JP2006050454A - Image device - Google Patents

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Publication number
JP2006050454A
JP2006050454A JP2004231483A JP2004231483A JP2006050454A JP 2006050454 A JP2006050454 A JP 2006050454A JP 2004231483 A JP2004231483 A JP 2004231483A JP 2004231483 A JP2004231483 A JP 2004231483A JP 2006050454 A JP2006050454 A JP 2006050454A
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camera
movable cover
mounting board
image
light emitting
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JP4315079B2 (en
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Kenji Sakamoto
健二 阪本
Shintaro Yamamoto
慎太郎 山本
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Panasonic Electric Works Co Ltd
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Matsushita Electric Works Ltd
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Abstract

<P>PROBLEM TO BE SOLVED: To provide an image device in which a main body having an in-built image pickup camera unit is easily detached from the ceiling. <P>SOLUTION: A camera mounting substrate 49 mounted with the image pickup camera unit 101, and LED mounting substrates 48a-48c mounted with a group of light-emitting diode LEDs for near-infrared ray emission, are integrally held in a movable cover 46, thereby constituting a camera block A. <P>COPYRIGHT: (C)2006,JPO&NCIPI

Description

本発明は、画像センサ装置や監視カメラ等に用いる画像装置に関するものである。   The present invention relates to an image device used for an image sensor device, a surveillance camera, and the like.

従来近赤外線領域に感度を持つ撮像カメラ部を備えるとともに近赤外光を発光する発光ダイオードを備え、夜間等において発光ダイオードから近赤外光光を発光させて夜間の撮影ができるようになっている。
特許第3247229号公報(段落番号0006)
Conventionally, it has an imaging camera unit with sensitivity in the near-infrared region and a light-emitting diode that emits near-infrared light. At night, it can emit night-light by emitting near-infrared light from the light-emitting diode. Yes.
Japanese Patent No. 3247229 (paragraph number 0006)

前記の特許文献1に示されているカメラ装置の発光ダイオードの取り付けは専用の基台を用いて行っているため、構造が複雑で、組み立て性が悪いという問題があった。   Since the mounting of the light emitting diode of the camera device disclosed in Patent Document 1 is performed using a dedicated base, there is a problem that the structure is complicated and the assemblability is poor.

本発明は、上述の点に鑑みて為されたもので、その目的とするところ夜間撮影が可能な撮像カメラ部を備えた画像装置において、構造が簡略で、組み立て性に優れた画像装置を提供することにある。   SUMMARY OF THE INVENTION The present invention has been made in view of the above-described points, and an image apparatus having an imaging camera unit capable of night-time shooting is provided with a simple structure and excellent assemblability. There is to do.

上述の目的を達成するために、請求項1の発明では、天井等の造営物に取り付けられる本体内に固定的に配置される固定用ベースと、該固定用ベースに対して変位可能で暗視用の撮像カメラ部を固定内蔵した可動カバーとを有した画像装置において、前記撮像カメラ部を実装したカメラ実装基板と、赤外光発光用の発光ダイオードを実装したLED実装基板とを可動カバーにて一体的に保持していることを特徴とする。   In order to achieve the above object, according to the first aspect of the present invention, there is provided a fixing base which is fixedly disposed in a main body attached to a construction such as a ceiling, and is displaceable with respect to the fixing base and night vision. In an image apparatus having a movable cover with a fixed built-in imaging camera unit, the movable mounting unit includes a camera mounting substrate on which the imaging camera unit is mounted and an LED mounting substrate on which a light emitting diode for infrared light emission is mounted. It is characterized by being held together.

請求項1の発明によれば、可動カバーで撮像カメラ部を実装したカメラ実装基板と、赤外光発光用の発光ダイオードを実装したLED実装基板とを保持するいう簡略な構造で撮像カメラ部及び発光ダイオードを共に同時に変位でき、しかも夫々の実装基板を保持させるだけで良いため組み立て性に優れ製造効率を向上させることができる。   According to the invention of claim 1, the imaging camera unit and the camera mounting board on which the imaging camera unit is mounted with the movable cover and the LED mounting board on which the light emitting diode for infrared light emission is mounted are held in a simple structure. Since both the light emitting diodes can be displaced at the same time and it is only necessary to hold the respective mounting substrates, the assembly efficiency is excellent and the manufacturing efficiency can be improved.

請求項2の発明では、請求項1の発明において、前記LED実装基板を、夫々に実装している発光ダイオードの照射方向が異なるように保持する保持部位を可動カバーに設けていることを特徴とする。   According to a second aspect of the present invention, in the first aspect of the invention, the movable cover is provided with a holding portion for holding the LED mounting board so that the irradiation directions of the light emitting diodes mounted on the LED mounting boards are different. To do.

請求項2の発明によれば、広い範囲で赤外光の照射ができ、照射効率の向上が図れる。   According to the invention of claim 2, infrared light can be irradiated in a wide range, and the irradiation efficiency can be improved.

請求項3の発明では、請求項1又は2の発明において、前記カメラ実装基板を中央に保持するとともに、該カメラ実装基板の保持部位の周囲に複数の前記LED実装基板を保持し、各LED実装基板に実装された発光ダイオードと、前記カメラ実装基板に配設された前記撮像カメラ部のレンズ部との間に隔壁を設けていることを特徴とする。   According to a third aspect of the invention, in the first or second aspect of the invention, the camera mounting board is held in the center, and a plurality of the LED mounting boards are held around a holding portion of the camera mounting board. A partition wall is provided between the light emitting diode mounted on the substrate and the lens unit of the imaging camera unit disposed on the camera mounting substrate.

請求項3の発明によれば、発光ダイオードから照射される赤外光が直接レンズ部に入るのを隔壁により防ぐことができる。 According to the invention of claim 3, it is possible to prevent the infrared light irradiated from the light emitting diode from directly entering the lens portion by the partition wall.

請求項4の発明では、請求項3の発明によれば、前記隔壁の端面に前記レンズ部を囲み、前記本体の透光部位の内面と圧接する密封部を設けていることを特徴とする。   According to a fourth aspect of the present invention, in accordance with the third aspect of the present invention, a sealing portion is provided on the end face of the partition wall so as to surround the lens portion and press-contact with the inner surface of the light transmitting portion of the main body.

請求項4の発明によれば、本体内面で反射された赤外光がレンズ部に入射するのを防ぐことで、反射光による映り込みを防げる。   According to the invention of claim 4, reflection of reflected light can be prevented by preventing the infrared light reflected by the inner surface of the main body from entering the lens portion.

請求項5の発明では、請求項3又は4の発明において、前記隔壁の一部が前記可動カバーの変位操作するための把持部を構成していることを特徴とする。   According to a fifth aspect of the present invention, in the third or fourth aspect of the present invention, a part of the partition wall constitutes a grip portion for operating the displacement of the movable cover.

請求項5の発明によれば、把持部によって可動カバーを変位させる操作がし易くなる。   According to the fifth aspect of the invention, the operation of displacing the movable cover by the grip portion is facilitated.

本発明は、可動カバーで撮像カメラ部を実装したカメラ実装基板と、赤外光発光用の発光ダイオードを実装したLED実装基板とを保持するいう簡略な構造で撮像カメラ部及び発光ダイオードを共に同時に変位でき、しかも夫々の実装基板を保持させるだけで良いため組み立て性に優れ製造効率を向上させることができるという効果がある。   The present invention has a simple structure of holding a camera mounting board on which an imaging camera unit is mounted with a movable cover and an LED mounting board on which a light emitting diode for infrared light emission is mounted. Since it is only necessary to hold the respective mounting substrates, the assembly can be easily performed and the manufacturing efficiency can be improved.

以下本発明を一実施形態により説明する。   The present invention will be described below with reference to an embodiment.

本実施形態を図1〜図10を用いて説明する。本実施形態の画像装置は図2に示すように天井に取り付けられる取り付け用ベース1と、この取り付け用ベース1の下面に着脱自在に取り付けられる本体2とで構成される。   The present embodiment will be described with reference to FIGS. As shown in FIG. 2, the image apparatus according to the present embodiment includes an attachment base 1 that is attached to the ceiling and a main body 2 that is detachably attached to the lower surface of the attachment base 1.

本体2は外形が円錐台状で両端が貫通した筒状の非透光性の合成樹脂成形品からなる隠蔽用のボディ28と、このボディ28の上側開口に被着される合成樹脂成形品からなる天井カバー29と、下側開口に被着するドーム状の近赤外線のみを透過させる合成樹脂成形品からなるカバー(以下透光性カバーという)3と、ボディ28内に組み込むカメラブロックA等で構成される。   The main body 2 includes a concealing body 28 made of a cylindrical non-translucent synthetic resin molded product whose outer shape is a truncated cone and has both ends penetrated, and a synthetic resin molded product attached to the upper opening of the body 28. A ceiling cover 29, a cover 3 (hereinafter referred to as a translucent cover) 3 made of a synthetic resin molding that transmits only a dome-shaped near infrared ray that is attached to the lower opening, a camera block A incorporated in the body 28, and the like. Composed.

ボディ28は図3に示すように下端開口内縁に内向きのフランジ28aを一体突設し、このフランジ28aに周方向において等間隔に設けた3つの円弧状孔28bに、カバ−3の上端縁に等間隔に上向きに突出形成した3つの逆L字状の係止突片30を下方から挿入して透光性カバー3を所定方向に回転させることで、フランジ28aを係止突片30の横片30aと透光性カバー3の上端縁との間に圧入挟持させ、透光性カバー3を着脱自在に固定するようなっている。   As shown in FIG. 3, the body 28 has an inward flange 28a integrally projecting on the inner edge of the lower end opening, and the upper end edge of the cover 3 is formed in three arc-shaped holes 28b provided at equal intervals in the circumferential direction on the flange 28a. By inserting three inverted L-shaped locking projections 30 protruding upward at equal intervals from below and rotating the translucent cover 3 in a predetermined direction, the flange 28a is fixed to the locking projection 30. The translucent cover 3 is detachably fixed by press-fitting between the horizontal piece 30a and the upper end edge of the translucent cover 3.

またボディ28の内周壁に沿って上下方向に形成した天井カバー固定用の支持柱31を周方向に所定間隔形成するとともに、天井カバー29の下面周辺部を載置するリブ(図示せず)を内周壁に沿うように形成している。   Further, the support pillars 31 for fixing the ceiling cover that are formed in the vertical direction along the inner peripheral wall of the body 28 are formed at predetermined intervals in the circumferential direction, and ribs (not shown) for mounting the lower peripheral portion of the ceiling cover 29 are provided. It is formed along the inner peripheral wall.

天井カバー29はボディ2の上面開口からボディ2内に嵌め、前記支持柱31の上端面及びリブ(図示せず)の上端面に下面部を載せ、この状態で支持柱31の位置に対応した挿通孔(図示せず)を介してタッピングねじ(図示せず)を支持柱31の上端面に開口した取り付け孔(図示せず)に螺入締結することでボディ2の上面開口に固定されるもので、上面部には取り付け用ベース1の下面部に形成した被係合部(図示せず)に係合して取り付け用ベース1に着脱自在に装着するための係止爪6や係合爪6’(図10参照)などからなる係合部を備えている。   The ceiling cover 29 is fitted into the body 2 from the upper surface opening of the body 2, and the lower surface portion is placed on the upper end surface of the support column 31 and the upper end surface of the rib (not shown), and in this state, it corresponds to the position of the support column 31. A tapping screw (not shown) is screwed and fastened into an attachment hole (not shown) opened on the upper end surface of the support column 31 through an insertion hole (not shown) to be fixed to the upper surface opening of the body 2. Therefore, the upper surface portion engages with an engaged portion (not shown) formed on the lower surface portion of the mounting base 1 so as to be detachably mounted on the mounting base 1 and the engaging claw 6. An engaging portion including a claw 6 ′ (see FIG. 10) is provided.

そして天井カバー29の上面部には前記係合部外に、取り付け用ベース1の下面部1b側に配設されたコネクタ27に対して脱着自在に結合される雄状のコネクタ(図示せず)や各種設定のディップスイッチ部(図示せず)の操作部を露出させている。   A male connector (not shown) is detachably coupled to the upper surface portion of the ceiling cover 29 to the connector 27 disposed on the lower surface portion 1b side of the mounting base 1 outside the engaging portion. In addition, an operation unit of a dip switch unit (not shown) of various settings is exposed.

一方天井カバー29の下面部には、上述のコネクタや設定用ディップスイッチ部等を実装した基板(図示せず)や画像処理等の信号処理回路の電子部品を実装した基板(図示せず)を配設する配設部位を構成し、また後述するカメラブロックAを回動自在に軸支するための支持脚体57、更にカメラブロックAの後部を被蔽保護する保護カバー45を配設する部位を備えている。つまり天井カバー29は本体2内に構成部材を固定保持する固定用ベースを構成する。   On the other hand, on the lower surface of the ceiling cover 29, a board (not shown) on which the above-described connectors and setting dip switch parts are mounted, and a board (not shown) on which electronic components of a signal processing circuit such as image processing are mounted. The part which arrange | positions the arrangement | positioning site | part arrange | positioned, and also arrange | positions the protective cover 45 which covers and protects the rear part of the camera block A further, the support leg 57 for pivotally supporting the camera block A mentioned later rotatably It has. That is, the ceiling cover 29 constitutes a fixing base that fixes and holds the constituent members in the main body 2.

カメラブロックAは、可動カバー46に近赤外光発光用のダイオードLED群を実装した3枚の実装基板48a〜48cや、撮像カメラ部101を実装しているカメラ実装基板49を一体的に保持させてブロック化したものである。   The camera block A integrally holds three mounting boards 48 a to 48 c each having a near infrared light emitting diode LED group mounted on the movable cover 46 and a camera mounting board 49 on which the imaging camera unit 101 is mounted. It is made to block.

可動カバー46は後部が開口した浅い合成樹脂成型品の函状体からなり、中央部を前方へ膨出させるとともに、この中央膨出部46aの両側部の前面部を中央位置から後方に後退する形で傾斜させている。そして中央膨出部46aの上側面部にはLED実装基板48aに実装している発光ダイオードLED群を内部より臨ませる開口窓46bを開口し、この開口窓46bに対してやや斜め下方に向いた下側面部には撮像カメラ部101のレンズ部51を内部より臨ませる窓孔46cを開口し、中央膨出部46aの両側の前面部にはLED実装基板48b、48cに実装している発光ダイオードLED群を内部より臨ませる開口窓46b’、46b’を開口している。   The movable cover 46 is formed of a shallow synthetic resin molded box having a rear opening, and bulges the central portion forward, and retracts the front portions on both sides of the central bulged portion 46a backward from the central position. The shape is inclined. An opening window 46b is formed on the upper side surface of the central bulging part 46a so that the light emitting diode LED group mounted on the LED mounting board 48a faces from the inside. The opening window 46b is slightly inclined downward with respect to the opening window 46b. A window hole 46c for allowing the lens portion 51 of the image pickup camera unit 101 to face from the inside is opened on the lower side surface, and the light emitting diodes mounted on the LED mounting boards 48b and 48c on the front surface on both sides of the central bulging portion 46a. Opening windows 46b 'and 46b' that allow the LED group to face from the inside are opened.

ここで各LED実装基板48a〜48cの可動カバー46への取り付けは、各開口窓46b、46b’の長手方向側両端部近傍の可動カバー46の内側壁に設けた係止爪47や係止爪47’を用い、基板両端の後面に前記係止爪47や47’を係止させてLED実装基板48a〜48cを可動カバー46の内側面部と前記係止爪47や47’とで挟持固定させることで行うようになっている。   Here, the LED mounting boards 48a to 48c are attached to the movable cover 46 by the locking claws 47 and the locking claws provided on the inner wall of the movable cover 46 in the vicinity of both ends of the opening windows 46b and 46b ′ in the longitudinal direction. 47 'is used to hold the locking claws 47 and 47' on the rear surfaces of both ends of the board, and the LED mounting boards 48a to 48c are sandwiched and fixed between the inner side surface of the movable cover 46 and the locking claws 47 and 47 '. It has come to be done.

而してLED実装基板48a〜48cは可動カバ−46に一体的に保持され、中央に配置される発光ダイオードLED群の照射方向は前方にまた左右両側に配置される発光ダイオードLED群の照射方向は前方で且つ中央より遠ざかる斜め方向となって3者の照射方向(図8参照)が異なり、照射効率の向上を図っている。   Thus, the LED mounting boards 48a to 48c are integrally held by the movable cover 46, and the irradiation direction of the light emitting diode LED group arranged at the center is the irradiation direction of the light emitting diode LED group arranged forward and left and right. Is an oblique direction that is forward and away from the center, and the irradiation directions of the three persons (see FIG. 8) are different to improve the irradiation efficiency.

一方カメラ実装基板49は、可動カバー46の後開口部に被着固定され、実装している撮像カメラ部101のレンズ部51を開口窓46cより外部に臨ませる。ここでカメラ実装基板49は両側に取り付け耳片53に設けた取り付け孔53aを介してタッピングねじ7を可動カバー46に締結することで可動カバー46に固定される。このようにして可動カバー46に各基板48a〜48c及び49を組み付けることによりカメラブロックAが構成される。尚撮像カメラ部101は基板101aにCCD素子(図示せず)とレンズ部51を実装したもので構成され、基板101aがカメラ実装基板49上に実装される。   On the other hand, the camera mounting board 49 is fixedly attached to the rear opening of the movable cover 46 so that the lens section 51 of the mounted imaging camera section 101 is exposed to the outside through the opening window 46c. Here, the camera mounting board 49 is fixed to the movable cover 46 by fastening the tapping screw 7 to the movable cover 46 through the attachment holes 53 a provided in the attachment ear pieces 53 on both sides. Thus, the camera block A is configured by assembling the substrates 48a to 48c and 49 to the movable cover 46. The imaging camera unit 101 is configured by mounting a CCD element (not shown) and a lens unit 51 on a substrate 101 a, and the substrate 101 a is mounted on a camera mounting substrate 49.

図9(a)は3つの発光ダイオードLED群の水平方向の照射方向と撮像カメラ部101の水平画角Θとの関係を示した模式図であり、使用する発光ダイオードの光軸中心に対する半値角をθとした場合、中央部の発光ダイオードLEDaの光軸中心αから左右の発光ダイオードLEDc、LEDbの光軸中心βまでの角度を2θとなるように可動カバー46への基板取り付けを行っている。これにより撮像範囲の水平方向において均一な近赤外光の照射を可能としている。図8は水平方向の照射関係を示す模式図である。また図9(b)は垂直方向の照射方向と撮像カメラ部101の垂直画角Θ’との関係を示しており、この図では天井X側の画角Θ’の外端と、赤外光照射の角度θの外端とを一致させ、画角Θ’内に収まる範囲において最も遠方までの近赤外光の照射を可能とするようにしている。    FIG. 9A is a schematic diagram showing the relationship between the horizontal irradiation direction of the three light emitting diode LED groups and the horizontal angle of view Θ of the imaging camera unit 101, and the half-value angle with respect to the optical axis center of the light emitting diode to be used. Is attached to the movable cover 46 so that the angle from the optical axis center α of the central light emitting diode LEDa to the optical axis centers β of the left and right light emitting diodes LEDc and LEDb is 2θ. . Thereby, it is possible to irradiate uniform near infrared light in the horizontal direction of the imaging range. FIG. 8 is a schematic diagram showing the irradiation relationship in the horizontal direction. FIG. 9B shows the relationship between the vertical irradiation direction and the vertical angle of view Θ ′ of the imaging camera unit 101. In this figure, the outer end of the angle of view Θ ′ on the ceiling X side and infrared light are shown. The outer end of the irradiation angle θ is made coincident, and near-infrared light can be irradiated to the farthest in a range that falls within the angle of view Θ ′.

ところで可動カバー46は、レンズ部51を臨ませる窓孔46cを開口している面を囲む周部を、窓孔46cを開口した面より高く形成し、周囲の発光ダイオードLEDからの近赤外光がレンズ部51に直接照射されるのを防ぐ隔壁52としている。またその隔壁52の前面に沿って環状の弾性ゴム54を貼り付けている。この弾性ゴム54は図10に示すようにボディ28の下面開口に被着される透光性カバー3の内面に密着する密封部を構成し、周囲からの近赤外光光による反射によって生じる映り込みを防止する。   By the way, the movable cover 46 is formed with a peripheral portion surrounding the surface opening the window hole 46c facing the lens unit 51 higher than the surface opening the window hole 46c, and near-infrared light from the surrounding light emitting diodes LED. The partition wall 52 prevents the lens unit 51 from being directly irradiated. An annular elastic rubber 54 is attached along the front surface of the partition wall 52. As shown in FIG. 10, the elastic rubber 54 constitutes a sealing portion that is in close contact with the inner surface of the translucent cover 3 that is attached to the lower surface opening of the body 28, and is produced by reflection from near infrared light from the surroundings. To prevent intrusion.

更にレンズ部51を臨ませる窓孔46cの両側に位置する上記隔壁52を含めた中央膨出部46aの両側面には滑り止めのローレット部55を形成しており、このローレット部55の形成部位により後述するカメラブロックAの回動させる際に手で掴む把持部を構成している。   Further, non-slip knurled portions 55 are formed on both side surfaces of the central bulging portion 46a including the partition wall 52 located on both sides of the window hole 46c facing the lens portion 51. This constitutes a gripping part that is gripped by hand when a camera block A to be described later is rotated.

而して上述のように構成されたカメラブロックAの天井カバー29への取り付けは次のように行う。つまり可動カバー46を天井カバー29の下面部中央の両側から下向きに一体突出させた支持脚体57,57間に嵌め、可動カバー46の両側面に突出している軸体56,56を支持脚体57に設けている軸孔58,58に内側から回動自在に挿着することで、天井カバー29に取り付けるのである。   Thus, the camera block A configured as described above is attached to the ceiling cover 29 as follows. That is, the movable cover 46 is fitted between the support legs 57 and 57 integrally projecting downward from both sides of the center of the lower surface of the ceiling cover 29, and the shaft bodies 56 and 56 projecting on both sides of the movable cover 46 are supported by the support legs. It is attached to the ceiling cover 29 by being rotatably inserted into the shaft holes 58 and 58 provided in 57 from the inside.

ここで軸体56は軸方向に孔が設けられるとともにこの孔56aを囲む環状周壁に直径方向に割溝56bを図6に示すように形成したものであって、上記軸孔58に挿通した状態で孔56aの先端からねじ71を図3にに示すように螺入して周壁外面を拡げることで軸孔58の内周面に圧接させ、この圧接によって得られる摩擦力により可動カバー46の回動位置(調整位置)を固定し振動などによって不用意に変化するのを防止するようになっている。   Here, the shaft body 56 is provided with a hole in the axial direction, and is formed with an annular peripheral wall surrounding the hole 56a in a diametrical direction as shown in FIG. 6, and is inserted through the shaft hole 58. Then, the screw 71 is screwed in from the tip of the hole 56a as shown in FIG. 3 to expand the outer surface of the peripheral wall to press the inner peripheral surface of the shaft hole 58, and the frictional force obtained by the press contact causes the movable cover 46 to rotate. The moving position (adjustment position) is fixed to prevent inadvertent changes due to vibration or the like.

また支持脚体57の下端面は回転中心と同心の円弧状面を底面とする切欠57aを設けるとともに、この切欠57aに対応する可動カバー46の両側面には、可動カバー46の回動に伴って切欠57a内を移動し、切欠57aの両端部に当たることで、可動カバー46の回動範囲を規制する突起59を突設している。   Further, the lower end surface of the support leg 57 is provided with a notch 57a whose bottom surface is an arcuate surface concentric with the center of rotation, and on both sides of the movable cover 46 corresponding to the notch 57a, the movable cover 46 is rotated. Then, the projection 59 is provided so as to move within the cutout 57a and hit the both ends of the cutout 57a to restrict the rotation range of the movable cover 46.

保護カバー45は前方と上面とが開口した凹所45aを正面側に設け、背部の外側にはその上端の両側間に亘るように略円弧状のフランジ45bを一体に設けたもので、フランジ45bの上面を上記支持脚体57の位置より後側となる天井カバー29の下面部に設けているリブ(図示せず)や突台29aの下端に当接させて天井カバー29の上面側から螺入されるタッピングねじ(図示せず)により天井カバー29の下面部に固定され、前部凹所45a内に可動カバー46の後部を回動自在に収納する。   The protective cover 45 is provided with a recess 45a having an opening at the front and upper surface on the front side, and a substantially arc-shaped flange 45b integrally provided on the outer side of the back so as to extend between both sides of the upper end. The upper surface of the ceiling cover 29 is brought into contact with the lower end of the bottom surface of the ceiling cover 29 and a rib (not shown) provided on the lower surface of the ceiling cover 29 on the rear side from the position of the support leg 57 and is screwed from the upper surface side of the ceiling cover 29. It is fixed to the lower surface portion of the ceiling cover 29 by a tapping screw (not shown), and the rear portion of the movable cover 46 is rotatably housed in the front recess 45a.

また保護カバー45は背部内側に検知エリアの任意のエリアを非検知エリアに設定するためのマスクを操作するマスク操作部(図示せず)や透光性カバー3の脱着を検知するダンパースイッチ(図示せず)を設けている。   Further, the protective cover 45 has a mask operation part (not shown) for operating a mask for setting an arbitrary area of the detection area as a non-detection area inside the back part, and a damper switch (not shown) for detecting the attachment / detachment of the translucent cover 3. Not shown).

天井カバー29の下面部の正面側周辺部に配設される人体検知センサブロックBはボディ28の正面側中央部に形成された開口窓28cに嵌められた熱線透過カバー64を介して入射する熱線を反射して焦電素子62に集光する反射鏡65と、焦電素子62や付随回路を実装した基板66とで構成され、焦電素子62の検出信号はコネクタ付きリード線(図示せず)を介して内蔵した回路部へ送られ、撮像カメラ部101の画像を用いたセンサと併用されるようになっている。   The human body detection sensor block B disposed in the front side peripheral portion of the lower surface portion of the ceiling cover 29 enters heat rays through a heat ray transmitting cover 64 fitted in an opening window 28c formed in the front side center portion of the body 28. And a substrate 66 on which the pyroelectric element 62 and associated circuits are mounted. The detection signal of the pyroelectric element 62 is a lead wire with a connector (not shown). ) To a built-in circuit unit, and is used together with a sensor using an image of the imaging camera unit 101.

また天井カバー29の下面部の片側周辺部に配設されるマイクブロックCはマイク69とこのマイク69及び付随回路を実装した基板70とから構成され、マイク69で集音した音声信号は端子台26の音声出力端子を通じて外部へ出力されるようになっている。   The microphone block C disposed in the peripheral portion on one side of the lower surface portion of the ceiling cover 29 is composed of a microphone 69 and a substrate 70 on which the microphone 69 and an accompanying circuit are mounted. An audio signal collected by the microphone 69 is a terminal block. It is output to the outside through 26 audio output terminals.

以上のように下面部にカメラブロックA、人体検知ブロックB、マイクブロックC及び保護カバー45を組み付けた天井カバ−29をボディ28の上面開口部を塞ぐようにボディ28に取り付け、更にボディ28の下面開口部に透光性カバー3を被着することで本体2が構成されることになる。   As described above, the ceiling cover 29 in which the camera block A, the human body detection block B, the microphone block C, and the protective cover 45 are assembled to the lower surface portion is attached to the body 28 so as to close the upper surface opening of the body 28. The main body 2 is configured by attaching the translucent cover 3 to the lower surface opening.

このように構成された本体2と上述の取り付け用ベース1とを用いて所定の天井に取り付ける場合には、先に取り付け用ベース1を取り付けねじにより天井裏のボックス或いは直接天井に固定し、この固定された取り付け用ベース1の下面側に本体2を取り付けることで、画像装置の設置が完了することになる。   When mounting on a predetermined ceiling using the main body 2 and the mounting base 1 described above, the mounting base 1 is first fixed to a box on the back of the ceiling or directly to the ceiling with mounting screws. By mounting the main body 2 on the lower surface side of the fixed mounting base 1, the installation of the image device is completed.

一実施形態のカメラブロックの分解斜視図である。It is a disassembled perspective view of the camera block of one Embodiment. 一実施形態の分解斜視図である。It is a disassembled perspective view of one Embodiment. 一実施形態の透光性カバーを除いた本体の分解斜視図である。It is a disassembled perspective view of the main body except the translucent cover of one Embodiment. 一実施形態のカメラブロックと天井カバーとの分解斜視図である。It is a disassembled perspective view of the camera block and ceiling cover of one Embodiment. 一実施形態のカメラブロックの背方からみた分解斜視図である。It is the disassembled perspective view seen from the back of the camera block of one Embodiment. 一実施形態のカメラブロックの側面図である。It is a side view of the camera block of one embodiment. 一実施形態のカメラブロックの側断面図である。It is a sectional side view of the camera block of one embodiment. 一実施形態の発光ダイオードの照射方向の関係説明図である。It is a relationship explanatory view of the irradiation direction of the light emitting diode of one embodiment. (a)は一実施形態の水平方向の発光ダイオードの照射角度と撮像カメラ部の水平画角との関係説明図、(b)は一実施形態の垂直方向の発光ダイオードの照射角度と撮像カメラ部の垂直画角の関係説明図である。(A) is explanatory drawing of the relationship between the irradiation angle of the light emitting diode of the horizontal direction of one Embodiment, and the horizontal angle of view of an imaging camera part, (b) is the irradiation angle of the light emitting diode of the vertical direction of one embodiment, and an imaging camera part. It is a relationship explanatory view of the vertical angle of view. 一実施形態の本体の断面図である。It is sectional drawing of the main body of one Embodiment.

符号の説明Explanation of symbols

46 可動ボディ
48a〜48c LED実装基板
49 カメラ実装基板
51 レンズ部
101 撮像カメラ部
A カメラブロック
46 Movable bodies 48a to 48c LED mounting substrate 49 Camera mounting substrate 51 Lens unit 101 Imaging camera unit A Camera block

Claims (5)

天井等の造営物に取り付けられる本体内に固定的に配置される固定用ベースと、該固定用ベースに対して変位可能で暗視用の撮像カメラ部を固定内蔵した可動カバーとを有した画像装置において、
前記撮像カメラ部を実装したカメラ実装基板と、赤外光発光用の発光ダイオードを実装したLED実装基板とを可動カバーにて一体的に保持していることを特徴とする画像装置。
An image having a fixing base that is fixedly arranged in a main body attached to a construction such as a ceiling, and a movable cover that is displaceable with respect to the fixing base and has a built-in imaging camera unit for night vision. In the device
An image device, wherein a camera mounting board on which the imaging camera unit is mounted and an LED mounting board on which a light emitting diode for emitting infrared light is mounted are integrally held by a movable cover.
前記LED実装基板を、夫々に実装している発光ダイオードの照射方向が異なるように保持する保持部位を可動カバーに設けていることを特徴とする請求項1記載の画像装置。 The image device according to claim 1, wherein a holding portion for holding the LED mounting substrate so that the irradiation directions of the light emitting diodes mounted on the LED mounting substrate are different is provided on the movable cover. 前記カメラ実装基板を中央に保持するとともに、該カメラ実装基板の保持部位の周囲に複数の前記LED実装基板を保持し、各LED実装基板に実装された発光ダイオードと、前記カメラ実装基板に配設された前記撮像カメラ部のレンズ部との間に隔壁を設けていることを特徴とする請求項1又は2記載の画像装置。 The camera mounting board is held in the center, a plurality of the LED mounting boards are held around a holding portion of the camera mounting board, and a light emitting diode mounted on each LED mounting board and disposed on the camera mounting board The image apparatus according to claim 1, wherein a partition wall is provided between the lens section of the image pickup camera section. 前記隔壁の端面に前記レンズ部を囲み、前記本体の透光部位の内面と圧接する密封部を設けていることを特徴とする請求項3記載の画像装置。 The image apparatus according to claim 3, wherein a sealing portion is provided on an end surface of the partition wall so as to surround the lens portion and press-contact with an inner surface of a light transmitting portion of the main body. 前記隔壁の一部が前記可動カバーの変位操作するための把持部を構成していることを特徴とする請求項3又は4記載の画像装置。 The image apparatus according to claim 3 or 4, wherein a part of the partition wall constitutes a grip part for operating the displacement of the movable cover.
JP2004231483A 2004-08-06 2004-08-06 Imaging device Expired - Fee Related JP4315079B2 (en)

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