JP2000252681A - Electromagnetic wave shielding panel with lead electrode - Google Patents

Electromagnetic wave shielding panel with lead electrode

Info

Publication number
JP2000252681A
JP2000252681A JP11054328A JP5432899A JP2000252681A JP 2000252681 A JP2000252681 A JP 2000252681A JP 11054328 A JP11054328 A JP 11054328A JP 5432899 A JP5432899 A JP 5432899A JP 2000252681 A JP2000252681 A JP 2000252681A
Authority
JP
Japan
Prior art keywords
conductive
conductive pattern
electromagnetic wave
wave shielding
lead electrode
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.)
Granted
Application number
JP11054328A
Other languages
Japanese (ja)
Other versions
JP4246834B2 (en
Inventor
Atsushi Okada
淳 岡田
Shigenori Kiyama
茂憲 樹山
Toshinori Okamoto
俊紀 岡本
Masanori Yamamoto
政則 山本
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.)
Gunze Ltd
Original Assignee
Gunze 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 Gunze Ltd filed Critical Gunze Ltd
Priority to JP05432899A priority Critical patent/JP4246834B2/en
Publication of JP2000252681A publication Critical patent/JP2000252681A/en
Application granted granted Critical
Publication of JP4246834B2 publication Critical patent/JP4246834B2/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Abstract

PROBLEM TO BE SOLVED: To obtain an electromagnetic wave shielding panel which has a special lead electrode which also has gesketing function and can surely and readily be grounded. SOLUTION: In this electromagnetic wave shielding panel, an electromagnetic wave shielding transparent sheet 2 is provided on one face with a not-like conductive pattern 2a (for example, mesh copper), and is adhered to a support transparent substrate 1 (for example, a glass plate) provided with a conductive pattern 1a (for example, with a band-like silver paste) over the entire peripheral end face so that the net-like conductive pattern is brought into contact with the conductive pattern in a state in which a part of the conductive pattern is left behind. In this case, in order to electrically connect with a conductive band-like elastic body 3a (for example, a band-like foaming body of a rectangular section is used as a core, and woven conductive fiber is fitted thereon), the body 3a is brought into contact with the conductive pattern leaving behind the part and so as to be fixed to be electrically connected, and is used as a lead electrode 3, to constitute the electromagnetic wave shielding panel with a lead electrode. This is effective for a shield such as PDP, etc.

Description

【発明の詳細な説明】DETAILED DESCRIPTION OF THE INVENTION

【0001】[0001]

【発明の属する技術分野】本発明はリード電極付き電磁
波シールド用パネルに関する。該パネルは例えばプラズ
マディスプレイ(以下、PDPと呼ぶ)の電磁波シール
ド用前面パネルとして有効に使用される。
The present invention relates to a panel for electromagnetic wave shielding with lead electrodes. The panel is effectively used, for example, as a front panel for shielding an electromagnetic wave of a plasma display (hereinafter, referred to as a PDP).

【0002】[0002]

【従来の技術】各種電子情報機器から発せられる電磁波
は、電子機器相互に誤動作を招くとか、人体に対して悪
影響を及ぼすとかの理由で問題となっていて、この問題
解決のために検討も種々なされている。例えば、次世代
大型TVとして注目されているPDPでは、その発光原
理に起因して、画面から強い電磁波が放射される。そこ
で、これを防止するために検討されている方法は、画面
の前面に電磁波シールド性のフィルタを装着することに
よっている。
2. Description of the Related Art Electromagnetic waves emitted from various electronic information devices have been problematic because they may cause malfunctions between electronic devices or adversely affect the human body. Various studies have been conducted to solve this problem. It has been done. For example, in a PDP that has attracted attention as a next-generation large-sized TV, a strong electromagnetic wave is radiated from the screen due to its light emitting principle. Therefore, a method under study to prevent this is to attach an electromagnetic wave shielding filter to the front of the screen.

【0003】一般に透明性も必要とする電磁波シールド
材の作製手段は、概略次のような方法によったもので
る。 (1)電気絶縁透明シート(プラスチック製、ガラス
製)上にフォトリソ法によって、またはこれに電気メッ
キを併用することで網の目状の金属導電パターンを形成
したもの。 (2)金属を表面にメッキして得た繊維をメッシュ織り
し、これを電気絶縁透明シートに張り合わせたもの。
[0003] Generally, the means for producing an electromagnetic wave shielding material which also requires transparency is roughly as follows. (1) An electrically insulating transparent sheet (made of plastic or glass) having a mesh-like metal conductive pattern formed thereon by a photolithographic method or by using electroplating together. (2) A fiber obtained by plating a metal on a surface, mesh-woven, and bonded to an electrically insulating transparent sheet.

【0004】そして、前記得られた電磁波シールド用透
明シートはそのまま使用されることは少なく、一般には
これを支持する透明支持板に該透明シート(網の目導電
パターン面は、その面保護のために内側にして)を貼着
して1つのパネル形態に加工して使われる。そして更に
該パネルには電磁波の効率的シールドのためにアースす
る必要があるので、そのためのリード電極(該透明シー
ト上の網の目導電パターンを引き出すための電極)を設
けておく必要がある。
The obtained transparent sheet for electromagnetic wave shielding is rarely used as it is. Generally, a transparent support plate for supporting the transparent sheet is provided with the transparent sheet (the mesh conductive pattern surface is provided for protecting the surface). To the inside, and processed into one panel form for use. Further, since the panel needs to be grounded for efficient shielding of electromagnetic waves, it is necessary to provide a lead electrode (electrode for extracting a mesh conductive pattern on the transparent sheet) for that purpose.

【0005】一般に前記リード電極は、製品設計上は支
障になりやすいものであり、従っていかに要領よく、体
裁よく組み込むか、更に使いやすくて、且つ効率的に容
易にアースができるかに配慮する必要がある。一般に行
われている該リード電極の作製手段は、前記貼着された
電磁波シールド性透明シートの全周端面を折り曲げて、
そこにリード電極を設ける方法(A法)。前記パネルの
加工における透明支持板と該透明シートとの貼着に際し
て、その全周端面は、導電性両面テープ又は導電性接着
剤で貼着する。この際該テープ又は該接着剤の一部は、
はみ出した状態にしておいて、この部分にリード電極を
設ける方法(B法)等である。そしてこのようにして作
製されたリード電極付き電磁波シールド用パネルは、例
えばPDPの筐体キャビネットの全面に取り付けられる
が、これは該パネルの全周囲にガスケットを挟んで導電
性クリップとか、導電性クリップ枠のようなもので挟持
することで行なわれる。
In general, the above-mentioned lead electrode is liable to hinder the product design. Therefore, it is necessary to consider how to integrate the lead electrode in a well-formed manner, to make it easier to use, and to easily and efficiently ground. There is. The means for producing the lead electrode, which is generally performed, bends the entire peripheral end surface of the attached electromagnetic wave shielding transparent sheet,
A method of providing a lead electrode there (Method A). At the time of attaching the transparent support plate and the transparent sheet in the processing of the panel, the entire peripheral end face is attached with a conductive double-sided tape or a conductive adhesive. At this time, part of the tape or the adhesive,
There is a method (method B) in which a protruding state is provided and a lead electrode is provided in this portion. The panel for electromagnetic wave shielding with lead electrodes manufactured in this manner is attached to the entire surface of a cabinet of a PDP, for example, and is connected to a conductive clip or a conductive clip with a gasket sandwiched all around the panel. It is performed by pinching it with something like a frame.

【0006】[0006]

【発明が解決しようとする課題】ところで前記従来のリ
ード電極作製法は、次の様な点で好ましくなく改善が望
まれる。まずA法では、折り曲げること自体が工程上容
易なことではなく、それに加えて折ることで、設けられ
ている網の目導電パターンが断線する危険性が極めて高
いことである。一方B法では、別途接着又は印刷等によ
るコーテングの工程を必要とすることである。更にA,
Bの両法に共通していることは、まず全周囲に必要とす
るリード電極そのものをどのようにして設けるかで幾多
の工夫が必要であること、そして筐体キャビネットに取
り付ける際にわざわざガスケットが使用されることであ
る。これらいずれの場合も全体の工程を複雑化し、生産
性の低下をまねいている。
However, the above-mentioned conventional method for producing a lead electrode is not preferable in the following points, and an improvement is desired. First, in the method A, it is not easy to bend itself in the process, and in addition to this, there is a very high risk of breaking the mesh conductive pattern of the provided mesh. On the other hand, the method B requires a separate coating step by bonding or printing. Further, A,
What both methods B have in common is that a lot of contrivance is required first in how to provide the necessary lead electrodes themselves around the entire circumference. Is to be used. In any of these cases, the entire process is complicated and productivity is reduced.

【0007】本発明は、前記問題に鑑み、これらを一挙
に解決するために鋭意検討し見い出されたものであり、
その解決手段は次の通りである。
[0007] In view of the above problems, the present invention has been intensively studied and found to solve these problems at once.
The solution is as follows.

【0008】[0008]

【課題を解決するための手段】即ち本発明は、請求項1
に記載するリード電極付き電磁波シールド用パネルの提
供によってなされるが、それは網の目導電パターン(2
a)が片面に設けられた電磁波シールド性透明シート
(2)を、全周端面に導電パターン(1a)の設けられ
た支持用透明基板(1)に、該網の目導電パターンと該
導電パターンとが、該導電パターンの1部を残す状態で
接するように接着貼合してなる電磁波シールド用パネル
であって、且つ導電性帯状弾性体(3a)を該1部を残
す導電パターンに接し導通するように固定し、これをリ
ード電極(3)として構成さるものである。
That is, the present invention provides a first aspect of the present invention.
Is provided by providing a panel for electromagnetic wave shielding with lead electrodes described in
a) a transparent electromagnetic wave shielding sheet (2) provided on one side, and a mesh conductive pattern and the conductive pattern on a supporting transparent substrate (1) provided with a conductive pattern (1a) on the entire peripheral end face. Is an electromagnetic wave shielding panel which is bonded and bonded so that a part of the conductive pattern is left, and the conductive strip-shaped elastic body (3a) is brought into contact with the conductive pattern leaving the part to conduct. To form a lead electrode (3).

【0009】そして前記請求項1における支持用透明基
板(1)に設けられる導電パターン(1a)としては、
導電ペーストによる帯状パターンが好ましいこと(請求
項2)、また導電性帯状弾性体(3)としては、編又は
織組織で袋状につくられた導電性繊維で嵌装した帯状発
泡体が好ましい(請求項3)ことも提供するものであ
る。
The conductive pattern (1a) provided on the supporting transparent substrate (1) according to claim 1 includes:
A strip-shaped pattern made of a conductive paste is preferable (claim 2). As the conductive strip-shaped elastic body (3), a strip-shaped foam fitted with conductive fibers made into a bag shape with a knitted or woven structure is preferable ( Claim 3) is also provided.

【0010】[0010]

【発明の実施の形態】前記本発明を更に図面を参照して
詳述する。
The present invention will be described in detail with reference to the drawings.

【0011】(実施例)図1は、請求項1に基づきこれ
に請求項2及び3をより具体化した例であり、それを平
面(1A)とA−A断面で示した。ここで1は銀導電ペ
ーストを用い、これを透明ガラス板(厚さ3.2mm、
690×1180mm)の全周端面に帯状(コーテング
厚さ13mμ、幅12mm)(一般的には幅10〜30
mm、コーテング厚さ5〜50mμ程度)にコーテング
(スクリーン印刷によっているが、方法には制限はな
い)し、固着して設けた導電パターン1aを有する支持
用透明ガラス基板である。そして2は、該ガラス基板の
大きさよりも若干小さい透明PETフイルムを用いて、
この片面に銅による肉厚7mμ(一般に良導電性に必要
な最低限の厚さでよく制限なし)のメッシュ状導電パタ
ーン2a(図2)を設けて作製した電磁波シールド性透
明シート(開口率86%、厚さ125mμ、サイズ68
0×1170mm)である。これは該ガラス基板に該パ
ターン面を内側にして透明両面テープ2b(透明接着剤
でもよい)によって貼着されている。ここで該貼着に使
用する該テープ2bは、全周端面は残して(貼らずに)
貼る必要がある。これは該ガラス基板に設けられた銀導
電パターン1aと該透明シートに設けられた銅のメッシ
ュパターン2aとを接して、導通状態にするためであ
る。従って、このような貼るという手段をとるだけで、
該透明シート2が貼着され同時に、メッシュ銅パターン
2aと銀導電パターン1aとの導通も行われることにな
る。
(Embodiment) FIG. 1 shows an embodiment in which claims 2 and 3 are further embodied based on claim 1 and is shown by a plane (1A) and an AA cross section. Here, 1 uses a silver conductive paste, and this is a transparent glass plate (thickness 3.2 mm,
690 × 1180 mm) on the entire peripheral end surface (coating thickness 13 mμ, width 12 mm) (generally width 10 to 30)
This is a supporting transparent glass substrate having a conductive pattern 1a which is coated (screen printing, but the method is not limited) to a thickness of 5 to 50 mμ (coating thickness). And 2, using a transparent PET film slightly smaller than the size of the glass substrate,
An electromagnetic wave shielding transparent sheet (an aperture ratio of 86) produced by providing a mesh-shaped conductive pattern 2a (FIG. 2) having a thickness of 7 mμ of copper (generally, the minimum thickness required for good electrical conductivity and no limitation is sufficient) on one side thereof. %, Thickness 125mμ, size 68
0 × 1170 mm). This is affixed to the glass substrate by the transparent double-sided tape 2b (transparent adhesive may be used) with the pattern surface inside. Here, the tape 2b used for the sticking is left (without sticking) the entire peripheral end surface.
You need to stick it. This is for bringing the silver conductive pattern 1a provided on the glass substrate into contact with the copper mesh pattern 2a provided on the transparent sheet to bring it into a conductive state. Therefore, just by taking such a means of pasting,
At the same time that the transparent sheet 2 is adhered, conduction between the mesh copper pattern 2a and the silver conductive pattern 1a is also performed.

【0012】また前記透明シート2は、ガラス基板1よ
りもサイズが小さいので、両者貼着された際に銀導電パ
ターン1aの1部は貼着されずに残っている。つまりメ
ッシュ銅パターン2a とは接していない状態にある。
これは後述する導電性帯状弾性体3に接して全体を導通
状態にするために必要であるからである。
Further, since the transparent sheet 2 is smaller in size than the glass substrate 1, a part of the silver conductive pattern 1a remains without being adhered when both are adhered. That is, it is not in contact with the mesh copper pattern 2a.
This is because it is necessary to bring the whole into a conductive state in contact with the conductive band-shaped elastic body 3 described later.

【0013】そして3は、支持用透明ガラス基板1の縁
に沿って全周に固設されたリード電極である。これ自身
は図3の斜視図で示す構造の導電性帯状弾性体でる。つ
まりこれは断面矩形の帯状弾性発泡体(芯材)3cを、
ニッケルメッキした繊維を使って袋状(断面矩形状)に
織って作製した導電繊維3b(0.02Ω/口)(0.
1Ω/口以下が好ましい)で全体を被って作ったもので
ある。該リード電極は導通状態にする必要があるが、そ
の為にここでは導電性帯状弾性体3aの端辺と電磁波シ
ールド性透明シート2の端辺とを3dの接着テープで固
定することで行っている。これにより該弾性体3aの他
辺(具体的には非接着にある導電繊維3b)が前記残っ
た状態にある銀導電パターン1aの1部分に接すること
になる。、つまり該透明シート2は、該導電パターン1
aを介してリード電極3に導通するので全体が導通状態
になり、アースすることができるようになる。
Reference numeral 3 denotes a lead electrode fixed along the edge of the supporting transparent glass substrate 1 all around. This is a conductive elastic band having the structure shown in the perspective view of FIG. In other words, this is a belt-shaped elastic foam (core material) 3c having a rectangular cross section,
Conductive fiber 3b (0.02Ω / port) made by weaving into a bag shape (rectangular cross section) using nickel-plated fiber (0.
(Preferably 1 Ω / port or less). The lead electrode needs to be in a conductive state. For this purpose, here, the end of the conductive strip elastic body 3a and the end of the electromagnetic wave shielding transparent sheet 2 are fixed with a 3d adhesive tape. I have. As a result, the other side of the elastic body 3a (specifically, the non-bonded conductive fiber 3b) comes into contact with one portion of the silver conductive pattern 1a in the remaining state. That is, the transparent sheet 2 is provided with the conductive pattern 1
Since it is electrically connected to the lead electrode 3 via a, the whole becomes conductive and can be grounded.

【0014】リード電極3の機能として弾性を必要とす
るのは、得られたパネルをPDP等の筐体キャビネット
に装着するのに、従来のようにわざわざガスケットを別
途を使用しなくとも、それ自身がガスケットの役目もす
ること、そして弾性を有することで銀導電パターン1a
とより強力に接することになるので、導通が完全なもの
になるからである。この弾性は発泡状態にすることでも
付与できるが、弾性を有する素材そのものの使用でも良
い。素材としては、例えばシリコーンゴム、ブタジエン
系ゴム、ウレタンゴム、熱可塑性エラストマー等が使用
できる。
The reason why the function of the lead electrode 3 requires elasticity is that when the obtained panel is mounted on a cabinet such as a PDP, the gasket does not need to be used separately as in the related art. Also serves as a gasket, and has elasticity, so that the silver conductive pattern 1a
This is because the contact becomes stronger and the conduction is complete. This elasticity can be imparted by making it into a foamed state, but the elastic material itself may be used. As the material, for example, silicone rubber, butadiene rubber, urethane rubber, thermoplastic elastomer, or the like can be used.

【0015】又リード電極3の有する導電機能は、実施
例では織られた導電繊維3b(素材はテトロン糸にニッ
ケルをメッキしたもの)によっているが、前記弾性素材
自身に導電性を付与しておけば、あえて該導電繊維を使
う必要はない。該導電性を有する弾性素材と該導電繊維
との併用でもよい。また該導電繊維には、ニッケル以外
の例えば銅、銀等でも良く、これにメッキ(蒸着でも良
い)をする繊維は、テトロン以外のナイロン等でも良
い。例示する該導電繊維は、柔軟的で取扱い(加工)が
し易いことによるが、しかしこれが金属繊維であっても
良い。又リード電極3は、断面が矩形状であるがこれに
は限定されず、例えば円弧状であっても良い。
In the embodiment, the conductive function of the lead electrode 3 is based on the woven conductive fiber 3b (made of tetron yarn plated with nickel), but the elastic material itself may be provided with conductivity. It is not necessary to use the conductive fiber. The conductive material may be used in combination with the conductive elastic material. Further, the conductive fiber may be, for example, copper or silver other than nickel, and the fiber for plating (or vapor deposition) on this may be nylon other than tetron. The exemplary conductive fiber is flexible and easy to handle (process), but may be a metal fiber. The lead electrode 3 has a rectangular cross section, but is not limited to this. For example, the cross section may be an arc.

【0016】また支持用透明基板(1)に設けられる導
電パターン(1a)は、実施例では導電ペーストによっ
て設けられているが、これは例えばニッケル、銅、銀、
アルミニウム等を蒸着またはメッキにて形成してもよ
い。
In the embodiment, the conductive pattern (1a) provided on the supporting transparent substrate (1) is provided by a conductive paste, for example, nickel, copper, silver, or the like.
Aluminum or the like may be formed by vapor deposition or plating.

【0017】尚支持用透明基板1に使う支持板はガラス
板に限らず透明プラスチック板でも良く、又電磁波シー
ルド性透明シートは透明PETフイルム以外の透明プラ
スチックシートでも良い。更に該透明シート上に設けら
れて網の目導電パターンは、その種類つまり導電性が付
与される材質と作製法、該パターンの形状と開口率等に
も特定されるものではない。
The supporting plate used for the supporting transparent substrate 1 is not limited to a glass plate, but may be a transparent plastic plate. The electromagnetic wave shielding transparent sheet may be a transparent plastic sheet other than a transparent PET film. Furthermore, the mesh conductive pattern provided on the transparent sheet is not specified by its type, that is, the material to which conductivity is imparted, the manufacturing method, the shape of the pattern, the aperture ratio, and the like.

【0018】前記得られた電磁波シールド用パネルは、
そのままアルミとか、マグネシウム、炭素繊維等によっ
て作製されたPDP等の導電筐体キャビネットに装着し
さえすれば直ちに全周囲がアース状態におかれることに
なる。
The obtained electromagnetic wave shielding panel is as follows:
As soon as it is mounted on a conductive cabinet such as a PDP made of aluminum, magnesium, carbon fiber or the like, the entire periphery is immediately grounded.

【0019】[0019]

【発明の効果】本発明は前記の通り構成されているの
で、次のような効果を奏する。
As described above, the present invention has the following advantages.

【0020】電磁波シールド用パネルをPDP等の導電
筐体キャビネットに装着するだけで全周囲がアース状態
になるので、わざわざ電極からアースのための多くの引
き出し線(一般にあるピッチで全周囲からとる)をとる
必要はなく、アースが完全に確実に行なえるので、より
電磁波シールド性も一層高くなる。
Since the entire periphery is grounded only by mounting the electromagnetic wave shielding panel on a conductive cabinet such as a PDP, many lead wires for grounding from the electrode (generally taken from the entire periphery at a certain pitch). It is not necessary to take any measures, and the grounding can be completely achieved, so that the electromagnetic wave shielding property is further improved.

【0021】リード電極が弾性も有することで、ガスケ
ットの役目もする。これは別途ガスケットを使用する必
要もなく、また前記キャビネット面に、簡単に、しっか
りと装着(密着状態)もするので外部からの電磁波の侵
入、内部からの漏洩もない。
Since the lead electrode also has elasticity, it also functions as a gasket. This does not require the use of a separate gasket, and is easily and firmly attached (close contact state) to the cabinet surface, so that there is no intrusion of electromagnetic waves from outside and no leakage from inside.

【0022】従来のような危険な或いは複雑なリード電
極の作製手段とは異なり、安全に確実に簡単に作製する
ことができる。
Unlike the conventional method for manufacturing a dangerous or complicated lead electrode, it can be manufactured safely, reliably and easily.

【図面の簡単な説明】[Brief description of the drawings]

【図1】実施例の全構成を平、断面図で示したものであ
る。
FIG. 1 is a plan view and a sectional view showing the entire configuration of an embodiment.

【図2】実施例のメッシュ状導電パターンの平面図であ
る。
FIG. 2 is a plan view of a mesh-shaped conductive pattern of an embodiment.

【図3】実施例のリード電極に使用した導電性帯状弾性
体を斜視図で示す。
FIG. 3 is a perspective view showing a conductive strip-shaped elastic body used for the lead electrode of the embodiment.

【符号の説明】[Explanation of symbols]

1 銀導電パターン付き支持用透明基板 2 電磁波シールド性透明シート 3 帯状リード電極 DESCRIPTION OF SYMBOLS 1 Supporting transparent substrate with silver conductive pattern 2 Electromagnetic wave shielding transparent sheet 3 Strip-shaped lead electrode

フロントページの続き (72)発明者 山本 政則 滋賀県守山市森川原町163番地 グンゼ株 式会社研究開発部滋賀研究所内 Fターム(参考) 5E321 AA04 BB23 BB41 BB44 CC16 GG01 GG05 GH01 Continued on the front page (72) Inventor Masanori Yamamoto 163 Morikawaramachi, Moriyama City, Shiga Prefecture Gunze Co., Ltd. Research and Development Department Shiga Laboratory F-term (reference) 5E321 AA04 BB23 BB41 BB44 CC16 GG01 GG05 GH01

Claims (3)

【特許請求の範囲】[Claims] 【請求項1】網の目導電パターン(2a)が片面に設け
られた電磁波シールド性透明シート(2)を、全周端面
に導電パターン(1a)の設けられた支持用透明基板
(1)に、該網の目導電パターンと該導電パターンと
が、該導電パターンの1部を残す状態で接するように接
着貼合してなる電磁波シールド用パネルであって、且つ
導電性帯状弾性体(3a)を該1部を残す導電パターン
に接し導通するように固定し、これをリード電極(3)
として設けたことを特徴とするリード電極付き電磁波シ
ールド用パネル。
1. An electromagnetic wave shielding transparent sheet (2) provided with a mesh conductive pattern (2a) on one surface is provided on a supporting transparent substrate (1) provided with a conductive pattern (1a) on the entire circumferential end surface. An electromagnetic wave shielding panel formed by bonding and bonding the mesh conductive pattern and the conductive pattern so as to be in contact with each other while leaving a part of the conductive pattern, and a conductive strip elastic body (3a). Is fixed so as to be in contact with and conductive to the conductive pattern leaving the part, and this is fixed to the lead electrode (3).
A panel for electromagnetic wave shielding with lead electrodes, characterized in that:
【請求項2】前記導電パターン(1a)が導電ペースト
による帯状パターンである請求項1に記載のリード電極
付き電磁波シールド用パネル。
2. The electromagnetic wave shielding panel with lead electrodes according to claim 1, wherein said conductive pattern (1a) is a band-shaped pattern made of a conductive paste.
【請求項3】前記導電性帯状弾性体(3)が編又は織組
織で袋状につくられた導電性繊維で被われた帯状発泡体
である請求項1に記載のリード電極付き電磁波シールド
用パネル。
3. An electromagnetic wave shield with a lead electrode according to claim 1, wherein said conductive strip elastic body (3) is a strip foam covered with conductive fibers formed in a bag shape with a knitted or woven structure. panel.
JP05432899A 1999-03-02 1999-03-02 Electromagnetic wave shielding panel with lead electrode Expired - Fee Related JP4246834B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP05432899A JP4246834B2 (en) 1999-03-02 1999-03-02 Electromagnetic wave shielding panel with lead electrode

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP05432899A JP4246834B2 (en) 1999-03-02 1999-03-02 Electromagnetic wave shielding panel with lead electrode

Publications (2)

Publication Number Publication Date
JP2000252681A true JP2000252681A (en) 2000-09-14
JP4246834B2 JP4246834B2 (en) 2009-04-02

Family

ID=12967534

Family Applications (1)

Application Number Title Priority Date Filing Date
JP05432899A Expired - Fee Related JP4246834B2 (en) 1999-03-02 1999-03-02 Electromagnetic wave shielding panel with lead electrode

Country Status (1)

Country Link
JP (1) JP4246834B2 (en)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US7727578B2 (en) 2007-12-27 2010-06-01 Honeywell International Inc. Transparent conductors and methods for fabricating transparent conductors
US7960027B2 (en) 2008-01-28 2011-06-14 Honeywell International Inc. Transparent conductors and methods for fabricating transparent conductors
KR101323008B1 (en) 2007-05-19 2013-10-29 이형곤 elastic conductive sheet and manufacture

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR101323008B1 (en) 2007-05-19 2013-10-29 이형곤 elastic conductive sheet and manufacture
US7727578B2 (en) 2007-12-27 2010-06-01 Honeywell International Inc. Transparent conductors and methods for fabricating transparent conductors
US7960027B2 (en) 2008-01-28 2011-06-14 Honeywell International Inc. Transparent conductors and methods for fabricating transparent conductors

Also Published As

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