JP3761348B2 - LED mounting spacer - Google Patents

LED mounting spacer Download PDF

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Publication number
JP3761348B2
JP3761348B2 JP03058399A JP3058399A JP3761348B2 JP 3761348 B2 JP3761348 B2 JP 3761348B2 JP 03058399 A JP03058399 A JP 03058399A JP 3058399 A JP3058399 A JP 3058399A JP 3761348 B2 JP3761348 B2 JP 3761348B2
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JP
Japan
Prior art keywords
led
spacer
protrusion
hole
insertion hole
Prior art date
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Expired - Fee Related
Application number
JP03058399A
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Japanese (ja)
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JP2000228589A (en
Inventor
豊司 栗田
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NEC Engineering Ltd
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NEC Engineering Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
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Priority to JP03058399A priority Critical patent/JP3761348B2/en
Publication of JP2000228589A publication Critical patent/JP2000228589A/en
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  • Led Device Packages (AREA)

Description

【0001】
【発明の属する技術分野】
本発明は、LED取付用スペーサに関し、特に、LEDをプリント基板に横型に取り付けるために使用されるLED取付用スペーサに関する。
【0002】
【従来の技術】
従来、発光ダイオード(以下「LED」という)をプリント基板に取り付けるため、例えば特開平6−188535号公報に記載のスペーサ等が提案されている。
【0003】
このスペーサは、LEDの取付位置毎に専用のものが単独で使用され、図7に示すように、LED104を横型に取り付ける場合には、プリント基板106上にスペーサ101を載置し、上方からLED104のリード105を段部101aの貫通孔101bに挿入し、プリント基板106の下側に突出させ、この部分をはんだ付けする。その後、LED104を矢印X方向に曲げて横型にする。この際、LED104の取付高さは、スペーサ101の高さを変化させることにより調節し、リード105の折り曲げ位置は、段部101aの高さを変化させることにより調節していた。
【0004】
【発明が解決しようとする課題】
しかし、上記従来のLED取付用スペーサにおいては、LEDを横型にして、プリント基板に対して垂直方向に複数取り付ける場合には、LEDの取付位置がプリント基板上から離れるに従って、LEDの先端からリードの曲げ位置までの距離が大きくなるため、LEDの先端の位置が不安定になるという問題がある。また、この際、位置合わせのための部品等が必要になるという問題もある。
【0005】
さらに、LEDの取付高さに応じてリードの曲げ位置が変わるため、LEDの取付高さに応じてスペーサの形状を変化させなければならないという問題がある。
【0006】
そこで、本発明は、上記従来のLED取付用スペーサにおける問題点に鑑みてなされたものであって、LEDを横型にして、プリント基板に対して垂直方向に複数取り付ける場合にも、LEDの先端の位置が不安定になることがなく、位置合わせのための部品等が不要で、LEDの取付高さに応じてスペーサの形状を変化させる必要のないLED取付用スペーサを提供することを目的とする。
【0007】
【課題を解決するための手段】
上記目的を達成するため、請求項1記載の発明は、LED取付用スペーサであって、直方体状に形成された本体と、該本体の一面から、該一面と相対向する他の一面までを貫通する2つの第1貫通孔と、前記一面に隣接する一面から、該一面と相対向する他の一面までを貫通するとともに、各々が前記第1貫通孔の各々と交差する2つの第2貫通孔と、該第1貫通孔が穿設された一面に立設された第1突起と、該第1突起が穿設された一面と相対向する他の一面に穿設され、LEDまたは前記第1突起を挿入可能な第1挿入孔と、前記第2貫通孔が穿設された一面に立設された第2突起と、該第2突起が穿設された一面と相対向する他の一面に穿設され、前記第2突起を挿入可能な第2挿入孔と、先端に傾斜面を有する棒状の2本のガイド部を有するガイド部材とを有し、前記ガイド部の各々が前記第1貫通孔の各々に挿入されると、前記傾斜面によって前記第1貫通孔及び前記第2貫通孔が略々完全に閉じられることを特徴とする。
【0008】
そして、請求項1記載の発明によれば、第1貫通孔に挿入されたガイド部の傾斜面によって、第1貫通孔から挿入されたLEDのリードが曲げられて第2貫通孔を通って出ていくため、工具が不要で、リードの曲げ位置に留意することなく容易に曲げ加工を行うことができる。
【0009】
また、一つのLED取付用スペーサの第2突起を他のLED取付用スペーサの第2挿入孔に挿入することにより、複数のLED取付用スペーサをプリント基板に対して垂直方向に取り付けることができ、この際、複数のLED取付用スペーサの第2貫通孔が一体となるため、LEDのリードの曲げ位置からLEDの先端までの距離を部品の種類を変えることなく、一定の間隔で設定することが可能となり、プリント基板に対して垂直方向にLEDを横型に複数取り付けても、LEDの先端位置を正確に合わせることができる。
【0010】
さらに、一つのLED取付用スペーサの第1突起を他のLED取付用スペーサの第1挿入孔に挿入することにより、複数のLED取付用スペーサをプリント基板に対して平行な方向に取り付けることができ、この際、複数のLED取付用スペーサの第1貫通孔が一体となるため、プリント基板に対し平行な方向にLEDを横型に取り付ける場合に、LEDの取付位置を容易に変えることができ、専用のスペーサを用意する必要がない。
【0011】
請求項2記載の発明は、前記第2挿入孔が穿設された一面から、該一面と相対向する一面までを貫通するとともに、前記第2挿入孔と交差しない2つの第3挿入孔を有することを特徴とする。
【0012】
これによって、第3挿入孔に電気部品のリードを挿入してプリント基板に取り付けると、該電気部品のリードとLEDのリードとが互いに接触することがなく、プリント基板上に高密度に電気部品を実装することができる。
【0013】
請求項3記載の発明は、前記第1挿入孔及び前記第2挿入孔のいずれも穿設されていない一面に立設された第3突起と、該第3突起が穿設された一面と相対向する他の一面に穿設され、前記第3突起を挿入可能な第3挿入孔とを有することを特徴とする。
【0014】
これによって、一つのLED取付用スペーサの第3突起を他のLED取付用スペーサの第3挿入孔に挿入することにより、複数のLED取付用スペーサをプリント基板に対して平行な方向に並列させることができ、プリント基板上に横方向に一定の間隔でLEDを取り付けることができる。
【0015】
【発明の実施の形態】
次に、本発明にかかるLED取付用スペーサの実施の形態の具体例を図面を参照しながら説明する。
【0016】
図1は、本発明にかかるLED取付用スペーサ(以下「スペーサ」と略称する)の一実施例を示す図であって、このスペーサ1は、直方体状に形成された本体10と、LED30のリード31を水平方向に挿入するための2つの第1貫通孔11と、リード31を垂直方向に挿入するための2つの第2貫通孔12と、スペーサ1を奥行き方向に連結するための第1突起13と、LED30またはスペーサ1の第1突起13を挿入するための第1挿入孔14と、スペーサ1を垂直方向に連結するための2つの第2突起15と、この第2突起15を挿入するための2つの第2挿入孔16とを備える。
【0017】
また、図2に示すように、スペーサ1の部品の一つとしてのガイド部材20はLED30のリード31を垂直方向に曲げるための傾斜面22を備えた棒状のガイド部21を2本有している。
【0018】
次に、上記構成を有するスペーサ1の動作について説明する。
【0019】
図3(a)に示すように、スペーサ1Aにガイド部材20を取り付けると、ガイド部21の各々が第1貫通孔11の各々に挿入され、傾斜面22によって第1貫通孔11及び第2貫通孔12が略々完全に閉じられる。
【0020】
そして、LED30のリード31を第1貫通孔11に挿入し、ガイド部材20のガイド部21の傾斜面22によりリード31を垂直方向に曲げ、第2貫通孔12から突出させる。
【0021】
次に、スペーサ1Bの第1突起13をスペーサ1Cの第1挿入孔14に挿入して連結し、ガイド部材20を取り付け、LED30のリード31を第1貫通孔11に挿入し、ガイド部材20のガイド部21の傾斜面22を利用して垂直方向に曲げ、第2貫通孔12から突出させる。そして、スペーサ1Bの第2突起15をスペーサ1Aの第2挿入孔16に挿入してスペーサ1を連結する。
【0022】
次に、プリント基板40上の位置決め孔41にスペーサ1Aの第2突起15を合わせて載置し、LED30のリード31をプリント基板40の下側に突出させこの部分をはんだ付けして、図3(b)に示すように、プリント基板40上へのLED30の実装が完了する。
【0023】
図4は、スペーサ1を使用してLED30の取付高さを変える一例を示す。すなわち、図4(a)に示すように、スペーサ1Dにガイド部材20を取り付け、スペーサ1Dの第2突起15をスペーサ1Eの第2挿入孔16に挿入し縦方向に連結させる。
【0024】
次に、LED30のリード31を第1貫通孔11に挿入し、ガイド部材20のガイド部21の傾斜面22を利用して垂直方向に曲げ、第2貫通孔12から突出させる。
【0025】
最後に、プリント基板40上の位置決め孔41にスペーサ1Eの第2突起15を合わせて載置し、LED30のリード31をプリント基板40の下方に突出させ、この部分をはんだ付けして、図4(b)に示すように、プリント基板40へのLED30の実装が完了する。
【0026】
図5は、本発明にかかるLED取付用スペーサの第2実施例を示し、図5(a)に示すように、スペーサ1には、第3貫通孔51が穿設される。そして、図5(b)に示すように、第3貫通孔51に電気部品60のリード61を挿入してプリント基板40に取り付けると、LED30のリード31と接触しないため、プリント基板40の上に高密度に部品を実装することができる。
【0027】
図6は、本発明にかかるLED取付用スペーサの第3実施例を示し、図6(a)に示すように、スペーサ1には、第3突起71と、この第3突起71を挿入するための第3挿入孔72が設けられている。これによって、横方向の連結が可能となり、図6(b)に示すように、プリント基板40上に横方向に一定の間隔でLED30を取り付けることができる。
【0028】
【発明の効果】
以上説明したように、請求項1記載の発明によれば、工具が不要で、リードの曲げ位置に留意することなく容易に曲げ加工を行うことができ、プリント基板に対して垂直方向にLEDを横型に複数取り付けても、LEDの先端位置を正確に合わせることができ、プリント基板に対し平行な方向にLEDを横型に取り付ける場合に、LEDの取付位置を容易に変えることができ、専用のスペーサを用意する必要のないLED取付用スペーサを提供することができる。
【0029】
また、請求項2記載の発明によれば、上記効果に加え、プリント基板上に高密度に電気部品を実装することが可能なLED取付用スペーサを提供することができる。
【0030】
さらに、請求項3記載の発明によれば、上記効果に加え、プリント基板上に横方向に一定の間隔でLEDを取り付けることが可能なLED取付用スペーサを提供することができる。
【図面の簡単な説明】
【図1】本発明にかかるLED取付用スペーサの一実施例を示す斜視図である。
【図2】図1のLED取付用スペーサの部品の一つとしてのガイド部材を示す斜視図である。
【図3】図1及び図2のLED取付用スペーサの動作を説明するための斜視図である。
【図4】図1及び図2のLED取付用スペーサの動作を説明するための斜視図である。
【図5】本発明にかかるLED取付用スペーサの第2実施例を示す斜視図である。
【図6】本発明にかかるLED取付用スペーサの第3実施例を示す斜視図である。
【図7】従来のLED取付用スペーサの一例を示す斜視図である。
【符号の説明】
1(1A〜1E) スペーサ
10 本体
11 第1貫通孔
12 第2貫通孔
13 第1突起
14 第1挿入孔
15 第2突起
16 第2挿入孔
20 ガイド部材
21 ガイド部
22 傾斜面
30 LED
31 リード
40 プリント基板
41 位置決め孔
51 第3貫通孔
60 電気部品
61 リード
71 第3突起
72 第3挿入孔
[0001]
BACKGROUND OF THE INVENTION
The present invention relates to an LED mounting spacer, and more particularly to an LED mounting spacer used for mounting an LED horizontally on a printed circuit board.
[0002]
[Prior art]
Conventionally, in order to attach a light emitting diode (hereinafter referred to as “LED”) to a printed circuit board, for example, a spacer described in JP-A-6-188535 has been proposed.
[0003]
As the spacer, a dedicated one is used independently for each LED mounting position. As shown in FIG. 7, when the LED 104 is mounted horizontally, the spacer 101 is placed on the printed circuit board 106, and the LED 104 is viewed from above. The lead 105 is inserted into the through hole 101b of the stepped portion 101a, protrudes to the lower side of the printed circuit board 106, and this portion is soldered. Thereafter, the LED 104 is bent in the arrow X direction to form a horizontal type. At this time, the mounting height of the LED 104 was adjusted by changing the height of the spacer 101, and the bending position of the lead 105 was adjusted by changing the height of the stepped portion 101a.
[0004]
[Problems to be solved by the invention]
However, in the above conventional LED mounting spacer, when a plurality of LEDs are mounted in the horizontal direction and mounted in the vertical direction with respect to the printed circuit board, the lead from the leading edge of the LED increases as the mounting position of the LED moves away from the printed circuit board. Since the distance to the bending position becomes large, there is a problem that the position of the tip of the LED becomes unstable. At this time, there is also a problem that parts for alignment are required.
[0005]
Furthermore, since the lead bending position changes according to the LED mounting height, there is a problem that the shape of the spacer must be changed according to the LED mounting height.
[0006]
Therefore, the present invention has been made in view of the problems in the conventional LED mounting spacer, and even when a plurality of LEDs are mounted horizontally in the vertical direction with respect to the printed circuit board, It is an object to provide an LED mounting spacer that does not become unstable, does not require positioning components, and does not need to change the shape of the spacer according to the LED mounting height. .
[0007]
[Means for Solving the Problems]
In order to achieve the above object, an invention according to claim 1 is an LED mounting spacer, which penetrates from a main body formed in a rectangular parallelepiped shape and from one surface of the main body to another surface facing the one surface. Two first through holes that pass through from one surface adjacent to the one surface to the other surface opposite to the one surface, and each of the second through holes intersects with each of the first through holes. A first protrusion standing on one surface where the first through hole is formed, and another surface opposite to the one surface where the first protrusion is formed, the LED or the first A first insertion hole into which the protrusion can be inserted, a second protrusion standing on the one surface where the second through hole is formed, and another surface opposite to the one surface where the second protrusion is formed. Two rod-shaped guide portions having a second insertion hole into which the second protrusion can be inserted and an inclined surface at the tip. When the guide portions are inserted into the first through holes, the first through holes and the second through holes are substantially completely closed by the inclined surfaces. It is characterized by.
[0008]
According to the first aspect of the present invention, the lead of the LED inserted from the first through hole is bent by the inclined surface of the guide portion inserted into the first through hole and exits through the second through hole. Therefore, no tool is required, and bending can be easily performed without paying attention to the bending position of the lead.
[0009]
Further, by inserting the second protrusion of one LED mounting spacer into the second insertion hole of the other LED mounting spacer, a plurality of LED mounting spacers can be mounted in the vertical direction with respect to the printed circuit board. At this time, since the second through holes of the plurality of LED mounting spacers are integrated, the distance from the bending position of the LED lead to the tip of the LED can be set at a constant interval without changing the type of component. Even if a plurality of LEDs are mounted horizontally in the vertical direction with respect to the printed circuit board, the tip position of the LEDs can be accurately aligned.
[0010]
Furthermore, by inserting the first protrusion of one LED mounting spacer into the first insertion hole of another LED mounting spacer, a plurality of LED mounting spacers can be mounted in a direction parallel to the printed circuit board. In this case, since the first through holes of the plurality of LED mounting spacers are integrated, the mounting position of the LED can be easily changed when mounting the LED in a horizontal direction in a direction parallel to the printed circuit board. There is no need to prepare a spacer.
[0011]
The invention according to claim 2 has two third insertion holes that penetrate from one surface where the second insertion hole is drilled to one surface opposite to the one surface and do not intersect the second insertion hole. It is characterized by that.
[0012]
Thus, when the lead of the electrical component is inserted into the third insertion hole and attached to the printed board, the lead of the electrical component and the LED lead do not contact each other, and the electrical component is densely placed on the printed board. Can be implemented.
[0013]
According to a third aspect of the present invention, there is provided a third projection that is erected on one surface where neither the first insertion hole nor the second insertion hole is formed, and a relative relationship with the one surface on which the third projection is formed. It has a third insertion hole which is drilled in the other surface facing and into which the third protrusion can be inserted.
[0014]
Thus, by inserting the third protrusion of one LED mounting spacer into the third insertion hole of the other LED mounting spacer, the plurality of LED mounting spacers are arranged in parallel to the printed circuit board. The LED can be mounted on the printed circuit board at regular intervals in the horizontal direction.
[0015]
DETAILED DESCRIPTION OF THE INVENTION
Next, a specific example of the embodiment of the LED mounting spacer according to the present invention will be described with reference to the drawings.
[0016]
FIG. 1 is a view showing an embodiment of an LED mounting spacer (hereinafter abbreviated as “spacer”) according to the present invention. The spacer 1 includes a main body 10 formed in a rectangular parallelepiped shape, and leads of LEDs 30. Two first through holes 11 for inserting 31 in the horizontal direction, two second through holes 12 for inserting the leads 31 in the vertical direction, and a first protrusion for connecting the spacer 1 in the depth direction 13, a first insertion hole 14 for inserting the first protrusion 13 of the LED 30 or the spacer 1, two second protrusions 15 for connecting the spacer 1 in the vertical direction, and inserting the second protrusion 15. Two second insertion holes 16 are provided.
[0017]
As shown in FIG. 2, the guide member 20 as one of the components of the spacer 1 has two rod-shaped guide portions 21 each having an inclined surface 22 for bending the lead 31 of the LED 30 in the vertical direction. Yes.
[0018]
Next, the operation of the spacer 1 having the above configuration will be described.
[0019]
As shown in FIG. 3A, when the guide member 20 is attached to the spacer 1 </ b> A, each of the guide portions 21 is inserted into each of the first through holes 11, and the first through holes 11 and the second through holes are inclined by the inclined surfaces 22. The hole 12 is almost completely closed.
[0020]
Then, the lead 31 of the LED 30 is inserted into the first through hole 11, the lead 31 is bent in the vertical direction by the inclined surface 22 of the guide portion 21 of the guide member 20, and protrudes from the second through hole 12.
[0021]
Next, the first protrusion 13 of the spacer 1B is inserted and connected to the first insertion hole 14 of the spacer 1C, the guide member 20 is attached, the lead 31 of the LED 30 is inserted into the first through hole 11, and the guide member 20 The inclined surface 22 of the guide part 21 is bent in the vertical direction and protruded from the second through hole 12. And the 2nd protrusion 15 of the spacer 1B is inserted in the 2nd insertion hole 16 of the spacer 1A, and the spacer 1 is connected.
[0022]
Next, the second protrusion 15 of the spacer 1A is placed in the positioning hole 41 on the printed circuit board 40, and the lead 31 of the LED 30 protrudes to the lower side of the printed circuit board 40, and this portion is soldered. As shown in (b), the mounting of the LED 30 on the printed circuit board 40 is completed.
[0023]
FIG. 4 shows an example of changing the mounting height of the LED 30 using the spacer 1. That is, as shown in FIG. 4A, the guide member 20 is attached to the spacer 1D, and the second protrusion 15 of the spacer 1D is inserted into the second insertion hole 16 of the spacer 1E and connected in the vertical direction.
[0024]
Next, the lead 31 of the LED 30 is inserted into the first through hole 11, bent in the vertical direction using the inclined surface 22 of the guide portion 21 of the guide member 20, and protruded from the second through hole 12.
[0025]
Finally, the second protrusion 15 of the spacer 1E is placed in the positioning hole 41 on the printed circuit board 40, the lead 31 of the LED 30 is protruded below the printed circuit board 40, and this portion is soldered. As shown in (b), the mounting of the LED 30 on the printed circuit board 40 is completed.
[0026]
FIG. 5 shows a second embodiment of the LED mounting spacer according to the present invention. As shown in FIG. 5A, the spacer 1 is provided with a third through hole 51. Then, as shown in FIG. 5B, when the lead 61 of the electrical component 60 is inserted into the third through hole 51 and attached to the printed circuit board 40, it does not come into contact with the lead 31 of the LED 30. Components can be mounted with high density.
[0027]
FIG. 6 shows a third embodiment of the LED mounting spacer according to the present invention. As shown in FIG. 6A, the spacer 1 is inserted with the third protrusion 71 and the third protrusion 71. The third insertion hole 72 is provided. As a result, the connection in the horizontal direction becomes possible, and the LEDs 30 can be mounted on the printed circuit board 40 at regular intervals in the horizontal direction, as shown in FIG.
[0028]
【The invention's effect】
As described above, according to the first aspect of the present invention, no tool is required, the bending process can be easily performed without paying attention to the bending position of the lead, and the LED is perpendicular to the printed circuit board. Even if multiple LEDs are attached to the horizontal type, the tip position of the LED can be accurately adjusted, and when the LED is attached to the horizontal type in a direction parallel to the printed circuit board, the mounting position of the LED can be easily changed. It is possible to provide an LED mounting spacer that does not need to be prepared.
[0029]
Further, according to the invention described in claim 2, in addition to the above effects, it is possible to provide an LED mounting spacer capable of mounting electrical components on a printed circuit board with high density.
[0030]
Furthermore, according to the invention described in claim 3, in addition to the above effects, it is possible to provide an LED mounting spacer capable of mounting LEDs on the printed circuit board at a constant interval in the lateral direction.
[Brief description of the drawings]
FIG. 1 is a perspective view showing an embodiment of an LED mounting spacer according to the present invention.
2 is a perspective view showing a guide member as one of the components of the LED mounting spacer of FIG. 1. FIG.
3 is a perspective view for explaining the operation of the LED mounting spacer of FIGS. 1 and 2. FIG.
4 is a perspective view for explaining the operation of the LED mounting spacer of FIGS. 1 and 2. FIG.
FIG. 5 is a perspective view showing a second embodiment of the LED mounting spacer according to the present invention.
FIG. 6 is a perspective view showing a third embodiment of the LED mounting spacer according to the present invention.
FIG. 7 is a perspective view showing an example of a conventional LED mounting spacer.
[Explanation of symbols]
1 (1A to 1E) Spacer 10 Main body 11 First through hole 12 Second through hole 13 First protrusion 14 First insertion hole 15 Second protrusion 16 Second insertion hole 20 Guide member 21 Guide portion 22 Inclined surface 30 LED
31 Lead 40 Printed circuit board 41 Positioning hole 51 Third through hole 60 Electrical component 61 Lead 71 Third protrusion 72 Third insertion hole

Claims (3)

直方体状に形成された本体と、
該本体の一面から、該一面と相対向する他の一面までを貫通する2つの第1貫通孔と、
前記一面に隣接する一面から、該一面と相対向する他の一面までを貫通するとともに、各々が前記第1貫通孔の各々と交差する2つの第2貫通孔と、
該第1貫通孔が穿設された一面に立設された第1突起と、
該第1突起が穿設された一面と相対向する他の一面に穿設され、LEDまたは前記第1突起を挿入可能な第1挿入孔と、
前記第2貫通孔が穿設された一面に立設された第2突起と、
該第2突起が穿設された一面と相対向する他の一面に穿設され、前記第2突起を挿入可能な第2挿入孔と、
先端に傾斜面を有する棒状の2本のガイド部を有するガイド部材とを有し、
前記ガイド部の各々が前記第1貫通孔の各々に挿入されると、前記傾斜面によって前記第1貫通孔及び前記第2貫通孔が略々完全に閉じられることを特徴とするLED取付用スペーサ。
A main body formed in a rectangular parallelepiped shape;
Two first through holes penetrating from one surface of the main body to the other surface opposite to the one surface;
Two second through holes that penetrate from one surface adjacent to the one surface to the other surface opposite to the one surface, each intersecting each of the first through holes,
A first protrusion erected on the one surface where the first through hole is formed;
A first insertion hole which is drilled on another surface opposite to the surface on which the first projection is drilled and into which the LED or the first projection can be inserted;
A second protrusion erected on the one surface where the second through hole is formed;
A second insertion hole formed on the other surface opposite to the surface on which the second protrusion is formed and into which the second protrusion can be inserted;
A guide member having two rod-shaped guide portions having an inclined surface at the tip,
The LED mounting spacer, wherein the first through hole and the second through hole are substantially completely closed by the inclined surface when each of the guide portions is inserted into each of the first through holes. .
前記第2挿入孔が穿設された一面から、該一面と相対向する一面までを貫通するとともに、前記第2挿入孔と交差しない2つの第3挿入孔を有することを特徴とする請求項1記載のLED取付用スペーサ。2. The apparatus has two third insertion holes that penetrate from one surface where the second insertion hole is formed to one surface opposite to the one surface and do not intersect the second insertion hole. LED mounting spacer as described. 前記第1挿入孔及び前記第2挿入孔のいずれも穿設されていない一面に立設された第3突起と、該第3突起が穿設された一面と相対向する他の一面に穿設され、前記第3突起を挿入可能な第3挿入孔とを有することを特徴とする請求項1または2記載のLED取付用スペーサ。A third protrusion standing on one surface where neither the first insertion hole nor the second insertion hole is formed, and another surface opposite to the one surface where the third protrusion is formed The LED mounting spacer according to claim 1, further comprising a third insertion hole into which the third protrusion can be inserted.
JP03058399A 1999-02-08 1999-02-08 LED mounting spacer Expired - Fee Related JP3761348B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP03058399A JP3761348B2 (en) 1999-02-08 1999-02-08 LED mounting spacer

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP03058399A JP3761348B2 (en) 1999-02-08 1999-02-08 LED mounting spacer

Publications (2)

Publication Number Publication Date
JP2000228589A JP2000228589A (en) 2000-08-15
JP3761348B2 true JP3761348B2 (en) 2006-03-29

Family

ID=12307888

Family Applications (1)

Application Number Title Priority Date Filing Date
JP03058399A Expired - Fee Related JP3761348B2 (en) 1999-02-08 1999-02-08 LED mounting spacer

Country Status (1)

Country Link
JP (1) JP3761348B2 (en)

Also Published As

Publication number Publication date
JP2000228589A (en) 2000-08-15

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