JP5426450B2 - Self-luminous gaze guidance mark - Google Patents

Self-luminous gaze guidance mark Download PDF

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JP5426450B2
JP5426450B2 JP2010079238A JP2010079238A JP5426450B2 JP 5426450 B2 JP5426450 B2 JP 5426450B2 JP 2010079238 A JP2010079238 A JP 2010079238A JP 2010079238 A JP2010079238 A JP 2010079238A JP 5426450 B2 JP5426450 B2 JP 5426450B2
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章博 井戸
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株式会社キクテック
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本発明は、道路際や中央分離帯等に設置されて、赤色系LEDと青色系LEDとから構成される複数の発光体を、夜間に点滅させるように点灯させて、運転者の視線を誘導する自発光視線誘導標に関する。   The present invention guides the driver's line of sight by turning on a plurality of light emitters, which are installed on the roadside or in a median strip, etc., composed of red LEDs and blue LEDs so as to blink at night. It relates to a self-luminous gaze guidance mark.

従来、この種の視線誘導装置としては、複数の発光体を、交互に点滅させる赤色系LEDと青色系LEDとから構成するものが知られていた(例えば、特許文献1)。この自発光視線誘導標は、視線誘導標の形を認知し易い、すなわち、形状認知に優れた赤色系LEDと、視線誘導標の存在を認知し易い、すなわち、存在認知に優れた青色系LEDと、を複数並設させており、夜間や濃霧の中であっても、運転者が、容易に視認することができた。   Conventionally, as this kind of line-of-sight guidance device, what constitutes a plurality of luminous bodies from red LED and blue LED which make it blink alternately is known (for example, patent documents 1). This self-luminous gaze guidance mark is easy to recognize the shape of the gaze guidance mark, that is, a red LED that is excellent in shape recognition, and a blue LED that is easy to recognize the presence of the gaze guidance mark, that is, excellent in presence recognition. A plurality of such devices are arranged side by side, and the driver can easily see even at night or in dense fog.

特開2002−201618号公報JP 2002-201618 A

しかし、上記の自発光視線誘導標では、LEDを設けた表示面が、長方形板状として、多数のLEDを配設させており、LEDの表示面を円形状としたり、あるいは、LEDの使用量を少なくした場合、視認性よく、好適に、使用する点に、課題があった。   However, in the above self-luminous line-of-sight guidance sign, the display surface provided with the LEDs is a rectangular plate, and a large number of LEDs are arranged, and the LED display surface is circular or the amount of LED used In the case where the amount is reduced, there is a problem in that it is preferably used with good visibility.

本発明は、上述の課題を解決するものであり、発光体(LED)の表示面を円形状としても、悪天候時の視認性を良好として、使用できる自発光視線誘導標を提供することを目的とする。   The present invention solves the above-described problems, and an object of the present invention is to provide a self-luminous gaze guidance mark that can be used with good visibility in bad weather even when the light emitting body (LED) has a circular display surface. And

本発明に係る自発光視線誘導標は、複数の発光体が、それぞれ、交互に点滅させる赤色系LEDと青色系LEDとから構成される自発光視線誘導標であって、
一つの赤色系LEDが、発光体の表示面における中心に配置される中央LEDとし、
中央LED以外の赤色系LEDと青色系LEDとが、それぞれ、3個以上使用されるとともに、中央LEDを中心として、周方向に沿って、均等で、かつ、交互に、配設され、さらに
赤色系LEDと青色系LEDとが、それぞれ、透明な光源カバー部に覆われ、
光源カバー部が、発光時の光を拡散可能に、それぞれ、
赤色系LEDと青色系LEDとの各々の前方側で、外側面と内側面とをともに前方側へ突出させた凸メニスカスレンズ形状のレンズ部と、
赤色系LEDと青色系LEDとの各々の周囲を囲んで、レンズ部の外周縁から後方へ延びる円筒状のリブと、
を配設させて構成されていることを特徴とする。
The self-luminous line-of-sight guidance mark according to the present invention is a self-luminous line-of-sight guidance mark composed of a red LED and a blue LED, in which a plurality of light emitters blink alternately,
One red LED is a central LED arranged at the center of the display surface of the light emitter,
A red LED and blue LED other than the central LED, respectively, while being used three or more, around a central LED, along the circumferential direction, a uniform, and, alternately, is disposed, further
Each of the red LED and the blue LED is covered with a transparent light source cover,
The light source cover part can diffuse the light at the time of light emission,
A convex meniscus lens-shaped lens part in which both the outer surface and the inner surface protrude forward on the front side of each of the red LED and the blue LED,
A cylindrical rib that surrounds each of the red LED and the blue LED and extends rearward from the outer peripheral edge of the lens unit;
It is characterized by being arranged .

本発明に係る自発光視線誘導標は、発光体の表示面の中央に、赤色系LEDが配置されて、かつ、その周囲に、赤色系LEDと青色系LEDとが、周方向に沿って交互に配置されており、青色系LEDが、表示面の中央に配置されていないものの、中央LEDの周囲で、3個以上、放射状に配置されるため、濃霧の悪天候時でも、視線誘導標の存在認知を確保できる。そして逆に、目立ち易い赤色系LEDを、表示面の中央に配置させて、その周囲に、3個以上の赤色系LEDを配置させているため、目立ち易い赤色系LEDが多くなって、全体のLED数が少なくとも、通常時ばかりでなく、濃霧等の悪天候時にも、良好な視認性を確保可能となる。さらに、本発明に係る自発光視線誘導標は、表示面の中央に配置させた中央LEDを中心に、3個以上ずつの赤色系LEDと青色系LEDとが、周方向に沿って、均等で、かつ、交互に、配設される構成であって、表示面を円形としている場合に、無駄な表示エリアを無くして、表示面と相似形となるように、好適に、中央LEDの周囲に、赤色系LEDと青色系LEDとを配設させることができる。   In the self-luminous line-of-sight guidance mark according to the present invention, a red LED is arranged at the center of the display surface of the illuminant, and a red LED and a blue LED alternate along the circumferential direction around the LED. Although blue LEDs are not arranged in the center of the display surface, three or more LEDs are arranged radially around the center LED, so there is a visual guidance indicator even in bad foggy weather You can secure recognition. On the contrary, a red LED that is easily noticeable is arranged in the center of the display surface, and three or more red LEDs are arranged around it, so that the number of red LEDs that are easily noticeable increases. Good visibility can be ensured not only during normal times but also during bad weather such as dense fog. Furthermore, the self-luminous line-of-sight guidance mark according to the present invention is such that three or more red LEDs and blue LEDs are evenly distributed along the circumferential direction around the center LED arranged at the center of the display surface. In the case where the display surface is circular and the display surface is circular, preferably around the central LED so that the display surface is similar to the display surface without a useless display area. A red LED and a blue LED can be disposed.

したがって、本発明に係る自発光視線誘導標は、表示面を円形状としても、悪天候時の視認性を良好として、使用することができる。
さらに、本発明に係る自発光視線誘導標では、レンズ部が、拡散し難いLEDの光を、レンズ部の全域から発光させるように、拡散させる凸レンズから構成され、さらに、メニスカスレンズとして、レンズ部の外周縁付近でも、輝度の低下を抑えて、光を発散させることができて、表示面の正面からだけでなく、表示面に対して斜め方向からでも、LEDの光が視認し易くなる。すなわち、このような構成では、極力、赤色系LEDや青色系LEDの発光時における明るい輝度と広い視野範囲とを、確保できる。さらに、レンズ部の外周縁には、LEDを包むように、透明な円筒状のリブが、突設されて、LEDの周囲に発散する光も、リブの内・外周面で反射させて、レンズ部側から放射できることとなって、一層、LEDをレンズ部全体から光らせるような態様、とすることができる。
Therefore, the self-luminous gaze guidance mark according to the present invention can be used with good visibility in bad weather even when the display surface is circular.
Further, in the self-luminous line-of-sight guide according to the present invention, the lens unit is configured by a convex lens that diffuses LED light that is difficult to diffuse from the entire region of the lens unit, and further, as a meniscus lens, the lens unit Even in the vicinity of the outer peripheral edge, it is possible to suppress a decrease in luminance and diverge light, and it becomes easy to visually recognize the light of the LED not only from the front of the display surface but also from an oblique direction with respect to the display surface. That is, with such a configuration, as much as possible, bright brightness and a wide visual field range can be secured when red LEDs or blue LEDs emit light. Further, a transparent cylindrical rib is provided on the outer peripheral edge of the lens portion so as to wrap the LED, and the light that diverges around the LED is also reflected on the inner and outer peripheral surfaces of the rib, so that the lens portion Since it can radiate | emit from the side, it can be set as the aspect which light-emits LED from the whole lens part further.

なお、中央LEDの周囲に、1個ずつ、若しくは、2個ずつの赤色系LEDと青色系LEDと配設する場合には、各色のLEDが一文字状に配置された状態で発光する状態となり、円形のイメージを惹起させ難いことから、表示面を円形とする場合、好ましくない。   In addition, in the case where one or two red LEDs and blue LEDs are arranged around the central LED, each color LED emits light in a single character form, Since it is difficult to induce a circular image, it is not preferable when the display surface is circular.

そして、本発明に係る自発光視線誘導標において、中央LEDを中心として周方向に配置される赤色系LEDと青色系LEDとを、一重の円環状に、配設する構成とすれば、使用する赤色系LEDと青色系LEDとの数を、中央LEDを除いて3個ずつ若しくは4個ずつ等と少なくして、道路際等に設置される自発光でない反射板タイプの70〜100φとした視線誘導標の代替品として、好適に使用することができる。ちなみに、反射タイプの視線誘導標は、社団法人日本道路協会の設置基準において、「大きさを直径70〜100mmとして」、原則として、「左側路側に設置する」ことが規定されている。   In the self-luminous line-of-sight guidance mark according to the present invention, the red LED and the blue LED arranged in the circumferential direction around the central LED are used if they are arranged in a single annular shape. A line of sight with a red-type LED and a blue-type LED of 70 to 100φ of a reflector type that is not self-luminous installed on the road or the like by reducing the number of red LEDs and blue LEDs by 3 or 4 excluding the central LED. It can be suitably used as a substitute for a guide mark. Incidentally, the reflection type gaze guidance mark stipulates that “the size is 70 to 100 mm in diameter” and, in principle, “to be installed on the left side” in the installation standards of the Japan Road Association.

また、中央LEDを中心として、その周囲に、均等でかつ交互に、赤色系LEDと青色系LEDとを配置させる場合、点灯時に円環状のイメージを惹起できれば、必ずしも、1個ずつの赤色系LEDと青色系LEDとを交互に配置させなくともよく、例えば、どちらかの一方を、2個等の複数として、均等に、周方向に沿って繰り返して配置させるように、交互に赤色系LEDと青色系LEDとを配置させたり、あるいは、共に、同数の複数個ずつ、若しくは、異なった数の複数個ずつ、を繰り返して均等に循環させるように、中央LEDの周囲で、周方向に沿って交互に所定個数ずつの赤色系LEDと青色系LEDとを配置させてもよい。   In addition, when red LEDs and blue LEDs are arranged evenly and alternately around the center LED, one red LED is not necessarily required if an annular image can be generated at the time of lighting. And blue LEDs need not be alternately arranged, for example, either one of them as a plurality of two or the like, and the red LEDs are alternately arranged so as to be repeatedly arranged along the circumferential direction. Blue LEDs are arranged, or both around the central LED along the circumferential direction so that the same number or a plurality of different numbers are repeatedly circulated evenly. Alternatively, a predetermined number of red LEDs and blue LEDs may be alternately arranged.

さらに、本発明に係る自発光視線誘導標では、視線誘導標の表示面を、光源カバー部を配設させた透明な前面カバー部を設けて構成し、前面カバー部の後方には、赤色系LEDと青色系LEDとを前方に突出させ、かつ、リブの後端面に前面を当接させて、前方からの光を反射可能な反射シートを、配設することが望ましい。 Further , in the self-luminous gaze guidance mark according to the present invention, the display surface of the gaze guidance mark is configured by providing a transparent front cover part in which a light source cover part is disposed, and a red system is provided behind the front cover part. It is desirable to dispose a reflective sheet capable of reflecting light from the front by causing the LED and the blue LED to protrude forward and having the front surface in contact with the rear end face of the rib.

このような構成では、LEDが発光していない薄暮や昼間(あるいは蓄電体の残量が零の場合)等においても、表示面で受光した光を反射させることができて、視線誘導標を運転者に視認させることができる。さらに、LEDの発光時には、反射シートを経て反射する光も、光源カバー部のリブを利用して、レンズ部側から放射できるため、一層、LEDをレンズ部全体から光らせるような態様、とすることができる。   In such a configuration, the light received on the display surface can be reflected even during twilight or daytime when the LED is not emitting light (or when the remaining amount of the power storage unit is zero), etc. Can be visually recognized. Furthermore, when the LED emits light, the light reflected through the reflection sheet can also be emitted from the lens unit side using the ribs of the light source cover unit, so that the LED is further illuminated from the entire lens unit. Can do.

さらに、本発明に係る自発光視線誘導標では、前面側に発光体を設けて、後面側に発光体の電源となる蓄電体を設け、かつ、発光体を夜間に点滅させるように制御する制御基盤と、
太陽光により起電されて蓄電体に充電させる太陽電池と、
制御基盤と太陽電池とを収納するケースと、
を設けて構成するとともに、
ケースを、前面カバー部を設けて、発光体、反射シート、及び、太陽電池を覆う前側ケース部と、後面側の後側ケース部と、の二つから構成し、
前側ケース部と後側ケース部とを、パッキンを介在させて、ケース内を水密状態として、結合させるとともに、ケース内に、乾燥剤を配設させて、結合することが望ましい。
Furthermore, in the self-luminous line-of-sight guidance mark according to the present invention, a control is provided in which a light emitter is provided on the front side, a power storage unit serving as a power source for the light emitter is provided on the rear side, and the light emitter is blinked at night. The foundation,
A solar cell that is generated by sunlight and charges the battery,
A case for storing the control board and the solar cell;
And configure
The case is provided with a front cover part, and is composed of two parts, a front case part that covers the light emitter, the reflection sheet, and the solar cell, and a rear case part on the rear side.
It is desirable that the front case portion and the rear case portion are joined with a packing interposed between them so that the inside of the case is in a watertight state, and a desiccant is disposed in the case.

このような構成では、パッキンを利用して、ケース内が水密状態とされて、さらに、ケース内に乾燥剤が配設されている。そのため、製造当初のケースを閉める際に、水蒸気がケース内に入っていても、ケース内の水蒸気が、乾燥剤により、吸湿されて、夜間時の温度低下時、結露するための水蒸気が極力無くなって、発光体(LED)を覆った前面カバー部の後面側(裏面側)の結露や曇りを抑制できて、発光体の発光時の視認性を阻害しない。ちなみに、光源カバー部の後面側に結露や曇りが生じていれば、青色系LEDの光は、赤色系LEDの光に比べて、視認性を低下させ易いことから、このような乾燥剤によるケース内の除湿は、青色系LEDを設けた自発光視線誘導標に、好適となる。勿論、この場合、ケースがパッキンを利用して水密状態を維持するため、雨水がケース内に浸入することは無く、安定して、発光体を覆った前面カバー部の後面側の結露や曇りを防止できる。   In such a configuration, the inside of the case is made watertight using packing, and a desiccant is further provided in the case. Therefore, even when water vapor is in the case when closing the case at the beginning of manufacture, the water vapor in the case is absorbed by the desiccant, and the water vapor for dew condensation is eliminated as much as possible when the temperature drops at night. Thus, condensation or fogging on the rear surface side (back surface side) of the front cover portion covering the light emitter (LED) can be suppressed, and visibility of the light emitter during light emission is not hindered. By the way, if condensation or fogging occurs on the rear side of the light source cover, the blue LED light is likely to be less visible than the red LED light. The dehumidification inside is suitable for a self-luminous gaze guidance mark provided with a blue LED. Of course, in this case, since the case maintains a watertight state using the packing, rainwater does not enter the case, and stable condensation and fogging on the rear side of the front cover portion covering the luminous body are prevented. Can be prevented.

さらにこの場合、パッキンには、前側ケース部と後側ケース部との外周縁からケースの内側に延びる延設部を設け、
乾燥剤を、シート状に配置するとともに、延設部に位置規制させて、制御基盤の後面側に、配置するとともに、
パッキンと乾燥剤との少なくとも一方が、前側ケース部と後側ケース部との相互の結合時、反射シートを介在させて、蓄電体ごと制御基盤を、前側ケース部のリブの後端面側に押圧し、前側ケース部のリブと協働して、挟持して保持する構成とし、
蓄電体を、前側ケース部と後側ケース部との相互の結合時に、制御基盤を各リブに対して前後に傾斜させずに前側ケース部側に押圧可能に、制御基盤の後面側に、分散させて配設することが望ましい。
Furthermore, in this case, the packing is provided with an extending portion extending from the outer peripheral edge of the front case portion and the rear case portion to the inside of the case,
While arranging the desiccant in the form of a sheet, the position of the extending part is regulated, and the rear side of the control board is arranged,
At least one of the packing and the desiccant presses the control base together with the power storage unit against the rear end face side of the rib of the front case part with a reflective sheet interposed when the front case part and the rear case part are coupled to each other In addition, in cooperation with the ribs of the front case part, it is configured to hold and hold,
Dispersing the power storage unit on the rear side of the control base so that the control base can be pressed to the front case without tilting it back and forth with respect to each rib when the front case and the rear case are connected to each other It is desirable to arrange them.

このような構成では、シート状の乾燥剤が、制御基盤の後面側で、発光体を覆った前面カバー部と平行な面状に配設されることとなって、ケース内の水分を的確に吸湿することができる。また、このような構成では、発光体や蓄電体を設けた制御基盤を、別途、ねじ等を利用して、ケースの前側ケース部や後側ケース部に取り付けなくともよく、制御基盤をケースに取り付ける部品点数・工数・コストを低減することができる。さらに、複数の蓄電体が、制御基盤を、各リブに対して前後に傾斜させずに、前側ケース部側に押圧できるため、各発光体(LED)の光を、安定して、光源カバー部を経て、前方に放射させることができる。   In such a configuration, the sheet-like desiccant is disposed on the rear surface side of the control board in a plane shape parallel to the front cover portion covering the light emitter, so that moisture in the case can be accurately measured. Can absorb moisture. In such a configuration, the control base provided with the light emitter and the power storage unit does not have to be separately attached to the front case portion or the rear case portion of the case using screws or the like. It is possible to reduce the number of parts, man-hours, and cost to be attached. Furthermore, since the plurality of power storage bodies can press the control base toward the front case part without tilting the control board back and forth with respect to each rib, the light from each light emitter (LED) is stably supplied to the light source cover part. It can be made to radiate forward via.

また、本発明に係る自発光視線誘導標では、ケースにおける太陽電池を収納する太陽電池収納部を、
前面カバー部の上方で、前方に突出するように、庇状に形成し、かつ、
太陽電池を略水平方向に沿って配設させるとともに、太陽電池を覆う透明な上面カバー部を、太陽電池の上方で、雨水を流下可能に、前下がりに傾斜させるようにして、
構成することが望ましい。
Further, in the self-luminous line-of-sight guidance mark according to the present invention, a solar cell storage portion that stores the solar cell in the case,
Above the front cover part, it is formed in a bowl shape so as to protrude forward, and
The solar cell is disposed along a substantially horizontal direction, and the transparent upper surface cover portion covering the solar cell is inclined upward and downward so that rainwater can flow down the solar cell,
It is desirable to configure.

このような構成では、発光体の前面側の上方が、庇状の太陽電池収納部に覆われることから、発光体を覆う前面カバー部が、雨水で汚れることを防止でき、かつ、薄暮でも、発光体の光を鮮明にすることができる。また、太陽電池収納部の上面カバー部が、前下がりに傾斜しており、雨水を貯め難いことから、雨上がりの晴天時において、太陽電池が直ちに太陽光を受光することができる。   In such a configuration, since the upper part of the front side of the light emitter is covered with the bowl-shaped solar cell storage portion, the front cover portion covering the light emitter can be prevented from being stained with rainwater, and even at twilight, The light of the light emitter can be made clear. Further, since the upper surface cover portion of the solar cell storage portion is inclined forward and it is difficult to store rainwater, the solar cell can immediately receive sunlight in the fine weather after rain.

以上のように、本発明に係る自発光視線誘導標は、発光体の表示面を円形状としても、悪天候時の視認性を良好として、使用することができる。   As described above, the self-luminous gaze guidance mark according to the present invention can be used with good visibility in bad weather even when the display surface of the illuminant is circular.

本発明に係る一実施形態の自発光視線誘導標の正面図である。It is a front view of the self-luminous gaze guidance mark of one embodiment concerning the present invention. 実施形態の自発光視線誘導標の背面図である。It is a rear view of the self-luminous gaze guidance mark of an embodiment. 実施形態の自発光視線誘導標の平面図である。It is a top view of the self-luminous gaze guidance mark of an embodiment. 実施形態の自発光視線誘導標の右側面図である。It is a right view of the self-luminous line-of-sight guidance mark of an embodiment. 実施形態の自発光視線誘導標の断面図であり、図1のV−V部位に対応する。It is sectional drawing of the self-light-emitting gaze guidance mark of embodiment, and respond | corresponds to the VV site | part of FIG. 実施形態の自発光視線誘導標における後側ケース部を外した状態を示す背面図である。It is a rear view which shows the state which removed the rear side case part in the self-light-emitting gaze guidance mark of embodiment. 実施形態の後側ケース部、パッキン、及び、シート状乾燥剤を示す斜視図である。It is a perspective view which shows the back side case part of embodiment, packing, and a sheet-like desiccant. 実施形態の自発光視線誘導標の回路図である。It is a circuit diagram of the self-luminous line-of-sight guidance mark of an embodiment. 実施形態の自発光視線誘導標のケースの結合時の状態を説明する図である。It is a figure explaining the state at the time of the coupling | bonding of the case of the self-light-emitting gaze guidance mark of embodiment. 赤色系LEDと青色系LEDとの配置と数を変更した自発光視線誘導標を示す概略正面図である。It is a schematic front view which shows the self-light-emitting gaze guidance mark which changed arrangement | positioning and number of red type | system | group LED and blue type | system | group LED. さらに赤色系LEDと青色系LEDとの配置と数を変更した自発光視線誘導標の表示面を示す概略正面図である。Furthermore, it is a schematic front view which shows the display surface of the self-luminous gaze guidance mark which changed arrangement | positioning and number of red LED and blue LED.

以下、本発明の一実施形態を図面に基づいて説明すると、実施形態の自発光視線誘導標1は、図1〜5に示すように、複数の発光体31、蓄電体35、太陽電池37、制御基盤39、反射シート44、パッキン25、乾燥剤27、ねじ29、及び、周囲を囲うケース3、を備えて構成されている。制御基盤39は、発光体31と蓄電体35とを保持するように、発光体31と蓄電体35とに連結され、また、定電圧充電回路40、昼夜判別回路41、及び、点滅制御回路42を配設させている(図8参照)。   Hereinafter, an embodiment of the present invention will be described with reference to the drawings. As shown in FIGS. 1 to 5, a self-luminous line-of-sight guide mark 1 according to an embodiment includes a plurality of light emitters 31, a power storage unit 35, The control board 39, the reflection sheet 44, the packing 25, the desiccant 27, the screw 29, and the case 3 surrounding the periphery are configured. The control board 39 is connected to the light emitter 31 and the power storage unit 35 so as to hold the light emitter 31 and the power storage unit 35, and also includes a constant voltage charging circuit 40, a day / night discrimination circuit 41, and a blinking control circuit 42. (See FIG. 8).

さらに、制御基盤39は、図1,5に示すように、視線誘導標1における発光体(LED)31の円形の表示面(前面)10aに対応した円盤状として、各発光体31を前方に突出させるように、各発光体31を前面39a側で保持して、各蓄電体35を後方に突出させるように、各蓄電体35を後面39b側で保持している。各蓄電体35は、略円柱状として、6個使用されて、制御基盤39の後面39b側で、上下左右に均等に配置されるように、点対称的に、分散されて配設されている(図6参照)。実施形態の場合、蓄電体35は、軸方向を上下方向に沿わせて、左右方向に沿って4個が並設され、それらの上下に、1個ずつの蓄電体35が、軸方向を左右方向に沿わせて、配設されている。また、制御基盤39には、後述する取付ボス20を挿通させる挿通孔39cが配設されている。   Further, as shown in FIGS. 1 and 5, the control base 39 has a disk shape corresponding to the circular display surface (front surface) 10 a of the light emitter (LED) 31 in the line-of-sight guide 1, and each light emitter 31 is moved forward. Each light emitter 31 is held on the front surface 39a side so as to protrude, and each power storage unit 35 is held on the rear surface 39b side so that each power storage unit 35 protrudes rearward. Each power storage unit 35 is used in a substantially cylindrical shape and is distributed in a point-symmetric manner so that six power storage units 35 are used and are equally arranged vertically and horizontally on the rear surface 39b side of the control base 39. (See FIG. 6). In the case of the embodiment, four power storage units 35 are arranged side by side along the left-right direction with the axial direction along the up-down direction, and one power storage unit 35 is placed on the top and bottom of each of the power storage units 35 in the left-right direction. Arranged along the direction. Further, the control base 39 is provided with an insertion hole 39c through which a mounting boss 20 described later is inserted.

なお、定電圧充電回路40は、太陽電池37により発生した起電力を各蓄電体(実施形態では電気二重層コンデンサー)35に所定電圧で充電させるように作動され、昼夜判別回路41は、太陽電池37の起電力を検出するセンサやフォトトランジスタ等の図示しない昼夜判別センサからの信号により、夜であれば、その信号を点滅制御回路42に出力する。そして、点滅制御回路42は、発光体31を所定間隔て点滅させることとなる。実施形態の場合、点滅制御回路42は、発光体31の後述する赤色系LED32と青色系LED33とを交互(360回/分)に点滅させる。換言すれば、赤色系LED32と青色系LED33とが、それぞれ、180回/分として、交互に点滅する。   The constant voltage charging circuit 40 is operated to charge each power storage unit (electric double layer capacitor in the embodiment) 35 with an electromotive force generated by the solar cell 37 at a predetermined voltage, and the day / night discrimination circuit 41 is a solar cell. If the signal is from a day / night discrimination sensor (not shown) such as a sensor for detecting an electromotive force 37 or a phototransistor, the signal is output to the blinking control circuit 42 at night. The blinking control circuit 42 causes the light emitter 31 to blink at a predetermined interval. In the case of the embodiment, the blinking control circuit 42 blinks red LEDs 32 and blue LEDs 33 (described later) of the light emitter 31 alternately (360 times / minute). In other words, the red LED 32 and the blue LED 33 blink alternately at 180 times / minute.

発光体31は、実施形態の場合、5個の赤色系LED32と4個の青色系LED33とから構成されている。赤色系LED32は、円板状の制御基盤39の中央に1個配置されるとともに、その中央LED32cを中心として、上下左右の配置位置から、45°ずらした放射状の位置に配置され、青色系LED33は、中央LED32cを中心とした上下左右の放射状に4個配置されている。すなわち、中央LED32cを除いた4個の赤色系LED32と4個の青色系LED33とは、中央LED32cを中心として、周方向に沿って、交互に均等にされて(中央LED32cを中心として45°ずつずれた放射状に配置されて)、一条の円環状に、配置されている。なお、円板状の反射シート44やその前面側の前面カバー部11は、その直径寸法D0(図1参照)を、約100φとしている。   In the embodiment, the light emitter 31 is composed of five red LEDs 32 and four blue LEDs 33. One red LED 32 is arranged at the center of the disk-shaped control board 39, and is arranged at a radial position shifted by 45 ° from the upper, lower, left and right arrangement positions around the center LED 32c. Are arranged radially in the vertical and horizontal directions around the central LED 32c. That is, the four red LEDs 32 and the four blue LEDs 33 excluding the central LED 32c are alternately made equal along the circumferential direction with the central LED 32c as the center (45 ° centering on the central LED 32c). They are arranged in a single ring shape. The disk-shaped reflection sheet 44 and the front cover portion 11 on the front side thereof have a diameter D0 (see FIG. 1) of about 100φ.

また、赤色系LED32は、ピーク波長を623nmとする赤色LED、ピーク波長を590nmとする黄色LED、あるいは、その間の波長の赤色系光を放射するものが使用可能である。青色系LED33は、ピーク波長を470nmとする青色系LED、ピーク波長を490nmとする青緑色LED、あるいは、その間の波長の青色系光を放射するものが使用可能である。   Further, as the red LED 32, a red LED having a peak wavelength of 623 nm, a yellow LED having a peak wavelength of 590 nm, or an LED that emits red light having a wavelength therebetween can be used. As the blue LED 33, a blue LED having a peak wavelength of 470 nm, a blue-green LED having a peak wavelength of 490 nm, or a device emitting blue light having a wavelength therebetween can be used.

ケース3は、太陽電池37を収納した上部収納部(太陽電池収納部)4と、下部側の下部収納部8と、を備えて構成されている。下部収納部8は、制御基盤39を覆う円板状の本体部10と、本体部10と上部収納部4とを連結する台形板状の連結部9と、を備えて構成されている。   The case 3 includes an upper storage portion (solar cell storage portion) 4 in which the solar cells 37 are stored, and a lower storage portion 8 on the lower side. The lower storage portion 8 includes a disc-shaped main body portion 10 that covers the control base 39 and a trapezoidal plate-shaped connection portion 9 that connects the main body portion 10 and the upper storage portion 4.

本体部10は、その前面10aを発光体31の表示面とする円板状に形成されている。そして、本体部10内には、発光体31と蓄電体35とを保持した制御基盤39が、前面39aを、鉛直方向に沿わせて、各発光体31を前面10a側に正対させるように、配設させている。本体部10の制御基盤39を覆う前面10aには、発光体31を覆う透明な前面カバー部11が配設されている。   The main body 10 is formed in a disc shape having the front surface 10 a as the display surface of the light emitter 31. And in the main-body part 10, the control base | substrate 39 holding the light-emitting body 31 and the electrical storage body 35 has the front surface 39a along the vertical direction, and each light-emitting body 31 faces the front surface 10a side. Are arranged. A transparent front cover portion 11 that covers the light emitter 31 is disposed on the front surface 10 a that covers the control base 39 of the main body portion 10.

前面カバー部11には、図1,5に示すように、各発光体31の赤色系LED32と青色系LED33との各々に対応して、発光する光を拡散させる光源カバー部12が形成されている。各光源カバー部12は、それぞれ、レンズ部13とリブ14とを備えて構成されている。レンズ部13は、各発光体31(赤色系LED32と青色系LED33との各々)の前方側で、外側面13aと内側面13bとをともに前方側へ突出させた凸メニスカスレンズ形状に形成されている(図5参照)。ちなみに、実施形態の場合、レンズ部13の外側面13aと内側面13bとは、ともに、半径Rを8.1mmの弧面としている。リブ14は、各発光体31の周囲を囲んで、赤色系LED32と青色系LED33との各々の周囲を囲んで、レンズ部13の外周縁13cから後方へ延びる円筒状としている。各リブ14の後端面14aは、制御基盤39の前面39aに対し、反射シート44を介在させて、当接されている。なお、リブ14は、外側面13aの外縁13aa(外周縁13c)を囲うように、外縁13aaの外周側に配置されて、後方に延び、厚さ寸法tを1.5mm、長さ寸法Lを10mmとしている。外縁13aaの直径寸法D1(図1参照)は、15φとしている。   As shown in FIGS. 1 and 5, the front cover portion 11 is formed with a light source cover portion 12 for diffusing emitted light corresponding to each of the red LED 32 and the blue LED 33 of each light emitter 31. Yes. Each light source cover portion 12 includes a lens portion 13 and a rib 14. The lens unit 13 is formed in a convex meniscus lens shape in which both the outer side surface 13a and the inner side surface 13b protrude forward on the front side of each light emitter 31 (each of the red LED 32 and the blue LED 33). (See FIG. 5). Incidentally, in the case of the embodiment, both the outer side surface 13a and the inner side surface 13b of the lens portion 13 have an arc surface with a radius R of 8.1 mm. The rib 14 has a cylindrical shape that surrounds each of the light emitters 31, surrounds each of the red LEDs 32 and the blue LEDs 33, and extends rearward from the outer peripheral edge 13 c of the lens portion 13. The rear end surface 14a of each rib 14 is in contact with the front surface 39a of the control board 39 with a reflection sheet 44 interposed therebetween. The rib 14 is disposed on the outer peripheral side of the outer edge 13aa so as to surround the outer edge 13aa (outer peripheral edge 13c) of the outer surface 13a, extends rearward, has a thickness dimension t of 1.5 mm, and a length dimension L. 10 mm. The diameter D1 (see FIG. 1) of the outer edge 13aa is 15φ.

反射シート44は、車両のヘッドライト等の光を受けた際に、その受光した光を反射するものであり、実施形態の場合、プリズム溝を設けたプリズム型の黄色の高輝度反射シートからなり、各発光体31を突出させる貫通孔44bを備えて構成され、各貫通孔44bから発光体31を突出させて、制御基盤39の前面39a側の全域に配設されている。また、反射シート44には、後述する取付ボス20を挿通させる挿通孔44cも、形成されている。   The reflection sheet 44 reflects the received light when receiving light from a vehicle headlight or the like. In the embodiment, the reflection sheet 44 is a prism-type yellow high-intensity reflection sheet provided with prism grooves. Each light emitter 31 is provided with a through-hole 44b, and the light emitter 31 is protruded from each through-hole 44b so as to be disposed in the entire area of the control base 39 on the front surface 39a side. Further, the reflection sheet 44 is also formed with an insertion hole 44c through which a mounting boss 20 described later is inserted.

なお、前面カバー部11は、光源カバー部12の周囲に、平面状の平滑部16を配設させている。   The front cover unit 11 is provided with a flat smooth portion 16 around the light source cover unit 12.

上部収納部(太陽電池収納部)4は、略水平方向に沿った長方形板状として、上面4a側を前端4b側にかけて前下がりに傾斜させて、構成されている。そして、上部収納部4は、下部収納部8における発光体31を覆う前面カバー部11の上方から前方を覆うように、連結部9の上方から前方に突出する庇状に、形成されている。また、上部収納部4は、太陽電池37を水平方向に沿って配設させるとともに、太陽電池37を覆う透明な上面カバー部5を、太陽電池37の上方で、雨水を流下可能に、前下がりに傾斜させている。   The upper storage portion (solar cell storage portion) 4 is formed in a rectangular plate shape substantially in the horizontal direction, and is inclined to the front lower side with the upper surface 4a side toward the front end 4b side. And the upper accommodating part 4 is formed in the bowl shape which protrudes ahead from the upper direction of the connection part 9 so that the front may be covered from the upper direction of the front cover part 11 which covers the light-emitting body 31 in the lower accommodating part 8. FIG. Further, the upper storage portion 4 arranges the solar cells 37 along the horizontal direction, and the transparent upper surface cover portion 5 covering the solar cells 37 is lowered forward so that rainwater can flow down above the solar cells 37. It is inclined to.

そして、ケース3は、前面側の前側ケース部18と、後面側の後側ケース部22と、から構成されている。後側ケース部22は、実施形態の場合、アルミニウム等の平板状の金属板から構成されて、後面には、自発光視線誘導標1を所定の道路際等に設置させるための取付具24が、形成されている。また、後側ケース部22には、前側ケース部18と結合させるための取付孔23が、形成されている。   The case 3 includes a front case portion 18 on the front surface side and a rear case portion 22 on the rear surface side. In the case of the embodiment, the rear case portion 22 is made of a flat metal plate such as aluminum, and a mounting tool 24 for installing the self-luminous line-of-sight guide 1 on a predetermined road is provided on the rear surface. Is formed. Further, the rear case portion 22 is formed with an attachment hole 23 for coupling with the front case portion 18.

前側ケース部18は、既述の上部収納部4や下部収納部8の後面側を除いた全域を形成するものであり、実施形態の場合、透明なポリカーボネイト等の合成樹脂から形成されている。また、前側ケース部18には、後側ケース部22と結合させるための複数の取付ボス20が配設されるとともに、外周縁に、後側ケース部22の外周縁22aを嵌合させるために、段差を設けて凹むような周縁組付座19が、形成されている。取付ボス20は、外周縁側の赤色系LED32の近傍の本体部10の周縁の4箇所と、上部収納部4の左右両端付近の2箇所と、の計6箇所に形成されて、それぞれ、周縁組付座19の内側に配設されている。そして、各取付ボス20には、後側ケース部22を前側ケース部18に結合させる際、後側ケース部22の各取付孔23を経て、ねじ29が螺着されることとなる。その螺着時、後側ケース部22の外周縁22aは、パッキン25の外周縁25aを介在させて、前側ケース部18の周縁組付座19に嵌合することとなって、ケース3内が水密状態を確保されることとなる。なお、本体部10の4個の取付ボス20は、制御基盤39の挿通孔39cに挿通されて、制御基盤39の上下左右のずれ移動を規制して、制御基盤39を、精度よく位置決めする役目も果たしている。   The front case part 18 forms the whole area except for the rear side of the upper storage part 4 and the lower storage part 8 described above. In the case of the embodiment, the front case part 18 is made of a synthetic resin such as transparent polycarbonate. Further, the front case portion 18 is provided with a plurality of mounting bosses 20 for coupling with the rear case portion 22, and the outer peripheral edge 22a of the rear case portion 22 is fitted to the outer peripheral edge. A peripheral assembly seat 19 that is recessed with a step is formed. The mounting bosses 20 are formed at a total of six locations, four locations on the periphery of the main body portion 10 near the red LED 32 on the outer peripheral edge side, and two locations near the left and right ends of the upper storage portion 4. Arranged inside the seat 19. Then, when the rear case portion 22 is coupled to the front case portion 18, screws 29 are screwed into the respective attachment bosses 20 through the attachment holes 23 of the rear case portion 22. At the time of the screwing, the outer peripheral edge 22a of the rear case portion 22 is fitted to the peripheral assembly seat 19 of the front case portion 18 with the outer peripheral edge 25a of the packing 25 interposed therebetween, so that the inside of the case 3 is inside. A watertight state will be secured. The four mounting bosses 20 of the main body 10 are inserted into the insertion holes 39c of the control base 39, and regulate the movement of the control base 39 in the vertical and horizontal directions, thereby positioning the control base 39 with high accuracy. Also plays.

なお、制御基盤39は、これらの取付ボス20の上下左右の位置決めと、反射シート44を介在させたリブ14の後端面14aとの当接による前後方向の位置決めとにより、前面39aから突出させた各発光体(LED)31の発光部位31aを、レンズ部13の焦点位置に、精度よく、配置させることができることとなる。   The control base 39 is protruded from the front surface 39a by positioning these mounting bosses 20 in the vertical and horizontal directions and by positioning in the front-rear direction by contact with the rear end surface 14a of the rib 14 with the reflection sheet 44 interposed therebetween. The light emitting part 31a of each light emitting body (LED) 31 can be accurately arranged at the focal position of the lens unit 13.

また、前側ケース部18では、透明な上面カバー部5や前面カバー部11以外の部位を、内部を見えないように、シボを設けた不透明部21として、外部から、ケース3内の制御基盤39等が見えないように、構成されている。   Further, in the front case portion 18, a portion other than the transparent upper surface cover portion 5 and the front cover portion 11 is externally formed as an opaque portion 21 provided with wrinkles so that the inside cannot be seen. It is configured so that it cannot be seen.

パッキン25は、シール性を確保可能なゴムや合成樹脂から構成されている。実施形態の場合、パッキン25は、外周縁25aを、後側ケース部22の外周縁22aと同形状とした板状とするとともに、外周縁25aからケース3の内側に延びる延設部25cを備えて、構成されている。パッキン25には、後側ケース部22と同様に、ねじ29を貫通させる取付孔25bが形成されている。ちなみに、パッキン25は、前側ケース部18と後側ケース部22との結合時、外周縁25aを周縁組付座19と後側ケース部22の外周縁22aとに圧接させるとともに、ねじ29の周囲も、取付孔25bの周縁を取付ボス20と後側ケース部22とに圧接させることから、ケース3内を、安定して、水密状態にすることができる。   The packing 25 is made of rubber or synthetic resin that can ensure sealing performance. In the case of the embodiment, the packing 25 has a plate shape in which the outer peripheral edge 25 a has the same shape as the outer peripheral edge 22 a of the rear case part 22, and includes an extending part 25 c extending from the outer peripheral edge 25 a to the inside of the case 3. Configured. Similar to the rear case portion 22, the packing 25 has an attachment hole 25 b that allows the screw 29 to pass therethrough. Incidentally, when the front case 18 and the rear case 22 are coupled, the packing 25 presses the outer peripheral edge 25a against the peripheral assembly seat 19 and the outer peripheral edge 22a of the rear case 22, and around the screw 29. In addition, since the peripheral edge of the mounting hole 25b is brought into pressure contact with the mounting boss 20 and the rear case portion 22, the inside of the case 3 can be stably and watertight.

パッキン25の延設部25cは、蓄電体35付近まで延びて、縦横の棒状、すなわち、十字状の収納孔部25dを設けている。   The extending portion 25c of the packing 25 extends to the vicinity of the power storage unit 35 and is provided with vertical and horizontal bar-shaped, that is, a cross-shaped storage hole 25d.

乾燥剤27は、上下左右の位置ずれを防止されて、収納孔部25dに位置規制されて収納されるように、十字状としたシート状に形成されている。このシート状乾燥剤27は、樹脂シートや不織布に、シリカゲルや塩化カルシウム等を含有させて、シート状に形成され、若干の弾性を有している。そして、このシート状乾燥剤27は、パッキン25の収納孔部25dに収納された状態で、前側ケース部18と後側ケース部22とを結合させる際、パッキン25の延設部25cに位置規制されて、制御基盤39の後面39b側に、配置されることとなる。さらに、実施形態では、この時、シート状乾燥剤27が、反射シート44を介在させて、蓄電体35ごと制御基盤39を、前側ケース部18のリブ14の後端面14a側に押圧して、前側ケース部18と協働して、挟持して保持する構成としている。そして、この時、制御基盤39の後面39b側で上下左右に均等に分散されて配置された各蓄電体35が、各リブ14に対し、前後に傾斜させずに、制御基盤39を前側ケース部18のリブ14側に押圧させることとなる。   The desiccant 27 is formed in a cross-shaped sheet shape so as to be prevented from being displaced in the vertical and horizontal directions and to be stored while being regulated in the storage hole 25d. This sheet-like desiccant 27 is formed into a sheet shape by adding silica gel, calcium chloride or the like to a resin sheet or non-woven fabric, and has some elasticity. Then, the sheet-like desiccant 27 is positioned in the extending portion 25c of the packing 25 when the front case portion 18 and the rear case portion 22 are coupled in a state of being accommodated in the accommodation hole portion 25d of the packing 25. Thus, the control board 39 is disposed on the rear surface 39b side. Furthermore, in the embodiment, at this time, the sheet-like desiccant 27 presses the control base 39 together with the power storage unit 35 toward the rear end surface 14a side of the rib 14 of the front case portion 18 with the reflective sheet 44 interposed therebetween. In cooperation with the front case portion 18, the structure is held and held. At this time, the power storage bodies 35 arranged evenly distributed vertically and horizontally on the rear surface 39b side of the control base 39 do not tilt the control base 39 forward and backward with respect to the ribs 14, and the front case portion 18 is pressed against the rib 14 side.

そして、図9のA〜Cに示すように、前側ケース部18における上部収納部4や下部収納部8の部位に、所定の図示しないリード線で部品相互を結線させつつ、太陽電池37、反射シート44、発光体31と蓄電体35とを組み付けた制御基盤39を配置させて、さらに、それらに、シート状乾燥剤27を収納させたパッキン25を載せ、さらに、後側ケース部22を載せ、取付孔23,25bを経て、各取付ボス20にねじ29を螺着させれば、前側ケース部18と後側ケース部22とを結合させて、水密性を確保してケース3を形成でき、ケース3を形成すれば、実施形態の自発光視線誘導標1を製造することができ、その後、所定の道路際等に配置させればよい。   Then, as shown in FIGS. 9A to 9C, the solar cell 37, the reflection is made while the parts are connected to each other with a predetermined lead wire (not shown) in the upper housing portion 4 and the lower housing portion 8 in the front case portion 18. The control base 39 in which the sheet 44, the light emitter 31 and the power storage unit 35 are assembled is disposed, and the packing 25 containing the sheet-like desiccant 27 is placed thereon, and the rear case portion 22 is further placed thereon. If the screws 29 are screwed onto the mounting bosses 20 through the mounting holes 23 and 25b, the front case portion 18 and the rear case portion 22 can be coupled to ensure water tightness and form the case 3. If the case 3 is formed, the self-luminous line-of-sight guide 1 of the embodiment can be manufactured, and then disposed on a predetermined road.

この実施形態の自発光視線誘導標1では、夜間時、昼夜判別回路41により、蓄電体35を電源として、赤色系LED32と青色系LED33とが交互に点滅することとなる。そして、この自発光視線誘導標1では、一つの赤色系LED32が、発光体(LED)31の円形の表示面となる本体部10の前面10aの中心に配置される中央LED32cとし、4個ずつの赤色系LED32と青色系LED33とが、中央LED32cを中心として、周方向に沿って、均等で、かつ、交互に、配設されている。そのため、実施形態の自発光視線誘導標1では、形状認知に優れた赤色系LED32の点灯と、存在認知に優れた青色系LED33の点灯と、によって、霧や降雨時の悪天候時に、道路を走行する運転者に、良好に視認させることができる。   In the self-luminous line-of-sight guide 1 of this embodiment, the red LED 32 and the blue LED 33 are alternately blinked by the daytime / night discrimination circuit 41 using the power storage unit 35 as a power source at night. In the self-luminous line-of-sight guidance mark 1, one red LED 32 serves as a central LED 32 c disposed at the center of the front surface 10 a of the main body 10 serving as a circular display surface of the light emitting body (LED) 31. The red LED 32 and the blue LED 33 are arranged equally and alternately along the circumferential direction with the center LED 32c as the center. Therefore, in the self-luminous gaze guidance mark 1 according to the embodiment, the red LED 32 excellent in shape recognition and the blue LED 33 excellent in presence recognition are driven on a road in bad weather such as fog or rain. It is possible for a driver to visually recognize it well.

ちなみに、一対比較法により、実施形態の視線誘導標1と、赤色系LED32と青色系LED33との配置や数を変えた比較例と、を比較した結果を表1に示す。   By the way, Table 1 shows a result of comparison between the line-of-sight guide mark 1 of the embodiment and a comparative example in which the arrangement and the number of the red LEDs 32 and the blue LEDs 33 are changed by the paired comparison method.

Figure 0005426450

なお、表1や図10に示すように、A(視線誘導標A)は、中央に赤色系LED32を設けて、その周囲に5個の青色系LED33を設けて、交互に、点滅させたものである。B(視線誘導標B)では、視線誘導標Aと逆の構成であって、中央に青色系LED33を設けて、その周囲に5個の赤色系LED32を設けて、交互に、点滅させたものである。
Figure 0005426450

In addition, as shown in Table 1 and FIG. 10, A (Gaze guidance mark A) is provided with a red LED 32 in the center and five blue LEDs 33 around it, and alternately blinking. It is. B (line-of-sight guide mark B) has a configuration opposite to that of line-of-sight guide mark A, and is provided with a blue LED 33 in the center and five red LEDs 32 around it, and alternately blinks. It is.

C(視線誘導標C)は、中央に赤色系LED32を設けて、その周囲に3個ずつの赤色系LED32と青色系LED33とを均等に交互に配設させて、赤色系LED32と青色系LED33とを交互に点滅させたものである。D(視線誘導標D)は、視線誘導標Cと逆の構成であって、中央に青色系LED33を設けて、その周囲に3個ずつの赤色系LED32と青色系LED33とを均等に交互に配設させて、赤色系LED32と青色系LED33とを交互に点滅させたものである。   C (line-of-sight guidance mark C) is provided with a red LED 32 in the center, and three red LEDs 32 and blue LEDs 33 are alternately and alternately arranged around the red LED 32 and the blue LED 33. And are blinking alternately. D (line-of-sight guidance mark D) has a configuration opposite to that of the line-of-sight guidance mark C, and a blue LED 33 is provided in the center, and three red LEDs 32 and blue LEDs 33 are alternately and alternately arranged around the LED. The red LED 32 and the blue LED 33 are alternately blinked by being disposed.

E(視線誘導標E)は、実施形態の視線誘導標1と同じものであり、中央に赤色系LED32を設けて、その周囲に4個ずつの赤色系LED32と青色系LED33とを均等に交互に配設させて、赤色系LED32と青色系LED33とを交互に点滅させたものである。F(視線誘導標F)は、視線誘導標Eと逆の構成であって、中央に青色系LED33を設けて、その周囲に4個ずつの赤色系LED32と青色系LED33とを均等に交互に配設させて、赤色系LED32と青色系LED33とを交互に点滅させたものである。   E (line-of-sight guide mark E) is the same as the line-of-sight guide mark 1 of the embodiment, and a red LED 32 is provided at the center, and four red LEDs 32 and blue LEDs 33 are alternately arranged around the LED. The red LED 32 and the blue LED 33 are alternately blinked. F (line-of-sight guidance mark F) has a configuration opposite to that of the line-of-sight guidance mark E, and a blue LED 33 is provided at the center, and four red LEDs 32 and blue LEDs 33 are alternately arranged around the LED. The red LED 32 and the blue LED 33 are alternately blinked by being disposed.

また、各視線誘導標A〜Fは、100φタイプとして、被験者から40m離し、かつ、高さ90cmの位置に設置し、夜間と同様な状態にできる屋内試験場において試験を行った。赤色系LED32と青色系LED33との点滅は、実施形態と同様に、360回/分としている。   In addition, each of the line-of-sight guidance marks A to F was a 100φ type, and was tested at an indoor test site that is 40 m away from the subject and installed at a height of 90 cm and can be in the same state as at night. The blinking of the red LED 32 and the blue LED 33 is 360 times / minute as in the embodiment.

さらに、通常時と濃霧時とにおいて、試験を行い、その際の評価の1〜9の数値は、つぎのような基準に基づく。   Furthermore, the test is performed in normal time and in dense fog, and the numerical values of 1 to 9 in the evaluation are based on the following criteria.

1:両方同じくらい目立つ
3:前の方が後の方より若干目立つ
5:前の方が後の方より目立つ
7:前の方が後の方よりかなり目立つ
9:前の方が後の方より絶対的に目立つ
そして、表1では、この評価に基づいて、一対比較法の所定の算出式により、重みを算出して記載している。
1: Both are conspicuous as much as 3: The front is slightly more prominent than the rear 5: The front is more prominent than the rear 7: The front is much more prominent than the rear 9: The front is rear In Table 1, weights are calculated and described using a predetermined calculation formula of the paired comparison method based on this evaluation.

この表1から解るように、見易さの比較となる重みに着目すると、使用する発光体(LED)が少なく、かつ、中央に赤色系LED32を配置させていない視線誘導標A,B,Dは、重みがおかれていない。一方、LEDを9個使用している視線誘導標E,Fには、重みが集中しており、視線誘導標E,Fは目立つと思われる。LEDの使用量では、視線誘導標A〜Dに関し、6個と7個では、中央に赤色系LED32が配置されていなければ、差はない。また、LEDの使用量では、視線誘導標C〜Fに関し、7個と9個とでは、大きく差がついている。さらに、色の配置では、中央に赤色系LED32が配置されて、全体として、青色系LED33より赤色系LED32が多くなれば、目立つと思われ、特に、視線誘導標C,Eでは、霧となる悪天候時においても、有効であると思われる。   As can be seen from Table 1, when attention is paid to the weight for comparison of visibility, the line-of-sight guides A, B, and D in which a small number of light emitters (LEDs) are used and the red LED 32 is not arranged in the center are used. Is not weighted. On the other hand, weights are concentrated on the line-of-sight guidance marks E and F using nine LEDs, and the line-of-sight guidance marks E and F are conspicuous. With regard to the amount of LED used, there is no difference between the six and seven line-of-sight guides A to D unless the red LED 32 is arranged at the center. Moreover, in the usage-amount of LED, regarding the line-of-sight guidance marks C-F, there is a large difference between 7 and 9. Furthermore, in the color arrangement, if the red LED 32 is arranged at the center and the red LED 32 is more than the blue LED 33 as a whole, it will be conspicuous. In particular, in the line-of-sight guides C and E, fog is generated. It seems to be effective even in bad weather.

すなわち、発光体(LED)31の表示面10aの中央に、赤色系LED32cが配置されて、かつ、その周囲に、3個以上の赤色系LED32と青色系LED33とが、周方向に沿って交互に配置されていれば、青色系LED33が、表示面10aの中央に配置されていないものの、中央LED32cの周囲で、3個以上、放射状に配置されるため、濃霧の悪天候時でも、視線誘導標1の存在認知を確保でき、そして逆に、目立ち易い赤色系LED32を、表示面10aの中央に配置させて、その周囲に、3個以上の赤色系LED32を配置させていれば、目立ち易い赤色系LED32が多くなって、全体のLED数が少なくとも、通常時ばかりでなく、濃霧等の悪天候時にも、良好な視認性を確保できることが解る。   That is, a red LED 32c is arranged at the center of the display surface 10a of the light emitter (LED) 31, and three or more red LEDs 32 and blue LEDs 33 are alternately arranged along the circumferential direction around the red LED 32c. If the blue LED 33 is not arranged in the center of the display surface 10a, three or more blue LEDs 33 are arranged radially around the central LED 32c. 1 and the conspicuous red LED 32 is arranged in the center of the display surface 10a and three or more red LEDs 32 are arranged around the red LED 32. It can be seen that the number of LEDs 32 is increased, and the total number of LEDs can be ensured at least in normal weather as well as in bad weather such as dense fog.

そのため、実施形態の自発光視線誘導標1では、霧や降雨時の悪天候時に、道路を走行する運転者に、良好に視認させることができることとなる。   Therefore, in the self-luminous gaze guidance mark 1 of the embodiment, the driver traveling on the road can be favorably visually recognized during bad weather such as fog or rain.

さらに、実施形態の自発光視線誘導標1では、表示面10aの中央に配置させた中央LED32cを中心に、4個ずつの赤色系LED32と青色系LED33とが、周方向に沿って、均等で、かつ、交互に、配設される構成であって、表示面10aを円形としている場合に、無駄な表示エリアを無くして、表示面10aと相似形となるように、好適に、中央LED32cの周囲に、赤色系LED32と青色系LED33とを配設させることができる。   Furthermore, in the self-luminous line-of-sight guidance mark 1 of the embodiment, the four red LEDs 32 and the blue LEDs 33 are evenly distributed along the circumferential direction around the central LED 32c disposed at the center of the display surface 10a. In addition, when the display surface 10a has a circular shape, the center LED 32c preferably has a configuration similar to the display surface 10a without using a wasteful display area. Around the periphery, a red LED 32 and a blue LED 33 can be arranged.

したがって、実施形態の自発光視線誘導標1は、表示面10aを円形状としても、悪天候時の視認性を良好として、使用することができる。   Therefore, the self-luminous gaze guidance mark 1 of the embodiment can be used with good visibility in bad weather even if the display surface 10a is circular.

なお、実施形態では、中央に赤色系LED32を設けて、その周囲に4個ずつの赤色系LED32と青色系LED33とを均等に交互に配設させたものを示したが、視線誘導標Cのように、中央に赤色系LED32を設けて、その周囲に3個ずつの赤色系LED32と青色系LED33とを均等に交互に配設させたり、あるいは、中央に赤色系LED32を設けて、その周囲に5個以上ずつの赤色系LED32と青色系LED33とを均等に交互に配設させてもよい。   In the embodiment, the red LED 32 is provided at the center, and four red LEDs 32 and blue LEDs 33 are alternately and alternately arranged around the red LED 32. As described above, a red LED 32 is provided in the center, and three red LEDs 32 and blue LEDs 33 are alternately and alternately arranged around the periphery, or a red LED 32 is provided in the center and the periphery thereof. Alternatively, five or more red LEDs 32 and blue LEDs 33 may be disposed alternately and evenly.

さらに、実施形態では、中央LED32cの周囲に、周方向に沿って一重の円環状に、赤色系LED32と青色系LED33とを均等に交互に配設させたが、中央LED32cの周囲に、周方向に沿って、二重、あるいは、三重以上に、赤色系LED32と青色系LED33とを均等に交互に配設させてもよい。例えば、図11に示す視線誘導標G、Hのように、中央LED32cを中心として、二重の円環状として、中央LED32cに近い第1円環部C1に、3個ずつの赤色系LED32と青色系LED33とを均等に交互に配設させ、その周囲の第2円環部C2に、6個ずつの赤色系LED32と青色系LED33とを均等に交互に配設させてもよい。なお、視線誘導標G、Hの相違は、第1円環部C1が、30°の角度分ずれて配置されている点である。   Further, in the embodiment, the red LEDs 32 and the blue LEDs 33 are alternately and evenly arranged around the central LED 32c in a single annular shape along the circumferential direction. The red LEDs 32 and the blue LEDs 33 may be arranged alternately and evenly in a double or triple manner. For example, like the line-of-sight guidance signs G and H shown in FIG. 11, three red LEDs 32 and three blue LEDs 32 are arranged in the first annular portion C1 close to the center LED 32c as a double ring centering on the center LED 32c. The red LEDs 32 and the blue LEDs 33 may be arranged alternately and evenly in the second annular portion C2 around them. In addition, the difference between the line-of-sight guidance marks G and H is that the first annular portion C1 is arranged so as to be shifted by an angle of 30 °.

但し、実施形態のように、一重としておけば、使用する赤色系LED32と青色系LED33との数を、中央LED32cを除いて3個ずつ若しくは4個ずつ等とした9個以下と少なくできて、かつ、道路際等に設置される自発光でない反射板タイプの70〜100φとした視線誘導標の代替品として、好適に使用することができる。   However, as in the embodiment, if the single LED is used as a single layer, the number of red LEDs 32 and blue LEDs 33 to be used can be reduced to 9 or less, such as 3 or 4 except for the central LED 32c. In addition, it can be suitably used as a substitute for a line-of-sight guidance sign of 70 to 100φ of a reflector type that is not self-luminous installed on the road.

なお、中央LED32cを中心として、その周囲に、均等でかつ交互に、赤色系LED32と青色系LED33とを配置させる場合、点灯時に円環状のイメージを惹起できれば、必ずしも、実施形態のように、1個ずつの赤色系LED32と青色系LED33とを交互に配置させなくともよく、例えば、どちらかの一方を、2個等の複数として、均等に、周方向に沿って繰り返して配置させるように、交互に赤色系LED32と青色系LED33とを配置させたり、あるいは、共に、同数の複数個ずつ、若しくは、異なった数の複数個ずつ、を繰り返して均等に循環させるように、中央LED32cの周囲で、周方向に沿って交互に所定個数ずつの赤色系LED32と青色系LED33とを配置させてもよい。   Note that when the red LED 32 and the blue LED 33 are arranged evenly and alternately around the central LED 32c as the center, as long as an annular image can be generated at the time of lighting, it is not necessarily limited to 1 as in the embodiment. The red LEDs 32 and the blue LEDs 33 do not have to be alternately arranged. For example, one of the red LEDs 32 and the blue LEDs 33 may be repeatedly arranged along the circumferential direction equally as two or more. The red LED 32 and the blue LED 33 are alternately arranged, or the same number or a plurality of different numbers are repeatedly circulated evenly around the central LED 32c. Alternatively, a predetermined number of red LEDs 32 and blue LEDs 33 may be alternately arranged along the circumferential direction.

また、実施形態の自発光視線誘導標1では、赤色系LED32と青色系LEDとが、それぞれ、透明な光源カバー部12により覆われ、光源カバー部12が、発光時の光を拡散可能に、それぞれ、所定のレンズ部13と円筒状のリブ14とを備えて構成されている。レンズ部13は、赤色系LED32と青色系LED33との各々の前方側で、外側面13aと内側面13bとをともに前方側へ突出させた凸メニスカスレンズ形状とし、リブ14は、赤色系LED32と青色系LED33との各々の周囲を囲んで、レンズ部13の外周縁から内側に延びる円筒状としている。   Further, in the self-luminous line-of-sight guidance mark 1 of the embodiment, the red LED 32 and the blue LED are each covered with a transparent light source cover part 12, so that the light source cover part 12 can diffuse light at the time of light emission. Each includes a predetermined lens portion 13 and a cylindrical rib 14. The lens unit 13 has a convex meniscus lens shape in which both the outer side surface 13a and the inner side surface 13b protrude forward on the front side of each of the red LED 32 and the blue LED 33, and the rib 14 includes the red LED 32 and the red LED 32. Each of the blue LEDs 33 is surrounded by a cylindrical shape extending inward from the outer peripheral edge of the lens unit 13.

そのため、レンズ部13が、拡散し難いLED32,33の光を、レンズ部13の全域から発光させるように、拡散させる凸レンズから構成され、さらに、メニスカスレンズとして、レンズ部13の外周縁13c付近でも、輝度の低下を抑えて、光を発散させることができて、表示面10aの正面からだけでなく、表示面10aに対して斜め方向からでも、LED32,33の光が視認し易くなる。すなわち、このような構成では、極力、赤色系LED32や青色系LED33の明るい輝度と広い視野範囲とを、確保できる。さらに、レンズ部13の外周縁13cには、LED32,33を包むように、透明な円筒状のリブ14が、突設されて、LED32,33の周囲に発散する光も、リブ14の内周面14bや外周面14cで反射させて(図5参照)、レンズ部13側から放射できることとなって、一層、LED32,33をレンズ部13全体から光らせるような態様、とすることができる。なお、実施形態の場合、リブ14の前後方向の後半分程度の外周面14cには、LED32,33の光を乱反射させるようなシボが形成されており、一層、シボの乱反射を利用して、レンズ部13から放射するLED32,33の輝度を増加させることが可能となる。   Therefore, the lens unit 13 is configured by a convex lens that diffuses light of the LEDs 32 and 33 that are difficult to diffuse from the entire region of the lens unit 13, and further, as a meniscus lens, also in the vicinity of the outer peripheral edge 13c of the lens unit 13. In addition, it is possible to suppress a decrease in luminance and diverge light, and it becomes easy to visually recognize the light of the LEDs 32 and 33 not only from the front surface of the display surface 10a but also from an oblique direction with respect to the display surface 10a. That is, with such a configuration, it is possible to secure the bright brightness and the wide visual field range of the red LED 32 and the blue LED 33 as much as possible. Further, a transparent cylindrical rib 14 is provided on the outer peripheral edge 13 c of the lens portion 13 so as to wrap the LEDs 32, 33, and the light that diverges around the LEDs 32, 33 is also the inner peripheral surface of the rib 14. 14b and the outer peripheral surface 14c are reflected (see FIG. 5), and can be emitted from the lens unit 13 side, so that the LEDs 32 and 33 can be further illuminated from the entire lens unit 13. In the case of the embodiment, the outer peripheral surface 14c of the rear half of the rib 14 in the front-rear direction is formed with a texture that irregularly reflects the light of the LEDs 32 and 33. Further, using the irregular reflection of the texture, It becomes possible to increase the luminance of the LEDs 32 and 33 emitted from the lens unit 13.

なお、実施形態では、レンズ部13の外周縁13c(外縁13aa)までの直径寸法D1を15φ程度とした場合を示したが、凸メニスカスレンズ形状のレンズ部13の全域を光らせることができれば、レンズ部13の直径寸法D1は、10〜20φの範囲内で、適宜、設定してもよい。勿論、それらの構成の視線誘導標では、70〜100φ程度とした表示面10aにおいて、中央LED32cの周囲に、円環状に6個や8個のLED32,33を交互に少なく配置させても、好適に、運転者からの視認性を確保できることとなる。ちなみに、レンズ部13の直径寸法D1が、10φ未満と小さければ、LED31の光を拡散させ難く、逆に、レンズ部13の直径寸法D1が、20φを超える場合には、LED31の輝度の低下を招いて、好ましくなく、レンズ部13の直径寸法D1は、10〜20φの範囲内が望ましい。   In the embodiment, the case where the diameter D1 to the outer peripheral edge 13c (outer edge 13aa) of the lens unit 13 is set to about 15φ has been described. However, if the entire region of the lens unit 13 having a convex meniscus lens shape can be illuminated, the lens The diameter dimension D1 of the portion 13 may be appropriately set within a range of 10 to 20φ. Of course, in the line-of-sight guide having such a configuration, it is preferable that six or eight LEDs 32 and 33 are alternately arranged in an annular shape around the center LED 32c on the display surface 10a of about 70 to 100φ. In addition, the visibility from the driver can be ensured. Incidentally, if the lens portion 13 has a diameter D1 of less than 10φ, it is difficult to diffuse the light of the LED 31, and conversely if the lens portion 13 has a diameter D1 of more than 20φ, the brightness of the LED 31 decreases. Inviting, it is not preferable, and the diameter dimension D1 of the lens portion 13 is desirably within a range of 10 to 20φ.

さらに、実施形態では、視線誘導標1の表示面10aが、光源カバー部12を配設させた透明な前面カバー部11を設けて構成され、前面カバー部11の後方には、赤色系LED32と青色系LED33とを前方に突出させ、かつ、リブ14の後端面14aに前面44aを当接させて、前方からの光を反射可能な反射シート44が、配設されている。そのため、実施形態の視線誘導標1では、LED32,33が発光していない昼間等においても、表示面10aで受光した光を反射させることができて、視線誘導標1を運転者に視認させることができる。さらに、LED32,33の発光時には、反射シート44を経て反射する光も、光源カバー部12のリブ14の内周面14bや外周面14cを利用して、レンズ部13側から放射できるため、一層、LED32,33をレンズ部13全体から光らせるような態様、とすることができる。   Furthermore, in the embodiment, the display surface 10a of the line-of-sight guide 1 is configured by providing a transparent front cover part 11 in which a light source cover part 12 is disposed, and a red LED 32 and a rear side of the front cover part 11 A reflection sheet 44 that projects the blue LED 33 forward and has the front surface 44a in contact with the rear end surface 14a of the rib 14 to reflect light from the front is disposed. Therefore, in the line-of-sight guide 1 of the embodiment, the light received by the display surface 10a can be reflected even in the daytime when the LEDs 32 and 33 are not emitting light, and the driver can visually recognize the line-of-sight guide 1. Can do. Further, when the LEDs 32 and 33 emit light, the light reflected through the reflection sheet 44 can also be emitted from the lens unit 13 side using the inner peripheral surface 14b and the outer peripheral surface 14c of the rib 14 of the light source cover unit 12. The LED 32 and 33 can be made to emit light from the entire lens unit 13.

なお、実施形態の反射シート44では、黄色のものを例示したが、他に、白色や橙色、さらに、適宜、赤色、青色、緑色等の種々の色に彩色されているものが使用できる。   In addition, in the reflective sheet 44 of embodiment, although the yellow thing was illustrated, what is colored in various colors, such as white, orange, and also red, blue, green, etc. can be used other than that.

さらに、実施形態の自発光視線誘導標1では、前面39a側に発光体31を設けて、後面39b側に発光体31の電源となる蓄電体35を設け、かつ、発光体31を夜間に点滅させるように制御する制御基盤39と、太陽光により起電されて蓄電体35に充電させる太陽電池37と、制御基盤39と太陽電池37とを収納するケース3と、を備えて構成されている。そして、ケース3が、前面カバー部11を設けて、発光体31、反射シート44、及び、太陽電池37を覆う前側ケース部18と、後面側の後側ケース部22と、の二つから構成され、前側ケース部18と後側ケース部22とが、パッキン25を介在させて、ケース3内を水密状態として、結合させるとともに、ケース3内に、乾燥剤27を配設させて、結合されている。   Furthermore, in the self-luminous line-of-sight guidance mark 1 of the embodiment, the light emitter 31 is provided on the front surface 39a side, the power storage body 35 serving as the power source of the light emitter 31 is provided on the rear surface 39b side, and the light emitter 31 blinks at night. A control base 39 that is controlled so as to cause the solar battery 37 to be charged by the sunlight and charged in the power storage unit 35, and a case 3 that houses the control base 39 and the solar battery 37. . The case 3 includes the front cover portion 11 and includes the front case portion 18 that covers the light emitter 31, the reflection sheet 44, and the solar cell 37, and the rear case portion 22 on the rear side. The front case portion 18 and the rear case portion 22 are combined with the packing 25 interposed therebetween so that the inside of the case 3 is watertight, and the desiccant 27 is disposed in the case 3. ing.

すなわち、実施形態の自発光視線誘導標1では、パッキン25を利用して、ケース3内が水密状態とされて、さらに、ケース3内に乾燥剤27が配設されている。そのため、製造当初のケース3を閉める際に、水蒸気がケース3内に入っていても、ケース3内の水蒸気が、乾燥剤27により、吸湿されて、夜間時の温度低下時、結露するための水蒸気が極力無くなって、発光体(LED)31を覆った前面カバー部11の後面11a側(裏面側)の結露や曇りを抑制できて、発光体31の発光時の視認性を阻害しない。ちなみに、光源カバー部12の後面(内側面)13b側に結露や曇りが生じていれば、青色系LED33の光は、赤色系LED32の光に比べて、視認性を低下させ易いことから、このような乾燥剤27によるケース3内の除湿は、青色系LED33を設けた自発光視線誘導標1に、好適となる。勿論、この場合、ケース3がパッキン25を利用して水密状態を維持するため、雨水がケース3内に浸入することは無く、安定して、発光体31を覆った前面カバー部11の後面11a側の結露を防止できる。   That is, in the self-luminous line-of-sight guidance mark 1 of the embodiment, the inside of the case 3 is made watertight using the packing 25, and the desiccant 27 is further arranged in the case 3. Therefore, when closing the case 3 at the beginning of manufacture, even if water vapor is contained in the case 3, the water vapor in the case 3 is absorbed by the desiccant 27 and is condensed when the temperature is lowered at night. Water vapor is eliminated as much as possible, so that dew condensation and fogging on the rear surface 11a side (back surface side) of the front cover portion 11 covering the light emitter (LED) 31 can be suppressed, and visibility of the light emitter 31 during light emission is not hindered. By the way, if condensation or fogging occurs on the rear surface (inner side surface) 13b side of the light source cover part 12, the light of the blue LED 33 can easily reduce the visibility compared to the light of the red LED 32. Such dehumidification in the case 3 with the desiccant 27 is suitable for the self-luminous line-of-sight guidance mark 1 provided with the blue LEDs 33. Of course, in this case, since the case 3 maintains the watertight state using the packing 25, rainwater does not enter the case 3, and the rear surface 11a of the front cover part 11 covering the light emitter 31 stably. Condensation on the side can be prevented.

さらに、実施形態では、パッキン25には、前側ケース部18と後側ケース部22との外周縁22aからケース3の内側に延びる延設部25cが設けられ、乾燥剤27が、シート状に配置されるとともに、延設部25cに位置規制されて、制御基盤39の後面39b側に、配置されている。そして、パッキン25と乾燥剤27との少なくとも一方(実施形態の場合、乾燥剤27)が、前側ケース部18と後側ケース部22との相互の結合時、反射シート44を介在させて、蓄電体35ごと制御基盤39を、前側ケース部18のリブ14の後端面14a側に押圧し、前側ケース部18のリブ14と協働して、挟持して保持する構成としている。さらに、各蓄電体35が、前側ケース部18と後側ケース部22との相互の結合時に、制御基盤39を各リブ14に対して前後に傾斜させずに前側ケース部18側に押圧可能に、制御基盤39の後面39b側に、均等に、配設されている。   Further, in the embodiment, the packing 25 is provided with an extending portion 25c extending from the outer peripheral edge 22a of the front case portion 18 and the rear case portion 22 to the inside of the case 3, and the desiccant 27 is arranged in a sheet shape. In addition, the position of the extended portion 25c is restricted, and the control base 39 is disposed on the rear surface 39b side. Then, at least one of the packing 25 and the desiccant 27 (in the case of the embodiment, the desiccant 27) has the reflective sheet 44 interposed between the front case part 18 and the rear case part 22 to store the electricity. The control base 39 together with the body 35 is pressed against the rear end face 14a side of the rib 14 of the front case portion 18, and is held and held in cooperation with the rib 14 of the front case portion 18. Further, each power storage unit 35 can be pressed toward the front case portion 18 without tilting the control base 39 forward or backward with respect to each rib 14 when the front case portion 18 and the rear case portion 22 are coupled to each other. The control board 39 is evenly arranged on the rear surface 39b side.

そのため、実施形態では、シート状の乾燥剤27が、制御基盤39の後面39b側で、発光体31を覆った前面カバー部11と平行な面状に配設されることとなって、ケース3内の水分を的確に吸湿することができる。また、このような構成では、発光体31や蓄電体35を設けた制御基盤39を、別途、ねじ等を利用して、ケース3の前側ケース部18や後側ケース部22に取り付けなくともよく、制御基盤39をケース3に取り付ける部品点数・工数・コストを低減することができる。さらに、複数の蓄電体35が、制御基盤39を、各リブ14に対して前後に傾斜させずに、前側ケース部18側に押圧できるため、各発光体(LED)31の光を、安定して、光源カバー部12を経て、前方に放射させることができる。   Therefore, in the embodiment, the sheet-like desiccant 27 is disposed on the rear surface 39b side of the control base 39 in a plane shape parallel to the front cover portion 11 that covers the light emitter 31. The moisture inside can be absorbed accurately. In such a configuration, the control base 39 provided with the light emitter 31 and the power storage unit 35 may not be attached to the front case portion 18 and the rear case portion 22 of the case 3 separately using screws or the like. The number of parts, man-hours, and cost for attaching the control base 39 to the case 3 can be reduced. Further, since the plurality of power storage bodies 35 can press the control base 39 toward the front case portion 18 without tilting the control base 39 back and forth with respect to the ribs 14, the light of each light emitting body (LED) 31 is stabilized. Thus, the light can be emitted forward through the light source cover 12.

なお、実施形態の場合、制御基盤39の前面39aや反射シート44の前面44aには、細かい凹凸があることから、リブ14の内周側のレンズ部13と反射シート44との間のエリアは、密封状態とはならず、そのエリアに湿気があれば、乾燥剤27に吸湿されることとなる。   In the case of the embodiment, since the front surface 39a of the control base 39 and the front surface 44a of the reflection sheet 44 have fine irregularities, the area between the lens portion 13 on the inner peripheral side of the rib 14 and the reflection sheet 44 is If the area is damp, the desiccant 27 will absorb moisture.

また、実施形態では、分散された計9個のリブ14が、反射シート44を介在させて、制御基盤39を当接支持する構造となって、円筒状のリブ14の剛性により、本体部10の剛性が高くなって、視線誘導標1の強度を高めることができる。、
さらに、実施形態では、蓄電体35を乾燥剤27により押圧した場合を示したが、ケース3の結合時、パッキン25によって、蓄電体35を押圧したり、乾燥剤27とパッキン25とを併用して、蓄電体35を押圧してもよい。
In the embodiment, a total of nine dispersed ribs 14 have a structure in which the reflection base 44 is interposed to support and support the control base 39, and the main body portion 10 is formed by the rigidity of the cylindrical ribs 14. The rigidity of the gaze guidance mark 1 can be increased. ,
Furthermore, although the case where the electrical storage body 35 was pressed by the desiccant 27 was shown in the embodiment, the electrical storage body 35 is pressed by the packing 25 when the case 3 is coupled, or the desiccant 27 and the packing 25 are used in combination. The power storage unit 35 may be pressed.

さらにまた、実施形態では、ケース3における太陽電池37を収納する太陽電池収納部(上部収納部)4が、前面カバー部11の上方で、前方に突出するように、庇状に形成されて、太陽電池37を略水平方向に沿って配設させるとともに、太陽電池37を覆う透明な上面カバー部5を、太陽電池37の上方で、雨水を流下可能に、前下がりに傾斜させるようにして、構成している。そのため、実施形態では、発光体31の前面側の上方が、庇状の上部収納部4に覆われることから、発光体31を覆う前面カバー部11が、雨水で汚れることを防止でき、かつ、薄暮でも、発光体31の光を鮮明にすることができる。また、上部収納部4の上面カバー部5が、前下がりに傾斜しており、雨水を貯め難いことから、雨上がりの晴天時において、太陽電池37が直ちに太陽光を受光して、蓄電体35に充電することができる。   Furthermore, in the embodiment, the solar cell storage portion (upper storage portion) 4 that stores the solar cell 37 in the case 3 is formed in a bowl shape so as to protrude forward above the front cover portion 11. The solar cell 37 is disposed along a substantially horizontal direction, and the transparent upper surface cover portion 5 that covers the solar cell 37 is tilted forward and downward so that rainwater can flow over the solar cell 37, It is composed. Therefore, in the embodiment, since the upper part of the front surface side of the light emitter 31 is covered with the bowl-shaped upper storage portion 4, the front cover portion 11 covering the light emitter 31 can be prevented from being stained with rainwater, and Even in twilight, the light of the light emitter 31 can be made clear. Further, since the upper surface cover portion 5 of the upper storage portion 4 is inclined forward and it is difficult to store rainwater, the solar cell 37 immediately receives sunlight in the fine weather after the rain, Can be charged.

なお、実施形態では、発光体(LED)31を発光させる電源を、太陽電池37の起電力を利用した場合を示したが、商用電源、あるいは、風力発電の電源を利用して、発光体31を発光させてもよい。   In addition, although the case where the electromotive force of the solar cell 37 was utilized for the power supply which light-emits the light-emitting body (LED) 31 in embodiment, the light-emitting body 31 using a commercial power supply or the power supply of a wind power generation was shown. May be emitted.

また、実施形態では、発光体(LED)31の表示面10aを円形とした場合を示したが、設置させる場所に応じて、表示面10aの外形形状は、楕円形状や三角形状、あるいは、四角等の多角形状に変更してもよい。   Moreover, although the case where the display surface 10a of the light emitting body (LED) 31 was circular was shown in the embodiment, the external shape of the display surface 10a is elliptical, triangular, or square depending on the installation location. You may change into polygonal shapes, such as.

1…自発光視線誘導標、
3…ケース、
4…(太陽電池収納部)上部収納部、
5…上面カバー部、
10a…(表示面)前面、
11…前面カバー部、
12…光源カバー部、
13…レンズ部、
13a…外側面、
13b…内側面、
14…リブ、
14a…後端面、
18…前側ケース部、
22…後側ケース部、
25…パッキン、
25c…延設部、
27…(シート状)乾燥剤、
31…発光体、
32…赤色系LED、
32c…中央LED、
33…青色系LED、
35…蓄電体、
37…太陽電池、
39…制御基盤、
44…反射シート。
1 ... Spontaneous gaze guidance mark,
3 ... Case,
4 ... (solar cell storage) upper storage,
5. Top cover part,
10a (display surface) front surface,
11 ... Front cover part,
12: Light source cover,
13 ... Lens part,
13a ... outer surface,
13b ... inside surface,
14 ... ribs,
14a ... rear end surface,
18 ... front case part,
22 ... rear case part,
25 ... packing,
25c ... Extension part,
27 ... (sheet-like) desiccant,
31 ... illuminant,
32 ... Red LED,
32c ... Central LED,
33 ... Blue LED,
35 ... Accumulator,
37 ... solar cell,
39 ... Control infrastructure,
44: Reflective sheet.

Claims (6)

複数の発光体が、それぞれ、交互に点滅される赤色系LEDと青色系LEDとから構成される自発光視線誘導標であって、
一つの赤色系LEDが、発光体の表示面における中心に配置される中央LEDとし、
該中央LED以外の前記赤色系LEDと前記青色系LEDとが、それぞれ、3個以上使用されるとともに、前記中央LEDを中心として、周方向に沿って、均等で、かつ、交互に、配設され、さらに
前記赤色系LEDと前記青色系LEDとが、それぞれ、透明な光源カバー部に覆われ、
該光源カバー部が、発光時の光を拡散可能に、それぞれ、
前記赤色系LEDと前記青色系LEDとの各々の前方側で、外側面と内側面とをともに前方側へ突出させた凸メニスカスレンズ形状のレンズ部と、
前記赤色系LEDと前記青色系LEDとの各々の周囲を囲んで、前記レンズ部の外周縁から後方へ延びる円筒状のリブと、
を配設させて構成されていることを特徴とする自発光視線誘導標。
A plurality of light emitters are self-luminous line-of-sight guidance signs each composed of a red LED and a blue LED flashing alternately,
One red LED is a central LED arranged at the center of the display surface of the light emitter,
Three or more of the red LED and the blue LED other than the central LED are used, respectively, and are arranged equally and alternately around the central LED along the circumferential direction. And further
Each of the red LED and the blue LED is covered with a transparent light source cover,
The light source cover part can diffuse light at the time of light emission,
A convex meniscus lens-shaped lens part in which both the outer surface and the inner surface protrude forward on the front side of each of the red LED and the blue LED,
A cylindrical rib that surrounds each of the red LED and the blue LED and extends rearward from the outer peripheral edge of the lens unit;
Self-luminous delineator, characterized in that it is constituted by arranging the.
前記中央LEDを中心として周方向に配置される前記赤色系LEDと前記青色系LEDとが、一重の円環状に、配設されていることを特徴とする請求項1に記載の自発光視線誘導標。   The self-luminous line-of-sight guidance according to claim 1, wherein the red LED and the blue LED arranged in the circumferential direction around the central LED are arranged in a single annular shape. Mark. 前記視線誘導標の前記表示面が、前記光源カバー部を配設させた透明な前面カバー部を設けて構成され、
前記前面カバー部の後方に、前記赤色系LEDと前記青色系LEDとを前方に突出させ、かつ、前記リブの後端面に前面を当接させて、前方からの光を反射可能な反射シートが、配設されていることを特徴とする請求項1若しくは請求項2に記載の自発光視線誘導標。
The display surface of the line-of-sight guidance mark is configured by providing a transparent front cover portion in which the light source cover portion is disposed,
A reflection sheet capable of reflecting light from the front by projecting the red LED and the blue LED forward and causing the front surface to abut the rear end surface of the rib behind the front cover. The self-luminous line-of-sight guidance mark according to claim 1 or 2 , wherein
前面側に前記発光体を設けて、後面側に前記発光体の電源となる蓄電体を設け、かつ、前記発光体を夜間に点滅させるように制御する制御基盤と、
太陽光により起電されて前記蓄電体に充電させる太陽電池と、
前記制御基盤と前記太陽電池とを収納するケースと、
を備えて構成されるとともに、
前記ケースが、前記前面カバー部を有して、前記発光体、前記反射シート、及び、前記太陽電池を覆う前側ケース部と、後面側の後側ケース部と、の二つから構成され、
前記前側ケース部と前記後側ケース部とが、パッキンを介在させて、前記ケース内を水密状態として、結合されるとともに、前記ケース内に、乾燥剤を配設させて、結合されていることを特徴とする請求項3に記載の自発光視線誘導標。
A control base for providing the light emitter on the front side, providing a power storage unit as a power source for the light emitter on the rear side, and controlling the light emitter to blink at night;
A solar cell that is generated by sunlight and charges the power storage unit;
A case for housing the control board and the solar cell;
And configured with
The case has the front cover part, and is composed of two parts, a front case part that covers the light emitter, the reflection sheet, and the solar cell, and a rear case part on the rear side.
The front case portion and the rear case portion are joined with a packing interposed between the case and a watertight state, and a desiccant is disposed in the case. The self-luminous line-of-sight guidance mark according to claim 3 .
前記パッキンが、前記前側ケース部と前記後側ケース部との外周縁から前記ケースの内側に延びる延設部を備え、
前記乾燥剤が、シート状に配置されるとともに、前記延設部に位置規制されて、前記制御基盤の後面側に、配置されるとともに、
前記パッキンと前記乾燥剤との少なくとも一方が、前記前側ケース部と前記後側ケース部との相互の結合時、前記反射シートを介在させて、前記蓄電体ごと前記制御基盤を、前記前側ケース部の前記リブの後端面側に押圧し、前記前側ケース部の前記リブと協働して、挟持して保持する構成とし、
前記蓄電体が、前記前側ケース部と前記後側ケース部との相互の結合時に、前記制御基盤を前記各リブに対して前後に傾斜させずに前記前側ケース部側に押圧可能に、前記制御基盤の後面側に、分散されて配設されていることを特徴とする請求項4に記載の自発光視線誘導標。
The packing includes an extending portion extending from the outer peripheral edge of the front case portion and the rear case portion to the inside of the case,
While the desiccant is disposed in a sheet shape, the position of the desiccant is regulated by the extended portion, and is disposed on the rear surface side of the control base,
When at least one of the packing and the desiccant is coupled to the front case portion and the rear case portion, the control sheet is placed together with the power storage unit with the reflective sheet interposed between the front case portion and the rear case portion. The rib is pressed against the rear end surface side, and in cooperation with the rib of the front case portion, is held and held,
The power storage unit can be pressed to the front case portion side without tilting the control base back and forth with respect to the ribs when the front case portion and the rear case portion are coupled to each other. The self-luminous gaze guidance mark according to claim 4 , wherein the self-luminous line-of-sight guidance mark is distributed on the rear side of the base.
前記ケースにおける前記太陽電池を収納する太陽電池収納部が、
前記前面カバー部の上方で、前方に突出するように、庇状に形成され、かつ、
前記太陽電池を略水平方向に沿って配設させるとともに、該太陽電池を覆う透明な上面カバー部を、前記太陽電池の上方で、雨水を流下可能に、前下がりに傾斜させて、
構成されていることを特徴とする請求項4若しくは請求項5に記載の自発光視線誘導標。
A solar cell storage unit for storing the solar cell in the case,
Above the front cover part, it is formed in a bowl shape so as to protrude forward, and
The solar cell is disposed along a substantially horizontal direction, and a transparent upper surface cover portion covering the solar cell is inclined upward and downward so that rainwater can flow over the solar cell,
The self-luminous line-of-sight guidance mark according to claim 4 or 5 , wherein the self-luminous line-of-sight guidance mark is configured.
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