アクチュエータである例えば電動モータが錠箱内に設置され、管理室或いは管理装置等から送信される施解錠制御信号によって電動モータが正逆回転(回動)されると、その回動がギアを介してダルマ軸へ伝達され、ダルマ軸の回動によってデッドボルトが進退動作されるように構成されている。ここで、管理室や管理装置等では、施解錠状態の確認、或いは電動モータ停止制御等のトリガー信号を得るために、電気錠の施解錠機構における状態を検知することが行われている。   An electric lock that can be locked and unlocked by remote control may be provided on a hotel door or an entrance door of a condominium. In this type of electric lock, for example, an electric motor, which is an electric actuator, is installed in a lock box, and when the electric motor is rotated forward and backward (rotated) by a locking / unlocking control signal transmitted from a management room or a management device or the like. The rotation is transmitted to the Dharma shaft through the gear, and the dead bolt is moved back and forth by the rotation of the Dalma shaft. Here, in a management room, a management device, or the like, in order to confirm a locking / unlocking state or to obtain a trigger signal such as an electric motor stop control, a state in the locking / unlocking mechanism of the electric lock is detected.

従来、この電気錠の状態検知機構は、電動モータに連動するギアの一部に、検出用のスライド部材を当て、電動モータの正逆回転によってこのスライド部材を往復動させ、錠箱内に設置した施錠検知スイッチ、或いは解錠検知スイッチの押圧子に、このスライド部材の凸部等を直接摺接することで、スライド部材の往復動でこれらスイッチを直接押圧作動させていた。すなわち、電動モータが施錠方向へ回転されると、ギアを介してスライド部材が往動し、凸部等が施錠検知スイッチを押圧する一方、電動モータが解錠方向へ回転されると、ギアを介してスライド部材が復動し、凸部等が解錠検知スイッチを押圧した。   Conventionally, the state detection mechanism of this electric lock is installed in the lock box by applying a slide member for detection to a part of the gear interlocked with the electric motor, and reciprocating this slide member by forward and reverse rotation of the electric motor. By directly slidably contacting the convex portion of the slide member with the pressing member of the lock detection switch or the unlock detection switch, the switches are directly pressed by the reciprocation of the slide member. That is, when the electric motor is rotated in the locking direction, the slide member moves forward through the gear, and the convex portion or the like presses the locking detection switch, while when the electric motor is rotated in the unlocking direction, the gear is moved. Then, the slide member moved backward, and the convex portion or the like pressed the unlock detection switch.

しかしながら、従来の電気錠の状態検知機構は、電動モータの正逆回転によってスライド部材を往復動させ、施錠検知スイッチ、或いは解錠検知スイッチの押圧子に、このスライド部材を直接摺接することで、スイッチを直接押圧作動させていたため、スイッチの押圧ストロークが高精度に要求される問題があった。換言すれば、僅かなストローク範囲でしかスイッチを正常作動させることができなかった。このため、スイッチの押しすぎや、押し不足となることが多く、すなわちスイッチを押しすぎる場合には破損を招き、押し不足では検知不能となる誤動作が発生し易く、状態検知動作の信頼性を向上させたい要請があった。   However, the state detection mechanism of the conventional electric lock reciprocates the slide member by forward and reverse rotation of the electric motor, and directly contacts the slide member with the pressing member of the lock detection switch or the unlock detection switch. Since the switch was directly pressed, there was a problem that the pressing stroke of the switch was required with high accuracy. In other words, the switch can be operated normally only within a short stroke range. For this reason, it is often the case that the switch is pressed too much or insufficiently pressed, that is, if the switch is pressed too much, damage will occur, and if the switch is pressed insufficiently, a malfunction that is impossible to detect will occur, improving the reliability of the state detection operation. There was a request.

本発明は上記状況に鑑みてなされたもので、電気錠の状態検知機構におけるスイッチの押圧子を押し込みすぎず、また、押し込み不足の生じないように、最適に作動させることができる電気錠の状態検知機構を提供し、もって、電気錠における状態検知動作の確実性向上を図ることを目的とする。   The present invention has been made in view of the above situation, and the state of the electric lock that can be optimally operated so as not to push the pusher of the switch in the state detection mechanism of the electric lock excessively and to prevent insufficient push-in. An object of the present invention is to provide a detection mechanism and thereby improve the reliability of the state detection operation in the electric lock.

次に、上記の課題を解決するための手段を、実施の形態に対応する図面を参照して説明する。
本発明の請求項1記載の電気錠の状態検知機構は、電動アクチュエータ15の回動力をギア23を介してダルマ軸27に伝達し、該ダルマ軸27の回動によってデッドボルト31を進退させる電気錠の状態検知機構であって、
前記ギア23の一部分に当接し該ギア23の正逆回転に従動して往復動するとともに該往復方向のそれぞれに向かって配置形成される一対のバネ座39b,39cを有するスライド部材39Aと、
前記一対のバネ座39b,39cに対し前記往復方向で対向するバネ受け41c,41dが形成され施解錠スイッチを作動させる従動板41Bと、
前記一対のバネ座39b,39cと前記バネ受け41c,41dとの前記往復方向のそれぞれの間に挟入される一対のコイルバネ43a,43bと、
を具備したことを特徴とする。
Next, means for solving the above problems will be described with reference to the drawings corresponding to the embodiments.
The electric lock state detection mechanism according to claim 1 of the present invention transmits the turning force of the electric actuator 15 to the Dalma shaft 27 via the gear 23 and causes the dead bolt 31 to advance and retreat by the rotation of the Dalma shaft 27. A lock state detection mechanism,
A slide member 39A that has a pair of spring seats 39b and 39c that are in contact with a part of the gear 23, reciprocate following the forward and reverse rotation of the gear 23, and are arranged and formed toward each of the reciprocating directions;
A spring plate 41B, which is formed with spring receivers 41c, 41d facing the pair of spring seats 39b, 39c in the reciprocating direction, and operates a locking / unlocking switch;
A pair of coil springs 43a, 43b sandwiched between the pair of spring seats 39b, 39c and the spring receivers 41c, 41d in the reciprocating direction;
It is characterized by comprising.

この電気錠の状態検知機構では、ギア23の正逆回転に連動するスライド部材39Aの往復動がコイルバネ43a,43bを介して従動板41Bに伝達され、所定の圧縮力でコイルバネ43a,43bが圧縮された後、始めて従動板41Bがスライドされ、また、スイッチからの反力を受ければ、その反力が従動板41Bを介してコイルバネ43a,43bへと印加され、コイルバネ43a,43bが更に圧縮されることとなる。   In this electric lock state detection mechanism, the reciprocating motion of the slide member 39A interlocking with the forward / reverse rotation of the gear 23 is transmitted to the driven plate 41B via the coil springs 43a and 43b, and the coil springs 43a and 43b are compressed by a predetermined compression force. After that, if the driven plate 41B is slid for the first time and receives a reaction force from the switch, the reaction force is applied to the coil springs 43a and 43b via the driven plate 41B, and the coil springs 43a and 43b are further compressed. The Rukoto.

請求項2記載の電気錠の状態検知機構は、前記スライド部材39Aは、少なくとも一側が開口する箱部39gを備え、該箱部39g内を前記バネ受け41c,41dが往復方向移動自在とされ、前記箱部39gの対向する内面が上記一対のバネ座39b,39cとされて該バネ座39b.39c間に前記バネ受け41c,41dが位置し、前記一対のコイルバネ43a,43bを覆うことを特徴とする。   In the state detecting mechanism of the electric lock according to claim 2, the slide member 39A includes a box part 39g opened at least on one side, and the spring receivers 41c and 41d are movable in the reciprocating direction in the box part 39g. The opposing inner surfaces of the box 39g are the pair of spring seats 39b, 39c, and the spring seats 39b. The spring receivers 41c and 41d are located between 39c and cover the pair of coil springs 43a and 43b.

この電気錠の状態検知機構では、箱部39g内において、バネ座39b,39cとバネ受け41c,41dが位置して、一対のコイルバネ43a,43bが伸縮等作動することとなる。   In the electric lock state detection mechanism, the spring seats 39b and 39c and the spring receivers 41c and 41d are positioned in the box 39g, and the pair of coil springs 43a and 43b operate to expand and contract.

請求項3記載の電気錠の状態検知機構は、前記従動板41Bには、前記往復方向に直交して突設され、該従動板41Bの往方向のスライドで施錠検知スイッチを押圧するとともに、復方向のスライドで解錠検知スイッチを押圧する押圧板41gを備えることを特徴とする。   According to a third aspect of the present invention, an electric lock state detection mechanism is provided on the driven plate 41B so as to protrude perpendicular to the reciprocating direction, and the lock detection switch is pressed by a forward slide of the driven plate 41B. A pressing plate 41g for pressing the unlock detection switch by sliding in the direction is provided.

この電気錠の状態検知機構では、スライド部材39Aの往復動がコイルバネ43a,43bを介して従動板41Bに伝達され、所定の圧縮力でコイルバネ43a,43bが圧縮された後、始めて従動板41Bがスライドされ、また、スイッチからの反力を押圧板41gが受ければ、その反力が従動板41Bを介してコイルバネ43a,43bへと印加され、コイルバネ43a,43bが更に圧縮されることとなる。   In this electric lock state detection mechanism, the reciprocating motion of the slide member 39A is transmitted to the driven plate 41B via the coil springs 43a and 43b, and the driven plate 41B is not moved until the coil springs 43a and 43b are compressed with a predetermined compression force. When the pressing plate 41g is slid and receives the reaction force from the switch, the reaction force is applied to the coil springs 43a and 43b via the driven plate 41B, and the coil springs 43a and 43b are further compressed.

請求項4記載の電気錠の状態検知機構は、電動アクチュエータ15の回動力をギア23を介してダルマ軸27に伝達し、該ダルマ軸27の回動によってデッドボルト31を進退させる電気錠11の状態検知機構200であって、
前記ギア23の一部分に当接し該ギア23の正逆回転に従動して往復動するとともに該往復方向のそれぞれに向かって突出する一対のバネ座39b,39cを有するスライド部材39と、
前記一対のバネ座39b,39cを内側に配置する枠部41bを有し該枠部41bには前記一対のバネ座39b,39cに前記往復方向で対向する一対のバネ受け41c,41dが形成され施解錠検知スイッチを作動させる従動板41Aと、
前記一対のバネ座39b,39cと前記一対のバネ受け41c,41dとのそれぞれの間に挟入される一対のコイルバネ43a,43bと、
を具備したことを特徴とする。
The state detection mechanism of the electric lock according to claim 4 transmits the turning force of the electric actuator 15 to the dharma shaft 27 via the gear 23, and the dead bolt 31 is advanced and retracted by the rotation of the dharma shaft 27. A state detection mechanism 200 comprising:
A slide member 39 having a pair of spring seats 39b and 39c that abuts a part of the gear 23, reciprocates following the forward and reverse rotation of the gear 23, and protrudes in the reciprocating direction;
The frame portion 41b has a pair of spring seats 41c and 41d which are opposed to the pair of spring seats 39b and 39c in the reciprocating direction. A driven plate 41A for operating the locking / unlocking detection switch;
A pair of coil springs 43a, 43b sandwiched between the pair of spring seats 39b, 39c and the pair of spring receivers 41c, 41d;
It is characterized by comprising.

この電気錠の状態検知機構では、ギア23の正逆回転に連動するスライド部材39の往復動がコイルバネ43a,43bを介して従動板41Aに伝達され、所定の圧縮力でコイルバネ43a,43bが圧縮された後、始めて従動板41Aがスライドされ、また、スイッチからの反力を受ければ、その反力が従動板41Aを介してコイルバネ43a,43bへと印加され、コイルバネ43a,43bが更に圧縮されることとなる。   In this electric lock state detection mechanism, the reciprocating motion of the slide member 39 interlocked with the forward / reverse rotation of the gear 23 is transmitted to the driven plate 41A via the coil springs 43a and 43b, and the coil springs 43a and 43b are compressed by a predetermined compression force. After that, if the driven plate 41A is slid for the first time and receives a reaction force from the switch, the reaction force is applied to the coil springs 43a and 43b via the driven plate 41A, and the coil springs 43a and 43b are further compressed. The Rukoto.

請求項5記載の電気錠の状態検知機構は、電動アクチュエータ15の回動力をギア23を介してダルマ軸27に伝達し、該ダルマ軸27の回動によってデッドボルト31を進退させる電気錠11の状態検知機構200であって、
前記ギア23の一部分に当接し該ギア23の正逆回転に従動して往復動するとともに該往復方向のそれぞれに向かって突出する一対のバネ座39b,39cを有するスライド部材39と、
前記一対のバネ座39b,39cを内側に配置する枠部41bを有し該枠部41bには前記一対のバネ座39b,39cに前記往復方向で対向する一対のバネ受け41c,41dが形成される従動板41Aと、
前記一対のバネ座39b,39cと前記一対のバネ受け41c,41dとのそれぞれの間に挟入される一対のコイルバネ43a,43bと、
前記往復方向に直交して前記従動板41Aから突設され前記従動板41Aの往方向のスライドで施錠検知スイッチ47を押圧するとともに、復方向のスライドで解錠検知スイッチ49を押圧する押圧板41gと、
を具備したことを特徴とする。
The electric lock state detection mechanism according to claim 5 transmits the turning force of the electric actuator 15 to the dharma shaft 27 through the gear 23, and the dead bolt 31 is advanced and retracted by the rotation of the dharma shaft 27. A state detection mechanism 200 comprising:
A slide member 39 having a pair of spring seats 39b and 39c that abuts a part of the gear 23, reciprocates following the forward and reverse rotation of the gear 23, and protrudes in the reciprocating direction;
The frame portion 41b has a pair of spring seats 41c and 41d which are opposed to the pair of spring seats 39b and 39c in the reciprocating direction. A follower plate 41A;
A pair of coil springs 43a, 43b sandwiched between the pair of spring seats 39b, 39c and the pair of spring receivers 41c, 41d;
A pressing plate 41g that protrudes from the driven plate 41A perpendicularly to the reciprocating direction and presses the locking detection switch 47 with the forward slide of the driven plate 41A and presses the unlocking detection switch 49 with the backward slide. When,
It is characterized by comprising.

この電気錠の状態検知機構では、ギア23の正逆回転に連動するスライド部材39の往復動がコイルバネ43a,43bを介して従動板41Aに伝達され、所定の圧縮力でコイルバネ43a,43bが圧縮された後、始めて従動板41Aがスライドされ、また、スイッチからの反力を押圧板41gが受ければ、その反力が従動板41Aを介してコイルバネ43a,43bへと印加され、コイルバネ43a,43bが更に圧縮されることとなる。   In this electric lock state detection mechanism, the reciprocating motion of the slide member 39 interlocked with the forward / reverse rotation of the gear 23 is transmitted to the driven plate 41A via the coil springs 43a and 43b, and the coil springs 43a and 43b are compressed by a predetermined compression force. After that, when the driven plate 41A is slid for the first time and the pressing plate 41g receives the reaction force from the switch, the reaction force is applied to the coil springs 43a and 43b via the driven plate 41A, and the coil springs 43a and 43b. Will be further compressed.

請求項6記載の電気錠の状態検知機構は、電動アクチュエータ15の回動力をギア23を介してダルマ軸27に伝達し、該ダルマ軸27の回動によってデッドボルト31を進退させる電気錠11の状態検知機構100であって、
前記ギア23の一部分に当接し該ギア23の正逆回転に従動して往復動するとともに該往復方向のそれぞれに向かって突出する一対のバネ座39b,39cを有するスライド部材39と、
前記一対のバネ座39b,39cを内側に配置する枠部41bを有し該枠部41bには前記一対のバネ座39b,39cに前記往復方向で対向する一対のバネ受け41c,41dが形成されるとともに前記往復方向に離間した一対の凸部41e,41fが一方の板面側に設けられる従動板41と、
前記一対のバネ座39b,39cと前記一対のバネ受け41c,41dとのそれぞれの間に挟入される一対のコイルバネ43a,43bと、
前記往復方向に直交する揺動軸51中心に揺動自在に支持され往方向にスライドする前記従動板41の一方の前記凸部41eが摺接することで他端側へ揺動し施錠検知スイッチ47を押圧するとともに、復方向にスライドする前記従動板41の他方の前記凸部41fが摺接することで一端側へ揺動し解錠検知スイッチ49を押圧する揺動板45と、
を具備したことを特徴とする。
The state detection mechanism of the electric lock according to claim 6 transmits the turning force of the electric actuator 15 to the dharma shaft 27 through the gear 23, and the dead bolt 31 is advanced and retracted by rotating the dharma shaft 27. A state detection mechanism 100 comprising:
A slide member 39 having a pair of spring seats 39b and 39c that abuts a part of the gear 23, reciprocates following the forward and reverse rotation of the gear 23, and protrudes in the reciprocating direction;
The frame portion 41b has a pair of spring seats 41c and 41d which are opposed to the pair of spring seats 39b and 39c in the reciprocating direction. And a pair of convex portions 41e, 41f spaced apart in the reciprocating direction are provided on one plate surface side,
A pair of coil springs 43a, 43b sandwiched between the pair of spring seats 39b, 39c and the pair of spring receivers 41c, 41d;
One of the convex portions 41e of the follower plate 41 that is slidably supported at the center of the swing shaft 51 orthogonal to the reciprocating direction slides and swings to the other end side to lock the lock detection switch 47. And a swing plate 45 that swings toward one end when the other convex portion 41f of the follower plate 41 that slides in the backward direction slides on and presses the unlock detection switch 49;
It is characterized by comprising.

この電気錠の状態検知機構では、ギア23の正逆回転に連動するスライド部材39の往復動がコイルバネ43a,43bを介して従動板41に伝達され、この従動板41の往復動によって揺動板45が揺動される。したがって、所定の圧縮力でコイルバネ43a,43bが圧縮された後、始めて従動板41がスライドされる。一方、スイッチからの反力を揺動板45が受ければ、その反力が従動板41を介してコイルバネ43a,43bへと印加され、コイルバネ43a,43bが更に圧縮されることとなる。   In this electric lock state detection mechanism, the reciprocating motion of the slide member 39 interlocked with the forward / reverse rotation of the gear 23 is transmitted to the driven plate 41 via the coil springs 43a and 43b. 45 is swung. Therefore, the driven plate 41 is slid only after the coil springs 43a and 43b are compressed with a predetermined compressive force. On the other hand, when the rocking plate 45 receives a reaction force from the switch, the reaction force is applied to the coil springs 43a and 43b via the driven plate 41, and the coil springs 43a and 43b are further compressed.

請求項7記載の電気錠の状態検知機構は、前記スライド部材39(39A)の往復スライド距離S1より前記コイルバネ43a,43bを介してスライドされる前記従動板4141A,41B)の往復スライド距離S2が短いことを特徴とする。   The state detection mechanism of the electric lock according to claim 7 is configured such that the reciprocating slide distance S2 of the driven plates 4141A and 41B) slid through the coil springs 43a and 43b from the reciprocating slide distance S1 of the slide member 39 (39A). It is short.

この電気錠の状態検知機構では、スライド部材39(39A)の往復スライド距離S1が、従動板41(41A,41B)の往復スライド距離S2より長くなる。したがって、スライド部材39(39A)の往復動が従動板41(41A,41B)へ伝達される際、コイルバネ43a,43bが必ず圧縮される。逆に、スイッチからの反力を受けた際には、コイルバネ43a,43bが必ず圧縮される。   In this electric lock state detection mechanism, the reciprocating slide distance S1 of the slide member 39 (39A) is longer than the reciprocating slide distance S2 of the driven plate 41 (41A, 41B). Therefore, when the reciprocating motion of the slide member 39 (39A) is transmitted to the driven plate 41 (41A, 41B), the coil springs 43a, 43b are necessarily compressed. Conversely, when receiving a reaction force from the switch, the coil springs 43a and 43b are necessarily compressed.

本発明に係る請求項1記載の電気錠の状態検知機構によれば、デッドボルトを進退させるギアに従動して往復動するスライド部材と、このスライド部材のバネ座に対向するバネ受けが形成される従動板と、これらバネ座とバネ受けとの間に挟入されるコイルバネとを備えたので、ギアの正逆回転に連動するスライド部材の往復動がコイルバネを介して従動板に伝達され、所定の圧縮力でコイルバネが圧縮された後、始めて従動板がスライドされ、また、スイッチからの反力を受ければ、その反力が従動板を介してコイルバネへと印加され、コイルバネが更に圧縮されることとなる。これにより、電気錠の状態検知機構におけるスイッチの押圧子を押し込みすぎず、また、押し込み不足の生じないように、最適に作動させることができる。この結果、電気錠における状態検知動作の確実性を向上させることができる。   According to the electric lock state detection mechanism of the first aspect of the present invention, the slide member that reciprocates following the gear that advances and retracts the dead bolt and the spring receiver that faces the spring seat of the slide member are formed. And a reciprocating motion of the slide member interlocking with the forward / reverse rotation of the gear is transmitted to the driven plate via the coil spring, and the driven plate having a coil spring sandwiched between the spring seat and the spring receiver. After the coil spring is compressed with a predetermined compressive force, the driven plate is slid for the first time. If the reaction force from the switch is received, the reaction force is applied to the coil spring through the follower plate, and the coil spring is further compressed. The Rukoto. Thereby, it can be made to operate optimally so that the pusher of the switch in the state detection mechanism of the electric lock is not pushed in too much, and there is no shortage of pushing. As a result, the reliability of the state detection operation in the electric lock can be improved.

請求項2記載の電気錠の状態検知機構によれば、スライド部材に構成される箱部内において、バネ座とバネ受けが位置して、一対のコイルバネが配置し作動することとなり、これらコイルバネが覆われる構成となることから、防塵対策を施すことが可能となり、検知動作の確実性の向上となる。また、箱部内に収容される構成であることから、組立が容易なものとなる。   According to the state detection mechanism of the electric lock according to claim 2, the spring seat and the spring receiver are located in the box part constituted by the slide member, and the pair of coil springs are arranged and operated. Therefore, it is possible to take a dustproof measure and improve the certainty of the detection operation. Moreover, since it is the structure accommodated in a box part, an assembly becomes easy.

請求項3記載の電気錠の状態検知機構によれば、往復方向に直交して従動板から突設され従動板の往方向のスライドで施錠検知スイッチを押圧するとともに、復方向のスライドで解錠検知スイッチを押圧する押圧板とを備えたので、ギアの正逆回転に連動するスライド部材の往復動がコイルバネを介して従動板に伝達され、所定の圧縮力でコイルバネが圧縮された後、始めて従動板がスライドされ、また、スイッチからの反力を押圧板が受ければ、その反力が従動板を介してコイルバネへと印加され、コイルバネが更に圧縮されることとなる。これにより、電気錠の状態検知機構におけるスイッチの押圧子を押し込みすぎず、また、押し込み不足の生じないように、最適に作動させることができる。この結果、電気錠における状態検知動作の確実性を向上させることができる。また、従動板から垂直に押圧板を突設したので、対向させた施錠検知スイッチと解錠検知スイッチとの間に、押圧板を配置することで、簡単な構造で、従動板の往復動作により施錠検知スイッチ及び解錠検知スイッチを確実に作動させることができる。   According to the state detection mechanism of the electric lock according to claim 3, the lock detection switch is pushed by the slide in the forward direction of the driven plate so as to protrude from the follower plate perpendicular to the reciprocating direction and unlocked by the backward slide. Since it includes a pressing plate that presses the detection switch, the reciprocating motion of the slide member interlocked with the forward / reverse rotation of the gear is transmitted to the driven plate via the coil spring, and only after the coil spring is compressed with a predetermined compressive force. When the driven plate is slid and the pressing plate receives a reaction force from the switch, the reaction force is applied to the coil spring through the driven plate, and the coil spring is further compressed. Thereby, it can be made to operate optimally so that the pusher of the switch in the state detection mechanism of the electric lock is not pushed in too much, and there is no shortage of pushing. As a result, the reliability of the state detection operation in the electric lock can be improved. In addition, since the pressing plate protrudes vertically from the driven plate, the pressing plate is arranged between the opposed locking detection switch and the unlocking detection switch, so that the simple structure allows the reciprocating operation of the driven plate. The lock detection switch and the unlock detection switch can be operated reliably.

請求項4記載の電気錠の状態検知機構によれば、デッドボルトを進退させるギアに従動して往復動するスライド部材と、このスライド部材のバネ座に対向するバネ受けが形成される従動板と、これらバネ座とバネ受けとの間に挟入されるコイルバネとを備えたので、ギアの正逆回転に連動するスライド部材の往復動がコイルバネを介して従動板に伝達され、所定の圧縮力でコイルバネが圧縮された後、始めて従動板がスライドされ、また、スイッチからの反力を受ければ、その反力が従動板を介してコイルバネへと印加され、コイルバネが更に圧縮されることとなる。これにより、電気錠の状態検知機構におけるスイッチの押圧子を押し込みすぎず、また、押し込み不足の生じないように、最適に作動させることができる。この結果、電気錠における状態検知動作の確実性を向上させることができる。   According to the state detection mechanism for an electric lock according to claim 4, a slide member that reciprocates following a gear that advances and retracts a dead bolt, and a follower plate that is formed with a spring receiver facing the spring seat of the slide member, Since the coil spring sandwiched between the spring seat and the spring receiver is provided, the reciprocating motion of the slide member interlocked with the forward / reverse rotation of the gear is transmitted to the driven plate via the coil spring, and a predetermined compression force After the coil spring is compressed, the driven plate is slid for the first time. If the reaction force from the switch is received, the reaction force is applied to the coil spring through the follower plate, and the coil spring is further compressed. . Thereby, it can be made to operate optimally so that the pusher of the switch in the state detection mechanism of the electric lock is not pushed in too much, and there is no shortage of pushing. As a result, the reliability of the state detection operation in the electric lock can be improved.

請求項5記載の電気錠の状態検知機構によれば、デッドボルトを進退させるギアに従動して往復動するスライド部材と、このスライド部材のバネ座に対向するバネ受けが形成される従動板と、これらバネ座とバネ受けとの間に挟入されるコイルバネと、往復方向に直交して従動板から突設され従動板の往方向のスライドで施錠検知スイッチを押圧するとともに、復方向のスライドで解錠検知スイッチを押圧する押圧板とを備えたので、ギアの正逆回転に連動するスライド部材の往復動がコイルバネを介して従動板に伝達され、所定の圧縮力でコイルバネが圧縮された後、始めて従動板がスライドされ、また、スイッチからの反力を押圧板が受ければ、その反力が従動板を介してコイルバネへと印加され、コイルバネが更に圧縮されることとなる。これにより、電気錠の状態検知機構におけるスイッチの押圧子を押し込みすぎず、また、押し込み不足の生じないように、最適に作動させることができる。この結果、電気錠における状態検知動作の確実性を向上させることができる。また、従動板から垂直に押圧板を突設したので、対向させた施錠検知スイッチと解錠検知スイッチとの間に、押圧板を配置することで、簡単な構造で、従動板の往復動作により施錠検知スイッチ及び解錠検知スイッチを確実に作動させることができる。   According to the state detection mechanism of the electric lock according to claim 5, a slide member that reciprocates following a gear that advances and retracts a dead bolt, and a follower plate that is formed with a spring receiver facing the spring seat of the slide member, The coil spring sandwiched between the spring seat and the spring receiver, and the locking plate is protruded from the driven plate perpendicular to the reciprocating direction, and the locking detection switch is pressed by the forward sliding of the driven plate, and the backward sliding And a pressing plate for pressing the unlocking detection switch, the reciprocating motion of the slide member interlocking with the forward / reverse rotation of the gear is transmitted to the driven plate via the coil spring, and the coil spring is compressed with a predetermined compressive force. After that, if the driven plate is slid for the first time and the pressing plate receives the reaction force from the switch, the reaction force is applied to the coil spring through the driven plate, and the coil spring is further compressed. . Thereby, it can be made to operate optimally so that the pusher of the switch in the state detection mechanism of the electric lock is not pushed in too much, and there is no shortage of pushing. As a result, the reliability of the state detection operation in the electric lock can be improved. In addition, since the pressing plate protrudes vertically from the driven plate, the pressing plate is arranged between the opposed locking detection switch and the unlocking detection switch, so that the simple structure allows the reciprocating operation of the driven plate. The lock detection switch and the unlock detection switch can be operated reliably.

請求項6記載の電気錠の状態検知機構によれば、デッドボルトを進退させるギアに従動して往復動するスライド部材と、このスライド部材のバネ座に対向するバネ受けが形成される従動板と、これらバネ座とバネ受けとの間に挟入されるコイルバネと、揺動自在に支持されスライドする従動板の凸部が摺接することで施錠検知スイッチ又は解錠検知スイッチを押圧する揺動板とを備えたので、ギアの正逆回転に連動するスライド部材の往復動がコイルバネを介して従動板に伝達され、この従動板の往復動によって揺動板が揺動される。したがって、所定の圧縮力でコイルバネが圧縮された後、始めて従動板がスライドされ、また、スイッチからの反力を揺動板が受ければ、その反力が従動板を介してコイルバネへと印加され、コイルバネが更に圧縮されることとなる。これにより、電気錠の状態検知機構におけるスイッチの押圧子を押し込みすぎず、また、押し込み不足の生じないように、最適に作動させることができる。この結果、電気錠における状態検知動作の確実性を向上させることができる。   According to the state detection mechanism of the electric lock according to claim 6, a slide member that reciprocates following a gear that advances and retracts a dead bolt, and a follower plate that is formed with a spring receiver facing the spring seat of the slide member, An oscillating plate that presses the locking detection switch or the unlocking detection switch when the coil spring sandwiched between the spring seat and the spring receiver and the convex portion of the driven plate that is slidably supported and slides are in sliding contact with each other. Therefore, the reciprocating motion of the slide member interlocked with the forward / reverse rotation of the gear is transmitted to the driven plate via the coil spring, and the swinging plate is oscillated by the reciprocating motion of the driven plate. Therefore, after the coil spring is compressed with a predetermined compression force, the driven plate is slid for the first time, and if the oscillation plate receives the reaction force from the switch, the reaction force is applied to the coil spring through the follower plate. The coil spring is further compressed. Thereby, it can be made to operate optimally so that the pusher of the switch in the state detection mechanism of the electric lock is not pushed in too much, and there is no shortage of pushing. As a result, the reliability of the state detection operation in the electric lock can be improved.

請求項7記載の電気錠の状態検知機構によれば、スライド部材の往復スライド距離よりコイルバネを介してスライドされる従動板の往復スライド距離が短いので、スライド部材の往復動が従動板へ伝達される際、コイルバネが必ず圧縮される。逆に、スイッチからの反力を受けた際には、コイルバネが必ず圧縮される。すなわち、コイルバネは、従動板へのスライド力伝達に際しては、可変可能な付勢力によってスライド力を所定の可変幅で伝達し、従動板をスライドさせるための駆動力に一定の許容範囲を確保する。一方、スイッチからの反力を受けた際には、自身が圧縮されることにより反力を吸収し、ギア、スライド部材、従動板、スイッチが直結された場合に、これらいずれかの部材へ反力が過剰な力となって印加されることを防止する。つまり、コイルバネを緩衝的な連結部材として機能させることができる。   According to the electric lock state detection mechanism of the seventh aspect, since the reciprocating slide distance of the driven plate that is slid through the coil spring is shorter than the reciprocating slide distance of the slide member, the reciprocating motion of the slide member is transmitted to the driven plate. The coil spring is always compressed when On the other hand, when receiving a reaction force from the switch, the coil spring is always compressed. That is, when transmitting the sliding force to the driven plate, the coil spring transmits the sliding force with a predetermined variable width by a variable urging force, and ensures a certain allowable range for the driving force for sliding the driven plate. On the other hand, when it receives a reaction force from the switch, it absorbs the reaction force by compressing itself, and when the gear, slide member, driven plate, or switch is directly connected, it reacts against any of these members. The force is prevented from being applied as an excessive force. That is, the coil spring can function as a buffering connecting member.

以下、本発明に係る電気錠の状態検知機構の好適な実施の形態を図面を参照して詳細に説明する。
図1は本発明の第1の実施の形態に係る電気錠の状態検知機構の側面視を(a)、要部平面視を(b)に表した構成説明図、図2は図1に示した要部の分解斜視図を(a)、要部拡大平面図を(b)に示した説明図である。
この第1の実施の形態による電気錠の状態検知機構200は、電気錠11内に組み込まれている。電気錠11には、錠箱13に電動アクチュエータである電動モータ15が設置され、電動モータ15はピニオン17を駆動ギア19に噛合させている。駆動ギア19の回動は、順次噛合する第1ギア21、第2ギア23、第3ギア25を介してダルマ軸27の従動ギア27aへ伝達される。なお、駆動ギア19は、副第1ギア21a、副第2ギア23aを介しても第3ギア25へと噛合されている。
DESCRIPTION OF EMBODIMENTS Hereinafter, preferred embodiments of an electric lock state detection mechanism according to the present invention will be described in detail with reference to the drawings.
FIG. 1 is a structural explanatory view showing a side view of a state detection mechanism of an electric lock according to a first embodiment of the present invention, and FIG. It is explanatory drawing which showed the exploded perspective view of the principal part which showed (a) and the principal part enlarged plan view in (b).
The electric lock state detection mechanism 200 according to the first embodiment is incorporated in the electric lock 11. In the electric lock 11, an electric motor 15 that is an electric actuator is installed in the lock box 13, and the electric motor 15 meshes the pinion 17 with the drive gear 19. The rotation of the drive gear 19 is transmitted to the driven gear 27a of the Dharma shaft 27 through the first gear 21, the second gear 23, and the third gear 25 that are sequentially meshed. The drive gear 19 is engaged with the third gear 25 via the sub first gear 21a and the sub second gear 23a.

ダルマ軸27の近傍の錠箱13内には、不図示の扉の木口に固定されるフロントパネル29から進退されるデッドボルト31が、水平方向(図1の左右方向)へスライド自在に設けられている。デッドボルト31は、付勢バネ33によって錠箱13内に後退する方向へ付勢される。このデッドボルト31の後退は、揺動ストッパ35が掛止することで規制される。ダルマ軸27には作動杆27bが設けられ、作動杆27bはダルマ軸27の時計回りの回転によってデッドボルト31の突起31aを押圧し、付勢バネ33の付勢力に抗してデッドボルト31をフロントパネル29から突出させる。突出したデッドボルト31は、揺動ストッパ35が掛止することで、突出状態に保持される。   In the lock box 13 in the vicinity of the Dharma shaft 27, a dead bolt 31 that is advanced and retracted from a front panel 29 fixed to a notch of a door (not shown) is provided so as to be slidable in a horizontal direction (left and right direction in FIG. 1). ing. The dead bolt 31 is urged by the urging spring 33 in the direction of retreating into the lock box 13. The backward movement of the dead bolt 31 is regulated by the swing stopper 35 being hooked. An operating rod 27 b is provided on the Dalma shaft 27, and the operating rod 27 b presses the protrusion 31 a of the dead bolt 31 by the clockwise rotation of the Dalma shaft 27, and pushes the dead bolt 31 against the biasing force of the biasing spring 33. Project from the front panel 29. The protruding dead bolt 31 is held in a protruding state by the swing stopper 35 being hooked.

また、電動モータ15が解錠方向へ駆動されると、駆動ギア19、第1ギア21、第2ギア23、第3ギア25を介してダルマ軸27が図1の反時計回りに回転し、不図示のストッパ解除杆が揺動ストッパ35の掛止を解除させると共に、作動杆27bがデッドボルト31を後退させる方向へと移動する。これにより、デッドボルト31は、付勢バネ33の付勢力によって、錠箱13内へと後退することとなる。つまり、電気錠11は、電動モータ15の回動力をギアを介してダルマ軸27に伝達し、このダルマ軸27の回動によってデッドボルト31を進退させ、施解錠を可能としている。   When the electric motor 15 is driven in the unlocking direction, the Dharma shaft 27 rotates counterclockwise in FIG. 1 via the drive gear 19, the first gear 21, the second gear 23, and the third gear 25. A stopper release rod (not shown) releases the swing stopper 35 and the operating rod 27b moves in a direction in which the dead bolt 31 is retracted. Thereby, the dead bolt 31 is retracted into the lock box 13 by the biasing force of the biasing spring 33. In other words, the electric lock 11 transmits the turning force of the electric motor 15 to the Dalma shaft 27 via the gear, and the dead bolt 31 is advanced and retracted by the rotation of the Dalma shaft 27 to enable locking and unlocking.

錠箱13の背面板37の内面には、第2ギア23の近傍で状態検知機構200が設けられている。状態検知機構200は、スライド部材39と、従動板41Aと、コイルバネ43a,43bと、施錠検知スイッチ47、解錠検知スイッチ49、補助スイッチ50とからなる。   A state detection mechanism 200 is provided near the second gear 23 on the inner surface of the back plate 37 of the lock box 13. The state detection mechanism 200 includes a slide member 39, a driven plate 41A, coil springs 43a and 43b, a lock detection switch 47, an unlock detection switch 49, and an auxiliary switch 50.

図2に示すように、スライド部材39は、背面板37と平行に、図1の上下方向へ移動自在に保持され、基部39aに、切り起こしによって形成された一対のバネ座39b,39cを有している。また、基部39aから立設された側壁39dには係合軸39eが突設されている。スライド部材39は、係合軸39eが第2ギア23の一部分(歯部の一部分)に当接し、第2ギア23の正逆回転に従動して往復動する。   As shown in FIG. 2, the slide member 39 is held parallel to the back plate 37 so as to be movable in the vertical direction in FIG. 1, and has a pair of spring seats 39b and 39c formed by cutting and raising at the base portion 39a. is doing. Further, an engaging shaft 39e protrudes from a side wall 39d erected from the base 39a. The slide member 39 reciprocates as the engagement shaft 39e abuts on a part of the second gear 23 (a part of the tooth portion) and follows the forward and reverse rotation of the second gear 23.

従動板41Aは、背面板37と平行に、図1の上下方向へ移動自在に保持され、基部41aに、一対のバネ座39b,39cを内側に配置する枠部41bを有している。枠部41bには、一対のバネ座39b,39cに往復方向で対向する一対のバネ受け41c,41dが形成されている。また、基部41aには、往復方向に直交して従動板41Aから突出する押圧板41gが設けられている。錠箱13内には、施錠検知スイッチ47と、解錠検知スイッチ49及び補助スイッチ50とが対向して配設される。押圧板41gは、この対向配置された施錠検知スイッチ47と、解錠検知スイッチ49及び補助スイッチ50との間に配置される。そして、押圧板41gは、従動板41Aの往方向のスライドで施錠検知スイッチ47を押圧するとともに、復方向のスライドで解錠検知スイッチ49及び補助スイッチ50を押圧する。   The driven plate 41A is held in parallel with the back plate 37 so as to be movable in the vertical direction of FIG. 1, and has a frame portion 41b in which a pair of spring seats 39b and 39c are arranged on the inner side of the base portion 41a. The frame portion 41b is formed with a pair of spring receivers 41c and 41d that face the pair of spring seats 39b and 39c in the reciprocating direction. The base 41a is provided with a pressing plate 41g that protrudes from the driven plate 41A perpendicular to the reciprocating direction. In the lock box 13, a lock detection switch 47, an unlock detection switch 49 and an auxiliary switch 50 are arranged to face each other. The pressing plate 41g is disposed between the opposing lock detection switch 47, the unlock detection switch 49, and the auxiliary switch 50. The pressing plate 41g presses the locking detection switch 47 with the forward slide of the driven plate 41A, and presses the unlocking detection switch 49 and the auxiliary switch 50 with the backward sliding.

押圧板41gは、基部41aを折曲することにより形成される。基部41aと押圧板41gとの折曲部には強度を高めるためのリブ41hが設けられている。押圧板41gの表裏面には複数のイボ部41jが膨出され、イボ部41jの表面は円滑な曲面で形成される。押圧板41gは、円滑曲面のイボ部41jが形成されることで、施錠検知スイッチ47、解錠検知スイッチ49及び補助スイッチ50の作動片47b,49b,50bとの引っ掛かりが抑止される。なお、作動片47b,49b,50bは、押圧されることにより、施錠検知スイッチ47、解錠検知スイッチ49及び補助スイッチ50の押圧子47a,49a,50aを押圧する。押圧子47a,49a,50aが押圧されることで開閉された接点信号は、コネクターケーブル53を介して管理室等の制御装置等によって検知される。   The pressing plate 41g is formed by bending the base 41a. A rib 41h for increasing the strength is provided at the bent portion of the base 41a and the pressing plate 41g. A plurality of warped portions 41j bulge on the front and back surfaces of the pressing plate 41g, and the surface of the warped portion 41j is formed with a smooth curved surface. The pressing plate 41g is formed with a smoothly curved warped portion 41j, so that the lock detection switch 47, the unlock detection switch 49, and the operation pieces 47b, 49b, 50b of the auxiliary switch 50 are prevented from being caught. The operating pieces 47b, 49b, 50b are pressed to press the pressing members 47a, 49a, 50a of the locking detection switch 47, the unlocking detection switch 49, and the auxiliary switch 50. Contact signals that are opened and closed by pressing the pressing elements 47 a, 49 a, and 50 a are detected by a control device such as a management room via the connector cable 53.

スライド部材39の一対のバネ座39b,39cと、従動板41Aの一対のバネ受け41c,41dとのそれぞれの間には、一対のコイルバネ43a,43bが挟入されている。   A pair of coil springs 43a and 43b are sandwiched between the pair of spring seats 39b and 39c of the slide member 39 and the pair of spring receivers 41c and 41d of the driven plate 41A.

次に、このように構成される電気錠の状態検知機構の動作を説明する。
図3は施錠検知スイッチ押圧状態を(a)、解錠検知スイッチ押圧状態を(b)に表した動作説明図である。
管理室等から電気錠11へ施錠信号が出力されると、電動モータ15が駆動され、駆動ギア19が図1の時計回りに回転される。駆動ギア19が時計回りに回転されることで、第1ギア21、第2ギア23、第3ギア25を介してダルマ軸27が時計回りに回転される。ダルマ軸27が時計回りに回転すると、作動杆27bが突起31aを押圧し、デッドボルト31を突出させて施錠状態とする。
Next, the operation of the state detection mechanism of the electric lock configured as described above will be described.
FIG. 3 is an operation explanatory view showing the state of pressing the locking detection switch in (a) and the state of pressing the unlocking detection switch in (b).
When a lock signal is output from the management room or the like to the electric lock 11, the electric motor 15 is driven, and the drive gear 19 is rotated clockwise in FIG. By rotating the drive gear 19 clockwise, the Dharma shaft 27 is rotated clockwise via the first gear 21, the second gear 23, and the third gear 25. When the dharma shaft 27 rotates clockwise, the operating rod 27b presses the projection 31a, and the dead bolt 31 protrudes to be in a locked state.

この際、第2ギア23が時計回りに回転することで、スライド部材39が係合軸39eを介して図1の下方向へとスライドされる。スライド部材39が下方向へスライドされると、バネ座39bを介してコイルバネ43aが圧縮され、その圧縮力の反発力によって従動板41Aのバネ受け41cが押圧される。従動板41Aは、このコイルバネ43aの反発力によって図1の下方向へとスライドされる。   At this time, as the second gear 23 rotates clockwise, the slide member 39 is slid downward in FIG. 1 via the engagement shaft 39e. When the slide member 39 is slid downward, the coil spring 43a is compressed via the spring seat 39b, and the spring receiver 41c of the driven plate 41A is pressed by the repulsive force of the compression force. The driven plate 41A is slid downward in FIG. 1 by the repulsive force of the coil spring 43a.

従動板41Aが図1の下方向へとスライドされると、従動板41Aの押圧板41gを介して施錠検知スイッチ47の作動片47b、押圧子47aが押圧される。これにより、施錠検知スイッチ47は、施錠回路の接点が閉じられ、その接点作動状態がコネクターケーブル53によって検出されることで、管理室等の制御装置によって、電気錠11の施錠状態が検知されることとなる。   When the driven plate 41A is slid downward in FIG. 1, the operating piece 47b and the pressing element 47a of the locking detection switch 47 are pressed through the pressing plate 41g of the driven plate 41A. Thereby, the lock detection switch 47 closes the contact of the lock circuit, and the contact operating state is detected by the connector cable 53, so that the lock state of the electric lock 11 is detected by a control device such as a management room. It will be.

なお、解錠信号が送出されることによる解錠検出は、上記の施錠検出動作の場合と、電動モータ15、駆動ギア19、第1ギア21、第2ギア23、第3ギア25、ダルマ軸27、デッドボルト31、スライド部材39、従動板41Aが逆動作となり、解錠検知スイッチ49の押圧子49aが押圧されることで、管理室等の制御装置によって、電気錠11の解錠状態が検知されることとなる。   The unlock detection by sending the unlock signal is performed in the case of the above-described lock detection operation, as well as the electric motor 15, the drive gear 19, the first gear 21, the second gear 23, the third gear 25, the Dharma shaft. 27, the dead bolt 31, the slide member 39, and the driven plate 41A are reversely operated, and the pressing member 49a of the unlocking detection switch 49 is pressed, so that the unlocking state of the electric lock 11 is controlled by a control device such as a management room. It will be detected.

このように、状態検知機構200では、第2ギア23の正逆回転に連動するスライド部材39の往復動がコイルバネ43a,43bを介して従動板41Aに伝達される。したがって、所定の圧縮力でコイルバネ43a,43bが圧縮された後、始めて従動板41Aがスライドされる。一方、スイッチからの反力を押圧板41gが受ければ、その反力が従動板41Aを介してコイルバネ43a,43bへと印加され、コイルバネ43a,43bが更に圧縮されることとなる。   Thus, in the state detection mechanism 200, the reciprocating motion of the slide member 39 interlocked with the forward / reverse rotation of the second gear 23 is transmitted to the driven plate 41A via the coil springs 43a and 43b. Therefore, the driven plate 41A is slid only after the coil springs 43a and 43b are compressed with a predetermined compressive force. On the other hand, if the pressing plate 41g receives the reaction force from the switch, the reaction force is applied to the coil springs 43a and 43b via the driven plate 41A, and the coil springs 43a and 43b are further compressed.

ここで、図3に示すように、スライド部材39の往復スライド距離S1より、コイルバネ43a,43bを介してスライドされる従動板41Aの往復スライド距離S2は、短くなる(S1>S2)。すなわち、スライド部材39の往復動が従動板41Aへ伝達される際、コイルバネ43a,43bが必ず圧縮される。逆に、スイッチからの反力を受けた際にも、コイルバネ43a,43bが必ず圧縮される。   Here, as shown in FIG. 3, the reciprocating slide distance S2 of the driven plate 41A slid through the coil springs 43a and 43b is shorter than the reciprocating slide distance S1 of the slide member 39 (S1> S2). That is, when the reciprocating motion of the slide member 39 is transmitted to the driven plate 41A, the coil springs 43a and 43b are necessarily compressed. Conversely, the coil springs 43a and 43b are always compressed when a reaction force is received from the switch.

つまり、コイルバネ43a,43bは、従動板41Aへのスライド力伝達に際しては、可変可能な付勢力によってスライド力を所定の可変幅で伝達し、従動板41Aをスライドさせるための駆動力に一定の許容範囲を確保する。一方、スイッチからの反力を受けた際には、自身が圧縮されることにより反力を吸収し、ギア、スライド部材39、従動板41A、施錠検知スイッチ47、解錠検知スイッチ49が直結された場合に、これらいずれかの部材へ反力が過剰な力となって印加されることを防止する。つまり、コイルバネ43a,43bが緩衝的な連結部材として機能している。   That is, when transmitting the sliding force to the driven plate 41A, the coil springs 43a and 43b transmit the sliding force with a predetermined variable width by a variable urging force, and have a certain allowable driving force for sliding the driven plate 41A. Secure the range. On the other hand, when the reaction force from the switch is received, the reaction force is absorbed by being compressed, and the gear, the slide member 39, the driven plate 41A, the lock detection switch 47, and the unlock detection switch 49 are directly connected. In this case, the reaction force is prevented from being applied as an excessive force to any of these members. That is, the coil springs 43a and 43b function as buffering coupling members.

したがって、本実施の形態による電気錠11の状態検知機構200によれば、デッドボルト31を進退させる第2ギア23に従動して往復動するスライド部材39と、このスライド部材39のバネ座39b,39cに対向するバネ受け41c,41dが形成される従動板41Aと、これらバネ座39b,39cとバネ受け41c,41dとの間に挟入されるコイルバネ43a,43bと、往復方向に直交して従動板41Aから突設され従動板41Aの往方向のスライドで施錠検知スイッチ47を押圧するとともに、復方向のスライドで解錠検知スイッチ49を押圧する押圧板41gとを備えたので、第2ギア23の正逆回転に連動するスライド部材39の往復動がコイルバネ43a,43bを介して従動板41Aに伝達され、この従動板41Aの往復動によって押圧板41gが作動される。   Therefore, according to the state detection mechanism 200 of the electric lock 11 according to the present embodiment, the slide member 39 that reciprocates following the second gear 23 that moves the dead bolt 31 forward and backward, and the spring seat 39b of the slide member 39, A driven plate 41A on which spring receivers 41c and 41d facing 39c are formed, and coil springs 43a and 43b sandwiched between the spring seats 39b and 39c and the spring receivers 41c and 41d, perpendicular to the reciprocating direction. The second gear is provided with a pressing plate 41g that protrudes from the driven plate 41A and presses the locking detection switch 47 with the forward slide of the driven plate 41A and presses the unlocking detection switch 49 with the backward slide. The reciprocating motion of the slide member 39 interlocking with the normal / reverse rotation of the 23 is transmitted to the driven plate 41A via the coil springs 43a and 43b. Pressing plate 41g is actuated by the reciprocating.

つまり、所定の圧縮力でコイルバネ43a,43bが圧縮された後、始めて従動板41Aがスライドされ、また、スイッチからの反力を押圧板41gが受ければ、その反力が従動板41Aを介してコイルバネ43a,43bへと印加され、コイルバネ43a,43bが更に圧縮されることとなる。これにより、電気錠11の状態検知機構200におけるスイッチの押圧子47a,49a,50aを押し込みすぎず、また、押し込み不足の生じないように、最適に作動させることができる。この結果、電気錠11における状態検知動作200の確実性を向上させることができる。また、従動板41Aから垂直に押圧板41gを突設したので、対向させた施錠検知スイッチ47と解錠検知スイッチ49との間に、押圧板41gを配置することで、簡単な構造で、従動板41Aの往復動作により施錠検知スイッチ47及び解錠検知スイッチ49を確実に作動させることができる。   That is, after the coil springs 43a and 43b are compressed with a predetermined compression force, the driven plate 41A is slid for the first time, and if the pressing plate 41g receives the reaction force from the switch, the reaction force is transmitted via the driven plate 41A. Applied to the coil springs 43a and 43b, the coil springs 43a and 43b are further compressed. As a result, the switch pressing members 47a, 49a and 50a in the state detection mechanism 200 of the electric lock 11 can be optimally operated so as not to be pushed in excessively and insufficiently pressed. As a result, the reliability of the state detection operation 200 in the electric lock 11 can be improved. In addition, since the pressing plate 41g protrudes vertically from the driven plate 41A, the pressing plate 41g is disposed between the locking detection switch 47 and the unlocking detection switch 49 which are opposed to each other, so that the driven plate can be driven with a simple structure. The locking detection switch 47 and the unlocking detection switch 49 can be reliably operated by the reciprocation of the plate 41A.

次に、本発明に係る電気錠の状態検知機構の第2の実施の形態を説明する。
図4は本発明の第2の実施の形態に係る電気錠の状態検知機構の側面視を(a)、要部平面視を(b)に表した構成説明図、図5は図4に示した要部の分解斜視図である。
本実施の形態による電気錠の状態検知機構100は、電気錠11内に組み込まれている。電気錠11には、錠箱13に電動アクチュエータである電動モータ15が設置され、電動モータ15はピニオン17を駆動ギア19に噛合させている。駆動ギア19の回動は、順次噛合する第1ギア21、第2ギア23、第3ギア25を介してダルマ軸27の従動ギア27aへ伝達される。なお、駆動ギア19は、副第1ギア21a、副第2ギア23aを介しても第3ギア25へと噛合されている。
Next, a second embodiment of the electric lock state detection mechanism according to the present invention will be described.
4A is a side view of the state detection mechanism for an electric lock according to the second embodiment of the present invention, and FIG. FIG.
The electric lock state detection mechanism 100 according to the present embodiment is incorporated in the electric lock 11. In the electric lock 11, an electric motor 15 that is an electric actuator is installed in the lock box 13, and the electric motor 15 meshes the pinion 17 with the drive gear 19. The rotation of the drive gear 19 is transmitted to the driven gear 27a of the Dharma shaft 27 through the first gear 21, the second gear 23, and the third gear 25 that are sequentially meshed. The drive gear 19 is engaged with the third gear 25 via the sub first gear 21a and the sub second gear 23a.

ダルマ軸27の近傍の錠箱13内には、不図示の扉の木口に固定されるフロントパネル29から進退されるデッドボルト31が、水平方向(図4の左右方向)へスライド自在に設けられている。デッドボルト31は、付勢バネ33によって錠箱13内に後退する方向へ付勢される。このデッドボルト31の後退は、揺動ストッパ35が掛止することで規制される。ダルマ軸27には作動杆27bが設けられ、作動杆27bはダルマ軸27の時計回りの回転によってデッドボルト31の突起31aを押圧し、付勢バネ33の付勢力に抗してデッドボルト31をフロントパネル29から突出させる。突出したデッドボルト31は、揺動ストッパ35が掛止することで、突出状態に保持される。   In the lock box 13 in the vicinity of the Dharma shaft 27, a dead bolt 31 which is advanced and retracted from a front panel 29 fixed to a notch of a door (not shown) is provided so as to be slidable in a horizontal direction (left and right direction in FIG. 4). ing. The dead bolt 31 is urged by the urging spring 33 in the direction of retreating into the lock box 13. The backward movement of the dead bolt 31 is regulated by the swing stopper 35 being hooked. An operating rod 27 b is provided on the Dalma shaft 27, and the operating rod 27 b presses the protrusion 31 a of the dead bolt 31 by the clockwise rotation of the Dalma shaft 27, and pushes the dead bolt 31 against the biasing force of the biasing spring 33. Project from the front panel 29. The protruding dead bolt 31 is held in a protruding state by the swing stopper 35 being hooked.

また、電動モータ15が解錠方向へ駆動されると、駆動ギア19、第1ギア21、第2ギア23、第3ギア25を介してダルマ軸27が図4の反時計回りに回転し、不図示のストッパ解除杆が揺動ストッパ35の掛止を解除させると共に、作動杆27bがデッドボルト31を後退させる方向へと移動する。これにより、デッドボルト31は、付勢バネ33の付勢力によって、錠箱13内へと後退することとなる。つまり、電気錠11は、電動モータ15の回動力をギアを介してダルマ軸27に伝達し、このダルマ軸27の回動によってデッドボルト31を進退させ、施解錠を可能としている。   When the electric motor 15 is driven in the unlocking direction, the Dharma shaft 27 rotates counterclockwise in FIG. 4 via the drive gear 19, the first gear 21, the second gear 23, and the third gear 25. A stopper release rod (not shown) releases the swing stopper 35 and the operating rod 27b moves in a direction in which the dead bolt 31 is retracted. Thereby, the dead bolt 31 is retracted into the lock box 13 by the biasing force of the biasing spring 33. In other words, the electric lock 11 transmits the turning force of the electric motor 15 to the Dalma shaft 27 via the gear, and the dead bolt 31 is advanced and retracted by the rotation of the Dalma shaft 27 to enable locking and unlocking.

錠箱13の背面板37の内面には、第2ギア23の近傍で状態検知機構100が設けられている。状態検知機構100は、スライド部材39と、従動板41と、コイルバネ43a,43bと、揺動板45と、施錠検知スイッチ47、解錠検知スイッチ49とからなる。   A state detection mechanism 100 is provided in the vicinity of the second gear 23 on the inner surface of the back plate 37 of the lock box 13. The state detection mechanism 100 includes a slide member 39, a driven plate 41, coil springs 43 a and 43 b, a swing plate 45, a lock detection switch 47, and an unlock detection switch 49.

図5に示すように、スライド部材39は、背面板37と平行に、図4の上下方向へ移動自在に保持され、基部39aに、切り起こしによって形成された一対のバネ座39b,39cを有している。また、基部39aから立設された側壁39dには係合軸39eが突設されている。スライド部材39は、係合軸39eが第2ギア23の一部分(歯部の一部分)に当接し、第2ギア23の正逆回転に従動して往復動する。   As shown in FIG. 5, the slide member 39 is held parallel to the back plate 37 so as to be movable in the vertical direction of FIG. 4, and has a pair of spring seats 39b and 39c formed by cutting and raising at the base portion 39a. is doing. Further, an engaging shaft 39e protrudes from a side wall 39d erected from the base 39a. The slide member 39 reciprocates as the engagement shaft 39e abuts on a part of the second gear 23 (a part of the tooth portion) and follows the forward and reverse rotation of the second gear 23.

従動板41は、背面板37と平行に、図4の上下方向へ移動自在に保持され、基部41aに、一対のバネ座39b,39cを内側に配置する枠部41bを有している。枠部41bには、一対のバネ座39b,39cに往復方向で対向する一対のバネ受け41c,41dが形成されている。また、基部41aには、往復方向に離間した一対の凸部41e,41fが一方の板面側に2組設けられている。   The driven plate 41 is held in parallel with the back plate 37 so as to be movable in the vertical direction of FIG. 4, and has a frame portion 41b in which a pair of spring seats 39b and 39c are arranged on the inner side of the base portion 41a. The frame portion 41b is formed with a pair of spring receivers 41c and 41d that face the pair of spring seats 39b and 39c in the reciprocating direction. The base portion 41a is provided with two pairs of convex portions 41e and 41f spaced apart in the reciprocating direction on one plate surface side.

スライド部材39の一対のバネ座39b,39cと、従動板41の一対のバネ受け41c,41dとのそれぞれの間には、一対のコイルバネ43a,43bが挟入されている。   A pair of coil springs 43 a and 43 b are sandwiched between the pair of spring seats 39 b and 39 c of the slide member 39 and the pair of spring receivers 41 c and 41 d of the driven plate 41.

錠箱13内には施錠検知スイッチ47及び解錠検知スイッチ49に対向して揺動板45が設けられ、揺動軸51は従動板41の往復方向に直交する揺動軸51中心に揺動自在に支持されている。   A swing plate 45 is provided in the lock box 13 so as to face the lock detection switch 47 and the unlock detection switch 49, and the swing shaft 51 swings about the swing shaft 51 perpendicular to the reciprocating direction of the driven plate 41. It is supported freely.

揺動板45は、往方向(図4の下方向)にスライドする従動板41の一方の凸部41eが傾斜面45aに摺接することで他端側(図4の時計回り側)へ揺動し施錠検知スイッチ47の押圧子47aを押圧する。
また、揺動板45は、復方向(図4の上方向)にスライドする従動板41の他方の凸部41fが傾斜面45bに摺接することで一端側へ揺動し解錠検知スイッチ49の押圧子49aを押圧する。
これら押圧子47a,押圧子49aが押圧されることで開閉された接点信号は、コネクターケーブル53を介して管理室等の制御装置等によって検知される。
The swing plate 45 swings toward the other end side (clockwise in FIG. 4) when one convex portion 41e of the driven plate 41 sliding in the forward direction (downward in FIG. 4) is in sliding contact with the inclined surface 45a. The presser 47a of the lock detection switch 47 is pressed.
Further, the swinging plate 45 swings to one end side by sliding the other convex portion 41f of the driven plate 41 sliding in the backward direction (upward direction in FIG. 4) to the inclined surface 45b. The pressing element 49a is pressed.
Contact signals that are opened and closed by pressing the pressing elements 47a and 49a are detected by a control device such as a management room via the connector cable 53.

ここで、この揺動板45の形状について詳述すると、揺動軸51は、揺動板45の厚みに対して一方の面側に寄って配置され、本発明では、各検知スイッチ47,49に近接する側に位置している。また、揺動板45は、図5に示すように、両端に向け厚みが小さくなるよう、断面略菱形形状とされ、検知スイッチ47,49に対向する表面側は略平滑に形成され、裏面側に上記傾斜面45a,45bが形成される。各傾斜面45a,45bは、揺動板45の裏面に形成される一対の凹部内に位置し、各凹部の底面と、揺動板45表面とで、略均一な厚みを形成するとともに、さらに両端に向けて傾斜する面となるようになっている。すなわち各傾斜面45a,45bは、揺動板45としての両端に向けて、断面視でハ字状に配置構成される。これにより、従動板41の各凸部41e,41fは、各凹部内を移動可能となり、従動板41の各凸部41e,41fが摺接することでの揺動板の45の揺動は、凸部41e,41fによる傾斜面45a,45bへの摺動押圧で行われ、例えばそれぞれが磨り減るようなことがあっても、各傾斜面45a,45bに所定の長さを有することで各凸部41e,41fが押圧を行うこととなる。   Here, the shape of the oscillating plate 45 will be described in detail. The oscillating shaft 51 is arranged closer to one surface side with respect to the thickness of the oscillating plate 45. In the present invention, each of the detection switches 47 and 49 is arranged. Located on the side close to the. Further, as shown in FIG. 5, the swing plate 45 has a substantially rhombus cross section so that the thickness decreases toward both ends, and the surface side facing the detection switches 47 and 49 is formed substantially smooth, and the back surface side. The inclined surfaces 45a and 45b are formed. Each inclined surface 45a, 45b is located in a pair of recesses formed on the back surface of the swing plate 45, and forms a substantially uniform thickness between the bottom surface of each recess and the surface of the swing plate 45, and further It becomes the surface which inclines toward both ends. In other words, the inclined surfaces 45a and 45b are arranged in a C shape in a cross-sectional view toward both ends as the swing plate 45. Accordingly, the convex portions 41e and 41f of the driven plate 41 can move in the concave portions, and the swing of the swing plate 45 caused by the sliding contact of the convex portions 41e and 41f of the driven plate 41 is convex. This is performed by sliding and pressing the inclined surfaces 45a and 45b by the portions 41e and 41f. For example, even when each of the inclined surfaces 45a and 45b has a predetermined length, 41e and 41f will press.

次に、このように構成される電気錠の状態検知機構の動作を説明する。
図6は図4に示した状態検知機構の施錠検知スイッチ押圧状態を(a)、解錠検知スイッチ押圧状態を(b)に表した動作説明図である。
管理室等から電気錠11へ施錠信号が出力されると、電動モータ15が駆動され、駆動ギア19が図1の時計回りに回転される。駆動ギア19が時計回りに回転されることで、第1ギア21、第2ギア23、第3ギア25を介してダルマ軸27が時計回りに回転される。ダルマ軸27が時計回りに回転すると、作動杆27bが突起31aを押圧し、デッドボルト31を突出させて施錠状態とする。
Next, the operation of the state detection mechanism of the electric lock configured as described above will be described.
6A and 6B are operation explanatory views showing the locking detection switch pressing state of the state detection mechanism shown in FIG. 4 in FIG. 4A and the unlocking detection switch pressing state in FIG.
When a lock signal is output from the management room or the like to the electric lock 11, the electric motor 15 is driven, and the drive gear 19 is rotated clockwise in FIG. By rotating the drive gear 19 clockwise, the Dharma shaft 27 is rotated clockwise via the first gear 21, the second gear 23, and the third gear 25. When the dharma shaft 27 rotates clockwise, the operating rod 27b presses the projection 31a, and the dead bolt 31 protrudes to be in a locked state.

この際、第2ギア23が時計回りに回転することで、スライド部材39が係合軸39eを介して図4の下方向へとスライドされる。スライド部材39が下方向へスライドされると、バネ座39bを介してコイルバネ43aが圧縮され、その圧縮力の反発力によって従動板41のバネ受け41cが押圧される。従動板41は、このコイルバネ43aの反発力によって図4の下方向へとスライドされる。   At this time, the second gear 23 rotates clockwise, whereby the slide member 39 is slid downward in FIG. 4 via the engagement shaft 39e. When the slide member 39 is slid downward, the coil spring 43a is compressed via the spring seat 39b, and the spring receiver 41c of the driven plate 41 is pressed by the repulsive force of the compression force. The driven plate 41 is slid downward in FIG. 4 by the repulsive force of the coil spring 43a.

従動板41が図4の下方向へとスライドされると、従動板41の凸部41eが揺動板45の傾斜面45aを押し上げ、揺動板45が揺動されて、施錠検知スイッチ47の押圧子47aが押圧される。これにより、施錠検知スイッチ47は、施錠回路の接点が閉じられ、その接点作動状態がコネクターケーブル53によって検出されることで、管理室等の制御装置によって、電気錠11の施錠状態が検知されることとなる。   When the driven plate 41 is slid downward in FIG. 4, the convex portion 41 e of the driven plate 41 pushes up the inclined surface 45 a of the swing plate 45, and the swing plate 45 is swung so that the lock detection switch 47 The pressing element 47a is pressed. Thereby, the lock detection switch 47 closes the contact of the lock circuit, and the contact operating state is detected by the connector cable 53, so that the lock state of the electric lock 11 is detected by a control device such as a management room. It will be.

なお、解錠信号が送出されることによる解錠検出は、上記の施錠検出動作の場合と、電動モータ15、駆動ギア19、第1ギア21、第2ギア23、第3ギア25、ダルマ軸27、デッドボルト31、スライド部材39、従動板41、揺動板45が逆動作となり、解錠検知スイッチ49の押圧子49aが押圧されることで、管理室等の制御装置によって、電気錠11の解錠状態が検知されることとなる。   The unlock detection by sending the unlock signal is performed in the case of the above-described lock detection operation, as well as the electric motor 15, the drive gear 19, the first gear 21, the second gear 23, the third gear 25, the Dharma shaft. 27, the dead bolt 31, the slide member 39, the driven plate 41, and the swing plate 45 are operated in reverse, and the pressing member 49a of the unlock detection switch 49 is pressed, so that the electric lock 11 is controlled by a control device such as a management room. The unlocked state is detected.

このように、状態検知機構100では、第2ギア23の正逆回転に連動するスライド部材39の往復動がコイルバネ43a,43bを介して従動板41に伝達され、この従動板41の往復動によって揺動板45が揺動される。したがって、所定の圧縮力でコイルバネ43a,43bが圧縮された後、始めて従動板41がスライドされる。一方、スイッチからの反力を揺動板45が受ければ、その反力が従動板41を介してコイルバネ43a,43bへと印加され、コイルバネ43a,43bが更に圧縮されることとなる。   Thus, in the state detection mechanism 100, the reciprocating motion of the slide member 39 interlocked with the forward / reverse rotation of the second gear 23 is transmitted to the driven plate 41 via the coil springs 43a and 43b. The swing plate 45 is swung. Therefore, the driven plate 41 is slid only after the coil springs 43a and 43b are compressed with a predetermined compressive force. On the other hand, when the rocking plate 45 receives a reaction force from the switch, the reaction force is applied to the coil springs 43a and 43b via the driven plate 41, and the coil springs 43a and 43b are further compressed.

ここで、図6に示すように、スライド部材39の往復スライド距離S1より、コイルバネ43a,43bを介してスライドされる従動板41の往復スライド距離S2は、短くなる(S1>S2)。すなわち、スライド部材39の往復動が従動板41へ伝達される際、コイルバネ43a,43bが必ず圧縮される。逆に、スイッチからの反力を受けた際にも、コイルバネ43a,43bが必ず圧縮される。   Here, as shown in FIG. 6, the reciprocating slide distance S2 of the driven plate 41 slid through the coil springs 43a and 43b is shorter than the reciprocating slide distance S1 of the slide member 39 (S1> S2). That is, when the reciprocating motion of the slide member 39 is transmitted to the driven plate 41, the coil springs 43a and 43b are necessarily compressed. Conversely, the coil springs 43a and 43b are always compressed when a reaction force is received from the switch.

つまり、コイルバネ43a,43bは、従動板41へのスライド力伝達に際しては、可変可能な付勢力によってスライド力を所定の可変幅で伝達し、従動板41をスライドさせるための駆動力に一定の許容範囲を確保する。一方、スイッチからの反力を受けた際には、自身が圧縮されることにより反力を吸収し、ギア、スライド部材39、従動板41、施錠検知スイッチ47、解錠検知スイッチ49が直結された場合に、これらいずれかの部材へ反力が過剰な力となって印加されることを防止する。つまり、コイルバネ43a,43bが緩衝的な連結部材として機能している。   That is, when transmitting the sliding force to the driven plate 41, the coil springs 43a and 43b transmit the sliding force with a predetermined variable width by a variable urging force, and have a certain allowable driving force for sliding the driven plate 41. Secure the range. On the other hand, when the reaction force from the switch is received, the reaction force is absorbed by being compressed, and the gear, the slide member 39, the driven plate 41, the lock detection switch 47, and the unlock detection switch 49 are directly connected. In this case, the reaction force is prevented from being applied as an excessive force to any of these members. That is, the coil springs 43a and 43b function as buffering coupling members.

したがって、本実施の形態による電気錠11の状態検知機構100によれば、デッドボルト31を進退させる第2ギア23に従動して往復動するスライド部材39と、このスライド部材39のバネ座39b,39cに対向するバネ受け41c,41dが形成される従動板41と、これらバネ座39b,39cとバネ受け41c,41dとの間に挟入されるコイルバネ43a,43bと、揺動自在に支持されスライドする従動板41の凸部41e,41fが摺接することで施錠検知スイッチ47又は解錠検知スイッチ49を押圧する揺動板45とを備えたので、第2ギア23の正逆回転に連動するスライド部材39の往復動がコイルバネ43a,43bを介して従動板41に伝達され、この従動板41の往復動によって揺動板45が揺動される。   Therefore, according to the state detection mechanism 100 of the electric lock 11 according to the present embodiment, the slide member 39 that reciprocates following the second gear 23 that moves the dead bolt 31 back and forth, and the spring seat 39b of the slide member 39, A follower plate 41 on which spring receivers 41c and 41d facing 39c are formed, and coil springs 43a and 43b sandwiched between the spring seats 39b and 39c and the spring receivers 41c and 41d, are supported in a swingable manner. Since the protrusions 41e and 41f of the sliding follower plate 41 are provided with the rocking plate 45 that presses the locking detection switch 47 or the unlocking detection switch 49 by sliding contact, the second gear 23 is interlocked with forward and reverse rotation. The reciprocating motion of the slide member 39 is transmitted to the driven plate 41 via the coil springs 43a and 43b, and the swinging plate 45 is swung by the reciprocating motion of the driven plate 41.

つまり、所定の圧縮力でコイルバネ43a,43bが圧縮された後、始めて従動板41がスライドされ、また、スイッチからの反力を揺動板45が受ければ、その反力が従動板41を介してコイルバネ43a,43bへと印加され、コイルバネ43a,43bが更に圧縮されることとなる。これにより、電気錠11の状態検知機構100におけるスイッチの押圧子47a,49aを押し込みすぎず、また、押し込み不足の生じないように、最適に作動させることができる。この結果、電気錠11における状態検知動作100の確実性を向上させることができる。   That is, after the coil springs 43a and 43b are compressed with a predetermined compression force, the driven plate 41 is slid for the first time, and if the oscillating plate 45 receives the reaction force from the switch, the reaction force is transmitted via the driven plate 41. Is applied to the coil springs 43a and 43b, and the coil springs 43a and 43b are further compressed. As a result, the switch pressing elements 47a and 49a in the state detecting mechanism 100 of the electric lock 11 can be optimally operated so as not to be pushed in excessively and insufficiently pressed. As a result, the reliability of the state detection operation 100 in the electric lock 11 can be improved.

なお、上述した第1、第2の実施形態では、スライド部材39と、従動板41A,41との、バネ座39b,39cとバネ受け41c,41dとの間に一対のコイルバネ43a,43bを挟入された例とし、すなわち各部の構造として、平板状の各部材で構成し、一対のコイルバネが表出した構成を示したが、図7に示すように、スライド部材39Aの形状を箱部39gを備えた形状とし、この箱部39g内にコイルバネ43a,43bを収容可能な構成としてもよい。
この例によれば、図7に示すように、従動板41Bは、上記第1の実施の形態と同様に略L字状に形成されて押圧板41gを有するとともに、中途部に板状の突片41kが突設され、この突片41kの表裏板面がバネ受け41c,41dとなっている。このバネ受け41c,41dは、それぞれが往復方向に面している。押圧板41gは、錠箱13内に対向配置された施錠検知スイッチ47と、解錠検知スイッチ49及び補助スイッチ50との間に配置され、背面板37に沿ってスライド移動自在とされる。そして、押圧板41gは、従動板41Bの往方向のスライドで施錠検知スイッチ47を押圧するとともに、復方向のスライドで解錠検知スイッチ49及び補助スイッチ50を押圧する。
In the first and second embodiments described above, the pair of coil springs 43a and 43b are sandwiched between the spring seats 39b and 39c and the spring receivers 41c and 41d of the slide member 39 and the driven plates 41A and 41, respectively. As an example, that is, as the structure of each part, it is composed of flat plate members and a pair of coil springs is shown. As shown in FIG. 7, the shape of the slide member 39A is a box part 39g. The coil springs 43a and 43b may be accommodated in the box 39g.
According to this example, as shown in FIG. 7, the follower plate 41B is formed in a substantially L shape and has a pressing plate 41g as in the first embodiment, and has a plate-like protrusion in the middle. A piece 41k is protruded, and the front and back plate surfaces of the protrusion 41k are spring receivers 41c and 41d. Each of the spring receivers 41c and 41d faces the reciprocating direction. The pressing plate 41g is disposed between the locking detection switch 47, the unlocking detection switch 49, and the auxiliary switch 50 that are disposed to face each other in the lock box 13, and is slidable along the back plate 37. The pressing plate 41g presses the locking detection switch 47 with the forward slide of the driven plate 41B, and presses the unlocking detection switch 49 and the auxiliary switch 50 with the backward sliding.

スライド部材39Aは、図7に示すように、背面板37と平行に移動自在に保持され、背面板37に対向する一側面が開口する略直方箱状に形成される箱部39gを備えている。なお、この箱部39gは長手方向を往復動方向に設定される。また、この箱部39gの一端から腕部30fが延設され、この腕部39f先端に係合軸39eが設けられている。係合軸39eは、上記した第2ギア23に固設されたカム板23aに当接しており、この第2ギア23の正逆回転に従動して往復動する。箱部39gの内面における往復動方向の対向する内面は、一対のバネ座39b,39cを構成している。   As shown in FIG. 7, the slide member 39 </ b> A includes a box portion 39 g that is held movably in parallel with the back plate 37 and is formed in a substantially rectangular box shape with one side facing the back plate 37 opening. . In addition, this box part 39g sets the longitudinal direction to a reciprocating direction. Further, an arm portion 30f extends from one end of the box portion 39g, and an engagement shaft 39e is provided at the tip of the arm portion 39f. The engagement shaft 39e is in contact with the cam plate 23a fixed to the second gear 23, and reciprocates following the forward and reverse rotation of the second gear 23. The inner surfaces of the inner surface of the box portion 39g facing each other in the reciprocating direction constitute a pair of spring seats 39b and 39c.

これら従動板41Bとスライド部材39Aとは、図8に示すように、突片41kが箱部39g内に収容状態となり、従動板41Bの一部をスライド部材39Aの箱部39gが覆うような配置位置で構成される。また、突片41kの両面である各バネ受け41c,41dはそれぞれ、箱部39g内で、バネ座39b,39cに対向する。そして、これらバネ座39b,39cとバネ受け41c,41dとの間に,一対のコイルバネ43a,43bが挟入されている。   As shown in FIG. 8, the driven plate 41B and the slide member 39A are arranged such that the projecting piece 41k is housed in the box portion 39g, and a portion of the driven plate 41B is covered by the box portion 39g of the slide member 39A. Composed of position. The spring receivers 41c and 41d, which are both surfaces of the projecting piece 41k, face the spring seats 39b and 39c in the box portion 39g, respectively. A pair of coil springs 43a and 43b are sandwiched between the spring seats 39b and 39c and the spring receivers 41c and 41d.

なお、図示してないが、上記第1の実施の形態と同様に、押圧板41gの表裏面に、複数のイボ部を膨出形成してもよく、或いは、各スイッチ47,49,50の押圧子47a,49a,50aを押圧する部位に緩衝凸部などを設けることとしてもよい。このようなイボ部や緩衝凸部を設けることで、各スイッチ47,49,50に対する押圧不良などの発生を防止でき、確実なスイッチ操作となる。   Although not shown, a plurality of warped portions may be bulged on the front and back surfaces of the pressing plate 41g as in the first embodiment, or each switch 47, 49, 50 It is good also as providing a buffer convex part etc. in the site | part which presses the presser 47a, 49a, 50a. Providing such warts and shock-absorbing protrusions can prevent the occurrence of a pressing failure with respect to each of the switches 47, 49, 50, and ensures a reliable switch operation.

このように構成される電気錠の状態検知機構では、図 (a),(b)の動作説明図に示すように、電気錠への施錠信号による電動モータ(図1参照))の駆動によって、第1ギア21、第2ギア23を介し、スライド部材39Aが係合軸39eを介してスライド移動する。スライド部材39Aがスライドされると、バネ座39bを介してコイルバネ43aが圧縮され、その圧縮力の反発力によって従動板41Bのバネ受け41cが押圧される。従動板41Bは、このコイルバネ43aの反発力によってスライドされる(図8における左方)。   In the electric lock state detection mechanism configured as described above, as shown in the operation explanatory diagrams of FIGS. (A) and (b), by driving the electric motor (see FIG. 1) by the lock signal to the electric lock, Through the first gear 21 and the second gear 23, the slide member 39A slides through the engagement shaft 39e. When the slide member 39A is slid, the coil spring 43a is compressed via the spring seat 39b, and the spring receiver 41c of the driven plate 41B is pressed by the repulsive force of the compression force. The driven plate 41B is slid by the repulsive force of the coil spring 43a (left side in FIG. 8).

従動板41Bがスライドされると、従動板41Bの押圧板41gを介して施錠検知スイッチ47の押圧子47aが押圧される。これにより、施錠検知スイッチ47は、施錠回路の接点が閉じられ、その接点作動状態が検出されることで、電気錠の施錠状態が検知されることとなる。   When the driven plate 41B is slid, the pressing element 47a of the locking detection switch 47 is pressed through the pressing plate 41g of the driven plate 41B. As a result, the lock detection switch 47 detects the lock state of the electric lock by closing the contact of the lock circuit and detecting the contact operating state.

また、解錠信号が送出されることによる解錠検出は、上記の施錠検出動作の場合と、各部が逆動作となり、解錠検知スイッチ49の押圧子49aが押圧されることで、電気錠の解錠状態が検知されることとなる。   In addition, the unlocking detection by sending the unlocking signal is the same as the above-described unlocking detection operation, and each part is reversely operated, and the pressing member 49a of the unlocking detection switch 49 is pressed, so that the electric lock The unlocked state will be detected.

このように、この実施の形態での状態検知機構300では、上述した第1の実施の形態と同様に、第2ギア23の正逆回転に連動するスライド部材39Aの往復動がコイルバネ43a,43bを介して従動板41Bに伝達される。したがって、所定の圧縮力でコイルバネ43a,43bが圧縮された後、始めて従動板41Bがスライドされる。一方、スイッチからの反力を押圧板41gが受ければ、その反力が従動板41Bを介してコイルバネ43a,43bへと印加され、コイルバネ43a,43bが更に圧縮されることとなる。   As described above, in the state detection mechanism 300 according to this embodiment, the reciprocating motion of the slide member 39A interlocked with the forward and reverse rotation of the second gear 23 is performed by the coil springs 43a and 43b, as in the first embodiment described above. Is transmitted to the driven plate 41B. Therefore, the driven plate 41B is slid only after the coil springs 43a and 43b are compressed with a predetermined compressive force. On the other hand, when the pressing plate 41g receives a reaction force from the switch, the reaction force is applied to the coil springs 43a and 43b via the driven plate 41B, and the coil springs 43a and 43b are further compressed.

そして、図8に示すように、スライド部材39Aの往復スライド距離S1より、コイルバネ43a,43bを介してスライドされる従動板41Bの往復スライド距離S2は、短くなる(S1>S2)。すなわち、スライド部材39Aの往復動が従動板41Bへ伝達される際、コイルバネ43a,43bが必ず圧縮される。逆に、スイッチからの反力を受けた際にも、コイルバネ43a,43bが必ず圧縮される。   As shown in FIG. 8, the reciprocating slide distance S2 of the driven plate 41B slid through the coil springs 43a and 43b is shorter than the reciprocating slide distance S1 of the slide member 39A (S1> S2). That is, when the reciprocating motion of the slide member 39A is transmitted to the driven plate 41B, the coil springs 43a and 43b are necessarily compressed. Conversely, the coil springs 43a and 43b are always compressed when a reaction force is received from the switch.

つまり、コイルバネ43a,43bは、従動板41Bへのスライド力伝達に際しては、可変可能な付勢力によってスライド力を所定の可変幅で伝達し、従動板41Bをスライドさせるための駆動力に一定の許容範囲を確保する。一方、スイッチからの反力を受けた際には、自身が圧縮されることにより反力を吸収し、ギア、スライド部材39A、従動板41B、施錠検知スイッチ47、解錠検知スイッチ49が直結された場合に、これらいずれかの部材へ反力が過剰な力となって印加されることを防止する。つまり、コイルバネ43a,43bが緩衝的な連結部材として機能している。   That is, when transmitting the sliding force to the driven plate 41B, the coil springs 43a and 43b transmit the sliding force with a predetermined variable width by a variable urging force, and have a certain allowable driving force for sliding the driven plate 41B. Secure the range. On the other hand, when the reaction force from the switch is received, the reaction force is absorbed by being compressed, and the gear, the slide member 39A, the driven plate 41B, the lock detection switch 47, and the unlock detection switch 49 are directly connected. In this case, the reaction force is prevented from being applied as an excessive force to any of these members. That is, the coil springs 43a and 43b function as buffering coupling members.

したがって、この実施の形態による電気錠11の状態検知機構300によれば、デッドボルト31を進退させる第2ギア23に従動して往復動するスライド部材39Aと、このスライド部材39Aのバネ座39b,39cに対向するバネ受け41c,41dが形成される従動板41Bと、これらバネ座39b,39cとバネ受け41c,41dとの間に挟入されるコイルバネ43a,43bと、往復方向に直交して従動板41Bから突設され従動板41Bの往方向のスライドで施錠検知スイッチ47を押圧するとともに、復方向のスライドで解錠検知スイッチ49を押圧する押圧板41gとを備えたので、第2ギア23の正逆回転に連動するスライド部材39Aの往復動がコイルバネ43a,43bを介して従動板41Bに伝達され、この従動板41Bの往復動によって押圧板41gが作動される。   Therefore, according to the state detection mechanism 300 of the electric lock 11 according to this embodiment, the slide member 39A that reciprocates following the second gear 23 that moves the dead bolt 31 forward and backward, and the spring seat 39b of the slide member 39A, A driven plate 41B formed with spring receivers 41c and 41d facing 39c, and coil springs 43a and 43b sandwiched between the spring seats 39b and 39c and the spring receivers 41c and 41d, perpendicular to the reciprocating direction. The second gear is provided with a pressing plate 41g that protrudes from the driven plate 41B and presses the locking detection switch 47 with the forward slide of the driven plate 41B and presses the unlocking detection switch 49 with the backward slide. The reciprocating motion of the slide member 39A interlocking with the normal / reverse rotation of the 23 is transmitted to the driven plate 41B via the coil springs 43a and 43b. Pressing plate 41g is actuated by the reciprocating movement of the plate 41B.

つまり、所定の圧縮力でコイルバネ43a,43bが圧縮された後、始めて従動板41Bがスライドされ、また、スイッチからの反力を押圧板41gが受ければ、その反力が従動板41Bを介してコイルバネ43a,43bへと印加され、コイルバネ43a,43bが更に圧縮されることとなる。これにより、電気錠11の状態検知機構300におけるスイッチの押圧子47a,49a,50aを押し込みすぎず、また、押し込み不足の生じないように、最適に作動させることができる。この結果、電気錠11における状態検知動作300の確実性を向上させることができる。また、従動板41Bから垂直に押圧板41gを突設したので、対向させた施錠検知スイッチ47と解錠検知スイッチ49との間に、押圧板41gを配置することで、簡単な構造で、従動板41Bの往復動作により施錠検知スイッチ47及び解錠検知スイッチ49を確実に作動させることができる。   That is, after the coil springs 43a and 43b are compressed with a predetermined compression force, the driven plate 41B is slid for the first time, and when the pressing plate 41g receives the reaction force from the switch, the reaction force is transmitted via the driven plate 41B. Applied to the coil springs 43a and 43b, the coil springs 43a and 43b are further compressed. As a result, the switch pressing members 47a, 49a, and 50a in the state detection mechanism 300 of the electric lock 11 can be optimally operated so as not to be pushed in excessively and insufficiently pressed. As a result, the reliability of the state detection operation 300 in the electric lock 11 can be improved. Further, since the pressing plate 41g protrudes vertically from the driven plate 41B, the pressing plate 41g is arranged between the opposed locking detection switch 47 and the unlocking detection switch 49, so that the driven plate can be driven with a simple structure. The lock detection switch 47 and the unlock detection switch 49 can be reliably operated by the reciprocating motion of the plate 41B.

さらに、この実施の形態によれば、スライド部材39Aに箱部39gを備えた構成とし、一対のコイルバネ43a,43bを覆う構造としたことで、これらコイルバネ43a,43bに対する塵埃などの付着、例えば錠箱外から侵入する塵埃や、錠箱内における他の部品との緩衝などを抑制でき、経年使用時の動作不良の発生を低減させるこが可能となる。また、この箱部39gと、この箱部39g内に収容される形となる従動板41Bの突片41kとで構成されるバネ座39b,39cとバネ受け41c,41dとがそれぞれ略平板状に構成でき、このことから、これらの間に挟入される一対のコイルバネ43a,43bの組み込みを容易なものとすることができ、すなわち箱部39g内で組み立てが行えることとなる。   Further, according to this embodiment, the slide member 39A is provided with the box portion 39g and the structure covers the pair of coil springs 43a and 43b, so that dust or the like adheres to the coil springs 43a and 43b, for example, locks. It is possible to suppress dust entering from the outside of the box and buffering with other parts in the lock box, and it is possible to reduce the occurrence of malfunctions when used over time. The spring seats 39b and 39c and the spring receivers 41c and 41d formed by the box portion 39g and the protruding piece 41k of the driven plate 41B accommodated in the box portion 39g are substantially flat. Therefore, the pair of coil springs 43a and 43b sandwiched between them can be easily assembled, that is, assembly can be performed in the box 39g.

また、上述の第1、第2の実施の形態では、従動板41Aに押圧板41gを設ける構成、従動板41と揺動板45とを組み合わせた構成を例に説明したが、本発明に係る電気錠の状態検知機構は、押圧板41gや揺動板45に代わる種々の構成を用いても良い。例えば、押圧板41gは、基部41aに垂直に突設したが、押圧板41gは、基部41aと同一平面上でL字形状に折曲した押圧片として形成してもよい。また、基部41aに、揺動杆の揺動によって接点の開閉される揺動スイッチの当該揺動杆先端を、回動軸を介して直接的に連結してもよい。さらに、基部41aの側縁にギアとしてのラックを形成し、このラックに噛合させたセグメントギアを揺動・回動させることで、当該セグメントギアを介してスイッチの接点を開閉させるものであってもよい。さらには、各実施の形態において、各スイッチは押圧されることで作動するもので構成しているが、非接触型のスイッチにて構成してもよい。   In the first and second embodiments described above, the configuration in which the pressing plate 41g is provided on the driven plate 41A and the configuration in which the driven plate 41 and the swing plate 45 are combined have been described as examples. The state detection mechanism of the electric lock may use various configurations in place of the pressing plate 41g and the swing plate 45. For example, although the pressing plate 41g protrudes perpendicularly to the base portion 41a, the pressing plate 41g may be formed as a pressing piece that is bent in an L shape on the same plane as the base portion 41a. In addition, the tip of the swing rod of a swing switch whose contact is opened and closed by swinging of the swing rod may be directly connected to the base 41a via a rotating shaft. Further, a rack as a gear is formed on the side edge of the base 41a, and a segment gear engaged with the rack is swung and rotated to open and close the contact of the switch via the segment gear. Also good. Furthermore, in each embodiment, each switch is configured to operate when pressed, but may be configured with a non-contact type switch.

本発明の第1の実施の形態に係る電気錠の状態検知機構の側面視を(a)、要部平面視を(b)に表した構成説明図である。It is the structure explanatory view which expressed the side view of the state detection mechanism of the electric lock concerning the 1st embodiment of the present invention in (a), and expressed the principal part plan view in (b). 図1に示した要部の分解斜視図を(a)、要部拡大平面図を(b)に示した説明図である。It is explanatory drawing which showed the exploded perspective view of the principal part shown in FIG. 1 at (a), and the principal part enlarged plan view at (b). 図1に示した状態検知機構の施錠検知スイッチ押圧状態を(a)、解錠検知スイッチ押圧状態を(b)に表した動作説明図である。It is operation | movement explanatory drawing which represented the locking detection switch press state of the state detection mechanism shown in FIG. 1 to (a) and the unlocking detection switch press state to (b). 本発明の第2の実施の形態に係る電気錠の状態検知機構の側面視を(a)、要部平面視を(b)に表した構成説明図である。It is composition explanatory drawing which represented the side view of the state detection mechanism of the electric lock which concerns on the 2nd Embodiment of this invention to (a), and represented the principal part planar view to (b). 図4に示した要部の分解斜視図である。It is a disassembled perspective view of the principal part shown in FIG. 図4に示した状態検知機構の施錠検知スイッチ押圧状態を(a)、解錠検知スイッチ押圧状態を(b)に表した動作説明図である。It is operation | movement explanatory drawing which represented the locking detection switch press state of the state detection mechanism shown in FIG. 4 to (a) and the unlocking detection switch press state to (b). 本発明のその他の実施の形態に係る電気錠の状態検知機構の分解斜視図である。It is a disassembled perspective view of the state detection mechanism of the electric lock which concerns on other embodiment of this invention. 図7に示した状態検知機構の施錠検知スイッチ押圧状態を(a)、解錠検知スイッチ押圧状態を(b)に表した動作説明図である。It is operation | movement explanatory drawing which represented the locking detection switch press state of the state detection mechanism shown in FIG. 7 to (a) and the unlocking detection switch press state to (b).

符号の説明Explanation of symbols

11…電気錠
15…電動アクチュエータ(電動モータ)
23…ギア(第2ギア)
27…ダルマ軸
31…デッドボルト
39,39A…スライド部材
39b,39c…バネ座
39g…箱部
41,41A,41B…従動板
41b…枠部
41c,41d…バネ受け
41e,41f…凸部
41g…押圧板
43a,43b…コイルバネ
45…揺動板
47…施錠検知スイッチ
49…解錠検知スイッチ
51…揺動軸
100,200,300…状態検知機構
S1…スライド部材の往復スライド距離
S2…従動板の往復スライド距離
11 ... Electric lock 15 ... Electric actuator (electric motor)
23 ... Gear (second gear)
27 ... Dalma shaft 31 ... Dead bolt 39, 39A ... Slide member 39b, 39c ... Spring seat 39g ... Box part 41, 41A, 41B ... Follower plate 41b ... Frame part 41c, 41d ... Spring receiver 41e, 41f ... Projection part 41g ... Press plate 43a, 43b ... Coil spring 45 ... Oscillating plate 47 ... Locking detection switch 49 ... Unlocking detection switch 51 ... Oscillating shaft 100, 200, 300 ... State detection mechanism S1 ... Reciprocating slide distance of slide member S2 ... of driven plate Reciprocating slide distance

Claims (7)

電動アクチュエータの回動力をギアを介してダルマ軸に伝達し、該ダルマ軸の回動によってデッドボルトを進退させる電気錠の状態検知機構であって、
前記ギアの一部分に当接し該ギアの正逆回転に従動して往復動するとともに該往復方向のそれぞれに向かって配置形成される一対のバネ座を有するスライド部材と、
前記一対のバネ座に対し前記往復方向で対向するバネ受けが形成され施解錠スイッチを作動させる従動板と、
前記一対のバネ座と前記バネ受けとの前記往復方向のそれぞれの間に挟入される一対のコイルバネと、
を具備したことを特徴とする電気錠の状態検知機構。
A state detection mechanism for an electric lock that transmits the rotational force of an electric actuator to a Dharma shaft through a gear, and advances and retracts a dead bolt by rotation of the Dharma shaft,
A sliding member having a pair of spring seats that are in contact with a part of the gear and reciprocate following the forward and reverse rotation of the gear and are arranged and formed toward each of the reciprocating directions;
A follower plate that is formed with a spring receiver facing the reciprocating direction with respect to the pair of spring seats and operates a locking and unlocking switch;
A pair of coil springs sandwiched between the pair of spring seats and the spring receiver in the reciprocating direction; and
The state detection mechanism of the electric lock characterized by comprising.
前記スライド部材は、少なくとも一側が開口する箱部を備え、該箱部内を前記バネ受けが往復方向移動自在とされ、前記箱部の対向する内面が上記一対のバネ座とされて該バネ座間に前記バネ受けが位置し、前記一対のコイルバネを覆うことを特徴とする請求項1記載の電気錠の状態検知機構。   The slide member includes a box portion that is open at least on one side, and the spring receiver is reciprocally movable in the box portion. The inner surfaces of the box portions that face each other are the pair of spring seats, and the spring seat is between the spring seats. 2. The electric lock state detection mechanism according to claim 1, wherein the spring receiver is located and covers the pair of coil springs. 前記従動板には、前記往復方向に直交して突設され、該従動板の往方向のスライドで施錠検知スイッチを押圧するとともに、復方向のスライドで解錠検知スイッチを押圧する押圧板を備えることを特徴とする請求項1又は2記載の電気錠の状態検知機構。   The driven plate is provided with a pressing plate that protrudes perpendicular to the reciprocating direction and presses the locking detection switch with the forward slide of the driven plate and presses the unlocking detection switch with the backward slide. The electric lock state detection mechanism according to claim 1 or 2. 電動アクチュエータの回動力をギアを介してダルマ軸に伝達し、該ダルマ軸の回動によってデッドボルトを進退させる電気錠の状態検知機構であって、
前記ギアの一部分に当接し該ギアの正逆回転に従動して往復動するとともに該往復方向のそれぞれに向かって突出する一対のバネ座を有するスライド部材と、
前記一対のバネ座を内側に配置する枠部を有し該枠部には前記一対のバネ座に前記往復方向で対向する一対のバネ受けが形成され施解錠検知スイッチを作動させる従動板と、
前記一対のバネ座と前記一対のバネ受けとのそれぞれの間に挟入される一対のコイルバネと、
を具備したことを特徴とする電気錠の状態検知機構。
A state detection mechanism for an electric lock that transmits the rotational force of an electric actuator to a Dharma shaft through a gear, and advances and retracts a dead bolt by rotation of the Dharma shaft,
A slide member having a pair of spring seats that contact a part of the gear and reciprocate following the forward and reverse rotation of the gear and project in the reciprocating direction;
A pair of spring seats on which the pair of spring seats are disposed, and a pair of spring receivers that are opposed to the pair of spring seats in the reciprocating direction are formed on the frame portion;
A pair of coil springs sandwiched between the pair of spring seats and the pair of spring receivers;
The state detection mechanism of the electric lock characterized by comprising.
電動アクチュエータの回動力をギアを介してダルマ軸に伝達し、該ダルマ軸の回動によってデッドボルトを進退させる電気錠の状態検知機構であって、
前記ギアの一部分に当接し該ギアの正逆回転に従動して往復動するとともに該往復方向のそれぞれに向かって突出する一対のバネ座を有するスライド部材と、
前記一対のバネ座を内側に配置する枠部を有し該枠部には前記一対のバネ座に前記往復方向で対向する一対のバネ受けが形成される従動板と、
前記一対のバネ座と前記一対のバネ受けとのそれぞれの間に挟入される一対のコイルバネと、
前記往復方向に直交して前記従動板から突設され前記従動板の往方向のスライドで施錠検知スイッチを押圧するとともに、復方向のスライドで解錠検知スイッチを押圧する押圧板と、
を具備したことを特徴とする電気錠の状態検知機構。
A state detection mechanism for an electric lock that transmits the rotational force of an electric actuator to a Dharma shaft through a gear, and advances and retracts a dead bolt by rotation of the Dharma shaft,
A slide member having a pair of spring seats that contact a part of the gear and reciprocate following the forward and reverse rotation of the gear and project in the reciprocating direction;
A follower plate having a frame portion on which the pair of spring seats are disposed on the inside, and a pair of spring receivers formed in the frame portion facing the pair of spring seats in the reciprocating direction;
A pair of coil springs sandwiched between the pair of spring seats and the pair of spring receivers;
A pressing plate that protrudes from the driven plate perpendicular to the reciprocating direction and presses the locking detection switch with the forward slide of the driven plate, and presses the unlocking detection switch with the backward slide,
The state detection mechanism of the electric lock characterized by comprising.
電動アクチュエータの回動力をギアを介してダルマ軸に伝達し、該ダルマ軸の回動によってデッドボルトを進退させる電気錠の状態検知機構であって、
前記ギアの一部分に当接し該ギアの正逆回転に従動して往復動するとともに該往復方向のそれぞれに向かって突出する一対のバネ座を有するスライド部材と、
前記一対のバネ座を内側に配置する枠部を有し該枠部には前記一対のバネ座に前記往復方向で対向する一対のバネ受けが形成されるとともに前記往復方向に離間した一対の凸部が一方の板面側に設けられる従動板と、
前記一対のバネ座と前記一対のバネ受けとのそれぞれの間に挟入される一対のコイルバネと、
前記往復方向に直交する揺動軸中心に揺動自在に支持され往方向にスライドする前記従動板の一方の前記凸部が摺接することで他端側へ揺動し施錠検知スイッチを押圧するとともに、復方向にスライドする前記従動板の他方の前記凸部が摺接することで一端側へ揺動し解錠検知スイッチを押圧する揺動板と、
を具備したことを特徴とする電気錠の状態検知機構。
A state detection mechanism for an electric lock that transmits the rotational force of an electric actuator to a Dharma shaft through a gear, and advances and retracts a dead bolt by rotation of the Dharma shaft,
A slide member having a pair of spring seats that contact a part of the gear and reciprocate following the forward and reverse rotation of the gear and project in the reciprocating direction;
The frame portion has a frame portion that arranges the pair of spring seats on the inside, and the frame portion is formed with a pair of spring receivers that are opposed to the pair of spring seats in the reciprocating direction and spaced apart in the reciprocating direction. A follower plate provided on one plate surface side,
A pair of coil springs sandwiched between the pair of spring seats and the pair of spring receivers;
While one of the convex portions of the driven plate that is slidably supported on the center of the swing shaft orthogonal to the reciprocating direction slides in contact with the other end, it swings to the other end side and presses the lock detection switch. A swing plate that swings toward one end by pressing the other convex portion of the driven plate that slides in the backward direction and presses the unlock detection switch;
The state detection mechanism of the electric lock characterized by comprising.
前記スライド部材の往復スライド距離より前記コイルバネを介してスライドされる前記従動板の往復スライド距離が短いことを特徴とする請求項1,2,3,4,5,6のいずれか1つに記載の電気錠の状態検知機構。   The reciprocating slide distance of the driven plate slid through the coil spring is shorter than the reciprocating slide distance of the slide member. Electric lock state detection mechanism.
JP2006076968A 2005-09-07 2006-03-20 Electric lock state detection mechanism Expired - Fee Related JP4813939B2 (en)

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JP5818468B2 (en) * 2011-03-14 2015-11-18 美和ロック株式会社 Electric lock

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JP2502680Y2 (en) * 1991-05-24 1996-06-26 株式会社ゴール Electric lock
JPH0620815U (en) * 1992-08-24 1994-03-18 株式会社ゴール Electric lock

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