JPS6336480Y2 - - Google Patents

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Publication number
JPS6336480Y2
JPS6336480Y2 JP18571180U JP18571180U JPS6336480Y2 JP S6336480 Y2 JPS6336480 Y2 JP S6336480Y2 JP 18571180 U JP18571180 U JP 18571180U JP 18571180 U JP18571180 U JP 18571180U JP S6336480 Y2 JPS6336480 Y2 JP S6336480Y2
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JP
Japan
Prior art keywords
carrier
contact
relays
contacts
call
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired
Application number
JP18571180U
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Japanese (ja)
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JPS57110691U (en
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Filing date
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Priority to JP18571180U priority Critical patent/JPS6336480Y2/ja
Publication of JPS57110691U publication Critical patent/JPS57110691U/ja
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Expired legal-status Critical Current

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Description

【考案の詳細な説明】 本考案は循環式駐車場設備の運転表示装置に関
する。
[Detailed Description of the Invention] The present invention relates to an operation display device for a circulating parking facility.

立体駐車場において、操作盤より呼出し指令を
与えた車両収容用搬器が、どの位置から呼出され
出入口に接近移動しているかその様相を表示灯の
点滅動作により一目瞭然に判明することができれ
ば非常に便利であり、利用者へのサービスや管理
能力のアツプとなる。
In a multi-story parking lot, it would be very convenient if it was possible to clearly see at a glance from what position a vehicle storage carrier, which has been given a call command from the control panel, is being called and moving toward the entrance/exit by blinking indicator lights. This will improve service to users and management ability.

この種運転表示装置は、従来第1図及び第2図
に示す如く、回転板aの円周上に搬器の番号札b
を取付け、立体駐車場と同期回転するものが開発
されているが、該方式にあつては、 メカ部分が多くメンテナンスが面倒である。
Conventionally, this type of operation display device has a number plate b for the carrier on the circumference of a rotary plate a, as shown in FIGS. 1 and 2.
A system has been developed in which a multi-level parking lot is installed and rotates in synchronization with the parking lot, but this system requires many mechanical parts and is troublesome to maintain.

コストが高くつく。 The cost is high.

別置きであるため取付け場所が必要である。 Since it is installed separately, a place for installation is required.

などの欠点を有し、又稼動中のものに追加取付け
すると、改造個所が多く割高となる問題点を有し
ていた。
It also has the disadvantage that if it is additionally installed on a device that is currently in operation, it will require many modifications and will be expensive.

本考案は前記実情に鑑みなしたもので、 循環式駐車場設備と制御回路を備え、 前記循環式駐車場設備は出入口7を有する建家
1とスプロケツト2,3とチエーン4と車両を収
納するための多数の搬器5とスプロケツト12,
14とチエーン13とセレクタスイツチ11を備
え、 スプロケツト2,3は建家1内に上下に所要の
間隔を置いて配設され、 チエーン4は無端状に形成され且つ前記スプロ
ケツト2,3に巻掛けられ、 搬器5はチエーン4の長手方向へ所要の間隔で
取付けられ、 スプロケツト12,14は上下に所要の間隔を
置いて配設されると共にスプロケツト12はスプ
ロケツト3と同軸に取付けられ、 チエーン13は無端状に形成され且つ前記スプ
ロケツト12,14に巻掛けられ、 セレクタスイツチ11はスプロケツト14の軸
部に回転自在に連結され、 指令によりチエーン4を駆動して所定の搬器5
を建家1の出入口7に呼出すようになつており、 前記制御回路は搬器呼出用押ボタンスイツチ9
〜912と搬器呼出記憶用リレーAX1〜AX12と搬
器検出用リレーLX1〜LX12と搬器検出用スイツ
チC1〜C12と接点AX1a〜AX12aと接点AX1a′〜
AX12a′と、接点KR1a〜KR12aとフリツカーリレ
ーの接点FLaと接点LX1a〜LX12aと接点LX1b
LX12bと搬器満空表示灯PL1〜PL12を備え、 前記搬器呼出用押ボタンスイツチ91〜912
前記搬器5の数に対応して設けられると共に電源
P−Nに対し並列に接続され、 搬器呼出記憶用リレーAX1〜AX12は前記搬器
呼出用押ボタンスイツチ91〜912の電流移動方
向下流側に直列に接続され、 搬器検出用リレーLX1〜LX12は前記搬器呼出
記憶用リレーAX1〜AX12と同数で且つ電源P−
N及び搬器呼出記憶用リレーAX1〜AX12に対し
並列に接続され、 搬器検出用スイツチC1〜C12は前記セレクタス
イツチ11内に配設され且つ前記搬器呼出記憶用
リレーAX1〜AX12及び搬器検出用リレーLX1
LX12に対し切換え得るようになつており、切換
えにより搬器呼出記憶用リレーAX1〜AX12或は
搬器検出用リレーLX1〜LX12に対し電流移動方
向下流側で直列に接続されるようになつており、 接点AX1a〜AX12aは前記搬器呼出用押ボタン
スイツチ91〜912に並列に接続され且つ前記搬
器呼出記憶用リレーAX1〜AX12が励磁されたら
閉じて前記搬器呼出記憶用リレーAX1〜AX12
び予め切換えられている搬器検出用スイツチC1
〜C12を介して流れるようになつており、 接点AX1a′〜AX12a′は前記搬器検出用リレー
LX1〜LX12に電流移動方向下流側で直列に接続
され且つ呼出記憶用リレーAX1〜AX12が励磁さ
れたら閉じるようになつており、 接点KR1a〜KR12aは前記搬器呼出用押ボタン
スイツチ91〜912に並列に接続され且つ搬器満
室状況検出用リレーからの指令で閉じるようにな
つており、 搬器満空表示灯PL1〜PL12は前記搬器呼出用押
ボタンスイツチ91〜912内に組込まれ且つ前記
接点KR1a〜KR12aの電流移動方向下流側に直列
に接続され、 フリツカーリレーの接点FLaは前記接点KR1a
〜KR12aに並列に接続され且つ前記搬器呼出用押
ボタンスイツチ91〜912の操作確認後一定周期
で開閉を繰返すようになつており、 接点LX1a〜LX12aは、接点FLaの電流移動方向
下流側で前記接点FLaに対し並列に接続され且つ
前記搬器検出用リレーLX1〜LX12が励磁されて
いる場合には閉じると共に接点FLaの開閉により
搬器満空表示灯PL1〜PL12を点滅させ得るように
なつており、 接点LX1b〜LX12bは前記接点KR1a〜KR12aと搬
器満空表示灯PL1〜PL12の間に直列に接続される
と共に前記接点LX1a〜LX12aに連動され且つ接点
LX1a〜LX12aが閉じたときには開くようになつて
いることを特徴とするものである。
The present invention was developed in view of the above-mentioned circumstances, and includes a circulating parking facility and a control circuit, and the circulating parking facility houses a building 1 having an entrance/exit 7, sprockets 2 and 3, a chain 4, and vehicles. A large number of carriers 5 and sprockets 12 for
14, a chain 13, and a selector switch 11, the sprockets 2 and 3 are arranged vertically at a required interval in the building 1, and the chain 4 is formed in an endless shape and is wound around the sprockets 2 and 3. The carrier 5 is installed at a required interval in the longitudinal direction of the chain 4, the sprockets 12 and 14 are arranged vertically at a required interval, the sprocket 12 is installed coaxially with the sprocket 3, and the chain 13 is The selector switch 11 is formed in an endless shape and is wound around the sprockets 12 and 14. The selector switch 11 is rotatably connected to the shaft of the sprocket 14, and drives the chain 4 in response to a command to select a predetermined carrier 5.
The control circuit is designed to call out the doorway 7 of the building 1, and the control circuit is connected to a push button switch 9 for calling the carrier.
1 to 9 12 , carrier call memory relay AX 1 to AX 12 , carrier detection relay LX 1 to LX 12 , carrier detection switch C 1 to C 12 , contact AX 1a to AX 12a , contact AX 1a ′ to
AX 12a ′ and contact KR 1a ~ KR 12a and flicker relay contact FL a and contact LX 1a ~ LX 12a and contact LX 1b ~
LX 12b and carrier full/empty indicator lights PL 1 to PL 12 are provided, and the carrier calling pushbutton switches 9 1 to 9 12 are provided corresponding to the number of carriers 5 and are connected in parallel to the power supply P-N. The carrier call memory relays AX 1 to AX 12 are connected in series on the downstream side of the current movement direction of the carrier call pushbutton switches 9 1 to 9 12 , and the carrier detection relays LX 1 to LX 12 are connected to the carrier call push button switches 9 1 to 9 12 in the current movement direction. Same number as memory relays AX 1 to AX 12 and power supply P-
N and the carrier call memory relays AX 1 to AX 12 are connected in parallel, and the carrier detection switches C 1 to C 12 are disposed within the selector switch 11 and are connected to the carrier call memory relays AX 1 to AX 12 . and carrier detection relay LX 1 ~
LX 12 can be switched, and by switching, it can be connected in series to the carrier call memory relays AX 1 to AX 12 or the carrier detection relays LX 1 to LX 12 on the downstream side in the current movement direction. The contacts AX 1a to AX 12a are connected in parallel to the carrier call pushbutton switches 9 1 to 9 12 and close when the carrier call memory relays AX 1 to AX 12 are energized to store the carrier call memory. Relays AX 1 to AX 12 and pre-switched carrier detection switch C 1
〜C 12 , and the contacts AX 1a ′ to AX 12a ′ are the relays for detecting the carrier.
It is connected in series to LX 1 to LX 12 on the downstream side in the direction of current movement, and is configured to close when the call memory relays AX 1 to AX 12 are energized, and the contacts KR 1a to KR 12a are connected to the carrier call push buttons. The switches 9 1 to 9 12 are connected in parallel to each other and are closed by a command from the relay for detecting the full status of the carrier, and the carrier full indicator lights PL 1 to PL 12 are connected to the push button switches 9 1 to 9 12 for calling the carrier. 9 12 and connected in series on the downstream side of the current movement direction of the contacts KR 1a to KR 12a , and the contact FL a of the flicker relay is connected to the contact KR 1a .
~ KR 12a is connected in parallel to the carrier call push button switches 9 1 to 9 12 and after confirming the operation, they are repeatedly opened and closed at a certain period, and the contacts LX 1a to LX 12a are connected to the current of the contact FL a . When the carrier detection relays LX 1 to LX 12 are connected in parallel to the contact FL a on the downstream side of the movement direction and are energized, they are closed, and the carrier full/empty indicator lights PL 1 to PL are closed by opening and closing of the contact FL a . The contacts LX 1b to LX 12b are connected in series between the contacts KR 1a to KR 12a and the carrier full/empty indicator lights PL 1 to PL 12 , and the contacts LX 1a ~ Linked to LX 12a and a contact point
It is characterized in that it opens when LX 1a to LX 12a are closed.

以下図面を参照しつつ本考案の実施例を説明す
る。
Embodiments of the present invention will be described below with reference to the drawings.

第3図は循環式駐車場設備の一例として立体駐
車場の概略を示すもので、建屋1内の上下部に配
設されたスプロケツト2,3間にチエーン4が掛
け巡らされており、該チエーン4に適宜間隔にて
取付けられた搬器5内に車両6を収容し、出入口
7にて車両6を搬入・搬出し得るようにしてい
た。又第4図に示す如く、各搬器5の出入口7へ
の呼出し指令を行う操作盤8には搬器5数と同数
の搬器呼出用押ボタンスイツチ9が連続的に配列
され、これに伴い各搬器5も搬器呼出用押ボタン
スイツチ9の順列番号に対応して連続的に配列さ
れている。更に前記搬器呼出用押ボタンスイツチ
9は照光式となつており、搬器呼出用押ボタンス
イツチ9の各ヘツド内にはランプが組込まれ、各
搬器5の満空に応じ点灯又は消灯するようになつ
ている。尚点灯している場合は、満、消灯してい
る場合は、空を表示する。図中10は手動用運転
停止用スイツチ、12はスプロケツト3と同軸に
設けられたスプロケツト、13はチエーン、14
はスプロケツトであり、スプロケツト12、チエ
ーン13、スプロケツト14によりセレクタスイ
ツチ11を切替え得るようになつている。
Figure 3 shows an outline of a multi-story parking lot as an example of a circulating parking lot facility, in which a chain 4 is stretched between sprockets 2 and 3 arranged at the upper and lower parts of a building 1. Vehicles 6 were housed in carriers 5 attached to the vehicle at appropriate intervals, and the vehicles 6 could be brought in and taken out through an entrance/exit 7. As shown in FIG. 4, the same number of push button switches 9 as the number of carriers 5 are consecutively arranged on the operation panel 8 for issuing a call command to the entrance/exit 7 of each carrier 5. 5 are also consecutively arranged in correspondence with the sequence numbers of the pushbutton switches 9 for calling the carrier. Further, the carrier calling push button switch 9 is of an illuminated type, and a lamp is built into each head of the carrier calling push button switch 9, and the light is turned on or off depending on whether each carrier 5 is full or empty. ing. If it is lit, it will be displayed as full, and if it is off, it will be displayed as empty. In the figure, 10 is a manual operation stop switch, 12 is a sprocket provided coaxially with sprocket 3, 13 is a chain, and 14
1 is a sprocket, and the selector switch 11 can be switched by a sprocket 12, a chain 13, and a sprocket 14.

第5図は前記操作盤に組込んだ本考案の運転表
示装置の制御回路図であり、第3図においてNo.1
搬器5が出入口7に停止している状態を示してい
る。
FIG. 5 is a control circuit diagram of the operation display device of the present invention incorporated in the operation panel, and No. 1 in FIG.
A state in which the carrier 5 is stopped at the entrance/exit 7 is shown.

同図において、91〜912は第4図における搬
器呼出用押ボタンスイツチであり、添字はその順
列番号を示している。PL1〜PL12は前記搬器呼出
用押ボタンスイツチ91〜912内に組込まれた搬
器満空表示灯、C1〜C12は第3図において出入口
部7を通過する各搬器5を検出するセレクタスイ
ツチ11内の搬器検出用スイツチ、AX1〜AX12
は搬器呼出記憶用リレー、AX1a〜AX12a
AX1a′,〜AX12a′は該リレーAX1〜AX12の接
点、LX1〜LX12は搬器検出用リレー、LX1a
LX12a,LX1b〜LX12bは該リレーLX1〜LX12の接
点、KR1a〜KR12aは搬器満空状況検出用リレー
(公知のため図示せず)の接点、FLaは搬器呼出
用押ボタンスイツチ91〜912操作確認後一定周
期に開閉を繰返すフリツカーリレー(図示せず)
の接点、P−Nは電源である。
In the same figure, 9 1 to 9 12 are push button switches for calling the carrier in FIG. 4, and the subscripts indicate their sequence numbers. PL 1 to PL 12 are carrier full/empty indicator lights built into the push button switches 9 1 to 9 12 for calling the carrier, and C 1 to C 12 are for detecting each carrier 5 passing through the entrance/exit portion 7 in FIG. Carriage detection switch in selector switch 11, AX 1 to AX 12
are carrier call memory relays, AX 1a to AX 12a ,
AX 1a ′, ~AX 12a ′ are contacts of the relays AX 1 ~ AX 12 , LX 1 ~ LX 12 are carrier detection relays, LX 1a ~
LX 12a , LX 1b to LX 12b are the contacts of the relays LX 1 to LX 12 , KR 1a to KR 12a are the contacts of the carrier full/empty status detection relay (not shown as it is publicly known), and FL a is the pushbutton for calling the carrier. Button switch 9 1 to 9 12 Flicker relay that repeats opening and closing at regular intervals after confirming operation (not shown)
The contacts P-N are the power supply.

次に作動について説明する。 Next, the operation will be explained.

第3図のようなNo.1搬器5が出入口7に停止し
ている時は、セレクタスイツチ11内の搬器検出
用スイツチC1のみが搬器検出用リレーLX1につな
がり、他のスイツチC2〜C12は全て搬器検出用リ
レーLX2〜LX12にはつながらず、搬器呼出記憶
用リレーAX2〜AX12につながつており、この状
態では搬器検出用リレーLX1のみが通電されてい
る。
When the No. 1 carrier 5 is stopped at the entrance/exit 7 as shown in FIG. 3, only the carrier detection switch C 1 in the selector switch 11 is connected to the carrier detection relay LX 1 , and the other switches C 2 to None of C 12 is connected to the carrier detection relays LX 2 to LX 12 , but is connected to the carrier call memory relays AX 2 to AX 12 , and in this state, only the carrier detection relay LX 1 is energized.

今、No.12搬器5を呼出すべく搬器呼出用押ボタ
ンスイツチ912を押すと、搬器呼出記憶用リレー
AX12が作動し、接点AX12a,AX12a′が閉じて搬
器検出用リレーLX12が励磁され、接点LX12aが閉
じる。同時に図示しないフリツカーリレーの接点
FLaが閉じる。この結果、搬器満空表示灯PL12
回路は電源P→フリツカーリレーの接点FLa→搬
器検出用リレーLX12の接点LX12a→表示灯PL12
→電源Nの閉回路に切替わり、フリツカーリレー
の接点FLaが連続的に開閉することにより表示灯
PL12は点滅を繰返す。又搬器検出用リレーLX1
励磁され接点LX1aも閉じているため表示灯PL1
点滅を行う。従つて搬器満空表示灯PL1,PL12
両者が点滅を行い、呼出したNo.12搬器5が出入口
7に近いか否かが分る。
Now, if you press the pushbutton switch 9 to 12 for calling the carrier to call No. 12 carrier 5, the relay for recalling the carrier call will be activated.
AX 12 is activated, contacts AX 12a and AX 12a ' are closed, carrier detection relay LX 12 is energized, and contact LX 12a is closed. Fritzker relay contacts (not shown)
FL a closes. As a result, the circuit for the carrier full and empty indicator light PL 12 is as follows: power supply P → contact FL a of the flicker relay → contact LX 12a of the carrier detection relay LX 12 → indicator light PL 12
→The power supply N switches to a closed circuit, and the contact FL a of the fritzker relay opens and closes continuously, causing the indicator light to turn on.
PL 12 flashes repeatedly. Furthermore, since the carrier detection relay LX 1 is energized and the contact LX 1a is also closed, the indicator light PL 1 also blinks. Therefore, both the carrier full and empty indicator lights PL 1 and PL 12 flash, and it can be seen whether the called No. 12 carrier 5 is near the entrance/exit 7 or not.

チエーン4が駆動し、スプロケツト3,12、
チエーン13、スプロケツト14を介しセレクタ
スイツチ11が連動回転してNo.12搬器5が出入口
7に到着すると、セレクタスイツチ11がスイツ
チC1からC12に切替わるためリレーAX12及びLX1
は消磁され、リレーLX12のみ励磁されてNo.12搬
器5が出入口7に到着したことを表示する。即ち
No.12搬器5が出入口7に停止すると同時に接点
FLaが解放されて表示灯PL12が点滅表示から満・
空表示に切替わる。
Chain 4 is driven and sprockets 3, 12,
The selector switch 11 rotates in conjunction with the chain 13 and sprocket 14, and when the No. 12 carrier 5 arrives at the entrance/exit 7, the selector switch 11 switches from switch C1 to C12 , so relays AX12 and LX1 are activated.
is demagnetized and only relay LX 12 is energized to indicate that No. 12 carrier 5 has arrived at entrance 7. That is,
As soon as No. 12 carriage 5 stops at entrance/exit 7, contact is made.
FL a is released and the indicator light PL 12 changes from blinking to full.
Switch to blank display.

前記の場合、No.12搬器5を例にとり説明した
が、勿論他の搬器5の場合であつても同様であ
り、スタート前に出入口7にあつた搬器5No.の表
示灯と所望する搬器5No.の表示灯との2個が点滅
を行い、設備の回転移動に連動して出入口7を通
過する搬器5の当該搬器呼出用押ボタンスイツチ
9内表示灯側へ接近する。
In the above case, explanation was given using No. 12 carrier 5 as an example, but of course the same applies to other carriers 5. The indicator light and the indicator light . flash on and off, and the carrier 5 passing through the entrance/exit 7 approaches the indicator light in the push button switch 9 for calling the carrier in conjunction with the rotational movement of the equipment.

本考案においては、搬器呼出用押ボタンスイツ
チ内の表示灯を搬器の停止中は従来どおりの満空
表示灯として使用し、搬器の呼出運転中のみ点滅
表示するもので、用途毎に専用の表示灯を設備す
る方式のものとは相違しているところに特長を有
する。
In this invention, the indicator light inside the push button switch for calling the carrier is used as a conventional full-empty indicator when the carrier is stopped, and it blinks only when the carrier is in operation, with a dedicated display for each purpose. The feature is that it is different from those that install lights.

尚、前記実施例においては点滅灯が同一周期で
点滅するため、呼出し操作をしたものと出入口を
通過しているものとが区別つけにくい(実際には
呼出し操作したものは停止する迄点滅を繰返して
いるから出入口を通過している時のみ点滅する他
の表示灯とは区別できる)場合は、各々の点滅周
期を異ならせた2フリツカーリレーを用いて回路
を区別すればよく、その他本考案の要旨を逸脱し
ない限り種々変更を加え得ることは勿論である。
In the above embodiment, since the flashing lights flash at the same cycle, it is difficult to distinguish between the object that has been called and the object that is passing through the doorway (in reality, the object that has been called will continue to blink until it stops). In this case, the circuit can be distinguished by using two flicker relays, each with a different blinking cycle. Of course, various changes can be made without departing from the gist of the invention.

如上のように本考案によれば、 (i) 壁や扉で隔離された中で運転される搬器の移
動状況が外部から一目で判るので、管理能力の
向上及びサービス向上を図れる。
As described above, according to the present invention, (i) the movement status of carriers operated in areas separated by walls and doors can be seen at a glance from the outside, thereby improving management ability and service.

(ii) 構造が簡単であるため現在稼動中の設備に容
易に装置化することができる。
(ii) Since the structure is simple, it can be easily integrated into equipment currently in operation.

(iii) 従来装置よりコストダウンを図れる。(iii) Cost reduction can be achieved compared to conventional equipment.

等の優れた効果を発揮する。Demonstrates excellent effects such as

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

第1図は従来装置の概略正面図、第2図は第1
図の側面図、第3図は立体駐車場の概略図、第4
図は操作盤の概略図、第5図は本考案の循環式駐
車場設備の運転表示装置の制御回路図である。 2,3……スプロケツト、4……チエーン、5
……搬器、6……車両、7……出入口、91〜9
12……搬器呼出用押ボタンスイツチ、11……セ
レクタスイツチ、12……スプロケツト、13…
…チエーン、14……スプロケツト、C1〜C12
…搬器検出用スイツチ、AX1〜AX12……搬器呼
出記憶用リレー、LX1a〜LX12a……接点、LX1b
〜LX12b……接点、AX1a〜AX12a……接点、
AX1a′,〜AX12a′……接点、LX1〜LX12……搬
器検出用リレー、PL1〜PL12……表示灯、KR1a
〜KR12a……接点、FLa……フリツカーリレーの
接点、P−N……電源。
Fig. 1 is a schematic front view of the conventional device, and Fig. 2 is a schematic front view of the conventional device.
Figure 3 is a schematic diagram of the multi-story parking lot, Figure 4 is a side view of the figure,
The figure is a schematic diagram of the operation panel, and FIG. 5 is a control circuit diagram of the operation display device of the circulating parking facility of the present invention. 2, 3...Sprocket, 4...Chain, 5
...Carrier, 6...Vehicle, 7...Entrance/exit, 9 1 to 9
12 ...Push button switch for calling the carrier, 11...Selector switch, 12...Sprocket, 13...
...Chain, 14...Sprocket, C 1 to C 12 ...
...Carrier detection switch, AX 1 to AX 12 ...Carrier call memory relay, LX 1a to LX 12a ...Contact, LX 1b
~LX 12b ...Contact, AX 1a ~AX 12a ...Contact,
AX 1a ′, ~AX 12a ′...Contact, LX 1 to LX 12 ...Carrier detection relay, PL 1 to PL 12 ...Indicator light, KR 1a
~KR 12a ...Contact, FL a ...Flickr relay contact, P-N...Power supply.

Claims (1)

【実用新案登録請求の範囲】 循環式駐車場設備と制御回路を備え、 前記循環式駐車場設備は出入口7を有する建家
1とスプロケツト2,3とチエーン4と車両を収
納するための多数の搬器5とスプロケツト12,
14とチエーン13とセレクタスイツチ11を備
え、 スプロケツト2,3は建家1内に上下に所要の
間隔を置いて配設され、 チエーン4は無端状に形成され且つ前記スプロ
ケツト2,3に巻掛けられ、 搬器5はチエーン4の長手方向へ所要の間隔で
取付けられ、 スプロケツト12,14は上下に所要の間隔を
置いて配設されると共にスプロケツト12はスプ
ロケツト3と同軸に取付けられ、 チエーン13は無端状に形成され且つ前記スプ
ロケツト12,14に巻掛けられ、 セレクタスイツチ11はスプロケツト14の軸
部に回転自在に連結され、 指令によりチエーン4を駆動して所定の搬器5
を建家1の出入口7に呼出すようになつており、 前記制御回路は搬器呼出用押ボタンスイツチ9
〜912と搬器呼出記憶用リレーAX1〜AX12と搬
器検出用リレーLX1〜LX12と搬器検出用スイツ
チC1〜C12と接点AX1a〜AX12aと接点AX1a′〜
AX12a′と、接点KR1a〜KR12aとフリツカーリレ
ーの接点FLaと接点LX1a〜LX12aと接点LX1b
LX12bと搬器満空表示灯PL1〜PL12を備え、 前記搬器呼出用押ボタンスイツチ91〜912
前記搬器5の数に対応して設けられると共に電源
P−Nに対し並列に接続され、 搬器呼出記憶用リレーAX1〜AX12は前記搬器
呼出用押ボタンスイツチ91〜912の電流移動方
向下流側に直列に接続され、 搬器検出用リレーLX1〜LX12は前記搬器呼出
記憶用リレーAX1〜AX12と同数で且つ電源P−
N及び搬器呼出記憶用リレーAX1〜AX12に対し
並列に接続され、 搬器検出用スイツチC1〜C12は前記セレクタス
イツチ11内に配設され且つ前記搬器呼出記憶用
リレーAX1〜AX12及び搬器検出用リレーLX1
LX12に対し切換え得るようになつており、切換
えにより搬器呼出記憶用リレーAX1〜AX12或は
搬器検出用リレーLX1〜LX12に対し電流移動方
向下流側で直列に接続されるようになつており、 接点AX1a〜AX12aは前記搬器呼出用押ボタン
スイツチ91〜912に並列に接続され且つ前記搬
器呼出記憶用リレーAX1〜AX12が励磁されたら
閉じて前記搬器呼出記憶用リレーAX1〜AX12
び予め切換えられている搬器検出用スイツチC1
〜C12を介して流れるようになつており、接点
AX1a′〜AX12a′は前記搬器検出用リレーLX1
LX12に電流移動方向下流側で直列に接続され且
つ呼出記憶用リレーAX1〜AX12が励磁されたら
閉じるようになつており、 接点KR1a〜KR12aは前記搬器呼出用押ボタン
スイツチ91〜912に並列に接続され且つ搬器満
空状況検出用リレーからの指令で閉じるようにな
つており、 搬器満空表示灯PL1〜PL12は前記搬器呼出用押
ボタンスイツチ91〜912内に組込まれ且つ前記
接点KR1a〜KR12aの電流移動方向下流側に直列
に接続され、 フリツカーリレーの接点FLaは前記接点KR1a
〜KR12aに並列に接続され且つ前記搬器呼出用押
ボタンスイツチ91〜912の操作確認後一定周期
で開閉を繰返すようになつており、 接点LX1a〜LX12aは接点FLaの電流移動方向下
流側で前記接点FLaに対し並列に接続され且つ前
記搬器検出用リレーLX1〜LX12が励磁されてい
る場合には閉じると共に接点FLaの開閉により搬
器満空表示灯PL1〜PL12を点滅させ得るようにな
つており、 接点LX1b〜LX12bは前記接点KR1a〜KR12aと搬
器満空表示灯PL1〜PL12の間に直列に接続される
と共に前記接点LX1a〜LX12aに連動され且つ接点
LX1a〜LX12aが閉じたときには開くようになつて
いる ことを特徴とする循環式駐車場設備の運転表示装
置。
[Scope of Claim for Utility Model Registration] The circulating parking facility is equipped with a circulating parking facility and a control circuit, and the circulating parking facility includes a building 1 having an entrance/exit 7, sprockets 2, 3, a chain 4, and a large number of structures for storing vehicles. Carrier 5 and sprocket 12,
14, a chain 13, and a selector switch 11, the sprockets 2 and 3 are arranged vertically at a required interval in the building 1, and the chain 4 is formed in an endless shape and is wound around the sprockets 2 and 3. The carrier 5 is installed at a required interval in the longitudinal direction of the chain 4, the sprockets 12 and 14 are arranged vertically at a required interval, the sprocket 12 is installed coaxially with the sprocket 3, and the chain 13 is The selector switch 11 is formed in an endless shape and is wound around the sprockets 12 and 14. The selector switch 11 is rotatably connected to the shaft of the sprocket 14, and drives the chain 4 in response to a command to select a predetermined carrier 5.
The control circuit is designed to call out the doorway 7 of the building 1, and the control circuit is connected to a push button switch 9 for calling the carrier.
1 to 9 12 , carrier call memory relay AX 1 to AX 12 , carrier detection relay LX 1 to LX 12 , carrier detection switch C 1 to C 12 , contact AX 1a to AX 12a , contact AX 1a ′ to
AX 12a ′ and contact KR 1a ~ KR 12a and flicker relay contact FL a and contact LX 1a ~ LX 12a and contact LX 1b ~
LX 12b and carrier full/empty indicator lights PL 1 to PL 12 are provided, and the carrier calling pushbutton switches 9 1 to 9 12 are provided corresponding to the number of carriers 5 and are connected in parallel to the power supply P-N. The carrier call memory relays AX 1 to AX 12 are connected in series on the downstream side of the current movement direction of the carrier call pushbutton switches 9 1 to 9 12 , and the carrier detection relays LX 1 to LX 12 are connected to the carrier call push button switches 9 1 to 9 12 in the current movement direction. Same number as memory relays AX 1 to AX 12 and power supply P-
N and the carrier call memory relays AX 1 to AX 12 are connected in parallel, and the carrier detection switches C 1 to C 12 are disposed within the selector switch 11 and are connected to the carrier call memory relays AX 1 to AX 12 . and carrier detection relay LX 1 ~
LX 12 can be switched, and by switching, it can be connected in series to the carrier call memory relays AX 1 to AX 12 or the carrier detection relays LX 1 to LX 12 on the downstream side in the current movement direction. The contacts AX 1a to AX 12a are connected in parallel to the carrier call pushbutton switches 9 1 to 9 12 and close when the carrier call memory relays AX 1 to AX 12 are energized to store the carrier call memory. Relays AX 1 to AX 12 and pre-switched carrier detection switch C 1
~C is designed to flow through 12 and contacts
AX 1a ′ to AX 12a ′ are the carrier detection relays LX 1 to
It is connected in series to LX 12 on the downstream side in the direction of current movement and closes when the recall memory relays AX 1 to AX 12 are energized, and the contacts KR 1a to KR 12a are the push button switches 9 1 for calling the carrier. -912 are connected in parallel to the carrier full/empty status detection relays, and are closed by a command from the carrier full/empty status detection relay . and is connected in series to the downstream side of the current movement direction of the contacts KR 1a to KR 12a , and the contact FL a of the flicker relay is connected to the contact KR 1a .
~ KR 12a is connected in parallel to the push button switches 9 1 to 9 12 for calling the carrier, and after confirming the operation, they are repeatedly opened and closed at a certain period, and the contacts LX 1a to LX 12a are connected to the current movement of the contact FL a . When the carrier detection relays LX 1 to LX 12 are connected in parallel to the contact FL a on the downstream side of the direction and are energized, they are closed and the carrier full/empty indicator lights PL 1 to PL are opened and closed by the opening and closing of the contact FL a . 12 , and the contacts LX 1b to LX 12b are connected in series between the contacts KR 1a to KR 12a and the carrier full/empty indicator lights PL 1 to PL 12 , and the contacts LX 1a to Linked to LX 12a and contact point
An operation display device for a circulating parking facility, characterized in that it opens when LX 1a to LX 12a are closed.
JP18571180U 1980-12-24 1980-12-24 Expired JPS6336480Y2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP18571180U JPS6336480Y2 (en) 1980-12-24 1980-12-24

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP18571180U JPS6336480Y2 (en) 1980-12-24 1980-12-24

Publications (2)

Publication Number Publication Date
JPS57110691U JPS57110691U (en) 1982-07-08
JPS6336480Y2 true JPS6336480Y2 (en) 1988-09-27

Family

ID=29987005

Family Applications (1)

Application Number Title Priority Date Filing Date
JP18571180U Expired JPS6336480Y2 (en) 1980-12-24 1980-12-24

Country Status (1)

Country Link
JP (1) JPS6336480Y2 (en)

Also Published As

Publication number Publication date
JPS57110691U (en) 1982-07-08

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