JP5519168B2 - Fire detector - Google Patents

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JP5519168B2
JP5519168B2 JP2009079915A JP2009079915A JP5519168B2 JP 5519168 B2 JP5519168 B2 JP 5519168B2 JP 2009079915 A JP2009079915 A JP 2009079915A JP 2009079915 A JP2009079915 A JP 2009079915A JP 5519168 B2 JP5519168 B2 JP 5519168B2
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signal line
optical case
optical
element substrate
slit
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JP2010231613A (en
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健一 加藤
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Nohmi Bosai Ltd
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Nohmi Bosai Ltd
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Priority to JP2009079915A priority Critical patent/JP5519168B2/en
Priority to TW099107365A priority patent/TWI480837B/en
Priority to AU2010201098A priority patent/AU2010201098B2/en
Priority to EP14157052.3A priority patent/EP2738546A1/en
Priority to EP10157357.4A priority patent/EP2233916B1/en
Priority to CN201010140737.5A priority patent/CN101847306B/en
Priority to CN201310352824.0A priority patent/CN103514705B/en
Priority to KR1020100026445A priority patent/KR20100108240A/en
Priority to US12/731,574 priority patent/US8294895B2/en
Publication of JP2010231613A publication Critical patent/JP2010231613A/en
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    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N21/00Investigating or analysing materials by the use of optical means, i.e. using sub-millimetre waves, infrared, visible or ultraviolet light
    • G01N21/17Systems in which incident light is modified in accordance with the properties of the material investigated
    • G01N21/47Scattering, i.e. diffuse reflection
    • G01N21/49Scattering, i.e. diffuse reflection within a body or fluid
    • G01N21/53Scattering, i.e. diffuse reflection within a body or fluid within a flowing fluid, e.g. smoke
    • GPHYSICS
    • G08SIGNALLING
    • G08BSIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
    • G08B17/00Fire alarms; Alarms responsive to explosion
    • G08B17/10Actuation by presence of smoke or gases, e.g. automatic alarm devices for analysing flowing fluid materials by the use of optical means
    • G08B17/11Actuation by presence of smoke or gases, e.g. automatic alarm devices for analysing flowing fluid materials by the use of optical means using an ionisation chamber for detecting smoke or gas
    • G08B17/113Constructional details
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N21/00Investigating or analysing materials by the use of optical means, i.e. using sub-millimetre waves, infrared, visible or ultraviolet light
    • G01N21/17Systems in which incident light is modified in accordance with the properties of the material investigated
    • G01N21/25Colour; Spectral properties, i.e. comparison of effect of material on the light at two or more different wavelengths or wavelength bands
    • G01N21/31Investigating relative effect of material at wavelengths characteristic of specific elements or molecules, e.g. atomic absorption spectrometry
    • G01N21/35Investigating relative effect of material at wavelengths characteristic of specific elements or molecules, e.g. atomic absorption spectrometry using infrared light
    • G01N21/3504Investigating relative effect of material at wavelengths characteristic of specific elements or molecules, e.g. atomic absorption spectrometry using infrared light for analysing gases, e.g. multi-gas analysis
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N2201/00Features of devices classified in G01N21/00
    • G01N2201/02Mechanical
    • G01N2201/022Casings
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N2201/00Features of devices classified in G01N21/00
    • G01N2201/06Illumination; Optics
    • G01N2201/064Stray light conditioning
    • G01N2201/0642Light traps; baffles
    • GPHYSICS
    • G08SIGNALLING
    • G08BSIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
    • G08B17/00Fire alarms; Alarms responsive to explosion
    • G08B17/10Actuation by presence of smoke or gases, e.g. automatic alarm devices for analysing flowing fluid materials by the use of optical means
    • G08B17/103Actuation by presence of smoke or gases, e.g. automatic alarm devices for analysing flowing fluid materials by the use of optical means using a light emitting and receiving device
    • G08B17/107Actuation by presence of smoke or gases, e.g. automatic alarm devices for analysing flowing fluid materials by the use of optical means using a light emitting and receiving device for detecting light-scattering due to smoke

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  • Physics & Mathematics (AREA)
  • Analytical Chemistry (AREA)
  • Chemical & Material Sciences (AREA)
  • General Physics & Mathematics (AREA)
  • Health & Medical Sciences (AREA)
  • Emergency Management (AREA)
  • Business, Economics & Management (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Biochemistry (AREA)
  • General Health & Medical Sciences (AREA)
  • Immunology (AREA)
  • Pathology (AREA)
  • Investigating Or Analysing Materials By Optical Means (AREA)
  • Fire-Detection Mechanisms (AREA)

Description

この発明は、炎感知器や煙感知器などの火災感知器に関するものである。   The present invention relates to a fire detector such as a flame detector or a smoke detector.

家屋やビル等の火災監視区域には、煙感知器が配設されている。従来の煙感知器は、筐体(「光学ケース」ともいう)内に、発光素子を有する第1の素子基板と、受光素子を有する第2の素子基板と、が配設され、収容箱内に電源回路や電流制御回路やMPU等を有するメイン基板が配設されている。前記第1及び第2の素子基板と前記メイン基板との間での信号送受、電源供給等の電気的接続は、信号線を介して行なわれている。前記第1及び第2の素子基板に接続された前記信号線は、筐体の周壁に設けられた円形状の穴を通って、前記周壁の外面に沿って配設されている(例えば、特許文献1、参照)。   Smoke detectors are installed in fire monitoring areas such as houses and buildings. In a conventional smoke detector, a first element substrate having a light emitting element and a second element substrate having a light receiving element are disposed in a housing (also referred to as an “optical case”), and the inside of the storage box A main board having a power supply circuit, a current control circuit, an MPU, and the like is disposed. Electrical connections such as signal transmission / reception and power supply between the first and second element substrates and the main substrate are performed via signal lines. The signal line connected to the first and second element substrates is disposed along the outer surface of the peripheral wall through a circular hole provided in the peripheral wall of the housing (for example, a patent) Reference 1).

特開2008−082708号公報JP 2008-082708 A

前記煙感知器の点検修理等の際には、前記素子基板を筐体に出し入れしなければならないが、前記信号線は、円形状の穴に導入されているので、前記素子基板を筐体から取り出す場合には、該信号線を前記素子基板から分離しなければならず、又、前記素子基板を筐体内に戻した場合には、該素子基板と前記信号線とを接続しなければならない。この様に従来例では、素子基板を筐体から着脱する際に手間がかかるので、作業能率が低下する。   When the smoke detector is inspected and repaired, the element substrate must be taken in and out of the case. However, since the signal line is introduced into a circular hole, the element substrate is removed from the case. When the element substrate is taken out, the signal line must be separated from the element substrate. When the element substrate is returned to the housing, the element substrate and the signal line must be connected. As described above, in the conventional example, since it takes time to attach and detach the element substrate from the housing, the work efficiency is lowered.

この発明は、上記事情に鑑み、簡単に、素子基板を光学ケースに着脱できる様にすることを目的とする。   In view of the above circumstances, an object of the present invention is to enable an element substrate to be easily attached to and detached from an optical case.

この発明は、上面に開口部を有する光学ケース内に、受光素子を搭載した素子基板が配設され、前記素子基板には前記光学ケースの周壁の導入部を通る信号線が接続され、前記光学ケースの開口部が光学カバーにより閉鎖されている火災感知器において、前記導入部は、前記周壁の上端面としての前記光学ケースの開口部に連続するスリットであり、前記信号線は、前記スリットに挿入されて、前記光学ケース内に配設されており、前記素子基板は、左右の端部が、前記周壁の内側に形成されて上下方向に伸びる溝に支持されており、前記光学ケース内には、前記信号線が収納される、前記素子基板を取り付けする位置と前記スリットとの間に遮光壁が設けられていることを特徴とする。 In the present invention, an element substrate on which a light receiving element is mounted is disposed in an optical case having an opening on an upper surface, and a signal line passing through an introduction portion of a peripheral wall of the optical case is connected to the element substrate, In the fire detector in which the opening of the case is closed by an optical cover, the introduction part is a slit continuous with the opening of the optical case as the upper end surface of the peripheral wall , and the signal line is in the slit. is inserted, the are arranged in the optical case, the element substrate, the end of the left and right, are formed on the inner side of the peripheral wall is supported in a groove extending in the vertical direction, in the optical case Is characterized in that a light shielding wall is provided between a position where the signal line is accommodated and the element substrate is attached and the slit .

この発明の前記前記光学カバーには、複数の信号線保持部が設けられ、前記信号線は、前記光学ケースの外部に出てから、前記周壁の外周を這うように伸びていることを特徴とする。 The optical cover of the present invention is provided with a plurality of signal line holding portions, and the signal lines extend outside the optical case and then extend over the outer periphery of the peripheral wall. To do.

この発明の前記スリットは、前記周壁に対して斜めに交差していることを特徴とする。   The slit according to the present invention is characterized in that it intersects with the peripheral wall obliquely.

この発明は、以上のように構成したので、素子基板に接続された信号線は、光学ケースの周壁に設けたスリットにより挟持されて外部に出るので、前記素子基板に信号線を着脱する手間を省くことができる。
又、前記位置に遮光壁を設けたので、外光が前記スリットから光学ケース内に進入しても、受光素子が悪影響を受けることがない。
Since the present invention is configured as described above, the signal lines connected to the element substrate are sandwiched by the slits provided on the peripheral wall of the optical case and go out. It can be omitted.
In addition, since the light shielding wall is provided at the position, even if external light enters the optical case from the slit, the light receiving element is not adversely affected.

本発明の実施形態1を示す平面図で、煙感知器の概略を示す図である。FIG. 3 is a plan view showing Embodiment 1 of the present invention, and is a diagram showing an outline of a smoke detector. 煙検出ユニットを示す斜視図である。It is a perspective view which shows a smoke detection unit. 光学ケースの平面図である。It is a top view of an optical case. 光学カバーの底面図である。It is a bottom view of an optical cover. 煙検出ユニットの平面図である。It is a top view of a smoke detection unit. 図5のVI−VI線断面図である。FIG. 6 is a cross-sectional view taken along line VI-VI in FIG. 5.

本発明の第1実施形態の煙感知器を図1〜図6により説明する。
1は煙感知器、21は内部が暗箱である煙検出ユニット2の光学ケース、3は該光学ケース21の検煙部25に配管4を介して検知対象となる空気を送るファン、5は前記配管4に設けられているフイルタ、をそれぞれ示している。
A smoke detector according to a first embodiment of the present invention will be described with reference to FIGS.
Reference numeral 1 denotes a smoke detector, 21 denotes an optical case of the smoke detection unit 2 which is a dark box, 3 denotes a fan for sending air to be detected to the smoke detection unit 25 of the optical case 21 via a pipe 4, Filters provided in the pipe 4 are shown.

11は、前記光学ケース21内に配設された発光素子であり、例えば、赤外線を発光する発光素子が用いられる。12は、フォトダイオード等の受光素子であり、受光素子12は、前記発光素子11の光が前記検煙部25に存在する煙粒子によって生じる散乱光を受光するものであり、前記発光素子11の光が直接入射しない位置に配設されている。14は前記ファン3や空気の流量を測定するエアフローセンサ13などに電源を供給する電源部、15は火災判別部、をそれぞれ示している。   Reference numeral 11 denotes a light emitting element disposed in the optical case 21. For example, a light emitting element that emits infrared light is used. Reference numeral 12 denotes a light receiving element such as a photodiode. The light receiving element 12 receives scattered light caused by smoke particles existing in the smoke detector 25, and the light from the light emitting element 11 receives light from the light emitting element 11. It is disposed at a position where light does not enter directly. Reference numeral 14 denotes a power supply unit that supplies power to the fan 3 and an airflow sensor 13 that measures the air flow rate, and 15 denotes a fire determination unit.

前記火災判別部15は、詳細に示さないが、前記受光素子12の出力信号Sを増幅する増幅回路、増幅信号を検出レベルに変換するA/D変換器、検出レベルが予め設定された閾値以上になったとき火災と判別する比較回路、等を備えているが、統合的な制御は、CPUにより行われるようになっている。   Although not shown in detail, the fire discriminating unit 15 amplifies the output signal S of the light receiving element 12, an A / D converter that converts the amplified signal into a detection level, and a detection level equal to or higher than a preset threshold value. Comparing circuits for determining that a fire is detected, etc. are provided, but integrated control is performed by the CPU.

煙検出ユニット2は、例えば、艶消し黒色の内面をなし、箱状の光学ケース21を備え、該光学ケース21の開口部は光学カバー30により閉鎖されている。そのため、前記光学ケース21の内部は、いわゆる暗箱となっている。前記光学ケース21内には、前記発光素子11に対向する位置に迷光部22が設けられている。   The smoke detection unit 2 has, for example, a matte black inner surface and includes a box-shaped optical case 21, and an opening of the optical case 21 is closed by an optical cover 30. Therefore, the inside of the optical case 21 is a so-called dark box. A stray light portion 22 is provided in the optical case 21 at a position facing the light emitting element 11.

24は集光レンズであり、集光レンズ24は、前記発光素子11が発光した光を迷光部22内に設けた光トラップ23の曲面部に集光させる。25は空気を通過させる検煙部、26は適宜間隔に設けられるアパーチャ、をそれぞれ示している。   Reference numeral 24 denotes a condensing lens, and the condensing lens 24 condenses the light emitted from the light emitting element 11 on a curved surface portion of an optical trap 23 provided in the stray light portion 22. Reference numeral 25 denotes a smoke detecting section that allows air to pass therethrough, and 26 denotes an aperture provided at an appropriate interval.

前記受光素子12は、回路部品32とともに素子基板31に実装されている。この素子基板31の左右の端部は、溝部33に嵌着支持されている。この溝部33は、光学ケース21の周壁21aの内側に形成されて、且つ、上下方向に伸びている凹部であるので、前記素子基板31を上下方向に往復移動させることにより、容易に光学ケース21に着脱することが出来る。   The light receiving element 12 is mounted on the element substrate 31 together with the circuit component 32. The left and right ends of the element substrate 31 are fitted and supported in the groove 33. Since the groove 33 is a recess formed inside the peripheral wall 21a of the optical case 21 and extending in the vertical direction, the optical case 21 can be easily moved by reciprocating the element substrate 31 in the vertical direction. Can be attached and detached.

前記素子基板31には、信号線35が接続されているが、この信号線35は、例えば、帯状のフラットケーブルであり、前記素子基板31等と制御基板(図示省略)との間での信号送受、電源供給等を行うものである。この信号線35は、スリット37を通って光学ケース21の外部に出てから光学ケース21の周壁21aの外面に這うように伸びている。   A signal line 35 is connected to the element substrate 31. The signal line 35 is, for example, a belt-like flat cable, and a signal between the element substrate 31 and the control board (not shown). Transmission / reception, power supply, etc. are performed. The signal line 35 extends so as to reach the outer surface of the peripheral wall 21 a of the optical case 21 after exiting the optical case 21 through the slit 37.

前記スリット37は、前記周壁21aに対して斜めに交差するように形成されているが、この様にすると、前記信号線35が曲げられて周壁21aの外面に這わせやすくなるとともに、光学ケース21内に外光が入りにくくなる。更に、前記信号線35が前記スリット37により軽く挟持されるので、光学ケース21の外部から信号線35が引張られても、光学ケース21の内部には伝わらない。又、前記スリット37の開口部37aは、周壁21aの上端面21fに連続〔開口〕しているが、この様にすると、信号線35を上下方向に往復運動させるだけで、該信号線35を該スリット37に着脱することができる。従って、信号線35を素子基板31に接続した状態で、前記素子基板37を前記光学ケース21から取り外したり、装着したりすることが出来る。   The slit 37 is formed so as to cross obliquely with respect to the peripheral wall 21a, but in this way, the signal line 35 is bent and can be easily placed on the outer surface of the peripheral wall 21a. Outside light is difficult to enter. Further, since the signal line 35 is lightly held by the slit 37, even if the signal line 35 is pulled from the outside of the optical case 21, it is not transmitted to the inside of the optical case 21. The opening 37a of the slit 37 is continuous [opened] to the upper end surface 21f of the peripheral wall 21a. In this way, the signal line 35 can be moved only by reciprocating in the vertical direction. The slit 37 can be attached and detached. Therefore, the element substrate 37 can be removed from or attached to the optical case 21 with the signal line 35 connected to the element substrate 31.

前記光学ケース21の素子基板31とスリット37との間に信号線の収納部39が設けられ、この収納部39には、遮光壁40が配設されている。この遮光壁40は、光学ケース21に固定された遮光壁40aと、光学カバー30に固定された遮光壁40bにより構成され、全体として信号線35の経路から外光が素子基板31まで到達しないように囲んで、該信号線35の経路に沿って設けられている。また、遮光壁40aと遮光壁40bは互いに隣接するように配置して遮光性を高めている。   A signal line accommodating portion 39 is provided between the element substrate 31 and the slit 37 of the optical case 21, and a light shielding wall 40 is disposed in the accommodating portion 39. The light shielding wall 40 includes a light shielding wall 40 a fixed to the optical case 21 and a light shielding wall 40 b fixed to the optical cover 30, so that external light does not reach the element substrate 31 from the path of the signal line 35 as a whole. And is provided along the path of the signal line 35. Further, the light shielding wall 40a and the light shielding wall 40b are arranged so as to be adjacent to each other to enhance the light shielding property.

前記光学ケース21の開口部には、光学カバー30が被せられ、該光学カバー30はねじ42で前記光学ケース21に固定されている。前記光学カバー30の長辺縁部には、間隔を置いて複数の信号線保持部41が設けられている。この信号線保持部41は、前記帯状の信号線35を前記光学ケース21の周壁21aに接触させて保持させる押圧支持部材である。   An optical cover 30 is put on the opening of the optical case 21, and the optical cover 30 is fixed to the optical case 21 with screws 42. A plurality of signal line holding portions 41 are provided at intervals on the long side edge of the optical cover 30. The signal line holding portion 41 is a pressing support member that holds the belt-like signal line 35 in contact with the peripheral wall 21 a of the optical case 21.

次に、本実施形態の作動について説明する。
煙検出ユニット2内の素子基板31を前記光学ケース21から取り出す場合には、ねじ42を緩めて前記光学カバー30を光学ケース21から外す。そうすると、該光学ケース21の内部が露出し、前記光学ケース21の溝部33の上端及びスリット37の上端(開口部37a)は開放状態となる。
Next, the operation of this embodiment will be described.
When the element substrate 31 in the smoke detection unit 2 is taken out from the optical case 21, the screw 42 is loosened and the optical cover 30 is removed from the optical case 21. Then, the inside of the optical case 21 is exposed, and the upper end of the groove portion 33 and the upper end (opening portion 37a) of the slit 37 are opened.

光学ケース21内の素子基板31と信号線35を指で摘んで上方に引っ張ると、前記素子基板31は前記溝部33から抜け、又、信号線35は前記スリット37から抜ける。そのため、前記信号線35に接続されている状態で、前記素子基板31を容易に光学ケース21から外すことができる。   When the element substrate 31 and the signal line 35 in the optical case 21 are picked up by a finger and pulled upward, the element substrate 31 comes out of the groove 33 and the signal line 35 comes out of the slit 37. Therefore, the element substrate 31 can be easily detached from the optical case 21 while being connected to the signal line 35.

前記素子基板31を光学ケース21に装着する場合には、前記と逆の要領で装着作業を行う。即ち、前記素子基板31と信号線35は、接続されているが、前記素子基板31を下方に移動させて溝部33に押し込むとともに、前記信号線35を下方に移動させてスリット37の開口部37aに押し込む。そうすると、前記両者31、35は設計位置に配設され、前記信号線35は、スリット37により軽く挟持される。この時、光学ケース21内の信号線35は、形成された経路に収納される。   When the element substrate 31 is mounted on the optical case 21, the mounting operation is performed in the reverse manner as described above. That is, although the element substrate 31 and the signal line 35 are connected, the element substrate 31 is moved downward and pushed into the groove 33, and the signal line 35 is moved downward to open the opening 37a of the slit 37. Push into. Then, the both 31 and 35 are arranged at the design position, and the signal line 35 is lightly held by the slit 37. At this time, the signal line 35 in the optical case 21 is accommodated in the formed path.

前記信号線35を周壁21aの外面に這わせながら所定位置まで配設する。その後、前記光学ケース21の開口部に光学カバー30を被せ、信号線保持部41で前記信号線35を周壁21aに接触させた後、ねじ42で止めて固定する。この時、信号線35がスリット37の開口部37aで上下方向に動くことを規制するために、スリット37の深さや光学カバー30のストッパー高さを設定しても良い。   The signal line 35 is disposed up to a predetermined position while being laid over the outer surface of the peripheral wall 21a. Thereafter, the optical cover 30 is put on the opening of the optical case 21, the signal line 35 is brought into contact with the peripheral wall 21 a by the signal line holding part 41, and then fixed with the screw 42. At this time, the depth of the slit 37 and the height of the stopper of the optical cover 30 may be set to restrict the signal line 35 from moving up and down at the opening 37 a of the slit 37.

この発明の第2実施形態について説明する(図示省略)。
本件発明の火災感知器は、煙感知器の他に、発光素子を備えていない火災感知器(例えば、炎感知器)にも適用することが出来る。
A second embodiment of the present invention will be described (not shown).
The fire detector of the present invention can be applied to a fire detector (for example, a flame detector) that does not include a light emitting element in addition to a smoke detector.

即ち、前記火災感知器は、箱状の光学ケースと、前記光学ケース内に配設した受光素子と、前記受光素子の出力信号を増幅する受光増幅部と、増幅された前記出力信号をA/D変換した検出レベルが閾値以上で火災判別する火災判断部と、を備えており、前記受光素子が実装された素子基板には、信号線が接続され、該信号線は、前記光学ケースの周壁に設けたスリットを通るように配設されている。   That is, the fire detector includes a box-shaped optical case, a light receiving element disposed in the optical case, a light receiving amplification unit that amplifies the output signal of the light receiving element, and the amplified output signal as A / A A fire determination unit for determining fire when the D-converted detection level is equal to or higher than a threshold value, and a signal line is connected to the element substrate on which the light receiving element is mounted. It is arrange | positioned so that the slit provided in may be passed.

なお、前記光学ケース及び前記スリットは、第1実施形態の光学ケース及びスリットと同様である。   The optical case and the slit are the same as the optical case and the slit of the first embodiment.

1 煙感知器
2 煙検出ユニット
11 発光素子
12 受光素子
21 光学ケース
21a 周壁
21f 上端面
30 光学カバー
31 素子基板
33 溝部
35 信号線
37 スリット
37a 開口部
DESCRIPTION OF SYMBOLS 1 Smoke detector 2 Smoke detection unit 11 Light emitting element 12 Light receiving element 21 Optical case 21a Perimeter wall 21f Upper end surface 30 Optical cover 31 Element board 33 Groove part 35 Signal line 37 Slit 37a Opening part

Claims (3)

上面に開口部を有する光学ケース内に、受光素子を搭載した素子基板が配設され、前記素子基板には前記光学ケースの周壁の導入部を通る信号線が接続され、前記光学ケースの開口部が光学カバーにより閉鎖されている火災感知器において、
前記導入部は、前記周壁の上端面としての前記光学ケースの開口部に連続するスリットであり
前記信号線は、前記スリットに挿入されて、前記光学ケース内に配設されており、
前記素子基板は、左右の端部が、前記周壁の内側に形成されて上下方向に伸びる溝に支持されており、
前記光学ケース内には、前記信号線が収納される、前記素子基板を取り付けする位置と前記スリットとの間に遮光壁が設けられていることを特徴とする火災感知器。
An element substrate on which a light receiving element is mounted is disposed in an optical case having an opening on the upper surface, and a signal line passing through the introduction portion of the peripheral wall of the optical case is connected to the element substrate, and the opening of the optical case In fire detectors that are closed by optical covers,
The introduction part is a slit continuous with the opening of the optical case as the upper end surface of the peripheral wall , and the signal line is inserted into the slit and disposed in the optical case,
The element substrate has left and right ends supported on grooves formed in the peripheral wall and extending vertically.
Wherein the the optical case, the signal line is accommodated, the fire detector which is characterized that you have provided shielding wall between the position and the slit attaching the element substrate.
前記光学カバーには、複数の信号線保持部が設けられ、
前記信号線は、前記光学ケースの外部に出てから、前記周壁の外周を這うように伸びていることを特徴とする請求項1記載の火災感知器。
The optical cover is provided with a plurality of signal line holding portions,
The fire detector according to claim 1, wherein the signal line extends outside the optical case so as to crawl an outer periphery of the peripheral wall.
前記スリットは、前記周壁に対して斜めに交差していることを特徴とする請求項1、又は、2記載の火災感知器。
The fire detector according to claim 1, wherein the slit intersects the peripheral wall obliquely .
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EP10157357.4A EP2233916B1 (en) 2009-03-27 2010-03-23 Fire detector
EP14157052.3A EP2738546A1 (en) 2009-03-27 2010-03-23 Fire detector
CN201010140737.5A CN101847306B (en) 2009-03-27 2010-03-24 Fire detector
CN201310352824.0A CN103514705B (en) 2009-03-27 2010-03-24 Fire detector
KR1020100026445A KR20100108240A (en) 2009-03-27 2010-03-24 Fire detection device
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