JP2004327795A - Leg structure for electrical apparatus - Google Patents

Leg structure for electrical apparatus Download PDF

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Publication number
JP2004327795A
JP2004327795A JP2003121620A JP2003121620A JP2004327795A JP 2004327795 A JP2004327795 A JP 2004327795A JP 2003121620 A JP2003121620 A JP 2003121620A JP 2003121620 A JP2003121620 A JP 2003121620A JP 2004327795 A JP2004327795 A JP 2004327795A
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JP
Japan
Prior art keywords
leg
legs
cushioning material
electric device
leg structure
Prior art date
Legal status (The legal status 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 status listed.)
Pending
Application number
JP2003121620A
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Japanese (ja)
Inventor
Taizo Minowa
泰造 蓑輪
Tomoyuki Harada
智幸 原田
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Orion Electric Co Ltd
Original Assignee
Orion Electric Co 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
Application filed by Orion Electric Co Ltd filed Critical Orion Electric Co Ltd
Priority to JP2003121620A priority Critical patent/JP2004327795A/en
Publication of JP2004327795A publication Critical patent/JP2004327795A/en
Pending legal-status Critical Current

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Abstract

<P>PROBLEM TO BE SOLVED: To provide a leg structure formed at the front panel bottom of an electrical apparatus for supporting the electrical apparatus for realizing a simple structure and low manufacturing cost, and for preventing vibration or rattling, and for making its appearance from the front face present configurations similar to those of a separately attached cylindrical insulator. <P>SOLUTION: A leg 3 is formed via slit grooves 6 and 6 on a bottom 2 of a front panel 1 so as to be bend deformable, and a buffer material 4, such as rubber, is mounted on the leg 3, and a cover 5 covering the leg 3 and the buffer member 4 is formed on the front side of the bottom 2. <P>COPYRIGHT: (C)2005,JPO&NCIPI

Description

【0001】
【発明の属する技術分野】
本発明は電気機器の滑りを防止し、又ガタツキを無くして、所定位置に安定して設置すると共に、機器の外部及び内部の振動を吸収する為の脚部構造に関するものである。
【0002】
【従来の技術】
図1はディスク装置の外観を示している。該ディスク装置は正面となるフロントパネル31の中央にはディスクをセットして出し入れするトレー32を有し、該トレー32にセットしたディスクは装置内に搬入されてターンテーブルに装着される。そして、該ディスクの再生・録画が行なわれることになるが、ディスク面と光ピックアップ間は極わずかな隙間を隔てた状態で該ディスクはターンテーブル上で回転することが出来る。
【0003】
従って、ディスクや光ピックアップが振動すれば光ピックアップとディスクは接触してしまう為に、該振動を防止すると共にディスクや光ピックアップが振動の影響を受けにくい構造と成っている。すなわち、ディスクを装着するターンテーブルや記録を読み込むピックアップはトラバースユニットとして1箇所にまとめて構成され、該トラバースユニットはディスク装置本体にインシュレータを介して取付けられている。
【0004】
しかも、該ディスク装置本体の外部からの振動及び内部で発生する振動を抑制する為の振動抑制手段として、ディスク装置の底には脚部となるインシュレータ33,33を別に備えている。該インシュレータ33は円盤状リング体の内部に弾性体を収容したものであり、該弾性体が振動や衝撃を効率よく吸収して、機器本体への影響を抑制している。
【0005】
従来のインシュレータ33はコストが高く、又購入部品である為に電気機器の底に取付ける作業も必要となり、トータル的に電気機器の製作コストが高くなってしまう。実開平4−90097号に係る「軽電機器の底足」は、機器と設置台との間を伝達する振動エネルギーを遮断するものであり、弾性体から成って開口部を有すと共に有底凹部が形成されている底足本体、有底凹部に挿入されて底足本体の底部に点接触する先端部及びリング状の溝が形成された支柱が開口部の周縁部と溝を介して係合して組み合わされ、支柱は機器の底面に固定されている。
【0006】
この軽電機器の底足は、振動エネルギーを吸収することは出来るが、弾性体が表面化して外観を損なってしまう。特開昭61−199292号に係る「レコードプレーヤ」も従来技術であり、第1防振装置を取着したキャビネット上に第2防振装置を介してターンテーブル、モーター、トーンアーム等を取着して構成しており、第1防振装置が表面に露出することで、外観が損なわれる。
【0007】
【発明が解決しようとする課題】
このように、従来の脚部構造には上記のごとき問題がある。本発明が解決しようとする課題はこの問題点であり、至って簡単な構造で安く造ることが出来、振動並びにガタツキを防止し、しかも正面からの外観は別付けの円筒型インシュレータと同じような形態を成すことが出来る電気機器の脚部構造を提供する。
【0008】
【課題を解決する為の手段】
本発明に係る電気機器の脚部構造はキャビネットのフロントパネル底に脚を設け、該脚には緩衝材を取付けている。ここで緩衝材の材質は特に限定しないが、一般にはゴムやフェルト等が使用され、床面及びテーブル面などからの振動や衝撃は該緩衝材により吸収される。そして、脚はフロントパネル底と分離する為にスリット溝が形成され、その為に撓み易くなり、脚自体も振動や衝撃を吸収緩和する機能を備えている。
【0009】
そして、該脚及び脚に取着した緩衝材が正面に露出しないようにカバーを形成している。従って、正面からの外観は前記図1に示している脚部と同じように見える。ここで、脚が撓みやすいように、又振動を吸収しやすいように設けられるスリット溝の形態、及び脚とスリット溝の位置関係は限定しないことにする。一方、本発明では上記緩衝材を脚に取付けない脚部構造とする場合もある。以下、本発明に係る実施例を図面に基づいて詳細に説明する。
【0010】
【実施例】
図2は本発明に係る電気機器の脚部構造を示している実施例であり、背面と底面を表わしている。該脚部構造は電気機器のキャビネットの正面に取付けられるフロントパネル1の底2に形成され、同図の3は脚、4は緩衝材、5はカバーを表わしている。該緩衝材4は別部品として取付けられるが、その他の部分はフロントパネルと一体的に成形される。
【0011】
上記脚3は底2とスリット溝6,6にて分離され、該スリット溝6,6は脚3の両側に設けられることで片持ち支持形態と成って撓み易くなる。そして、底2には円弧状に湾曲したカバー5が下方へ突出し、上記脚3及び緩衝材4を被覆して正面から見えないように成っている。ただし、緩衝材4はカバー5より下方へ突出した状態にあって、カバー5は載置面に接することはない。図3は脚部の斜視図を表わしている。
【0012】
図4は脚部の縦断面を示しており、脚3は底2からスリット溝6,6にて分離されている為に、比較的重い電気機器は該脚3,3・・にて支えられる場合、脚3,3・・は撓み変形する。勿論、脚先端に取着されている緩衝材4は圧縮変形して支えられ、床面が振動しても該振動は脚3及び緩衝材4にて吸収されて、フロントパネル本体及びキャビネットに収容されている電気機器へ伝えることを防止している。図2に示す脚部構造では緩衝材を脚先端に取付けているが、該緩衝材を使用しないことも出来る。
【0013】
図5は脚部構造を示す他の実施例である。基本的な構造は前記図2、図3に示す場合と同じであるが、該実施例の脚3は背面側へ長く延びている。このように長く延びる脚であっても、フロントパネル1と一体成形することが出来、該脚3の両側に形成したスリット溝6,6にて底2から分離している。このように、脚3を長くすることも可能である。
【0014】
図6は脚部構造を示す他の実施例である。この脚部構造に設けている脚7はフロントパネル底縁8と平行にスリット溝9を形成し、脚7の中央には嵌合部10を有し、該嵌合部10に緩衝材4が嵌って取付けられている。スリット溝9が形成されることで作られる脚7は、両端支持梁形態として撓み変形し、載置する床面の振動や衝撃を脚7の撓み変形、及び緩衝材4の圧縮変形にて吸収することが出来る。
【0015】
図7はさらに本発明の脚部構造を示す実施例である。この実施例に示す脚部構造は、前期図6の場合と共通して両端支持形態であるが、脚11の巾寸法を細くして撓み易くしている。すなわち、スリット溝12の巾を大きくすることで脚巾を小さくし、その為に該脚11は撓み易くなる。その他の構造は図6の場合と同じである。
【0016】
図8はカバー5の奥側に脚13a,13bを対にして形成している場合であり、脚13a,13bの先端には嵌合部10a,10bを設けると共に、該嵌合部10a,10bには緩衝材4a,4bを嵌めている。脚13a,13bは片持ち支持形態であって細くなり、緩衝材4a,4bに作用する荷重に対して大きく撓み変形することが出来る。しかも、2個の緩衝材4a,4bを備えることで、電気機器は安定する。
【0017】
図9に示す実施例は、前記図3及び図5に示している脚部構造の場合と脚14の向きが違っているだけで、該脚14は底2とスリット溝15a,15bにて分離されて片持ち支持形態として撓み変形する。そして、脚先端に設けた嵌合部10には緩衝材4が嵌って取付けられている。この場合の脚巾も細い為に、該脚14は大きく撓み変形することが出来る。
【0018】
図10に示す脚部構造は、脚を反対側から対を成して延ばし、両脚16a,16bの中間部位に緩衝材4を取着している。この脚16a,16bには嵌合部を有しておらず、上記緩衝材4が接着剤を介して直接固着されている。ここで、緩衝材4はゴム等の弾性体である為に両脚16a,16bの中間部に跨って固着されても緩衝材4が引っ張られて脚16a,16bは撓み変形することが出来る。
【0019】
図11に示す脚部構造は両脚17a,17bが対を成して反対側から延び、両脚17a,17bの先端には両脚17a,17bと一体成形した嵌合部10を有している。すなわち、両脚17a,17bに共通の嵌合部10を備え、この嵌合部10には緩衝材4が嵌って取付けられている。嵌合部10の緩衝材4に作用する荷重によって細い脚は撓み変形することが出来る。
【0020】
図12に示す脚部構造は前記図11に示す嵌合部10を分割して嵌合部10a,10bとした構造である。すなわち、嵌合部10a,10bの中間にスリット溝18を設けて分離し、該嵌合部10a,10bに嵌めた緩衝材4に荷重が作用する場合、脚17a,17bは撓みやすくなる。すなわち、各脚17a,17bは夫々が独立して撓むことが出来る。
【0021】
以上述べたように、本発明の脚部構造は、スリット溝を介してフロントパネル底から分離して脚を設け、この脚に緩衝材を取付け、しかも正面にはカバーを形成したものであり、次のような効果を得ることが出来る。
【0022】
【発明の効果】
本発明に係る脚部構造は、スリット溝を介して脚を形成し、この脚にゴム等の緩衝材を取付けている為に、該緩衝材に作用する荷重によって脚は撓み変形することが出来る。従って、該脚を電気機器の底に設けるならば、電気機器を載置した床面、テーブル面が振動したり、衝撃を受けても上記脚の撓み変形及び該脚に取着した緩衝材の変形によって吸収され、電気機器本体への影響を抑制することが出来る。又、緩衝材としてゴム質を使用するならば、載置面との摩擦も高くて横滑も防止できる。一方、外部からの振動や衝撃に限らず、機器内部の動作(例えばトレイの引き出し、収納動作等)に基づく振動も吸収できる。
【0023】
そして、該脚及び緩衝材は正面側に設けているカバーによって被覆され、正面からの見栄えは良好である。機能的には従来のインシュレータに劣らない効果があり、しかしコストは非常に安く製作出来る。一方、フロントパネル底に一体成形し、これに緩衝材を取付けただけの簡単な構造であり、製作コストが安いのみならず、従来のインシュレータを取付ける場合に比較して重量が軽く薄型化が可能になる。本発明は緩衝材を取付けることで振動及び衝撃を吸収する効果は良好であるが、簡易的に脚だけの構造とする場合も可能である。
【図面の簡単な説明】
【図1】ディスク装置の外観図。
【図2】本発明に係る脚部構造の背面図と底面図。
【図3】本発明の脚構造の斜視図。
【図4】本発明の脚部構造の縦断面図。
【図5】本発明に係る脚部構造の他の実施例。
【図6】本発明に係る脚部構造の他の実施例。
【図7】本発明に係る脚部構造の他の実施例。
【図8】本発明に係る脚部構造の他の実施例。
【図9】本発明に係る脚部構造の他の実施例。
【図10】本発明に係る脚部構造の他の実施例。
【図11】本発明に係る脚部構造の他の実施例。
【図12】本発明に係る脚部構造の他の実施例。
【符号の説明】
1 フロントパネル
2 底
3 脚
4 緩衝材
5 カバー
6 スリット溝
7 脚
8 縁
9 スリット溝
10 嵌合部
11 脚
12 スリット溝
13 脚
14 脚
15 スリット溝
16 脚
17 脚
18 スリット溝
[0001]
TECHNICAL FIELD OF THE INVENTION
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a leg structure for preventing electrical equipment from slipping, eliminating rattling, stably installing the electronic equipment in a predetermined position, and absorbing external and internal vibrations of the equipment.
[0002]
[Prior art]
FIG. 1 shows the appearance of the disk device. The disc device has a tray 32 in the center of a front panel 31 serving as a front face for setting and taking out a disc. The disc set on the tray 32 is carried into the device and mounted on a turntable. Then, the reproduction / recording of the disk is performed. The disk can be rotated on the turntable with a very small gap between the disk surface and the optical pickup.
[0003]
Therefore, if the disk or the optical pickup vibrates, the optical pickup and the disk come into contact with each other, so that the vibration is prevented and the disk and the optical pickup are hardly affected by the vibration. That is, a turntable on which a disc is mounted and a pickup for reading records are collectively configured as one traverse unit, and the traverse unit is attached to the main body of the disc device via an insulator.
[0004]
In addition, insulators 33, 33 serving as legs are separately provided at the bottom of the disk device as vibration suppression means for suppressing external vibration and vibration generated inside the disk device main body. The insulator 33 accommodates an elastic body inside a disk-shaped ring body, and the elastic body efficiently absorbs vibrations and shocks, and suppresses the influence on the device body.
[0005]
Since the conventional insulator 33 is expensive and requires a work of attaching it to the bottom of the electric device because it is a purchased part, the manufacturing cost of the electric device is increased as a whole. The “solar foot of a light electric device” according to Japanese Utility Model Application Laid-Open No. 4-90097 is a device that cuts off vibration energy transmitted between the device and the installation stand, and is made of an elastic body and has an opening and a bottom. A bottom foot body having a recess, a tip portion inserted into the bottomed recess to make point contact with the bottom of the bottom foot body, and a strut having a ring-shaped groove are engaged with the peripheral edge of the opening through the groove. The posts are fixed together on the bottom surface of the device.
[0006]
Although the sole of the light electric device can absorb vibration energy, the elastic body is surfaced and its appearance is impaired. A "record player" disclosed in Japanese Patent Application Laid-Open No. 61-199292 is also a prior art, in which a turntable, a motor, a tone arm and the like are mounted via a second vibration isolator on a cabinet on which a first vibration isolator is mounted. The appearance is impaired because the first vibration isolator is exposed on the surface.
[0007]
[Problems to be solved by the invention]
As described above, the conventional leg structure has the above problems. The problem to be solved by the present invention is this problem, which can be manufactured with a very simple structure at a low cost, prevents vibration and rattling, and has a frontal appearance similar to that of a separately attached cylindrical insulator. The present invention provides a leg structure of an electric device capable of achieving the following.
[0008]
[Means for solving the problem]
In the leg structure of the electric device according to the present invention, a leg is provided at the bottom of the front panel of the cabinet, and a cushioning material is attached to the leg. Here, the material of the cushioning material is not particularly limited, but generally rubber or felt is used, and vibrations and shocks from the floor surface and the table surface are absorbed by the cushioning material. The legs are provided with slit grooves for separation from the front panel bottom, so that the legs are easily bent, and the legs themselves have a function of absorbing and mitigating vibrations and shocks.
[0009]
A cover is formed so that the leg and the cushioning material attached to the leg are not exposed to the front. Therefore, the appearance from the front side looks the same as the legs shown in FIG. Here, the form of the slit groove provided so that the leg is easily bent and the vibration is easily absorbed, and the positional relationship between the leg and the slit groove are not limited. On the other hand, in the present invention, there may be a case where the cushioning material has a leg structure in which it is not attached to the leg. Hereinafter, embodiments according to the present invention will be described in detail with reference to the drawings.
[0010]
【Example】
FIG. 2 is an embodiment showing a leg structure of an electric device according to the present invention, showing a back surface and a bottom surface. The leg structure is formed on the bottom 2 of the front panel 1 attached to the front of the cabinet of the electric equipment. In the figure, 3 denotes a leg, 4 denotes a cushioning material, and 5 denotes a cover. The cushioning member 4 is attached as a separate part, but the other parts are integrally formed with the front panel.
[0011]
The leg 3 is separated from the bottom 2 by slit grooves 6, 6. The slit grooves 6, 6 are provided on both sides of the leg 3 to form a cantilevered support form and are easily bent. An arc-shaped cover 5 protrudes downward from the bottom 2 and covers the legs 3 and the cushioning material 4 so as to be invisible from the front. However, the cushioning member 4 is in a state of protruding downward from the cover 5, and the cover 5 does not come into contact with the mounting surface. FIG. 3 shows a perspective view of the leg.
[0012]
FIG. 4 shows a longitudinal section of the leg, and since the leg 3 is separated from the bottom 2 by the slit grooves 6, 6, a relatively heavy electric device is supported by the legs 3, 3,. In this case, the legs 3, 3,. Of course, the cushioning material 4 attached to the tip of the leg is supported by being compressed and deformed, and even if the floor surface vibrates, the vibration is absorbed by the leg 3 and the cushioning material 4 and housed in the front panel body and the cabinet. That are being transmitted to electrical equipment. In the leg structure shown in FIG. 2, the cushioning material is attached to the tip of the leg, but the cushioning material may not be used.
[0013]
FIG. 5 is another embodiment showing a leg structure. The basic structure is the same as that shown in FIGS. 2 and 3, but the leg 3 of this embodiment extends long toward the rear side. Even such a long leg can be integrally formed with the front panel 1 and is separated from the bottom 2 by slit grooves 6 and 6 formed on both sides of the leg 3. Thus, it is also possible to lengthen the leg 3.
[0014]
FIG. 6 is another embodiment showing a leg structure. The leg 7 provided in this leg portion structure forms a slit groove 9 in parallel with the bottom edge 8 of the front panel, and has a fitting portion 10 in the center of the leg 7, and the buffer material 4 is provided in the fitting portion 10. Fitted and mounted. The leg 7 formed by forming the slit groove 9 bends and deforms in the form of a support beam at both ends, and absorbs vibration and impact of the floor surface on which it is placed by bending the leg 7 and compressing the cushioning material 4. You can do it.
[0015]
FIG. 7 is an embodiment further showing the leg structure of the present invention. The leg structure shown in this embodiment is a form of supporting both ends in common with the case of FIG. 6 described above, but the width of the leg 11 is reduced to facilitate bending. That is, by increasing the width of the slit groove 12, the leg width is reduced, so that the leg 11 is easily bent. Other structures are the same as those in FIG.
[0016]
FIG. 8 shows a case in which the legs 13a, 13b are formed as a pair on the back side of the cover 5, and fitting portions 10a, 10b are provided at the tips of the legs 13a, 13b, and the fitting portions 10a, 10b are provided. Are fitted with cushioning materials 4a and 4b. The legs 13a, 13b are of a cantilevered support type, become thin, and can be largely deformed by the load acting on the cushioning members 4a, 4b. In addition, by providing the two cushioning members 4a and 4b, the electric device is stabilized.
[0017]
The embodiment shown in FIG. 9 is different from the case of the leg structure shown in FIGS. 3 and 5 only in the direction of the leg 14, and the leg 14 is separated from the bottom 2 by the slit grooves 15a and 15b. Then, it is bent and deformed as a cantilevered support form. The buffer member 4 is fitted and attached to the fitting portion 10 provided at the tip of the leg. In this case, since the leg width is narrow, the leg 14 can be largely bent and deformed.
[0018]
In the leg structure shown in FIG. 10, the legs are extended in pairs from the opposite side, and the cushioning material 4 is attached to an intermediate portion between the legs 16a and 16b. The legs 16a and 16b do not have a fitting portion, and the cushioning material 4 is directly fixed via an adhesive. Here, since the cushioning material 4 is an elastic body such as rubber, the cushioning material 4 is pulled and the legs 16a and 16b can be bent and deformed even if the cushioning material 4 is fixed across the middle portion of the two legs 16a and 16b.
[0019]
In the leg structure shown in FIG. 11, the legs 17a and 17b form a pair and extend from opposite sides, and have a fitting portion 10 formed integrally with the legs 17a and 17b at the tips of the legs 17a and 17b. That is, both legs 17a and 17b are provided with a common fitting portion 10, and the buffer material 4 is fitted and attached to this fitting portion 10. The thin leg can be bent and deformed by the load acting on the cushioning material 4 of the fitting portion 10.
[0020]
The leg structure shown in FIG. 12 is a structure in which the fitting portion 10 shown in FIG. 11 is divided into fitting portions 10a and 10b. That is, when the slits 18 are provided in the middle of the fitting portions 10a and 10b to separate them and a load acts on the cushioning material 4 fitted in the fitting portions 10a and 10b, the legs 17a and 17b are easily bent. That is, each of the legs 17a and 17b can bend independently.
[0021]
As described above, the leg structure of the present invention is provided with legs provided separately from the bottom of the front panel via slit grooves, a cushioning material attached to the legs, and a cover formed on the front surface. The following effects can be obtained.
[0022]
【The invention's effect】
In the leg structure according to the present invention, since the leg is formed through the slit groove, and the cushioning material such as rubber is attached to the leg, the leg can be bent and deformed by the load acting on the cushioning material. . Therefore, if the legs are provided at the bottom of the electric device, even if the floor surface or table surface on which the electric device is mounted vibrates or receives an impact, the legs may be deformed and the cushioning material attached to the legs may be deformed. It is absorbed by the deformation and the influence on the electric device main body can be suppressed. Also, if rubber is used as the cushioning material, friction with the mounting surface is high, and lateral slippage can be prevented. On the other hand, not only external vibrations and shocks, but also vibrations due to operations inside the device (for example, tray pull-out, storage operations, etc.) can be absorbed.
[0023]
The legs and the cushioning material are covered by a cover provided on the front side, and the appearance from the front is good. Functionally, it is as effective as conventional insulators, but can be manufactured at very low cost. On the other hand, it has a simple structure in which it is integrally formed on the bottom of the front panel and a cushioning material is attached to it. Not only is the manufacturing cost low, but it is also lighter and thinner compared to the case where conventional insulators are installed. become. Although the present invention has a good effect of absorbing vibration and shock by attaching a cushioning material, it is also possible to simply adopt a structure having only legs.
[Brief description of the drawings]
FIG. 1 is an external view of a disk device.
FIG. 2 is a rear view and a bottom view of the leg structure according to the present invention.
FIG. 3 is a perspective view of a leg structure of the present invention.
FIG. 4 is a longitudinal sectional view of the leg structure of the present invention.
FIG. 5 shows another embodiment of the leg structure according to the present invention.
FIG. 6 shows another embodiment of the leg structure according to the present invention.
FIG. 7 shows another embodiment of the leg structure according to the present invention.
FIG. 8 shows another embodiment of the leg structure according to the present invention.
FIG. 9 shows another embodiment of the leg structure according to the present invention.
FIG. 10 shows another embodiment of the leg structure according to the present invention.
FIG. 11 shows another embodiment of the leg structure according to the present invention.
FIG. 12 shows another embodiment of the leg structure according to the present invention.
[Explanation of symbols]
DESCRIPTION OF SYMBOLS 1 Front panel 2 Bottom 3 Leg 4 Buffer material 5 Cover 6 Slit groove 7 Leg 8 Edge 9 Slit groove 10 Fitting part 11 Leg 12 Slit groove 13 Leg 14 Leg 15 Slit groove 16 Leg 17 Leg 18 Slit groove

Claims (6)

電気機器のフロントパネル底に設けられ、該電気機器を支える為の脚部構造において、フロントパネルの底にスリット溝を介して脚を撓み変形可能に形成し、この脚にゴム等の緩衝材を取着し、そして底の正面側には脚及び緩衝材を被覆するカバーを形成すると共にカバーの突出長さは緩衝材より小さくしたことを特徴とする電気機器の脚部構造。In a leg structure provided at the bottom of a front panel of an electric device and supporting the electric device, a leg is formed at a bottom of the front panel through a slit groove so as to be flexibly deformable, and a cushioning material such as rubber is formed on the leg. A leg structure for an electric device, wherein a cover for covering the legs and the cushioning material is formed on the front side of the bottom and the projecting length of the cover is smaller than that of the cushioning material. 電気機器のフロントパネル底に設けられ、該電気機器を支える為の脚部構造において、フロントパネルの底にスリット溝を介して脚を撓み変形可能に形成し、そして底の正面側には該底から下方へ突出する脚を被覆するカバーを形成すると共にカバーの突出長さは脚より小さくしたことを特徴とする電気機器の脚部構造。In a leg structure provided on a bottom of a front panel of an electric device for supporting the electric device, a leg is formed at a bottom of the front panel through a slit groove so as to be flexibly deformable, and the bottom is provided on a front side of the bottom. A cover for covering a leg protruding downward from the leg, and a length of the cover protruding is smaller than that of the leg. 上記脚は片持ち支持形態を構成した請求項1、又は請求項2記載の電気機器の脚部構造。3. The leg structure of an electric device according to claim 1, wherein the leg has a cantilever support configuration. 上記脚は両端支持形態を構成した請求項1、請求項2記載の電気機器の脚部構造。3. The leg structure of an electric device according to claim 1, wherein said legs are configured to be supported at both ends. 片持ち支持形態の脚が対を成して形成され、両脚に跨って緩衝材を取付けた請求項1、請求項2記載の電気機器の脚部構造。3. The leg structure of an electric device according to claim 1, wherein the cantilever-supporting legs are formed in pairs, and the cushioning material is attached to both legs. 上記脚に嵌合部を設けると共に該嵌合部に緩衝材を取付けた請求項1、請求項3、請求項4、又は請求項5記載の電気機器の脚部構造。6. The leg structure for an electric device according to claim 1, wherein a fitting portion is provided on the leg and a cushioning material is attached to the fitting portion.
JP2003121620A 2003-04-25 2003-04-25 Leg structure for electrical apparatus Pending JP2004327795A (en)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2008128355A (en) * 2006-11-21 2008-06-05 Icom Inc Support leg mounting structure
JP2011091148A (en) * 2009-10-21 2011-05-06 Furukawa Electric Co Ltd:The Supporting structure and electronic apparatus
JP2018182130A (en) * 2017-04-17 2018-11-15 富士通周辺機株式会社 Electronic apparatus

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2008128355A (en) * 2006-11-21 2008-06-05 Icom Inc Support leg mounting structure
JP2011091148A (en) * 2009-10-21 2011-05-06 Furukawa Electric Co Ltd:The Supporting structure and electronic apparatus
JP2018182130A (en) * 2017-04-17 2018-11-15 富士通周辺機株式会社 Electronic apparatus

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