JP3931784B2 - Electronics - Google Patents

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Publication number
JP3931784B2
JP3931784B2 JP2002292756A JP2002292756A JP3931784B2 JP 3931784 B2 JP3931784 B2 JP 3931784B2 JP 2002292756 A JP2002292756 A JP 2002292756A JP 2002292756 A JP2002292756 A JP 2002292756A JP 3931784 B2 JP3931784 B2 JP 3931784B2
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JP
Japan
Prior art keywords
cover
opening
bearing hole
container
slit
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.)
Expired - Fee Related
Application number
JP2002292756A
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Japanese (ja)
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JP2004128347A (en
Inventor
栄一 上松
剛 高島
亨 高橋
幸功 児島
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.)
Panasonic Electric Works Co Ltd
Original Assignee
Matsushita Electric Works 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 Matsushita Electric Works Ltd filed Critical Matsushita Electric Works Ltd
Priority to JP2002292756A priority Critical patent/JP3931784B2/en
Publication of JP2004128347A publication Critical patent/JP2004128347A/en
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Publication of JP3931784B2 publication Critical patent/JP3931784B2/en
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E60/00Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
    • Y02E60/10Energy storage using batteries

Description

【0001】
【発明の属する技術分野】
本発明は、器体に形成された開口部を塞ぐ位置と開放する位置との間で回動自在となるように器体に枢支されるカバーを備えた電子機器に関するものである。
【0002】
【従来の技術】
従来から、器体内部に配設されている各種のスイッチの設定を外部から操作して変更する際に開閉するカバーを備えた電子機器や、器体内部に配設されているバッテリホルダにバッテリを着脱する際に開閉するカバーを備えた種々の電子機器が提案されている(例えば、特許文献1)。
【0003】
この種の電子機器においては、図7に示すように、合成樹脂製のカバー20の枢支部21に形成された軸受孔22へ合成樹脂製の器体10の開口部11の内周縁から突設された回転軸12を嵌着することで、器体10に対してカバー20が回動自在に保持される。ここに、カバー20の枢支部21には、軸受孔22に連通し回転軸12を軸受孔22に導入可能とする取付用スリット23が形成されている。なお、取付用スリット23は、図7における下面側が開放されており、軸受孔22の内径よりも幅狭に形成されている。
【0004】
【特許文献1】
特開平8−329918号公報(第2頁−第3頁、図1、図2、図3)
【0005】
【発明が解決しようとする課題】
ところで、上記従来構成では、カバー20を回動自在に保持する一対の回転軸12が器体10に設けられているので、カバー20が回転軸12を中心にして開口部11を塞ぐ位置と開放する位置との間で回動自在となる。しかしながら、カバー20が開口部11を開放し且つ開放方向へのカバー20の回動が器体10により規制された状態においてカバー20へ開放方向の力が作用すると、回転軸12が折れてしまい、カバー20を器体10へ取り付けることができなくなっていた。
【0006】
本発明は上記事由に鑑みて為されたものであり、その目的は、器体に設けられカバーを回動自在に保持する回転軸が折れるのを防止することができる電子機器を提供することにある。
【0007】
【課題を解決するための手段】
請求項1の発明は、上記目的を達成するために、器体と、器体に形成された開口部を塞ぐ位置と開口部を開放する位置との間で回動自在となるように器体に枢支されるカバーとを備え、カバーには、器体の開口部の内周縁から突設された回転軸が嵌着される軸受孔が形成され、カバーが開口部を開放し且つ開放方向へのカバーの回動が器体により規制された状態においてカバーへ開放方向の力が作用したときに回転軸を軸受孔から脱出させる脱出用スリットが軸受孔に連通する形で形成されるとともに、軸受孔に連通し回転軸を軸方向に直交する方向から軸受孔に導入可能とする取付用スリットが形成されてなり、脱出用スリットと取付用スリットとが別々に設けられていることを特徴とするものであり、カバーが開口部を開放し且つ開放方向へのカバーの回動が器体により規制された状態においてカバーへ開放方向の力が作用すると、回転軸が脱出用スリットを通してカバーから外れる(つまり、カバーが器体から外れる)ことになるので、回転軸が折れるのを防止することができ、また、カバーには、軸受孔に連通し回転軸を軸方向に直交する方向から軸受孔に導入可能とする取付用スリットが形成されているので、カバーが器体から外れた後でも容易に取り付けることができる。
【0009】
【発明の実施の形態】
本実施形態では、電子機器の一例として、シーケンスプログラムに基づいて制御対象機器のシーケンス制御を行うプログラマブルコントローラを例示するが、本発明の技術思想はプログラマブルコントローラ以外の電子機器にも適用できる。
【0010】
本実施形態のプログラマブルコントローラは、図2に示した器体10内に、使用者が作成したシーケンスプログラムやデータなどを記憶保持するメモリ(図示せず)、シーケンスプログラムに従って動作するマイクロプロセッサ(図示せず)などが収納されており、器体10の前面側に、各種設定を行う複数のスイッチ18aを有する操作部18と、各種表示を行う表示部19とが設けられている。
【0011】
また、器体10内には、外部電源からの給電が停止しても上記メモリなどへの給電を維持するバックアップ用のバッテリ(図示せず)を着脱自在に保持するバッテリホルダ(図示せず)が収納されており、器体10の上壁において上記バッテリホルダに対応する部位には、矩形状に開口した開口部11が形成されている。
【0012】
また、本実施形態のプログラマブルコントローラは、開口部11を塞ぐ位置と開放する位置との間で回動自在となるように器体10に枢支される矩形状のカバー20(図1および図4および図5参照)を備えており、カバー20が開口部11を開放する位置までカバー20を回動させることにより、上記バッテリの着脱を行うことができるようになっている。なお、器体10およびカバー20はそれぞれ合成樹脂により形成されている。
【0013】
器体10の開口部11の内周縁からは、カバー20が開口部11を塞いだ状態で器体10内に落ち込むのを防止するための3つのリブ13(図2および図3および図5参照)が突設されている。また、カバー20は、一端部に枢支部21が形成されており、カバー20の他端部の両側部からは、器体10の上壁における開口部11の周部の下面に係合自在なロック用凸部25(図4参照)が突設されており、カバー20により開口部11を塞いだ状態でロック用凸部25が開口部11の周部の下面に係合されるようになっている。これに対して、器体10の上壁の上面には、カバー20により開口部11を塞いだ状態においてカバー20の他端部近傍となる部位に、開口部11に連通する操作用凹部14が形成されており、操作用凹部14に指や冶具などを挿入してカバー20が開口部11を開放する方向へ力を作用させることによって、器体10とロック用凸部25との係合状態が解除されてカバー20を回動させることができるようになっている。さらに、カバー20の上記他端部には、開口部11を塞いだ状態において操作用凹部14に連通する凹所26が形成されている。
【0014】
ところで、図1に示すように、器体10には、開口部11の内周縁から一対の円柱状の回転軸12,12が突設されている。一方、カバー20は、上述のように一端部に枢支部21が形成されており、カバー20の枢支部21には、回転軸12が嵌着される軸受孔22が形成されている。ここに、カバー20の枢支部21には、軸受孔22に連通し回転軸12を軸方向に直交する方向から軸受孔22に導入可能とする取付用スリット23が形成されている。また、カバー20の枢支部21には、図6(a)に示すようにカバー20が開口部11を開放し且つカバー20の表面が器体10に当接することで開放方向(図6(a)における反時計回り方向)へのカバー20の回動が器体10により規制された状態において、カバー20へ開放方向の力が作用したときに図6(b)に示すように回転軸12を軸受孔22から脱出させる脱出用スリット24が軸受孔22に連通する形で形成されている。なお、取付用スリット23は、図1における下面側が開放されており、軸受孔22の内径および回転軸12の外径よりも幅狭に形成されており、脱出用スリット24は、図1における上面側が開放されており、軸受孔22の内径および回転軸12の外径よりも幅狭に形成されている。
【0015】
しかして、本実施形態では、カバー20が開口部11を開放し且つ開放方向へのカバー20の回動が器体10により規制された状態においてカバー20へ開放方向の力が作用すると、回転軸12が脱出用スリット24を通して枢支部21から外れる(つまり、カバー20が器体10から外れる)ことになるので、回転軸12が折れるのを防止することができる。また、カバー20の枢支部21には、軸受孔22に連通し回転軸12を軸方向に直交する方向から軸受孔22に導入可能とする取付用スリット23が形成されているので、カバー20が器体10から外れた後でも容易に取り付けることができる。
【0016】
なお、本実施形態では、器体10においてバッテリホルダに対応する部位に形成された開口部11を塞ぐ位置と開放する位置との間で回動自在となるカバー20について説明したが、器体内部に設けられたスイッチの設定を行う際に開閉するカバーに上述の構造を採用してもよい。
【0017】
【発明の効果】
請求項1の発明は、器体と、器体に形成された開口部を塞ぐ位置と開口部を開放する位置との間で回動自在となるように器体に枢支されるカバーとを備え、カバーの枢支部には、器体の開口部の内周縁から突設された回転軸が嵌着される軸受孔が形成され、カバーが開口部を開放し且つ開放方向へのカバーの回動が器体により規制された状態においてカバーへ開放方向の力が作用したときに回転軸を軸受孔から脱出させる脱出用スリットが軸受孔に連通する形で形成されてなるものであり、カバーが開口部を開放し且つ開放方向へのカバーの回動が器体により規制された状態においてカバーへ開放方向の力が作用すると、回転軸が脱出用スリットを通してカバーから外れる(つまり、カバーが器体から外れる)ことになるので、回転軸が折れるのを防止することができるという効果があり、また、カバーには、軸受孔に連通し回転軸を軸方向に直交する方向から軸受孔に導入可能とする取付用スリットが形成されているので、カバーが器体から外れた後でも容易に取り付けることができるという効果がある。
【図面の簡単な説明】
【図1】実施形態を示すプログラマブルコントローラの要部説明図である。
【図2】同上を示し、(a)はカバーを取り外した状態の概略外観斜視図、(b)は(a)の要部拡大図である。
【図3】同上を示し、カバーを取り外した状態の要部概略断面図である。
【図4】同上に用いるカバーを示し、(a)は概略正面図、(b)は概略側面図である。
【図5】同上を示し、(a)はカバーにより開口部を塞いだ状態の要部概略断面図、(b)はカバーにより開口部を塞いだ状態の要部側断面図、(c)はカバーにより開口部を塞いだ状態の要部拡大断面図である。
【図6】同上の要部説明図である。
【図7】従来例を示す要部説明図である。
【符号の説明】
10 器体
11 開口部
12 回転軸
20 カバー
21 枢支部
22 軸受孔
23 取付用スリット
24 脱出用スリット
[0001]
BACKGROUND OF THE INVENTION
The present invention relates to an electronic apparatus provided with a cover pivotally supported by a container so as to be rotatable between a position where an opening formed in the container is closed and a position where the opening is opened.
[0002]
[Prior art]
Conventionally, a battery is attached to an electronic device having a cover that opens and closes when a setting of various switches arranged inside the body is changed by operating from the outside, or a battery holder arranged inside the body. Various electronic devices including a cover that opens and closes when attaching and detaching are proposed (for example, Patent Document 1).
[0003]
In this type of electronic apparatus, as shown in FIG. 7, the bearing hole 22 formed in the pivotal support portion 21 of the synthetic resin cover 20 is projected from the inner peripheral edge of the opening 11 of the synthetic resin container 10. The cover 20 is rotatably held with respect to the container body 10 by fitting the rotary shaft 12 thus made. Here, the pivoting portion 21 of the cover 20 is formed with a mounting slit 23 that communicates with the bearing hole 22 and allows the rotary shaft 12 to be introduced into the bearing hole 22. The attachment slit 23 is open on the lower surface side in FIG. 7 and is formed narrower than the inner diameter of the bearing hole 22.
[0004]
[Patent Document 1]
JP-A-8-329918 (2nd to 3rd pages, FIG. 1, FIG. 2, FIG. 3)
[0005]
[Problems to be solved by the invention]
By the way, in the said conventional structure, since a pair of rotating shaft 12 which hold | maintains the cover 20 rotatably is provided in the container 10, the position and cover which the cover 20 closes the opening part 11 centering on the rotating shaft 12 is open | released. It can be freely rotated between the position and the position. However, when a force in the opening direction acts on the cover 20 in a state where the cover 20 opens the opening 11 and the rotation of the cover 20 in the opening direction is restricted by the container body 10, the rotating shaft 12 is broken, The cover 20 could not be attached to the body 10.
[0006]
The present invention has been made in view of the above reasons, and an object of the present invention is to provide an electronic device that can prevent a rotating shaft that is provided in a container body and that rotatably holds a cover from breaking. is there.
[0007]
[Means for Solving the Problems]
In order to achieve the above-mentioned object, the invention according to claim 1 is configured so as to be rotatable between a container body and a position where the opening formed in the container is closed and a position where the opening is opened. And a cover hole is formed in the cover, into which a rotating shaft projecting from the inner peripheral edge of the opening of the body is fitted, and the cover opens the opening and opens in the opening direction. An escape slit is formed in communication with the bearing hole for allowing the rotary shaft to escape from the bearing hole when a force in the opening direction is applied to the cover in a state where the rotation of the cover to the container is restricted . The mounting slit is formed so that the rotation shaft communicates with the bearing hole and can be introduced into the bearing hole from the direction orthogonal to the axial direction, and the escape slit and the mounting slit are provided separately. The cover opens the opening and how to open When the force in the opening direction is applied to the cover in a state where the rotation of the cover is restricted by the container, the rotating shaft is detached from the cover through the escape slit (that is, the cover is detached from the container). Since the rotation shaft can be prevented from breaking, and the cover is formed with a mounting slit that communicates with the bearing hole and allows the rotation shaft to be introduced into the bearing hole from a direction orthogonal to the axial direction. It can be easily attached even after the cover is removed from the body.
[0009]
DETAILED DESCRIPTION OF THE INVENTION
In the present embodiment, a programmable controller that performs sequence control of a device to be controlled based on a sequence program is illustrated as an example of an electronic device. However, the technical idea of the present invention can also be applied to electronic devices other than a programmable controller.
[0010]
The programmable controller of the present embodiment includes a memory (not shown) that stores and holds a sequence program and data created by a user in the container 10 shown in FIG. 2, and a microprocessor (not shown) that operates according to the sequence program. And the like, and an operation unit 18 having a plurality of switches 18a for performing various settings and a display unit 19 for performing various displays are provided on the front side of the container 10.
[0011]
In addition, a battery holder (not shown) that detachably holds a backup battery (not shown) that maintains power supply to the memory and the like even when power supply from an external power supply is stopped in the container 10. Is formed in a portion corresponding to the battery holder on the upper wall of the vessel body 10, and an opening 11 having a rectangular shape is formed.
[0012]
Further, the programmable controller of the present embodiment has a rectangular cover 20 that is pivotally supported by the body 10 so as to be rotatable between a position where the opening 11 is closed and a position where the opening 11 is opened (see FIGS. 1 and 4). And the battery can be attached and detached by rotating the cover 20 to a position where the cover 20 opens the opening 11. The container 10 and the cover 20 are each formed of a synthetic resin.
[0013]
Three ribs 13 (see FIGS. 2, 3, and 5) for preventing the cover 20 from falling into the body 10 while closing the opening 11 from the inner peripheral edge of the opening 11 of the body 10. ) Is projected. Further, the cover 20 is formed with a pivotal support portion 21 at one end portion, and can be engaged with the lower surface of the peripheral portion of the opening portion 11 on the upper wall of the vessel 10 from both side portions of the other end portion of the cover 20. A locking convex portion 25 (see FIG. 4) is provided so that the locking convex portion 25 is engaged with the lower surface of the peripheral portion of the opening portion 11 while the opening portion 11 is closed by the cover 20. ing. On the other hand, on the upper surface of the upper wall of the vessel body 10, there is an operation recess 14 communicating with the opening 11 at a position near the other end of the cover 20 when the opening 11 is closed by the cover 20. The engagement state between the body 10 and the locking convex portion 25 is formed by inserting a finger or a jig into the operation concave portion 14 and applying a force in the direction in which the cover 20 opens the opening portion 11. Is released so that the cover 20 can be rotated. Further, the other end of the cover 20 is formed with a recess 26 that communicates with the operation recess 14 in a state in which the opening 11 is closed.
[0014]
By the way, as shown in FIG. 1, a pair of columnar rotating shafts 12, 12 project from the inner peripheral edge of the opening 11 to the container body 10. On the other hand, as described above, the cover 20 has the pivot portion 21 formed at one end, and the pivot portion 21 of the cover 20 has a bearing hole 22 into which the rotary shaft 12 is fitted. Here, the pivot portion 21 of the cover 20 is formed with a mounting slit 23 that communicates with the bearing hole 22 and allows the rotary shaft 12 to be introduced into the bearing hole 22 from a direction orthogonal to the axial direction. Further, as shown in FIG. 6A, the cover 20 opens the opening 11 and the surface of the cover 20 abuts against the body 10 as shown in FIG. 6), when the force of the opening direction is applied to the cover 20 in a state where the rotation of the cover 20 in the counterclockwise direction) in FIG. An escape slit 24 for escaping from the bearing hole 22 is formed in communication with the bearing hole 22. The mounting slit 23 is open on the lower surface side in FIG. 1, and is formed narrower than the inner diameter of the bearing hole 22 and the outer diameter of the rotary shaft 12, and the escape slit 24 is formed on the upper surface in FIG. The side is open, and is formed narrower than the inner diameter of the bearing hole 22 and the outer diameter of the rotating shaft 12.
[0015]
Thus, in this embodiment, when the cover 20 opens the opening 11 and the force in the opening direction acts on the cover 20 in a state where the rotation of the cover 20 in the opening direction is restricted by the container body 10, the rotating shaft 12 is removed from the pivotal support 21 through the escape slit 24 (that is, the cover 20 is detached from the body 10), so that the rotating shaft 12 can be prevented from being broken. In addition, the pivot portion 21 of the cover 20 is formed with a mounting slit 23 that communicates with the bearing hole 22 and allows the rotary shaft 12 to be introduced into the bearing hole 22 from a direction orthogonal to the axial direction. It can be easily attached even after it is detached from the body 10.
[0016]
In addition, although this embodiment demonstrated the cover 20 which can be rotated between the position which closes the opening part 11 formed in the site | part corresponding to a battery holder in the container 10, and the position which open | release, The above-described structure may be employed for a cover that opens and closes when setting a switch provided on the.
[0017]
【The invention's effect】
The invention of claim 1 includes a vessel and a cover pivotally supported by the vessel so as to be rotatable between a position where the opening formed in the vessel is closed and a position where the opening is opened. A bearing hole is formed in the pivotal support portion of the cover, into which a rotating shaft projecting from the inner peripheral edge of the opening of the body is fitted. The cover opens the opening and rotates the cover in the opening direction. An escape slit is formed to communicate with the bearing hole so that the rotating shaft escapes from the bearing hole when a force in the opening direction is applied to the cover in a state where the movement is restricted by the body. When a force in the opening direction is applied to the cover in a state where the opening is opened and the rotation of the cover in the opening direction is restricted by the container, the rotating shaft is detached from the cover through the escape slit (that is, the cover is removed from the container). The rotation axis is broken. There is an effect that it is possible to prevent the, also, the cover, since mounting slits to be introduced from the direction perpendicular to the rotation axis communicates with the bearing hole in the axial direction into the bearing hole is formed, There is an effect that it can be easily attached even after the cover is removed from the body.
[Brief description of the drawings]
FIG. 1 is an explanatory diagram of a main part of a programmable controller showing an embodiment.
2A is a schematic external perspective view with a cover removed, and FIG. 2B is an enlarged view of a main part of FIG.
FIG. 3 is a schematic cross-sectional view of the relevant part showing the same as above, with the cover removed.
4A and 4B show a cover used for the above, wherein FIG. 4A is a schematic front view, and FIG. 4B is a schematic side view.
5A is a schematic cross-sectional view of a main part in a state where an opening is closed by a cover; FIG. 5B is a side cross-sectional view of a main part in a state where the opening is closed by a cover; It is a principal part expanded sectional view of the state which closed the opening part with the cover.
FIG. 6 is an explanatory diagram of a main part of the above.
FIG. 7 is an explanatory diagram of relevant parts showing a conventional example.
[Explanation of symbols]
DESCRIPTION OF SYMBOLS 10 Container 11 Opening part 12 Rotating shaft 20 Cover 21 Pivoting part 22 Bearing hole 23 Slit for attachment 24 Slit for escape

Claims (1)

器体と、器体に形成された開口部を塞ぐ位置と開口部を開放する位置との間で回動自在となるように器体に枢支されるカバーとを備え、カバーには、器体の開口部の内周縁から突設された回転軸が嵌着される軸受孔が形成され、カバーが開口部を開放し且つ開放方向へのカバーの回動が器体により規制された状態においてカバーへ開放方向の力が作用したときに回転軸を軸受孔から脱出させる脱出用スリットが軸受孔に連通する形で形成されるとともに、軸受孔に連通し回転軸を軸方向に直交する方向から軸受孔に導入可能とする取付用スリットが形成されてなり、脱出用スリットと取付用スリットとが別々に設けられていることを特徴とする電子機器 A container, and a cover pivotally supported by the container so as to be rotatable between a position where the opening formed in the container is closed and a position where the opening is opened. In a state where a bearing hole into which a rotating shaft protruding from the inner peripheral edge of the body opening is fitted is formed, the cover opens the opening, and the rotation of the cover in the opening direction is restricted by the body. An escape slit that allows the rotary shaft to escape from the bearing hole when a force in the opening direction is applied to the cover is formed in communication with the bearing hole, and the rotary shaft extends from the direction orthogonal to the axial direction. An electronic device characterized in that a mounting slit that can be introduced into a bearing hole is formed, and an escape slit and a mounting slit are provided separately .
JP2002292756A 2002-10-04 2002-10-04 Electronics Expired - Fee Related JP3931784B2 (en)

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JP2004128347A JP2004128347A (en) 2004-04-22
JP3931784B2 true JP3931784B2 (en) 2007-06-20

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Publication number Priority date Publication date Assignee Title
JP4561196B2 (en) * 2004-06-25 2010-10-13 富士電機システムズ株式会社 Inverter device
JP4958493B2 (en) * 2006-07-21 2012-06-20 矢崎総業株式会社 Lid and storage box
TW201112934A (en) * 2009-09-28 2011-04-01 Giga Byte Tech Co Ltd Electronic device
JP5720417B2 (en) * 2011-05-20 2015-05-20 株式会社島津製作所 Lid support device
JP2013191582A (en) * 2013-06-07 2013-09-26 Panasonic Corp Portable medical device

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH06302975A (en) * 1993-04-19 1994-10-28 Fuji Electric Co Ltd Device for fitting opening/closing cover to electronic equipment
JP3233831B2 (en) * 1995-09-18 2001-12-04 株式会社ピーエフユー Removable cover mounting structure
JPH09246744A (en) * 1996-03-13 1997-09-19 Nippon Denki Ido Tsushin Kk Cover for electronic apparatus

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