JP3899529B2 - lighting equipment - Google Patents

lighting equipment Download PDF

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Publication number
JP3899529B2
JP3899529B2 JP31224494A JP31224494A JP3899529B2 JP 3899529 B2 JP3899529 B2 JP 3899529B2 JP 31224494 A JP31224494 A JP 31224494A JP 31224494 A JP31224494 A JP 31224494A JP 3899529 B2 JP3899529 B2 JP 3899529B2
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Japan
Prior art keywords
lamp
heat ray
ray sensor
wall
outside
Prior art date
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Expired - Fee Related
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JP31224494A
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Japanese (ja)
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JPH08167480A (en
Inventor
達也 阿部
速雄 竹内
和典 東谷
政利 山本
慎司 桐畑
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Panasonic Electric Works Co Ltd
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Matsushita Electric Works Ltd
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    • 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
    • Y02B20/40Control techniques providing energy savings, e.g. smart controller or presence detection

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  • Circuit Arrangement For Electric Light Sources In General (AREA)
  • Photometry And Measurement Of Optical Pulse Characteristics (AREA)

Abstract

PURPOSE: To provide a luminaire which makes a lamp lighted automatically when a person approaches to a set place and makes the lamp put out when the person goes out thereafter. CONSTITUTION: A control circuit 40 turns on a switch element S to light an incandescent lamp 5 when a detecting result is output from a pyroelectrid element 43 in the condition the brightness level detected by a light receiving element 42 is less than a specific level. After that, when the detecting output from the pyroelectric element 43 is stopped, the switch element S is turned off after a specific time elapses to put out the incandescent lamp 5.

Description

【0001】
【産業上の利用分野】
本発明は、壁面に埋め込み配設する照明器具に関するものである。
【0002】
【従来の技術】
従来、通常廊下に面した壁の下部に露設されて足元を照らす所謂ナイトライトと称せられるこの種の照明器具は器具本体に設けた手動スイッチ又は器具本体に設けた端子に接続した外部スイッチを手動操作することにより内蔵せるランプの点灯、消灯を行うようになっていた。
【0003】
【発明が解決しようとする課題】
ところで上述のように従来のナイトライトと称せられる照明器具は、手動操作によってランプの点灯、消灯を行っていたため、操作の手間がかかり、その上ランプの消し忘れを起こしやすいという問題があった。
【0004】
また壁面に露設するため、狭い廊下では歩行の邪魔になるという問題もあった。
【0005】
本発明は上述の問題点に鑑みて為されたもので、請求項1の発明の目的とするところは、設置場所に人が近づくと自動的にランプを点灯させ、人が遠ざかると自動的に消灯させることができ、また遅延消灯であるため熱線センサの検知エリアの境界付近での人の動きがあってもランプが不必要に点滅することがなく、また壁面に埋め込み配設でき、さらにはレンズ本体の出っ張り量を抑えつつ広い範囲からの熱線を検知することができる照明器具を提供するにある。
【0006】
請求項2の発明の目的とするところは、ランプの発熱の影響を熱線センサが受けるの防いだ照明器具を提供するにある。
【0007】
請求項3の発明の目的とするところは、ランプ収納部内に対流によって外気を取り込み、ランプ収納部の温度上昇を抑制できる照明器具を提供するにある。
【0008】
請求項4の発明の目的とするところは、外光が明るく照明が不要なときにはランプを点かないようにした照明器具を提供するにある。
【0009】
【課題を解決するための手段】
上記目的を達成するために請求項1の発明では、規格化されたスイッチボックスに対応する寸法モジュールで形成され、スイッチボックス取り付け用取付枠を介して壁面に埋設されたスイッチボックス内又は壁面に開口した埋め込み穴内に取付けられ、前面を壁面外に露出する器具本体と、この器具本体内に形成され器具本体の前面側が開口したランプ収納部に収納され、ランプ収納部の前面開口部より器具本体外に照明光を出すランプと、器具本体に収納されて器具本体の前方から来る熱線を感知する熱線センサと、器具本体に収納され、熱線センサの検出出力の立ち上がりがあるとランプを点灯させ、その後熱線センサの検出出力の立ち下がると一定時間後にランプを消灯させる制御回路と、ランプ交換時に電源を遮断するスイッチとを備え、器具本体の前面には熱線を内部に取り込む受光窓を設け、この受光窓には器具本体の前方からの熱線を器具本体内の熱線センサの検知面に集光させる集光レンズを複数夫々の光軸の方向を異ならせて設けたレンズ本体を被着するとともに、レンズ本体の裏側に集光レンズを通過した熱線の内熱線センサの有効視野外へ向かう熱線を、熱線センサの有効視野内を通るように反射させる反射ミラーを設けたものである。
【0010】
請求項2の発明では、熱線センサの収納部位を囲繞する壁の内ランプ収納部と隣接する壁を2重の壁としたことを特徴とするものである。
【0011】
請求項3の発明では、ランプ配置位置より下方位置のランプ収納部の壁面に器具本体外に連通する空気流入孔を開口するとともにランプ配置位置より上方位置のランプ収納部の壁面に器具本体外部に連通する空気流出孔を開口したことを特徴とするものである。
【0012】
請求項4の発明では、器具本体に収納され、器具本体外の外光の明るさレベルを検知する明るさセンサを付加し、この明るさセンサの検知する明るさレベルが所定レベル以上のときランプの点灯動作をキャンセルさせる機能を制御回路に備えたものである。
【0013】
【作用】
請求項1の発明によれば、壁面内に器具本体を通常の埋め込み配線器具と同様にスイッチボックスや壁面に設けた埋め込み穴に埋設することができ、そのため外部に突出する量が少なく、狭い廊下の壁面に設けても歩行の邪魔にならず、しかも熱線センサと制御回路により、人が近づいた場合に自動的にランプを点灯させ、人が遠ざかると自動的にランプを消灯させることができるため、手動の操作のように手間がかからず、また消し忘れも防止できる。それに加え遅延消灯となるため熱線センサの検知エリアの境界付近での人の動きがあっても人の動きによりランプが点滅するようなことが起きない。さらに、レンズ本体の突出量を抑えつつ広い範囲から熱線を集光できる。
【0014】
請求項2の発明によれば、ランプ収納部と熱線センサの収納部位との間の断熱が図れ、ランプの熱が熱線センサへ影響を及ぼすのを防ぐことができる。
【0015】
請求項3の発明によれば、ランプの発熱によって起きる対流によりランプ収納部の熱せられた空気を器具本体外へ排気し外部から冷たい空気を吸気することができ、そのためランプ収納部内の温度上昇を抑制できる。
【0016】
請求項4の発明によれば、ランプの照明が不要な明るい状態では、人が近づいてもランプを点灯させず、無駄な電力消費を無くすることができる。
【0017】
【実施例】
以下、本発明の実施例を図面を参照して説明する。
【0018】
図2、図3は本発明の一実施例の分解斜視図を示しており、器具本体1は、耐熱性の高い合成樹脂成形品からなる箱状のボディ1Aと、このボディ1Aの開口部に被着するカバー1Bとで構成され、全体としてはJISで定められた大角形配線器具の2連モジュール寸法の大きさに形成されいる。
【0019】
ボディ1Aは取付け時に底部となる側壁に所定間隔を開けて並行する片と、右側の側壁に並行する片とでなるL字状に屈曲した仕切り壁2を一体に立設し、ボディ1A内を略方形の空間からなるランプ収納部3Aと、L字状の空間からなるプリント基板配設部3Bとに2分してある。
【0020】
ランプ収納部3Aにはランプソケット4と、ランプソケット4に装着されるE12型の白熱ランプ5とを収納する。ランプソケット4は図2に示すように一端部の上端に両側方向に軸部11を形成し、この軸部11の両端をランプ収納部3Aの一側壁に沿うように形成したリブ12,12の上端に対向するように設けた軸受け凹部13,13に上端の切欠13a,13aを介して嵌めて回動自在に支持されており、白熱ランプ5の装着時や交換時に前面開口側へランプソケット4を軸部11を中心として回動させることができるようになっている。また略L状に折り曲げられた支持ばね15がランプソケット4の側方のランプ収納部3A内で固定ビス14で固定配置されており、この支持ばね15の先端部が図5に示すようにランプ収納部3A内に収められた状態のランプソケット4の側面に弾接してランプソケット4が不必要に回動するのを防いでいる。ランプソケット4に接続されたリード線23は、ランプ収納部3Aの底部に形成した台部30に設けた溝31内に収められるとともに上記仕切り壁2に形成した溝32を介してプリント基板配設部3B内に導入される。
【0021】
L字状のプリント基板配設部3Bは一辺の両端内部に端子収納部16a.16bを設け、これら端子収納部16a,16b内に端子板17、鎖錠ばね18からなる1対の速結端子を夫々収納するとともに、鎖錠状態を解除するための解除釦19を夫々収納してある、各端子板17は図において上方へ突出した突片17aをプリント基板6に設けた夫々に対応する挿通孔20に挿入されて半田付けされ、プリント基板6の回路に対して電気的に接続される。各端子収納部16a,16bの底面には図4に示すように夫々の速結端子に対応した電線挿入孔21及び解除釦19の操作用孔22が開口している。一方の端子収納部16a内の速結端子は図1に示す電源端子33,33を構成し、他方の端子収納部16b内の速結端子は図1に示す強制点灯/自動の切換スイッチSWを接続するための端子34,34を構成する。
【0022】
プリント基板6は図1の回路部の回路素子を実装するとともに上記ランプソケット4からのリード線23を接続するもので、プリント基板配設部3BのL状開口縁に形成された段部に載せ、側縁に形成した切欠8,8に挿通した固定ビス7,7をプリント基板配設部3B内に形成せるリブ9,9に設けた穴10,10に螺入締結することにより固定される。
【0023】
図1に示す回路部は、電源端子33,33に接続される交流電源ACの両端にランプ交換時の電源遮断用スイッチSWと、ダイオードDと、限流抵抗Rと、動作表示用の発光ダイオードLEDとを介してダイオードブリッジDBを接続し、ダイオードDと、限流抵抗Rと、発光ダイオードLEDとの直列回路に並列に白熱ランプ5を接続してある。ダイオードブリッジDBは両出力端間にサイリスタからなるスイッチ素子Sを並列に接続してあり、このスイッチ素子Sを制御回路40によりトリガしてオンさせることにより、上記白熱ランプ5をダイオードブリッジDB、スイッチ素子Sを通じて交流電源ACに接続して点灯させるのである。
【0024】
ダイオードDで半波整流された脈流は3端子レギュレータIC等からなる電源回路部41により所定の安定した直流電圧に変換される。電源回路部41は、制御回路40に電源を供給するととともに、抵抗Rと明るさセンサを構成するCdS素子からなる受光素子42との直列回路を接続している。
【0025】
制御回路40は外付けした受光素子42の両端電圧を監視してこの両端電圧が所定レベル以下つまり所定の明るさレベル以上にあるのかどうかを監視する機能と、外付けした焦電素子43の検知信号の有無を検出する機能と、タイマ機能とを持ち、受光素子42の受光する明るさレベルが所定以下のときに焦電素子43の検知信号を有効として、焦電素子43から検知信号があるとスイッチ素子Sにトリガ信号を与え、焦電素子43からの検知信号が無くなると、外付けの時定数回路44で定まる一定時間後にスイッチ素子Sに対するトリガ信号の出力と停止する機能を有している。尚回路45は、制御回路40内のクロック発振回路の外付けCR回路である。
【0026】
またダイオードブリッジDBの入力端間には上記の強制点灯/自動の切換スイッチSWが端子34,34を通じて接続することができ、切換スイッチSWをオンすると白熱ランプ5は交流電源ACに切換スイッチSWを介して接続されて点灯する。つまり切換スイッチSWをオンすればスイッチ素子Sがオフ状態であっても強制的に白熱ランプ5を点灯させることができる。またオフすれば制御回路40の制御に基づくスイッチ素子Sのオン、オフにより白熱ランプ5を自動的に点灯、消灯させることができる。
【0027】
上記焦電素子43と、受光素子42と、発光ダイオードLEDとは図2に示すようにプリント基板6の一辺の表面に配置され、電源遮断用スイッチSWはプリント基板6の他辺の表面に配置され、ボディ1Aにカバー1Bが被着されると、カバー1Bに設けた受光窓28に焦電素子43の検知面とこの焦電素子43の近傍に設けた発光ダイオードLEDの発光部が臨み、さらに別に設けた受光窓27に受光素子42の受光面が臨み、またカバー1Bに設けた操作孔26に電源遮断用スイッチSWのアクチュエータが臨む。
【0028】
ここでカバー1Bは両側に2連の大角形配線器具に対応する合成樹脂製の取付枠50或いは金属製の取付枠の中央開口部に嵌合する突出部51と、この突出部51の両側に設けた平坦部52とを有し、平坦部52の両側部には取付枠50に設けた係止孔53に着脱自在に係入する係止爪54を夫々二対ずつ設け、また突出部51の両側面の基部には金属製取付枠の係止部を係止する係止凹部55を一対設けてあり、一般の埋め込み配線器具と同様に取付枠50(或いは金属製取付枠)を用いて壁面に埋設したスイッチボックスや埋め込み穴への取付けができるようなっている。そして両側裏面より突出させた結合用爪56,57をボディ1Aに設けた結合孔58,59に係入することによりボディ1Aに結合固定されてボディ1Aとともに器具本体1を構成する。
【0029】
さてカバー1Aの突出部51にはボディ1Aのランプ収納部3Aに対応する開口窓60を設けてあり、この開口窓60には透光性の樹脂により形成された図2に示すセード61が着脱自在に嵌合され、白熱ランプ5の照明光はこのセード61を介して外部へ出ることになる。
【0030】
セード61のカバー1Aへの固定は、セード61の一側部の裏面より突出させた係止爪62を開口窓60の対応する内面に開口した係止孔63に係入させるとともに、セード61の他側部の外面に設けた係止突起63を開口窓60の対応する内面に設けた係止凹部(図示せず)に弾性係入することにより行われる。この固定を外す場合にはセード61の他側部の外面に設けた凹部64に開口窓60の開口縁に設けた溝65から挿入したドライバ等の治具先端を凹部64に係止させて治具を梃として利用しセード61の他側部を持ち上げて係止突起63を係止凹部から離脱させるのである。つまりセード61を外すことによりランプ収納部3A内の白熱ランプ5の交換を可能としている。
【0031】
またセード61の一端の裏面には開口窓60に被着したときにカバー1Bに設けた上記操作孔26に挿入されてボディ1A内の電源遮断用スイッチSWのアクチュエータを押し駆動する押し込み突起66を突出させてある。従ってセード61を外した状態では電源遮断用スイッチSWがオフしており、この状態では自動点灯機能が働かないため、不必要に白熱ランプ5が点灯することもない。またボディ1Aのランプ収納部3A内のランプソケット4の表面を押さえる突起67とを夫々突出させてある。
【0032】
上記の受光窓28及27はカバー1Bの突出部51に開口しており、受光窓27にはカバー1Bの内側に取り付けられるカバー70のレンズ部71が嵌め込まれ、レンズ部71により受光素子42の受光面に外光が集光されるようになっている。
【0033】
また受光窓28には集光レンズ72を複数一体形成したレンズ本体73と、反射ミラー74を設けたミラー支持体75とで構成された光学ブロック76が装着されている。
【0034】
このミラー支持体75は枠状に形成され、その開口部の中央上方にV状の反射ミラー74を支持配置したものである。一方レンズ本体73は合成樹脂の成形品からなる両側が傾斜面となった裏面開口の箱状のものであって、傾斜面及び前面部に集光レンズ72を図6に示すように一体形成したものである。そして受光窓28には裏面側からレンズ本体73を嵌め込み、受光窓28の表面開口部に突出形成してある突出壁77の内側に設けた凹部78にレンズ本体73の周縁を図5に示すように当接し、この状態でミラー支持体75の反射ミラー74をレンズ本体73の裏面凹部に受光窓28の裏面側から挿入して図6に示すように反射ミラー74の上端部をレンズ本体73の裏面に当接してレンズ本体73を押え、この状態でカバー1Bの裏面に固定ビス79によりミラー支持体75を固定することにより同時にレンズ本体73を固定してる。
【0035】
ここでレンズ本体73の各集光レンズ72は焦電素子43の検知有効視野を通る光軸を有し、焦電素子43のチップの検知面に焦点Xを結ぶようになっている。一方反射ミラー73は集光レンズ72を透過した熱線中焦電素子43の検知有効視野を通らないものを、反射して焦電素子43の検知有効視野を通し、焦電素子43のチップの検知面に集光させるようにしたもので、広い範囲で集光を可能としている。
【0036】
図7乃至図11はレンズ本体73と反射ミラー74の別の形状例を示しており、図7の場合にはV状の開きを大きくした反射ミラー74を用いてレンズ本体73の前面側に設ける集光レンズ72の数を増やし、また集光範囲をより広角にしたものである。図8乃至図11の場合には反射ミラー74の中央部に開口74aを設け、この開口74aに対向するレンズ本体73の前面中央にも集光レンズ72を形成して、レンズ本体73の正面からの熱線を焦電素子43のチップの検知面に集光させることができるようにしたものである。そして図9の例ではレンズ本体73の正面を球面状にしたものであり、また図10の例では、上記開口74aを筒状に形成してその筒状内壁面74bにも反射面を設け、正面の集光レンズ72を通しても広範囲に集光できるようにしたものである。
【0037】
而して反射ミラー74と集光レンズ72を設けたレンズ本体73との組み合わせにより、カバー1Bの前面よりの突出量を小さくしても図12に示すように広角に集光できるようになり、そのため設置位置から遠方にいる人Mの熱線をも容易に集光でき、検知距離Lを延ばすことできる。尚Yは廊下を示す。
【0038】
ところでカバー1Bの突出部51の裏面にはボディ1Aに被着した時に仕切り壁2の上端に当接して焦電素子43が収納される部分と、ランプ収納部3Aとの間を遮断する二重構造の仕切り壁80を図5に示すように設けてあり、この仕切り壁80と、ボディ1Aの仕切り壁2と、プリント基板6とで白熱ランプ5の熱が焦電素子42に影響を与えないように断熱してある。
【0039】
また白熱ランプ5の熱を逃がすために図5に示すように壁面Wに器具本体1を配設した時に上面となるランプ収納部3Aの面には外部に連通する空気排出孔81を開口し、またランプ収納部3Aの下部に位置する背面となる面には空気流入孔82を開口してある。つまり白熱ランンプ4の発熱によって生じる対流により冷たい外気をランプ収納部3A内に流してランプ収納部3Aの温度上昇を抑制するようになっている。
【0040】
尚図2の83は化粧カバーで、係止爪84を取付枠50の係止部85に係入することにより取付枠50の前面側に取りつけられるものである。
【0041】
而して本発明照明器具では、外光の明るさレベルが所定レベル以下において、焦電素子43からなる熱線センサに検知信号が発生すると制御回路40はスイッチ素子Sをオンして白熱ランプ5をダイオードブリッジDB、スイッチ素子Sを通じて交流電源ACに接続して点灯させる。そして焦電素子43からなる熱線センサの検知信号が無くなると、制御回路40は一定時間経過後にスイッチ素子Sをオフさせて白熱ランプ5の通電を遮断し、消灯させる。
【0042】
【発明の効果】
請求項1の発明は、規格化されたスイッチボックスに対応する寸法モジュールで形成され、スイッチボックス取り付け用取付枠を介して壁面に埋設されたスイッチボックス内又は壁面に開口した埋め込み穴内に取付けられ、前面を壁面外に露出する器具本体と、この器具本体内に形成され器具本体の前面側が開口したランプ収納部に収納され、ランプ収納部の前面開口部より器具本体外に照明光を出すランプと、器具本体に収納されて器具本体の前方から来る熱線を感知する熱線センサと、器具本体に収納され、熱線センサの検出出力の立ち上がりがあるとランプを点灯させ、その後熱線センサの検出出力の立ち下がると一定時間後にランプを消灯させる制御回路と、ランプ交換時に電源を遮断するスイッチとを備え、器具本体の前面には熱線を内部に取り込む受光窓を設け、この受光窓には器具本体の前方からの熱線を器具本体内の熱線センサの検知面に集光させる集光レンズを複数夫々の光軸の方向を異ならせて設けたレンズ本体を被着するとともに、レンズ本体の裏側に集光レンズを通過した熱線の内熱線センサの有効視野外へ向かう熱線を、熱線センサの有効視野内を通るように反射させる反射ミラーを設けたので、壁面内に器具本体を通常の埋め込み配線器具と同様にスイッチボックスや壁面に設けた埋め込み穴に埋設することができ、そのため外部に突出する量が少なく、狭い廊下の壁面に設けても歩行の邪魔にならず、しかも熱線センサと制御回路により、人が近づいた場合に自動的にランプを点灯させ、人が遠ざかると自動的にランプを消灯させることができるため、手動の操作のように手間がかからず、また消し忘れも防止できるという効果があり、しかも遅延消灯となるため熱線センサの検知エリアの境界付近での人の動きがあっても人の動きによりランプが点滅するようなことが起きず、使用者に不快感を与えないという効果がある。さらに、レンズ本体の突出量を抑えつつ広い範囲から熱線を集光できるという効果がある。
【0043】
請求項2の発明は、熱線センサの収納部位を囲繞する壁の内ランプ収納部と隣接する壁を2重の壁としたので、ランプ収納部と熱線センサの収納部位との間の断熱が図れ、ランプの熱が熱線センサへ影響を及ぼすのを防ぐことができるという効果がある。
【0044】
請求項3の発明は、ランプ配置位置より下方位置のランプ収納部の壁面に器具本体外に連通する空気流入孔を開口するとともにランプ配置位置より上方位置のランプ収納部の壁面に器具本体外部に連通する空気流出孔を開口したので、ランプの発熱によって起きる対流によりランプ収納部の熱せられた空気を器具本体外へ排気し外部から冷たい空気を吸気することができ、そのためランプ収納部内の温度上昇を抑制できるという効果がある。
【0045】
請求項4の発明は、器具本体に収納され、器具本体外の外光の明るさレベルを検知する明るさセンサを付加し、この明るさセンサの検知する明るさレベルが所定レベル以上のときランプの点灯動作をキャンセルさせる機能を制御回路に備えたので、ランプの照明が不要な明るい状態では、人が近づいてもランプを点灯させず、無駄な電力消費を無くすることができるという効果がある。
【図面の簡単な説明】
【図1】 本発明の一実施例の回路図である。
【図2】 同上の分解斜視図である。
【図3】 同上の分解斜視図である。
【図4】 (a)は同上の正面図である。
(b)は同上の側面図である。
(c)は同上の背面図である。
【図5】 同上の壁面取付け状態を示す断面図である。
【図6】 同上の光学系の説明図である。
【図7】 同上の別の光学系の説明図である。
【図8】 同上の他の光学系の説明図である。
【図9】 同上の更に別の光学系の説明図である。
【図10】 同上の更に他の光学系の説明図である。
【図11】 同上のまた更に他の光学系の説明図である。
【図12】 同上の光学系の集光範囲の説明図である。
【符号の説明】
5 白熱ランプ
40 制御回路
42 受光素子
43 焦電素子
S スイッチ素子
[0001]
[Industrial application fields]
The present invention relates to a lighting fixture embedded in a wall surface.
[0002]
[Prior art]
Conventionally, this type of luminaire, so-called night light that is exposed in the lower part of the wall facing the corridor and illuminates the feet, is a manual switch provided on the instrument body or an external switch connected to a terminal provided on the instrument body. The built-in lamp was turned on and off by manual operation.
[0003]
[Problems to be solved by the invention]
By the way, as described above, the lighting fixture called the conventional nightlight has been problematic in that it is troublesome to operate the lamp because it is turned on and off by manual operation, and it is easy to forget to turn off the lamp.
[0004]
In addition, since it is exposed on the wall, there is a problem that it becomes an obstacle to walking in a narrow corridor.
[0005]
The present invention has been made in view of the above-mentioned problems, and the object of the invention of claim 1 is to automatically turn on the lamp when a person approaches the installation place and automatically when the person moves away. can be turned off, also delay a is for lamp even with movement of people in the vicinity of the boundary of the detection area of the hot wire sensor without flashing unnecessarily off, also be arranged buried in a wall, more It is in providing the lighting fixture which can detect the heat ray from a wide range, suppressing the protrusion amount of a lens main body .
[0006]
The object of the invention of claim 2 is to provide a lighting apparatus in which the heat ray sensor prevents the influence of the heat generated by the lamp.
[0007]
An object of the invention of claim 3 is to provide a luminaire capable of taking outside air into the lamp housing portion by convection and suppressing an increase in temperature of the lamp housing portion.
[0008]
An object of the invention of claim 4 is to provide a luminaire in which the lamp is not turned on when the outside light is bright and illumination is unnecessary .
[0009]
[Means for Solving the Problems]
In order to achieve the above object, according to the first aspect of the present invention, a switch is formed in a dimensional module corresponding to a standardized switch box, and is opened in or on the wall surface of the switch box embedded through the switch box mounting frame. The instrument body is mounted in the embedded hole and the front surface is exposed to the outside of the wall surface, and is stored in the lamp housing part formed in the instrument body and opened on the front side of the instrument body. A lamp that emits illumination light, a heat ray sensor that is housed in the instrument body and senses heat rays coming from the front of the instrument body, and is housed in the instrument body, and when the detection output of the heat ray sensor rises, the lamp is turned on, and then A control circuit that turns off the lamp after a certain time when the detection output of the heat ray sensor falls, and a switch that shuts off the power when the lamp is replaced For example, the front surface of the instrument body is provided a light-receiving window to capture heat rays therein, a plurality husband condenser lens for condensing the heat rays from the front of the device body to the light receiving window on the detection surface of the heat ray sensor in the instrument body s Attach the lens body provided with different optical axis directions, and heat rays that pass through the condenser lens on the back side of the lens body to the outside of the effective field of the internal heat ray sensor. A reflection mirror that reflects the light so as to pass therethrough is provided .
[0010]
The invention according to claim 2 is characterized in that the wall adjacent to the inner lamp housing portion of the wall surrounding the housing portion of the heat ray sensor is a double wall.
[0011]
In the invention of claim 3, an air inflow hole communicating with the outside of the fixture body is opened on the wall surface of the lamp housing portion below the lamp arrangement position, and outside the fixture body on the wall surface of the lamp housing portion above the lamp arrangement position. An air outflow hole communicating therewith is opened.
[0012]
According to a fourth aspect of the present invention, a brightness sensor that is housed in the instrument body and detects the brightness level of outside light outside the instrument body is added, and the brightness level detected by the brightness sensor is greater than or equal to a predetermined level. The control circuit has a function of canceling the lighting operation.
[0013]
[Action]
According to the first aspect of the present invention, the instrument body can be embedded in the wall surface in a switch box or an embedding hole provided in the wall surface in the same manner as a normal embedded wiring apparatus, and therefore the amount of protrusion to the outside is small, and the narrow corridor Even if it is installed on the wall, it does not interfere with walking, and the heat ray sensor and control circuit can automatically turn on the lamp when a person approaches and turn off the lamp automatically when the person moves away. , Which is less time-consuming than manual operation, and can also prevent forgetting to turn it off. In addition, since the delay is turned off, the lamp does not blink due to the movement of the person even if there is a movement of the person near the boundary of the detection area of the heat ray sensor. Furthermore, heat rays can be collected from a wide range while suppressing the protrusion amount of the lens body.
[0014]
According to the second aspect of the present invention, heat insulation can be achieved between the lamp housing portion and the housing portion of the heat ray sensor, and the heat of the lamp can be prevented from affecting the heat ray sensor.
[0015]
According to the third aspect of the present invention, it is possible to exhaust the heated air in the lamp housing part to the outside of the fixture main body by the convection caused by the heat generation of the lamp, and to suck in cold air from the outside. Can be suppressed.
[0016]
According to the fourth aspect of the present invention, in a bright state where illumination of the lamp is unnecessary , the lamp is not turned on even when a person approaches, and wasteful power consumption can be eliminated.
[0017]
【Example】
Embodiments of the present invention will be described below with reference to the drawings.
[0018]
2 and 3 are exploded perspective views of an embodiment of the present invention. The instrument body 1 includes a box-shaped body 1A made of a synthetic resin molded product having high heat resistance and an opening of the body 1A. It is composed of a cover 1B to be attached, and is formed in a size of a double module size of a large-angle wiring apparatus defined by JIS as a whole.
[0019]
The body 1A is erected integrally with a partition wall 2 bent in an L-shape consisting of a piece that is parallel to the side wall that is the bottom at the time of attachment and a piece that is parallel to the right side wall. It is divided into a lamp housing part 3A composed of a substantially square space and a printed circuit board disposing part 3B composed of an L-shaped space.
[0020]
The lamp housing 3 </ b> A houses a lamp socket 4 and an E12 type incandescent lamp 5 attached to the lamp socket 4. As shown in FIG. 2, the lamp socket 4 has a shaft portion 11 formed on both ends in the upper end of one end portion, and ribs 12 and 12 formed at both ends of the shaft portion 11 along one side wall of the lamp housing portion 3A. It is rotatably supported by being fitted into bearing recesses 13, 13 provided so as to face the upper end via notches 13 a, 13 a at the upper end, and the lamp socket 4 is moved to the front opening side when the incandescent lamp 5 is mounted or replaced. Can be rotated around the shaft 11. Further, a support spring 15 bent in a substantially L shape is fixedly disposed with a fixing screw 14 in the lamp housing part 3A on the side of the lamp socket 4, and the tip of the support spring 15 is connected to the lamp as shown in FIG. The lamp socket 4 is elastically brought into contact with the side surface of the lamp socket 4 stored in the storage portion 3A to prevent the lamp socket 4 from rotating unnecessarily. The lead wire 23 connected to the lamp socket 4 is accommodated in a groove 31 provided in a base portion 30 formed at the bottom of the lamp housing portion 3A, and disposed on the printed circuit board via a groove 32 formed in the partition wall 2. It is introduced into the part 3B.
[0021]
The L-shaped printed circuit board arrangement portion 3B has terminal storage portions 16a. 16b is provided, and a pair of quick-connecting terminals including a terminal plate 17 and a lock spring 18 are stored in the terminal storage portions 16a and 16b, respectively, and a release button 19 for releasing the locked state is stored. Each terminal board 17 is inserted into a corresponding insertion hole 20 provided in the printed circuit board 6 with a protruding piece 17a protruding upward in the figure and soldered, and is electrically connected to the circuit of the printed circuit board 6. Connected. As shown in FIG. 4, an electric wire insertion hole 21 and an operation hole 22 for the release button 19 corresponding to the respective quick connection terminals are opened on the bottom surfaces of the terminal storage portions 16a and 16b. The quick connection terminal in one terminal storage portion 16a constitutes the power terminals 33 and 33 shown in FIG. 1, and the quick connection terminal in the other terminal storage portion 16b is the forced lighting / automatic changeover switch SW 1 shown in FIG. The terminals 34 and 34 for connecting are configured.
[0022]
The printed circuit board 6 mounts the circuit elements of the circuit section of FIG. 1 and connects the lead wires 23 from the lamp socket 4 and is placed on the step formed on the L-shaped opening edge of the printed circuit board arrangement section 3B. The fixing screws 7, 7 inserted into the notches 8, 8 formed on the side edges are fixed by screwing and fastening into the holes 10, 10 provided in the ribs 9, 9 formed in the printed circuit board arrangement portion 3B. .
[0023]
The circuit portion shown in FIG. 1 includes a power cutoff switch SW 2 at the time of lamp replacement, a diode D 1 , a current limiting resistor R 1, and an operation display at both ends of an AC power source AC connected to power source terminals 33 and 33. through the light emitting diode LED 1 is connected a diode bridge DB of a diode D 1, a current limiting resistor R 1, is connected to the incandescent lamp 5 in parallel to the series circuit of the light emitting diodes LED 1. In the diode bridge DB, a switch element S composed of a thyristor is connected in parallel between both output terminals. When the switch element S is triggered by the control circuit 40 and turned on, the incandescent lamp 5 is connected to the diode bridge DB and the switch. It is lit by being connected to the AC power source AC through the element S.
[0024]
Ripple of the diode D 1 is half-wave rectified is converted by the power supply circuit unit 41 composed of a three-terminal regulator IC or the like in a predetermined stable DC voltage. Power supply circuit 41, a power supply with the supply to the control circuit 40 connects the series circuit of the light receiving element 42 consisting of CdS element constituting the resistor R 2 brightness sensor.
[0025]
The control circuit 40 monitors the voltage at both ends of the external light receiving element 42 and monitors whether the voltage at both ends is below a predetermined level, that is, above a predetermined brightness level, and the detection of the external pyroelectric element 43. It has a function of detecting the presence or absence of a signal and a timer function, and when the brightness level received by the light receiving element 42 is not more than a predetermined level, the detection signal of the pyroelectric element 43 is made valid, and there is a detection signal from the pyroelectric element 43 When the trigger signal is given to the switch element S and the detection signal from the pyroelectric element 43 is lost, the trigger signal is output to the switch element S and stopped after a predetermined time determined by the external time constant circuit 44. Yes. The circuit 45 is an external CR circuit of the clock oscillation circuit in the control circuit 40.
[0026]
Also between the input terminals of the diode bridge DB can changeover switch SW 1 of the forced lighting / Auto is connected via terminals 34, 34, the incandescent lamp 5 and to turn on the switch SW 1 changeover switch to the AC power source AC Connected via SW 1 and lights up. That is, if on the switch SW 1 switch element S can be turned to force the incandescent lamp 5, even in the off state. When the switch element S is turned off, the incandescent lamp 5 can be automatically turned on and off by turning on and off the switch element S based on the control of the control circuit 40.
[0027]
The pyroelectric element 43, the light receiving element 42, and the light emitting diode LED 1 are arranged on the surface of one side of the printed circuit board 6 as shown in FIG. 2, and the power cutoff switch SW 2 is a surface of the other side of the printed circuit board 6. When the cover 1B is attached to the body 1A, the light receiving window 28 provided on the cover 1B has a detection surface of the pyroelectric element 43 and a light emitting portion of the light emitting diode LED 1 provided in the vicinity of the pyroelectric element 43. It is faces, further the light receiving surface of the light receiving element 42 to the light receiving window 27 faces provided separately, also facing the actuator operation hole 26 of the power cut-off switch SW 2 which is provided on the cover 1B.
[0028]
Here, the cover 1 </ b> B has a protruding portion 51 fitted on a central opening portion of a synthetic resin mounting frame 50 or a metal mounting frame corresponding to two large square wiring devices on both sides, and on both sides of the protruding portion 51. Two locking claws 54 that are detachably engaged with locking holes 53 provided in the mounting frame 50 are provided on both sides of the flat portion 52, and two protrusions 51 are provided. A pair of locking recesses 55 for locking the locking portion of the metal mounting frame are provided at the bases on both side surfaces of the metal, and the mounting frame 50 (or the metal mounting frame) is used in the same manner as a general embedded wiring device. It can be installed in a switch box or a hole embedded in the wall. The coupling claws 56 and 57 projecting from the back surfaces of both sides are engaged with the coupling holes 58 and 59 provided in the body 1A to be coupled and fixed to the body 1A to constitute the instrument body 1 together with the body 1A.
[0029]
Now, the projection 51 of the cover 1A is provided with an opening window 60 corresponding to the lamp housing part 3A of the body 1A, and a shade 61 shown in FIG. 2 formed of a translucent resin is attached to and detached from the opening window 60. The illumination light of the incandescent lamp 5 goes outside through the shade 61.
[0030]
The shade 61 is fixed to the cover 1 </ b> A by engaging a locking claw 62 protruding from the back surface of one side of the shade 61 into a locking hole 63 opened on a corresponding inner surface of the opening window 60. This is done by elastically engaging a locking projection 63 provided on the outer surface of the other side portion into a locking recess (not shown) provided on the corresponding inner surface of the opening window 60. When removing this fixing, the recess 64 provided on the outer surface of the other side of the shade 61 is engaged with the recess 64 to fix the tip of a jig such as a screwdriver inserted from the groove 65 provided at the opening edge of the opening window 60. Using the tool as a bag, the other side of the shade 61 is lifted to disengage the locking projection 63 from the locking recess. That is, by removing the shade 61, the incandescent lamp 5 in the lamp housing 3A can be replaced.
[0031]
The pushing projection 66 on the back surface of the one end of the shade 61 which is inserted into the operation hole 26 provided on the cover 1B when applied to the opening window 60 for driving pushing the actuator of the power cut-off switch SW 2 in the body 1A Is protruding. Therefore, when opening the shade 61 has a power cut-off switch SW 2 is turned off, because the automatic lighting function in this state does not work, the incandescent lamp 5 unnecessarily nor lights. Further, projections 67 for pressing the surface of the lamp socket 4 in the lamp housing portion 3A of the body 1A are projected.
[0032]
The light receiving windows 28 and 27 are opened in the protruding portion 51 of the cover 1B, and the lens portion 71 of the cover 70 attached to the inside of the cover 1B is fitted into the light receiving window 27. External light is condensed on the light receiving surface.
[0033]
The light receiving window 28 is provided with an optical block 76 composed of a lens body 73 in which a plurality of condenser lenses 72 are integrally formed and a mirror support 75 provided with a reflecting mirror 74.
[0034]
This mirror support 75 is formed in a frame shape, and a V-shaped reflection mirror 74 is supported and arranged above the center of the opening. On the other hand, the lens body 73 has a box-like shape with a back surface opening formed of a synthetic resin molded product on both sides, and a condenser lens 72 is integrally formed on the inclined surface and the front surface portion as shown in FIG. Is. Then, the lens body 73 is fitted into the light receiving window 28 from the back side, and the periphery of the lens body 73 is shown in FIG. 5 in the recess 78 provided inside the protruding wall 77 protruding from the front surface opening of the light receiving window 28. In this state, the reflecting mirror 74 of the mirror support 75 is inserted into the recess on the back surface of the lens body 73 from the back surface side of the light receiving window 28, and the upper end of the reflecting mirror 74 is placed on the lens body 73 as shown in FIG. The lens main body 73 is pressed against the back surface, and in this state, the mirror support 75 is fixed to the back surface of the cover 1B by the fixing screw 79, so that the lens main body 73 is simultaneously fixed.
[0035]
Here, each condensing lens 72 of the lens body 73 has an optical axis passing through the effective detection field of view of the pyroelectric element 43, and a focal point X is formed on the detection surface of the chip of the pyroelectric element 43. On the other hand, the reflection mirror 73 is reflected through the effective detection visual field of the pyroelectric element 43 that does not pass through the effective detection visual field of the pyroelectric element 43 in the heat ray transmitted through the condenser lens 72, and detects the chip of the pyroelectric element 43. The light is focused on the surface, allowing light to be collected in a wide range.
[0036]
7 to 11 show other examples of the shape of the lens body 73 and the reflection mirror 74. In the case of FIG. 7, the reflection mirror 74 having a large V-shaped opening is used and provided on the front side of the lens body 73. FIG. The number of condensing lenses 72 is increased, and the condensing range is made wider. In the case of FIGS. 8 to 11, an opening 74a is provided at the center of the reflecting mirror 74, and a condensing lens 72 is formed at the center of the front surface of the lens body 73 facing the opening 74a. This heat ray can be condensed on the detection surface of the chip of the pyroelectric element 43. In the example of FIG. 9, the front surface of the lens body 73 is spherical, and in the example of FIG. 10, the opening 74a is formed in a cylindrical shape, and a reflective surface is provided on the cylindrical inner wall surface 74b. The light can be condensed over a wide range through the front condenser lens 72.
[0037]
Thus, the combination of the reflecting mirror 74 and the lens body 73 provided with the condensing lens 72 enables condensing at a wide angle as shown in FIG. 12, even if the amount of protrusion from the front surface of the cover 1B is reduced. Therefore, the heat rays of the person M who is far from the installation position can be easily condensed and the detection distance L can be extended. Y indicates a corridor.
[0038]
By the way, the back surface of the protruding portion 51 of the cover 1B is doubled to block between the lamp housing portion 3A and the portion where the pyroelectric element 43 is housed by contacting the upper end of the partition wall 2 when attached to the body 1A. A partition wall 80 having a structure is provided as shown in FIG. 5, and the heat of the incandescent lamp 5 does not affect the pyroelectric element 42 by the partition wall 80, the partition wall 2 of the body 1 </ b> A, and the printed circuit board 6. It is insulated like this.
[0039]
Further, in order to release the heat of the incandescent lamp 5, as shown in FIG. 5, an air discharge hole 81 communicating with the outside is opened on the surface of the lamp housing portion 3A which is the upper surface when the instrument body 1 is disposed on the wall surface W, In addition, an air inflow hole 82 is opened on the rear surface located below the lamp housing 3A. In other words, cold outside air is caused to flow into the lamp housing 3A by convection generated by the heat generated by the incandescent lamp 4 so as to suppress the temperature rise of the lamp housing 3A.
[0040]
Note that reference numeral 83 in FIG. 2 denotes a decorative cover, which is attached to the front side of the mounting frame 50 by engaging the locking claw 84 with the locking portion 85 of the mounting frame 50.
[0041]
Thus, in the lighting apparatus of the present invention, when a detection signal is generated in the heat ray sensor composed of the pyroelectric element 43 when the brightness level of the external light is equal to or lower than the predetermined level, the control circuit 40 turns on the switch element S to turn on the incandescent lamp 5. A diode bridge DB and a switch element S are connected to an AC power source AC and lighted. When the detection signal of the heat ray sensor composed of the pyroelectric element 43 disappears, the control circuit 40 turns off the switch element S after a predetermined time has elapsed to cut off the energization of the incandescent lamp 5 and turn it off.
[0042]
【The invention's effect】
The invention of claim 1 is formed of a dimension module corresponding to a standardized switch box, and is mounted in a switch box embedded in a wall surface or an embedded hole opened in the wall surface via a switch box mounting frame. An instrument body that exposes the front surface outside the wall, a lamp that is formed in the instrument body, is housed in a lamp housing part that is open on the front side of the instrument body, and emits illumination light outside the instrument body from the front opening part of the lamp housing part A heat ray sensor that is housed in the appliance body and senses heat rays coming from the front of the appliance body, and is stored in the appliance body and the lamp is turned on when the detection output of the heat ray sensor rises, and then the detection output of the heat ray sensor rises. down and comprising a control circuit for turning off the lamp after a predetermined time, and a switch to cut off the power when the lamp is replaced, the front surface of the instrument body heat A light receiving window is provided in the light receiving window, and a condensing lens for condensing the heat rays from the front of the instrument main body on the detection surface of the heat ray sensor in the instrument main body is provided with a plurality of different optical axes. A reflective mirror that attaches the provided lens body and reflects the heat rays that pass outside the effective visual field of the inner heat ray sensor of the heat ray that has passed through the condenser lens on the back side of the lens main body so as to pass through the effective visual field of the heat ray sensor. Because it is provided , the instrument body can be embedded in the wall in the switch box or in the embedded hole provided in the wall like a normal embedded wiring appliance, so the amount protruding outside is small, and it is provided on the wall of the narrow corridor In addition, the lamp can be turned on automatically when a person approaches, and the lamp can be turned off automatically when a person moves away. As a manual operation, there is an effect that it is possible to prevent the user from forgetting to turn it off, and it is possible to prevent the user from forgetting to turn it off. As a result, the lamp does not blink, and the user is not uncomfortable. Furthermore, there is an effect that heat rays can be collected from a wide range while suppressing the protrusion amount of the lens body.
[0043]
According to the second aspect of the present invention, the inner wall of the wall surrounding the housing part of the heat ray sensor and the adjacent wall are double walls, so that the heat insulation between the lamp housing part and the housing part of the heat ray sensor can be achieved. There is an effect that the heat of the lamp can be prevented from affecting the heat ray sensor.
[0044]
According to a third aspect of the present invention, an air inflow hole communicating with the outside of the fixture body is opened on the wall surface of the lamp housing portion located below the lamp placement position, and the wall surface of the lamp housing portion located above the lamp placement position is provided outside the fixture body. Opening the communicating air outflow hole, it is possible to exhaust the heated air in the lamp housing part out of the fixture body by convection caused by the heat generated by the lamp, and inhale cold air from the outside, so that the temperature inside the lamp housing part rises There is an effect that can be suppressed.
[0045]
According to a fourth aspect of the present invention, a brightness sensor that detects the brightness level of outside light outside the instrument body is added to the lamp body, and the lamp is detected when the brightness level detected by the brightness sensor is equal to or higher than a predetermined level. Since the control circuit is equipped with a function to cancel the lighting operation of the lamp, it is possible to eliminate unnecessary power consumption without turning on the lamp even when a person approaches in a bright state where illumination of the lamp is unnecessary. .
[Brief description of the drawings]
FIG. 1 is a circuit diagram of an embodiment of the present invention.
FIG. 2 is an exploded perspective view of the above.
FIG. 3 is an exploded perspective view of the above.
FIG. 4A is a front view of the same.
(B) is a side view of the above.
(C) is a rear view of the above.
FIG. 5 is a cross-sectional view showing a wall-mounted state of the above.
FIG. 6 is an explanatory diagram of the above optical system.
FIG. 7 is an explanatory diagram of another optical system according to the above.
FIG. 8 is an explanatory diagram of another optical system as described above.
FIG. 9 is an explanatory diagram of still another optical system according to the same.
FIG. 10 is an explanatory diagram of still another optical system according to the first embodiment.
FIG. 11 is an explanatory diagram of still another optical system according to the same.
FIG. 12 is an explanatory diagram of a light condensing range of the optical system according to the embodiment.
[Explanation of symbols]
5 Incandescent lamp 40 Control circuit 42 Light receiving element 43 Pyroelectric element S Switch element

Claims (4)

規格化されたスイッチボックスに対応する寸法モジュールで形成され、スイッチボックス取り付け用取付枠を介して壁面に埋設されたスイッチボックス内又は壁面に開口した埋め込み穴内に取付けられ、前面を壁面外に露出する器具本体と、この器具本体内に形成され器具本体の前面側が開口したランプ収納部に収納され、ランプ収納部の前面開口部より器具本体外に照明光を出すランプと、器具本体に収納されて器具本体の前方から来る熱線を感知する熱線センサと、器具本体に収納され、熱線センサの検出出力の立ち上がりがあるとランプを点灯させ、その後熱線センサの検出出力の立ち下がると一定時間後にランプを消灯させる制御回路と、ランプ交換時に電源を遮断するスイッチとを備え、器具本体の前面には熱線を内部に取り込む受光窓を設け、この受光窓には器具本体の前方からの熱線を器具本体内の熱線センサの検知面に集光させる集光レンズを複数夫々の光軸の方向を異ならせて設けたレンズ本体を被着するとともに、レンズ本体の裏側に集光レンズを通過した熱線の内熱線センサの有効視野外へ向かう熱線を、熱線センサの有効視野内を通るように反射させる反射ミラーを設けたことを特徴とする照明器具。Formed with a dimensional module corresponding to a standardized switch box, it is mounted in the switch box embedded in the wall surface through the switch box mounting frame or in the embedded hole opened in the wall surface, and the front surface is exposed outside the wall surface. The instrument main body, a lamp that is formed in the instrument main body and is opened in the front side of the instrument main body and is opened in the front of the instrument main body. A heat ray sensor that senses the heat rays coming from the front of the appliance main body and a lamp that is housed in the appliance main body and that turns on when the detection output of the heat ray sensor rises, and then turns on the lamp after a certain time when the detection output of the heat ray sensor falls. and a control circuit for turning off, a switch to cut off the power when the lamp is replaced, the front surface of the instrument body incorporating heat rays inside A lens body provided with a light window, and a condensing lens for condensing heat rays from the front of the instrument body on the detection surface of the heat ray sensor in the instrument body, with different directions of the respective optical axes. And a reflection mirror is provided on the back side of the lens body to reflect the heat rays that pass through the condenser lens outside the effective field of the inner heat ray sensor so that they pass through the effective field of the heat ray sensor. Characteristic lighting equipment. 熱線センサの収納部位を囲繞する壁の内ランプ収納部と隣接する壁を2重の壁としたことを特徴とする請求項1記載の照明器具。The lighting fixture according to claim 1, wherein the wall adjacent to the inner lamp housing portion of the wall surrounding the housing portion of the heat ray sensor is a double wall. ランプ配置位置より下方位置のランプ収納部の壁面に器具本体外に連通する空気流入孔を開口するとともにランプ配置位置より上方位置のランプ収納部の壁面に器具本体外部に連通する空気流出孔を開口したことを特徴とする請求項1記載の照明器具。An air inflow hole communicating with the outside of the fixture body is opened on the wall surface of the lamp housing portion below the lamp placement position, and an air outflow hole communicating with the outside of the fixture body is opened on the wall surface of the lamp housing portion located above the lamp placement position. The lighting fixture according to claim 1, wherein 器具本体に収納され、器具本体外の外光の明るさレベルを検知する明るさセンサを付加し、この明るさセンサの検知する明るさレベルが所定レベル以上のときランプの点灯動作をキャンセルさせる機能を制御回路に備えたことを特徴とする請求項1記載の照明器具。 A function that is housed in the fixture body and adds a brightness sensor that detects the brightness level of external light outside the fixture body, and cancels the lighting operation of the lamp when the brightness level detected by the brightness sensor exceeds a predetermined level. The lighting apparatus according to claim 1 , further comprising: a control circuit .
JP31224494A 1994-12-15 1994-12-15 lighting equipment Expired - Fee Related JP3899529B2 (en)

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JP31224494A JP3899529B2 (en) 1994-12-15 1994-12-15 lighting equipment

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Application Number Priority Date Filing Date Title
JP31224494A JP3899529B2 (en) 1994-12-15 1994-12-15 lighting equipment

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JPH08167480A JPH08167480A (en) 1996-06-25
JP3899529B2 true JP3899529B2 (en) 2007-03-28

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JP4827575B2 (en) * 2006-03-29 2011-11-30 三菱電機株式会社 lighting equipment
DE102011076420A1 (en) 2011-05-24 2012-11-29 Excelitas Technologies Gmbh & Co. Kg Radiation detection device, circuit

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