JPH0665162B2 - Lighting load automatic flashing device - Google Patents

Lighting load automatic flashing device

Info

Publication number
JPH0665162B2
JPH0665162B2 JP60141067A JP14106785A JPH0665162B2 JP H0665162 B2 JPH0665162 B2 JP H0665162B2 JP 60141067 A JP60141067 A JP 60141067A JP 14106785 A JP14106785 A JP 14106785A JP H0665162 B2 JPH0665162 B2 JP H0665162B2
Authority
JP
Japan
Prior art keywords
switch
lighting load
heater
main switch
bimetal
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 - Lifetime
Application number
JP60141067A
Other languages
Japanese (ja)
Other versions
JPS61296682A (en
Inventor
元義 布施
秀興 吉岡
正澄 高倉
正明 市川
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Panasonic Electric Works Co Ltd
Original Assignee
Matsushita Electric Works Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Matsushita Electric Works Ltd filed Critical Matsushita Electric Works Ltd
Priority to JP60141067A priority Critical patent/JPH0665162B2/en
Publication of JPS61296682A publication Critical patent/JPS61296682A/en
Publication of JPH0665162B2 publication Critical patent/JPH0665162B2/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Classifications

    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B20/00Energy efficient lighting technologies, e.g. halogen lamps or gas discharge lamps
    • Y02B20/72Energy efficient lighting technologies, e.g. halogen lamps or gas discharge lamps in street lighting

Landscapes

  • Circuit Arrangement For Electric Light Sources In General (AREA)

Description

【発明の詳細な説明】 〔産業上の利用分野〕 本発明は、街路灯などに好適に使用される照明負荷の自
動点滅装置の改良に関する。
TECHNICAL FIELD The present invention relates to an improvement of a lighting load automatic blinking device that is preferably used for street lights and the like.

〔背景技術〕[Background technology]

従来のこの種の装置は、外光量をCdSなどの光量検出手
段によりインピーダンス変化として検出しており、その
変化に応じた電圧をスイツチ制御部に加えてバイメタル
スイツチを開閉させるなどして照明負荷を自動的に点滅
させている。
In the conventional device of this type, the amount of external light is detected as a change in impedance by a light amount detecting means such as CdS, and a voltage corresponding to the change is applied to the switch control unit to open and close a bimetal switch to control the illumination load. It is blinking automatically.

しかるに、このような装置においては、バイメタルスイ
ツチの開閉動作が緩やかに行われるために接点の接触が
不安定となり、しかもバイメタルスイツチの接点が開又
は閉となる付近では接点圧は殆ど0となつてしまうため
に、長時間にわたつて接点を不安定な状態にさせ損耗さ
せて接点の寿命を縮めている。
However, in such a device, the contact of the contacts becomes unstable because the opening / closing operation of the bimetal switch is performed slowly, and the contact pressure is almost 0 near the opening / closing of the contacts of the bimetal switch. For this reason, the contact is made unstable and worn over a long period of time, and the life of the contact is shortened.

また、外光量の変化は、極めて不規則であり、雲などの
存在のために脈動することがあり、このような脈動が接
点の不安定領域にある時に起こる場合には照明負荷を徒
にチラツカせて点灯させる原因となつている。
Also, the change in the amount of outside light is extremely irregular and may pulsate due to the presence of clouds, etc. If such pulsation occurs in the unstable region of the contact point, the lighting load is fluctuated. This is the cause of the lighting.

そこで、このような問題をなくすため、バイメタルスイ
ツチを所謂飛び移りバネで構成して、スイツチの動作に
ヒステリシス特性を持たせたものが開発されている。
Therefore, in order to eliminate such a problem, there has been developed a bimetal switch which is configured by a so-called jump spring and has a hysteresis characteristic in the operation of the switch.

しかし、このようなものでは、バイメタルスイツチに周
囲温度を補償する機構を設けることが出来ず、そのため
周囲温度の変化に応じてバイメタルスイツチのヒータの
発熱量を変動させ動作を不安定にしている。また、バイ
メタルスイツチの機構を飛び移り式に構成した場合に
は、装置の構造も複雑化するなどの問題がある。
However, in such a device, a mechanism for compensating the ambient temperature cannot be provided in the bimetal switch, so that the amount of heat generated by the heater of the bimetal switch is changed according to the change in the ambient temperature to make the operation unstable. Further, when the mechanism of the bimetal switch is constructed in a jump type, there is a problem that the structure of the device becomes complicated.

一方、実公昭58−47677号公報や、特開昭60−63837号公
報や、特公昭57−638号公報には電子回路的にヒステリ
シス特性を持たせることにより、自動点滅装置の動作時
にチャタリング等が発生して点灯状態が不安定になるこ
とを防止した照明負荷の自動点滅装置が記載されてい
る。
On the other hand, in Japanese Utility Model Publication No. 58-47677, Japanese Patent Publication No. 60-63837, and Japanese Patent Publication No. 57-638, a hysteresis characteristic is provided in an electronic circuit so that chattering or the like occurs when the automatic blinking device operates. There is described an automatic blinking device for a lighting load that prevents the lighting state from becoming unstable due to the occurrence of.

しかしながら、これらの自動点滅装置では回路構成自体
でも必要とする部品点数が多く構成が複雑であり、コス
ト高となる恐れがあるという問題がある。
However, these automatic blinking devices have a problem in that the circuit configuration itself requires a large number of parts and the configuration is complicated, and the cost may increase.

また、実公昭40−30023号公報には、リレースイッチを
用いて回路構成に必要な部品点数を少なくした自動点滅
装置が記載されている。
Further, Japanese Utility Model Publication No. 40-30023 discloses an automatic blinking device in which a relay switch is used to reduce the number of parts required for circuit configuration.

しかしながら、この自動点滅装置では、光導電セルと並
列に抵抗が接続されているため付勢方向に働かないた
め、リレースイッチが動作した際にチャタリング等の問
題を起こさないようにしようとするその設定に手間がか
かり、リレースイッチを用いるためコスト高になるとい
う問題がある。
However, in this automatic blinking device, a resistor is connected in parallel with the photoconductive cell, so it does not work in the biasing direction, so when the relay switch operates, problems such as chattering do not occur. However, there is a problem in that the cost is high because a relay switch is used.

〔発明の目的〕[Object of the Invention]

本発明は、このような事情に鑑みて成されたもので、ス
イツチに飛び移りバネ機構を用いずに構成できる新規な
構成の所謂電子式自動点滅装置を提供することを目的と
するもので、外光量の緩やかな変化に対しても外光量が
所定の動作レベルに達した時には、スイツチの開閉動作
を確実に行つて不安定な状態をなくした照明負荷の自動
点滅装置を提供するものである。
The present invention has been made in view of such circumstances, and an object thereof is to provide a so-called electronic automatic blinking device having a novel configuration that can be configured without using a jump spring mechanism in a switch, Provided is an automatic flashing device for lighting load in which an open / close operation of a switch is surely performed and an unstable state is eliminated when the amount of outside light reaches a predetermined operation level even if the amount of outside light gradually changes. .

〔発明の開示〕[Disclosure of Invention]

以下に、本発明の構成を説明する。 The configuration of the present invention will be described below.

第1図は、本発明の基本的な構成を示す一実施例図であ
る。
FIG. 1 is an embodiment diagram showing the basic configuration of the present invention.

図において、1は主スイツチ、2は照明負荷、3は電
源、4は光量検出手段、5はスイツチ制御部、6は抵抗
などのインピーダンス素子7を含んで構成された電圧可
変回路部を示している。
In the figure, 1 is a main switch, 2 is a lighting load, 3 is a power source, 4 is a light amount detecting means, 5 is a switch control section, and 6 is a voltage variable circuit section including an impedance element 7 such as a resistor. There is.

本発明の基本的な動作を説明すると、光量検出手段4に
より外光量を検出してそのインピーダンスを可変させる
ことにより電源3よりスイツチ制御部5に供給される電
圧を可変させている。そしてスイツチ制御部5に供給さ
れる電圧が主スイツチ1の動作レベルに達すると、主ス
イツチ1が開閉し、電圧可変回路部6が作動する。する
と、スイツチ制御部5に供給される電圧が瞬時に増大或
いは減少して、開又は閉の状態になつたスイツチ1を更
に付勢方向に動作させ、該スイツチ1を安定した状態に
移行させて、照明負荷2の点滅を確実に行うものであ
る。
To explain the basic operation of the present invention, the voltage supplied from the power source 3 to the switch controller 5 is changed by detecting the amount of outside light by the light amount detecting means 4 and changing the impedance thereof. When the voltage supplied to the switch control unit 5 reaches the operation level of the main switch 1, the main switch 1 opens and closes, and the voltage variable circuit unit 6 operates. Then, the voltage supplied to the switch control unit 5 instantaneously increases or decreases, and the switch 1 that has been in the open or closed state is further operated in the urging direction to shift the switch 1 to a stable state. The lighting load 2 is surely blinked.

第2図に、本発明の動作シーケンスを示し、第3a図、第
3b図に本発明における主スイツチの動作特性図を示す。
FIG. 2 shows the operation sequence of the present invention.
FIG. 3b shows an operation characteristic diagram of the main switch in the present invention.

この第3a図、第3b図は、電圧可変回路部6の働きにより
主スイツチ1が受ける駆動力fの変化を外光量Xに対応
させて表わした図であり、特に第3a図のものは、外光量
が増大するにつれて主スイツチの駆動力が増大するもの
の特性図、第3b図のものは、外光量が増大するにつれて
主スイツチの駆動力が減少するものの特性図を示してお
り、本発明では後述する実施例からも明らかなようにい
ずれの特性のものも実現できる。
FIGS. 3a and 3b are diagrams showing the change of the driving force f received by the main switch 1 by the function of the voltage variable circuit section 6 in correspondence with the external light amount X. Particularly, FIG. 3a shows A characteristic diagram of the driving force of the main switch increases as the amount of external light increases, and FIG. 3b shows a characteristic diagram of the driving force of the main switch decreasing as the amount of external light increases. As is clear from the examples described below, any of the characteristics can be realized.

本発明においては、これらの図に示したように、外光量
Xが所定のレベル(X1,X2)に達した時には電圧可変回
路部6が作動する結果、主スイツチ1の駆動力fは、接
点が僅かに開離又は接触した時点の値F1,F2から△F分
だけ瞬時に増減変化するので、主スイツチ1が一度開又
は閉の状態に至ると、瞬時に安定した状態に移行して、
不安定な状態が回避されるものである。
In the present invention, as shown in these figures, when the external light quantity X reaches a predetermined level (X1, X2), the voltage variable circuit section 6 operates, so that the driving force f of the main switch 1 is Since the values F1 and F2 at the time of slightly opening or closing instantly increase or decrease by ΔF, when the main switch 1 once reaches the open or closed state, it instantly shifts to a stable state,
Instability is avoided.

なお、図において、−は主スイツチが閉から開(或
いは開から閉)に切り換わる状態、−は開から閉
(或いは閉から開)に切り換わる状態を示しており、本
発明ではこのようにヒステリシス特性を呈する。
In the figure, − indicates a state in which the main switch switches from closed to open (or open to closed), and − indicates a state in which the main switch switches from open to closed (or closed to open). It exhibits hysteresis characteristics.

第1図実施例を、以下更に詳細に説明する。主スイッチ
1は、常閉(NCとして示す)接点を有するバイメタルス
イッチであり、照明負荷2と電源3との間に介在されて
いる。光量検出手段4としては、外光量が多くなるとイ
ンピーダンスが小さくなるCdSを使用し、スイッチ制御
部5としてはバイメタルスイッチを加熱するヒータを使
用していて、ヒータとCdSとを直列接続してなる直列回
路を、バイメタルスイッチの電源側で照明負荷に並列に
電源接続している。また、バイメタルスイッチと照明負
荷との間に、インピーダンス素子7としての抵抗の一極
を接続し、この抵抗の他極を前記直列回路のヒータとCd
Sとの間に接続し、この抵抗とヒータとを並列にすると
共に電源との間にインピーダンス成分としてのCdSを介
在させている。そして、この抵抗とヒータとバイメタル
スイッチとで、電圧可変回路部6を構成している。
The embodiment of FIG. 1 will be described in more detail below. The main switch 1 is a bimetal switch having a normally closed (shown as NC) contact, and is interposed between the lighting load 2 and the power supply 3. CdS whose impedance decreases as the amount of external light increases is used as the light amount detection means 4, and a heater for heating a bimetal switch is used as the switch control unit 5, and the heater and CdS are connected in series. The circuit is connected in parallel to the lighting load on the power side of the bimetal switch. Also, one pole of a resistor as an impedance element 7 is connected between the bimetal switch and the lighting load, and the other pole of this resistor is connected to the heater of the series circuit and Cd.
The resistor and the heater are connected in parallel, and CdS as an impedance component is interposed between the resistor and the power source. The resistor, the heater, and the bimetal switch constitute the voltage variable circuit section 6.

次いで、回路の動作を説明する。外光量が多くなるとCd
S4のインピーダンスが小さくなるので、ヒータ5の分担
電圧が大きくなり、バイメタルスイッチ1を加熱して常
閉接点を開き、電圧可変回路部6を作動する。すなわ
ち、ヒータ5に並列に接続されていた抵抗7が切り離さ
れることになり、ヒータ5の分担電圧が更に大きくなっ
て、バイメタルスイッチ1は更に開方向に付勢されて安
定した開状態に移行し、照明負荷2を確実に消灯させ
る。
Next, the operation of the circuit will be described. Cd when the amount of external light increases
Since the impedance of S4 becomes small, the shared voltage of the heater 5 becomes large, the bimetal switch 1 is heated, the normally closed contact is opened, and the voltage variable circuit section 6 is operated. That is, the resistor 7 connected in parallel to the heater 5 is disconnected, the shared voltage of the heater 5 further increases, and the bimetal switch 1 is further urged in the opening direction to shift to the stable open state. , Make sure that the lighting load 2 is turned off.

一方、外光量が少なくなると、CdS4のインピーダンスが
増大するので、ヒータ5の分担電圧は小さくなって、バ
イメタルスイッチ1の常閉接点は閉じて電圧可変回路部
6を作動する。すなわち、ヒータ5には再び抵抗7が並
列に接続されることになり、ヒータ5の分担電圧は更に
小さくなってバイメタルスイッチ1は更に閉方向に付勢
されて安定した閉状態に移行し、照明負荷2を確実に点
灯させる。
On the other hand, when the amount of outside light decreases, the impedance of CdS4 increases, so the shared voltage of the heater 5 decreases, and the normally closed contact of the bimetal switch 1 closes to operate the voltage variable circuit section 6. That is, the resistor 7 is again connected in parallel to the heater 5, the shared voltage of the heater 5 is further reduced, the bimetal switch 1 is further urged in the closing direction, and the bimetal switch 1 shifts to a stable closed state. Make sure that the load 2 is turned on.

〔発明の効果〕〔The invention's effect〕

以上の説明より理解されるように、本発明によれば飛び
移りバネ機構のスイツチを用いずに、外光量の緩慢な変
化に対応させて作動するスイツチ手段の不安定な開閉動
作を回避することができ、照明負荷のチラツキを防止し
て点滅を確実に行うことができる。
As can be understood from the above description, according to the present invention, it is possible to avoid an unstable opening / closing operation of the switch means that operates in response to a slow change in the amount of outside light without using the switch of the jump spring mechanism. Therefore, the flickering of the lighting load can be prevented and the blinking can be reliably performed.

また、バイメタルスイッチを用いることにより、部品点
数を少なくして簡単な構成で安価に、前記効果を確実に
奏することができる。
Further, by using the bimetal switch, the number of parts can be reduced, and the above effect can be reliably achieved with a simple configuration and at a low cost.

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

第1図は発明の基本概念を示す一実施例図、第2図は本
発明の動作シーケンスを示すフローチヤート、第3a図、
第3b図は本発明におけるスイツチの動作特性図を示す。 1……主スイツチ、2……照明負荷、3……電源 4……光量検出手段、5……スイツチ制御部 6……電圧可変回路部、7……インピーダンス素子
FIG. 1 is an embodiment diagram showing the basic concept of the invention, FIG. 2 is a flow chart showing the operation sequence of the invention, FIG. 3a,
FIG. 3b shows an operating characteristic diagram of the switch according to the present invention. 1 ... Main switch, 2 ... Illumination load, 3 ... Power source, 4 ... Light quantity detecting means, 5 ... Switch control section, 6 ... Voltage variable circuit section, 7 ... Impedance element

フロントページの続き (72)発明者 市川 正明 大阪府門真市大字門真1048番地 松下電工 株式会社内 (56)参考文献 特開 昭60−63837(JP,A) 特開 昭61−58196(JP,A) 特開 昭55−78497(JP,A) 実開 昭60−38444(JP,U) 実開 昭57−2533(JP,U) 実開 昭57−12694(JP,U) 実開 昭49−142777(JP,U) 特公 昭57−638(JP,B2) 特公 昭57−48804(JP,B2) 実公 昭40−30023(JP,Y1) 実公 昭40−30022(JP,Y1) 実公 昭58−47677(JP,Y2)Front page continuation (72) Inventor Masaaki Ichikawa 1048, Kadoma, Kadoma, Osaka Prefecture Matsushita Electric Works, Ltd. (56) References JP-A-60-63837 (JP, A) JP-A-61-58196 (JP, A) ) JP-A-55-78497 (JP, A) Actual opening 60-38444 (JP, U) Actual opening 57-2533 (JP, U) Actual opening 57-12694 (JP, U) Actual opening 49- 142777 (JP, U) JP-B 57-638 (JP, B2) JP-B 57-48804 (JP, B2) JP-B 40-30023 (JP, Y1) JP-B 40-30022 (JP, Y1) Actual Public Sho 58-47677 (JP, Y2)

Claims (1)

【特許請求の範囲】[Claims] 【請求項1】照明負荷を点滅させる主スイッチと、この
主スイッチを開閉操作するスイッチ制御部と、外光量に
応じてインピーダンスを変化させてスイッチ制御部に供
給する電圧を変化させる光量検出手段と、主スイッチの
開閉操作時にスイッチ制御部に供給する駆動電圧を瞬時
に変化させて主スイッチを更に付勢方向に動作させる電
圧可変回路部とを備え、外光量を感知して、照明負荷を
自動的に点滅させる照明負荷の自動点滅装置において、 主スイッチとしての常閉接点を有するバイメタルスイッ
チを照明負荷と電源との間に介在させ、 少なくともスイッチ制御部としてのヒータと光量検出手
段としてのCdSとを直列接続してなる直列回路を、バイ
メタルスイッチの電源側で照明負荷に並列に電源接続
し、 バイメタルスイッチと照明負荷との間にインピーダンス
素子の一極を接続し、このインピーダンス素子の他極を
少なくともヒータに並列に前記直列回路の中間に接続し
て電源との間にインピーダンス成分を介在させ、インピ
ーダンス素子とヒータとバイメタルスイッチとを含んで
電圧可変回路部を構成したことを特徴とする照明負荷の
自動点滅装置。
1. A main switch for blinking a lighting load, a switch control section for opening and closing the main switch, and a light quantity detecting means for changing an impedance according to an external light quantity to change a voltage supplied to the switch control section. It has a voltage variable circuit that instantly changes the drive voltage supplied to the switch controller when the main switch is opened and closed to operate the main switch in the biasing direction. In the automatic flashing device for lighting loads that blinks automatically, a bimetal switch having a normally-closed contact as the main switch is interposed between the lighting load and the power supply, and at least the heater as the switch control unit and the CdS as the light amount detecting means are provided. The power supply side of the bimetal switch is connected in parallel to the lighting load. One pole of the impedance element is connected between the two, and the other pole of this impedance element is connected in parallel to at least the heater in the middle of the series circuit so that the impedance component is interposed between the power source, the impedance element, the heater and the bimetal. An automatic flashing device for a lighting load, comprising a voltage variable circuit section including a switch.
JP60141067A 1985-06-25 1985-06-25 Lighting load automatic flashing device Expired - Lifetime JPH0665162B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP60141067A JPH0665162B2 (en) 1985-06-25 1985-06-25 Lighting load automatic flashing device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP60141067A JPH0665162B2 (en) 1985-06-25 1985-06-25 Lighting load automatic flashing device

Publications (2)

Publication Number Publication Date
JPS61296682A JPS61296682A (en) 1986-12-27
JPH0665162B2 true JPH0665162B2 (en) 1994-08-22

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
JP60141067A Expired - Lifetime JPH0665162B2 (en) 1985-06-25 1985-06-25 Lighting load automatic flashing device

Country Status (1)

Country Link
JP (1) JPH0665162B2 (en)

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Publication number Priority date Publication date Assignee Title
JP4909048B2 (en) * 2006-12-18 2012-04-04 株式会社日立製作所 Lamp system and damaged lamp identification method
US20130239511A1 (en) * 2011-10-31 2013-09-19 William R. Martin Tile removal process

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* Cited by examiner, † Cited by third party
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JPS57638A (en) * 1980-06-03 1982-01-05 Hoei Sangyo Kk Additive color source device
JPS5847677U (en) * 1981-09-29 1983-03-31 シルバー精工株式会社 door closer
JPS6063837A (en) * 1983-09-19 1985-04-12 松下電器産業株式会社 Electronic automatic flasher

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