JPS6047714B2 - High frequency heating device - Google Patents

High frequency heating device

Info

Publication number
JPS6047714B2
JPS6047714B2 JP5596280A JP5596280A JPS6047714B2 JP S6047714 B2 JPS6047714 B2 JP S6047714B2 JP 5596280 A JP5596280 A JP 5596280A JP 5596280 A JP5596280 A JP 5596280A JP S6047714 B2 JPS6047714 B2 JP S6047714B2
Authority
JP
Japan
Prior art keywords
wall
door
choke
slit
heating device
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
Application number
JP5596280A
Other languages
Japanese (ja)
Other versions
JPS56152191A (en
Inventor
信夫 池田
博文 吉村
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 Holdings Corp
Original Assignee
Matsushita Electric Industrial 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 Matsushita Electric Industrial Co Ltd filed Critical Matsushita Electric Industrial Co Ltd
Priority to JP5596280A priority Critical patent/JPS6047714B2/en
Publication of JPS56152191A publication Critical patent/JPS56152191A/en
Publication of JPS6047714B2 publication Critical patent/JPS6047714B2/en
Expired legal-status Critical Current

Links

Landscapes

  • Constitution Of High-Frequency Heating (AREA)

Description

【発明の詳細な説明】 本発明はいわゆるスリットチョークシールを用いてド
アー周辺からの電波漏れを防止する構造の高周波加熱装
置に関するものてあり、簡単な構成で従来からの欠点を
改良しコンパクトで性能の優れた電波漏洩防止方法を提
案するものてある。
DETAILED DESCRIPTION OF THE INVENTION The present invention relates to a high-frequency heating device that uses a so-called slit choke seal to prevent leakage of radio waves from around a door. There is a proposal for an excellent method for preventing radio wave leakage.

従来から高周波加熱装置のドアー部よりの電波漏洩を
防止するために使用電波波長の約1ハのチョークを使用
するのが一般的であるが、近年これに加わえてチョーク
を形成する壁の一部に複数のスリットを設けたものを使
用することが多くなつて来た。このスリットの効果につ
いては既に周知であるのでここでは説明を省略するが、
スリット部分がドアーの表面に出てくると製品としての
外観が著しく損なわれるし、ごみなどがドアー内に入り
込む等の問題がある為、従来、スリット部は別の樹脂又
は金属でカバーする構成にしている。ところが前述のよ
うにスリットは、チョークを構成する壁の一部で、しか
も漏洩する電波の通路に設けられているので、この近く
に金属を介在させるとこの金属が電波漏洩防止の性能を
著しく低下させることがわかつた。 そこで本発明は簡
単な構成で上記従来の欠点を解消するものてある。 以
下図面に従つて本発明の一実施例を説明する。
Traditionally, it has been common to use a choke with a wavelength of approximately 1 h of the radio wave used to prevent leakage of radio waves from the door of a high-frequency heating device, but in recent years, chokes have been added to the wall that forms the choke. It has become increasingly common to use devices with multiple slits. The effect of this slit is already well known, so I will not explain it here.
If the slit part comes out on the surface of the door, the appearance of the product will be seriously damaged and there will be problems such as dirt getting into the door, so conventionally, the slit part was covered with another resin or metal. ing. However, as mentioned above, the slit is a part of the wall that makes up the choke, and is provided in the path of leaking radio waves, so if metal is placed near the slit, this metal will significantly reduce the performance of preventing radio wave leakage. I found out how to do it. Therefore, the present invention is intended to solve the above-mentioned conventional drawbacks with a simple configuration. An embodiment of the present invention will be described below with reference to the drawings.

第1図において、1は本体であり内部にオープン2があ
る。オープン上壁には高周波発振器であるマグネトロン
3が取り付けられている。オープン前面開口部はドアー
4によつて開閉される。ドアー4内には使用波長の約1
ハの寸法を持つチョーク溝5が設けられ、チョーク溝5
を形成する壁のうちの一つである6には複数個のスリッ
トが設けられている。チョーク開口部7は電波透過性の
樹脂よりなるカバー8で被われており又スリット壁6は
樹脂カバー8及ひドアー本体の外壁9によつて外部に見
えないように被われている。 第2図においてスリット
壁6とドアー外壁9の間の寸法1を小さくすると急激に
電波漏洩防止効果が悪くなる為、従来は要求される電波
漏洩防止性能を得る為には、1を出来るだけ大きくする
ように設計しており、充分な性能を得るためにはこれが
m−程度以上(上下又は左右合計で20TWL程度以上
)必要であつた。ところがこの寸法を大きくとるという
事はその分ドアーの外形が大きくなることになり、コン
パクトな製品を作ることが難しいと同時に、限られた寸
法内て性能の良い電波漏洩防止機構を設計するのが非常
に困難であつた。
In FIG. 1, 1 is a main body, and there is an open 2 inside. A magnetron 3, which is a high frequency oscillator, is attached to the open upper wall. The open front opening is opened and closed by a door 4. Approximately 1 of the wavelength used is inside door 4.
A choke groove 5 having dimensions C is provided, and the choke groove 5
A plurality of slits are provided in one of the walls forming the wall 6. The choke opening 7 is covered with a cover 8 made of radio wave transparent resin, and the slit wall 6 is covered with the resin cover 8 and the outer wall 9 of the door body so that it cannot be seen from the outside. In Fig. 2, if the dimension 1 between the slit wall 6 and the door outer wall 9 is made smaller, the radio wave leakage prevention effect will deteriorate rapidly. In order to obtain sufficient performance, this is required to be approximately m- or more (approximately 20 TWL or more in total on the upper and lower sides or on the left and right sides). However, increasing this dimension means that the outer shape of the door becomes larger, making it difficult to create a compact product, and at the same time, it is difficult to design a radio wave leakage prevention mechanism that has good performance within the limited dimensions. It was extremely difficult.

ここでスリット壁6とドアー外壁9の間の距離lが小さ
くなつた時に何故電波漏洩が増大するかであるが、これ
は次の様に推定出来る。即ちスリット壁6の上端部はチ
ョーク5の開口部を形成しているが、この部分は本来チ
ョークが有効に働く為には電流口で電界最大の点、つま
り完全開放の条件になるべき点である。
The reason why radio wave leakage increases when the distance l between the slit wall 6 and the door outer wall 9 becomes smaller can be estimated as follows. That is, the upper end of the slit wall 6 forms the opening of the choke 5, but this part should be the point where the electric field is maximum at the current opening, that is, the condition should be completely open, for the choke to work effectively. be.

ところが前述のように製品の外形は出来るだけコンパク
トにおさえ、オープンの大きさは出来るだけ大きくして
商品価値を向上させようとすると、どうしてもチョーク
寸法も理想的なλ/4より小さめに設計せざるを得なく
なり、従つてチョーク開口部での開放条件もくすれてく
る。このような状態においてスリット壁6とドアー外壁
9の距離1が小さくなつて来るとこの間の静電容量が増
し、この為にチョーク開口部における開放の条件が大き
くくずれてしまい従つて電波漏洩防止効果が悪くなつて
くる。尚スリット壁6は逆L字状に曲げられている為、
これにより余計にl寸法が小さくなつてい,るが、これ
はチョークの効果とは別に安定したスリットの効果を出
す為に必要なものである。第3図は本発明の実施例であ
るが、この図ではl寸法が第2図に比べて小さい代りに
ドアー外壁9の高さがスリット壁6のフランジ部の高さ
より低くなつている。即ちl寸法が小さくなることによ
つてドアー外壁とスリット壁間の静電容量が増加するの
を、ドアー外壁の高さを低くすることによつて防いでい
るのである。従つてd寸法を何順にするかはl寸法及び
要求される電波漏洩防止性能との関係で決まり、その都
度実験によつて決められるべきであるが、スリット壁6
の先端に設けられたフランジよりもドアー外壁9の高さ
を低くすればこの間の静電容量は大巾に小さくできる。
ドアー外壁が低くなつた分は第4図に示すようにチョー
ク開口部をカバーする樹脂8を延長する等して外観上見
苦しくないように設計することが出来る。上記説明のよ
うに本発明によれば、スリット壁の外側にあるドアー外
壁の高さをスリット壁の高さより低くすることによりス
リット壁とドアー外壁間の静電容量の影響を小さくし、
性能が良くしかもコンパクトな電波漏洩防止構造を提供
することが出来る。
However, as mentioned above, in order to improve product value by keeping the external size of the product as compact as possible and making the opening size as large as possible, it becomes necessary to design the choke dimension to be smaller than the ideal λ/4. Therefore, the opening conditions at the choke opening also deteriorate. In such a state, as the distance 1 between the slit wall 6 and the door outer wall 9 becomes smaller, the capacitance between them increases, and as a result, the conditions for opening at the choke opening are greatly disrupted, thus reducing the effectiveness of preventing radio wave leakage. It's getting worse. Furthermore, since the slit wall 6 is bent into an inverted L shape,
This makes the dimension l smaller, but this is necessary in order to produce a stable slit effect in addition to the choke effect. FIG. 3 shows an embodiment of the present invention. In this figure, dimension l is smaller than in FIG. 2, but the height of the door outer wall 9 is lower than the height of the flange portion of the slit wall 6. That is, an increase in the capacitance between the door outer wall and the slit wall due to the smaller l dimension is prevented by lowering the height of the door outer wall. Therefore, the order in which the d dimensions are arranged is determined by the relationship between the l dimension and the required radio wave leakage prevention performance, and should be determined by experiment each time, but the slit wall 6
By making the height of the door outer wall 9 lower than the flange provided at the tip of the flange, the capacitance therebetween can be greatly reduced.
To compensate for the lowered outer wall of the door, the resin 8 covering the choke opening can be extended, as shown in FIG. 4, so that the design is not unsightly. As described above, according to the present invention, the height of the door outer wall outside the slit wall is made lower than the height of the slit wall, thereby reducing the influence of capacitance between the slit wall and the door outer wall,
It is possible to provide a radio wave leakage prevention structure that has good performance and is compact.

【図面の簡単な説明】[Brief explanation of the drawing]

第1図は本発明の一実施例を示す高周波加熱装置の縦断
面図、第2図は同要部の従来例を示す拡大斜視図、第3
図は同部に対応する本発明の拡大斜視図、第4図は同部
の組立状態を示す斜視図である。 2・・・・・・オープン、4・・・・・・ドアー、5・
・・・・・チョーク溝、6・・・・・スリット壁、8・
・・・・・樹脂、9・・・・・・ドアー外壁。
FIG. 1 is a vertical cross-sectional view of a high-frequency heating device showing an embodiment of the present invention, FIG. 2 is an enlarged perspective view showing a conventional example of the same main part, and FIG.
The figure is an enlarged perspective view of the present invention corresponding to the same part, and FIG. 4 is a perspective view showing the assembled state of the same part. 2...Open, 4...Door, 5.
...Choke groove, 6...Slit wall, 8.
...Resin, 9...Door outer wall.

Claims (1)

【特許請求の範囲】 1 内部に加熱室を備えた本体と、この本体に装着され
、前記加熱室の前面開口部を開閉するドアーを有し、前
記ドアーには使用電波の約λ/4の電波減衰用のチョー
クを設け、前記チョークを形成する一つの壁は断面を略
逆L字形状とし、その壁面には複数個のスリットを設け
、このスリット壁より加熱室内から見て外側に設けたド
アー外壁の高さは前記略逆L字形スリット壁のフランジ
先端より低くしたことを特徴とする高周波加熱装置。 2 ドアー外壁を低くした部分を樹脂カバーで被つたこ
とを特徴とする特許請求の範囲第1項記載の高周波加熱
装置。
[Scope of Claims] 1. A main body with a heating chamber inside, and a door attached to the main body to open and close a front opening of the heating chamber, and the door has an electric wave of approximately λ/4 of the radio waves used. A choke for radio wave attenuation is provided, and one wall forming the choke has a cross section approximately in the shape of an inverted L, and a plurality of slits are provided on the wall surface, and the slit wall is provided on the outside when viewed from the heating chamber. A high-frequency heating device characterized in that the height of the outer wall of the door is lower than the tip of the flange of the substantially inverted L-shaped slit wall. 2. The high-frequency heating device according to claim 1, wherein the lowered portion of the outer wall of the door is covered with a resin cover.
JP5596280A 1980-04-25 1980-04-25 High frequency heating device Expired JPS6047714B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP5596280A JPS6047714B2 (en) 1980-04-25 1980-04-25 High frequency heating device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP5596280A JPS6047714B2 (en) 1980-04-25 1980-04-25 High frequency heating device

Publications (2)

Publication Number Publication Date
JPS56152191A JPS56152191A (en) 1981-11-25
JPS6047714B2 true JPS6047714B2 (en) 1985-10-23

Family

ID=13013701

Family Applications (1)

Application Number Title Priority Date Filing Date
JP5596280A Expired JPS6047714B2 (en) 1980-04-25 1980-04-25 High frequency heating device

Country Status (1)

Country Link
JP (1) JPS6047714B2 (en)

Also Published As

Publication number Publication date
JPS56152191A (en) 1981-11-25

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