JPH055825U - Ozone generator - Google Patents

Ozone generator

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Publication number
JPH055825U
JPH055825U JP083293U JP8329391U JPH055825U JP H055825 U JPH055825 U JP H055825U JP 083293 U JP083293 U JP 083293U JP 8329391 U JP8329391 U JP 8329391U JP H055825 U JPH055825 U JP H055825U
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JP
Japan
Prior art keywords
electrode
casing
rotary
contact
ozone generator
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
JP083293U
Other languages
Japanese (ja)
Inventor
貴清 芹澤
一郎 山本
拓生 矢本
壮 都築
Original Assignee
オーシーエンジニアリング株式会社
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Priority to JP083293U priority Critical patent/JPH055825U/en
Publication of JPH055825U publication Critical patent/JPH055825U/en
Pending legal-status Critical Current

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  • Oxygen, Ozone, And Oxides In General (AREA)

Abstract

(57)【要約】 【目的】 常時良好な状態でオゾンを生成できるように
すると共に、オゾン発生装置自体を小型化せしめること
を目的とする。 【構成】 ケーシング1の外部に突出させた回転電極5
の回転軸に接触子18を接触せしめて該回転軸を介して
回転電極5に電圧を印加する構成にしてなることを特徴
とする。
(57) [Summary] [Purpose] The objective is to enable ozone to be constantly generated in a good state and to downsize the ozone generator itself. [Structure] Rotating electrode 5 protruding outside casing 1
The contactor 18 is brought into contact with the rotating shaft of and the voltage is applied to the rotating electrode 5 via the rotating shaft.

Description

【考案の詳細な説明】[Detailed description of the device]

【0001】[0001]

【産業上の利用分野】[Industrial applications]

本考案はオゾン発生装置、さらに詳しくは放電作用によってオゾンを生成させ ることができるオゾン発生装置に関する。   The present invention relates to an ozone generator, and more specifically to generate ozone by a discharge action. The present invention relates to an ozone generator that can be used.

【0002】[0002]

【従来の技術】[Prior art]

従来、この種オゾン発生装置としては、例えば本件出願人による実開平2−6 9939号公報所載の考案のものが存在する。   Conventionally, as this kind of ozone generator, for example, the actual applicant of the present application There is a device disclosed in Japanese Patent No. 9939.

【0003】 即ち、この従来のものは、図3に示すように電動機7bの回転軸7cに設けら れた回転羽根5bを一方の電極とし、この回転羽根5bの内側に空隙部16aを 介して誘電体15aを被覆した固定電極14aを設け、該空隙部16aを放電場 としてオゾンを継続的に発生及び送給し得るように構成したものである。[0003]   That is, as shown in FIG. 3, this conventional device is installed on the rotary shaft 7c of the electric motor 7b. The rotating blade 5b is used as one electrode, and the void 16a is formed inside the rotating blade 5b. The fixed electrode 14a covering the dielectric 15a is provided through the gap 16a As a result, ozone can be continuously generated and sent.

【0004】[0004]

【考案が解決しようとする課題】[Problems to be solved by the device]

しかしながら、この従来のものは部品点数を極力削減して装置自体の簡略化を 図るべく、カーボン等からなる接触子18aをケーシング1a内で回転羽根5b に直接接触させてなるため、接触子18aの摩耗により生じたその粉末が回転羽 根5bに付着することとなる。しかるに、かかる粉末は導電体であるために、こ れが付着した回転羽根5bの部位に於いて放電が集中して行われる結果、局部加 熱が生じ、よってオゾンの発生効率の低下や回転羽根5bを被覆する誘電体15 aの寿命を短命化せしめるという大なる問題点を有していたのである。   However, this conventional type simplifies the device itself by reducing the number of parts as much as possible. In order to achieve this, the contactor 18a made of carbon or the like is attached to the rotary blade 5b inside the casing 1a. The powder generated by the wear of the contactor 18a is directly contacted with It will adhere to the root 5b. However, since such powder is a conductor, As a result of concentrated discharge at the portion of the rotary blade 5b to which this adheres, local Heat is generated, and as a result, the efficiency of ozone generation is reduced and the dielectric 15 that covers the rotary vanes 5b is generated. It had a big problem that the life of a was shortened.

【0005】 また、放電の際には約数千〜数万ボルトの電圧が印加されるのであるが、接触 子18aは固定電極14aが設けられる支持体10aに取付けられるものである ため、この両者間に短絡が生じるおそれがあり、特に固定電極14aの表面に水 分等が付着した場合にはかかる部位に於いて短絡が生じ易いという不都合があっ た。[0005]   Also, when discharging, a voltage of about several thousand to tens of thousands of volts is applied. The child 18a is attached to the support 10a on which the fixed electrode 14a is provided. Therefore, there is a possibility that a short circuit may occur between the two, especially if the surface of the fixed electrode 14a is exposed to water. If there is a small amount of dust, there is the inconvenience that a short circuit is likely to occur at such a portion. It was

【0006】 而して、かかる不都合を解消するには、固定電極14aと接触子18a間の絶 縁距離を確保すればよいが、これにより支持体10a等の各部材が大きなものと なり、装置自体も大型化せざるを得ないという難点があったのである。[0006]   Therefore, in order to eliminate such inconvenience, the insulation between the fixed electrode 14a and the contactor 18a should be eliminated. It is sufficient to secure the edge distance, but this makes each member such as the support 10a large. Therefore, the device itself had to be enlarged.

【0007】 しかも、上述の如く接触子18aは摩耗するために適宜交換する必要があるが 、その際前面蓋11b,支持体10a及び固定電極14aもケーシング1aから 取外さねばならず、また組立時に於いて回転羽根5bと固定電極14a間の空隙 部16aの幅調整が必要になる等、この一連の交換作業が極めて煩雑なものとな っていた。[0007]   Moreover, since the contactor 18a is worn as described above, it needs to be replaced as appropriate. , The front lid 11b, the support 10a and the fixed electrode 14a are also removed from the casing 1a. It must be removed and, at the time of assembly, the space between the rotary blade 5b and the fixed electrode 14a. This series of replacement work becomes extremely complicated because the width of the portion 16a needs to be adjusted. It was

【0007a】 それ故に、本考案は上記従来の問題点を解決するためになされたものであり、 常時良好な状態でオゾンを生成できるようにすると共に、オゾン発生装置自体を 小型化せしめることを課題とする。[0007a]   Therefore, the present invention has been made to solve the above-mentioned conventional problems. In addition to being able to generate ozone at all times in good condition, the ozone generator itself The challenge is to make it smaller.

【0009】[0009]

【課題を解決するための手段】[Means for Solving the Problems]

即ち、上記課題を解決するために、本考案は吸気口2及び排気口3を有するケ ーシング1内に固定電極14と該固定電極14に放電用の空隙部16を介して回 転電極5が対面して設けられ且つ前記吸気口2から吸入されたエアが排気口3か ら外部に排気されるオゾン発生装置に於いて、前記ケーシング1の外部に突出さ せた回転電極5の回転軸に接触子18を接触せしめて該回転軸を介して回転電極 5に電圧を印加する構成にしてなるオゾン発生装置である。   That is, in order to solve the above problems, the present invention has a casing having an intake port 2 and an exhaust port 3. In the housing 1, the fixed electrode 14 and the fixed electrode 14 are connected to the fixed electrode 14 through a discharge gap 16. The transfer electrode 5 is provided so as to face each other, and whether the air sucked from the intake port 2 is the exhaust port 3 or not. In the ozone generator that is exhausted from the outside to the outside, The contact 18 is brought into contact with the rotating shaft of the rotating electrode 5 so that the rotating electrode is rotated through the rotating shaft. 5 is an ozone generator having a structure in which a voltage is applied to 5.

【0010】[0010]

【作用】[Action]

従って、上記構成を特徴とするオゾン発生装置に於いては、回転電極5及び固 定電極14に一定電圧を印加してこの両者間で放電を行わせた状態で、回転電極 5を回転駆動せしめると、ケーシング1の吸気口2から吸入されたエアが回転電 極5と固定電極14間の空隙部16で形成される放電場を通過する際にオゾンが 生成され、かかるオゾンはケーシング1の排気口3から排気されることとなる。   Therefore, in the ozone generator characterized by the above structure, In the state where a constant voltage is applied to the constant electrode 14 to cause a discharge between the two, the rotary electrode When 5 is driven to rotate, the air sucked from the intake port 2 of the casing 1 is rotated. When the ozone passes through the discharge field formed by the space 16 between the pole 5 and the fixed electrode 14, the ozone is The generated ozone is exhausted from the exhaust port 3 of the casing 1.

【0011】 この場合に於いて、回転電極5への電圧の印加はケーシング1の外部に突出さ せた回転電極5の回転軸に接触させた接触子18にて行われるために、該接触子 18の摩耗により生じた粉末がケーシング1内に侵入することがなく、回転電極 5と固定電極14との放電が良好に行える結果、安定してオゾンを生成すること ができるのである。[0011]   In this case, the application of voltage to the rotary electrode 5 does not project outside the casing 1. The contactor 18 is brought into contact with the rotating shaft of the rotating electrode 5 so that The powder generated by the wear of 18 does not enter the casing 1 and the rotating electrode 5 and the fixed electrode 14 can be satisfactorily discharged, so that ozone can be stably generated. Can be done.

【0012】[0012]

【実施例】【Example】

以下、本考案の一実施例について図面に従って説明する。   An embodiment of the present invention will be described below with reference to the drawings.

【0013】 図1及び図2に於いて、1は前面部に吸気口2を開設し且つ側部に排気口3を 形成してなる所謂シロッコ型送風機の片持ち型のケーシングで、その内周面4は 渦巻曲線状に形成されている。5は導電部材からなる回転電極となる回転羽根で あり、その側板部5aがケーシング1を取着する基板6に取付けられた電動機7 の回転軸7aに取付けられて回転羽根5が回転駆動される。[0013]   In FIGS. 1 and 2, reference numeral 1 denotes an intake port 2 opened on the front surface and an exhaust port 3 on the side portion. A cantilever type casing of a so-called sirocco type blower formed, the inner peripheral surface 4 of which is It is formed in a spiral curve. 5 is a rotary vane that is a rotary electrode made of a conductive member. Electric motor 7 whose side plate portion 5a is attached to a substrate 6 to which the casing 1 is attached The rotary vane 5 is attached to the rotary shaft 7a of FIG.

【0014】 10はケーシング1の吸気口2を全閉しないように該ケーシング1の前面にネ ジ12等により取付けられた前面蓋11のアーム11a…を介して着脱自在に設 けられた絶縁材からなる支持体で、該支持体10は回転羽根5等との接触が回避 された状態で該回転羽根5の内側に位置する略円柱又は略円筒状の突出部13を 備えている。[0014]   Reference numeral 10 indicates a front surface of the casing 1 so as not to completely close the intake port 2 of the casing 1. It is detachably installed via the arm 11a of the front lid 11 attached by a cable 12 or the like. A support made of a scraped insulating material so that the support 10 avoids contact with the rotating blades 5 and the like. The protruding portion 13 having a substantially cylindrical shape or a substantially cylindrical shape located inside the rotary vane 5 in the state of being I have it.

【0015】 14は支持体10の突出部13の外周面及び先端面に沿って設けられた断面略 L字状の固定電極で、前記回転羽根5と対面配置されてなり、その外側表面部は シリコン樹脂等の絶縁材からなる誘電体15で覆われて、固定電極14と回転羽 根5との両者で放電場を形成する際の騒音発生が抑制される。16は誘電体15 と固定電極14との間に形成された空隙部で、その幅Lは約0.5〜2mm程度 に設定してなる。[0015]   Reference numeral 14 is a cross-sectional outline provided along the outer peripheral surface and the tip end surface of the protrusion 13 of the support body 10. It is an L-shaped fixed electrode, and is arranged to face the rotary blade 5, and its outer surface portion is The fixed electrode 14 and the rotary blade are covered with a dielectric 15 made of an insulating material such as silicon resin. Generation of noise is suppressed when a discharge field is formed in both the roots 5. 16 is a dielectric 15 The gap L formed between the fixed electrode 14 and the fixed electrode 14 has a width L of about 0.5 to 2 mm. Set to.

【0016】 17は電動機7の背面部に突設したブラシケースで該ブラシケース17内には カーボンブラシ18が挿着され、該カーボンブラシ18はブラシケース17の先 端に螺合したビス19によりバネ20を介して一定の押圧力を受けている。21 は固定電極14とビス19とに配線ケーブル22を介して接続されたトランスを 示し、これにより回転羽根4が一方の電極として機能することとなる。[0016]   Reference numeral 17 is a brush case projecting from the back of the electric motor 7 The carbon brush 18 is inserted and attached, and the carbon brush 18 is attached to the tip of the brush case 17. A constant pressing force is applied via a spring 20 by a screw 19 screwed to the end. 21 Is a transformer connected to the fixed electrode 14 and the screw 19 via a wiring cable 22. As a result, the rotary blade 4 functions as one electrode.

【0017】 本考案に係るオゾン発生装置は以上のような構成からなり、次にこれを使用し てオゾンを生成する場合について説明する。[0017]   The ozone generator according to the present invention has the above-mentioned structure. A case of generating ozone will be described.

【0017a】 先ず、電動機7を始動して回転羽根5を回転させると、ケーシング1の吸気口 2からエア(酸素)がケーシング1内に吸入されるが、エアは回転羽根5の内側 に形成された空隙部16を経た後に、ケーシング1の内周面4との相互間の通風 路を経て外部に排気される。[0017a]   First, when the electric motor 7 is started and the rotary vanes 5 are rotated, the intake port of the casing 1 is Air (oxygen) is sucked into the casing 1 from the inside of the rotary vane 5. Ventilation between the inner peripheral surface 4 of the casing 1 and the inner peripheral surface 4 of the casing 1 after passing through the void portion 16 formed in the It is exhausted to the outside through the road.

【0019】 この場合、トランス21により固定電極14と、ビス19,カーボンブラシ1 8,回転軸7aを介して回転羽根5と所定電圧を印加して該回転羽根5と前記固 定電極14との相互間に放電を生じさせておけば、前記空隙部16を通過するエ アがオゾンとして生成され、これが回転羽根5の回転によりケーシング1の排気 口3から排気されることとなる。[0019]   In this case, the transformer 21 is used to fix the fixed electrode 14, the screw 19, and the carbon brush 1. 8, a predetermined voltage is applied to the rotary blades 5 via the rotary shaft 7a so that If a discharge is generated between the constant electrode 14 and the constant electrode 14, the air that passes through the void 16 will be generated. A is generated as ozone, which is exhausted from the casing 1 by the rotation of the rotary blades 5. It will be exhausted from the mouth 3.

【0020】 また、回転羽根7にはカーボンブラシ18により回転軸7aを介して電流が供 給されることとなるが、該カーボンブラシ18はケーシング1の外部に設けたブ ラシケース17内に挿着されてなるため、カーボンブラシ18の摩耗により生じ たその粉末がケーシング1内に侵入して回転羽根5等に付着し、かかる部位に於 いて放電が集中することはなく、よって安定したオゾンの生成が可能となるので ある。[0020]   Further, a current is supplied to the rotary blade 7 by the carbon brush 18 via the rotary shaft 7a. The carbon brush 18 is provided on the outside of the casing 1. Since it is inserted in the case 17, it is caused by the abrasion of the carbon brush 18. The powder of the ash enters the casing 1 and adheres to the rotary blades 5 and the like, where Discharge is not concentrated, and stable ozone generation is possible. is there.

【0021】 また、固定電極14とカーボンブラシ18とを離反させて設けてなるために、 この両者間で短絡が生じることはなく、支持体10等の各部品もコンパクトに構 成することができる結果、装置全体の小型化に大いに寄与しうることとなる。[0021]   Further, since the fixed electrode 14 and the carbon brush 18 are provided separately from each other, No short circuit will occur between the two, and each component such as the support 10 can be constructed compactly. As a result, it can greatly contribute to downsizing of the entire device.

【0022】 さらに、カーボンブラシ18を交換する場合は、ブラシケース17からビス1 9を螺脱せしめてバネ20及びカーボンブラシ18を取外せばよく、他の部分の 分解を要しないため、一連の交換作業が極めて容易に且つ迅速に行えるという利 点もある。[0022]   Furthermore, when replacing the carbon brush 18, screw 1 from the brush case 17 9 can be unscrewed and the spring 20 and the carbon brush 18 can be removed. Since it does not require disassembly, a series of replacement work can be performed very easily and quickly. There are also points.

【0023】 尚、上記実施例に於いては、本考案の一例として所謂回転電極型のオゾン発生 装置について説明したが、本考案は決してこれに限定されず、吸気口2及び排気 口3を有するケーシング1内に固定電極14と該固定電極14に放電用の空隙部 16を介して回転電極5が対面して設けられ且つ前記吸気口2から吸入されたエ アが排気口3から外部に排気されるオゾン発生装置に対して幅広く適用可能であ る。[0023]   In the above embodiment, the so-called rotating electrode type ozone generation is used as an example of the present invention. Although the device has been described, the present invention is not limited to this, and the intake port 2 and the exhaust port are not limited thereto. A fixed electrode 14 in a casing 1 having a mouth 3 and a discharge gap in the fixed electrode 14. The rotary electrode 5 is provided so as to face through 16 and is sucked from the intake port 2. Is widely applicable to ozone generators whose exhaust is exhausted from the exhaust port 3 to the outside. It

【0024】 また、該実施例では固定電極14を断面略L字状に形成してその側面部を回転 羽根5の側板部5aにも対面させたために、かかる対面部分でも放電を行わせる ことができるという利点を得たが、回転羽根5と固定電極14との具体的な対面 形態は決してこれに限定されない。[0024]   In addition, in this embodiment, the fixed electrode 14 is formed into a substantially L-shaped cross section and the side surface thereof is rotated. Since the side plate portion 5a of the blade 5 is also made to face, discharge is performed even at the facing portion. Although the advantage of being able to be obtained was obtained, a specific facing between the rotary blade 5 and the fixed electrode 14 The form is by no means limited to this.

【0025】 さらに、上記実施例では電動機7の回転軸7aを利用してこれに接触子18で あるカーボンブラシを接触せしめて回転電極5に電圧を印加したが、本考案はこ れに限定されず、要はケーシング1の外部に突設した回転電極5の回転軸に接触 子18を接触させればよい。[0025]   Further, in the above-described embodiment, the rotating shaft 7a of the electric motor 7 is utilized and the contact 18 A voltage was applied to the rotating electrode 5 by contacting a certain carbon brush. Not limited to this, the point is that the rotary shaft of the rotary electrode 5 protruding outside the casing 1 is contacted. The child 18 may be contacted.

【0026】 また、回転羽根5と固定電極14間の空隙部16の幅Lは極力狭くすることが 望ましいが、この具体的な空隙幅は該実施例に限定されるものではない。[0026]   Further, the width L of the space 16 between the rotary blade 5 and the fixed electrode 14 may be made as narrow as possible. Although desirable, this particular void width is not limited to the example.

【0027】 さらに、本考案はケーシング1や回転羽根5等の具体的な形状等、各部の具体 的な構成は本考案の意図する範囲内に於いて任意に設計変更自在である。[0027]   Further, the present invention is based on the concrete shape of each part such as the concrete shape of the casing 1 and the rotary vanes 5. The general structure can be freely modified within the scope of the present invention.

【0028】[0028]

【考案の効果】[Effect of device]

叙上の様に、本考案は一方の電極となる回転電極への電圧の印加を直接該回転 電極に接触子を接触せしめてケーシング内部で行う従来のものとは異なり、回転 電極の回転軸を利用してケーシングの外部で行えるように構成してなるため、接 触子の摩耗により生じた該接触子の粉末がケーシング内部に侵入して回転電極に 付着するようなことがなくなり、よってかかる部位に於いて放電が集中すること なく、安定したオゾンの生成が可能となる格別の効果を得るに至った。   As described above, the present invention directly applies the voltage to the rotating electrode, which is one of the electrodes. Unlike the conventional one in which the contactor is brought into contact with the electrode inside the casing, rotation Since it is configured so that it can be performed outside the casing using the rotating shaft of the electrode, The powder of the contact generated by the wear of the contact penetrates inside the casing and There is no such thing as adhesion, and therefore the discharge concentrates on such areas. In other words, it is possible to obtain a special effect that enables stable ozone generation.

【0029】 しかも、固定電極と接触子とを離反させて設けてなるために、固定電極の近傍 に接触子を設ける従来の如くこの両者間で短絡が生ずるような不都合はなくなる 結果、該両者間の絶縁を確保する必要がなくなって各部の小型化が図れることと なり、よって装置自体もコンパクトに形成できるという特有の効果も奏する。[0029]   Moreover, since the fixed electrode and the contact are separated from each other, the vicinity of the fixed electrode A contact is provided on the terminal, which eliminates the inconvenience of causing a short circuit between the two as in the conventional case. As a result, it is not necessary to ensure insulation between the two, and each part can be downsized. Therefore, there is also a peculiar effect that the apparatus itself can be made compact.

【0030】 さらに、例えば回転電極を電動機により回転駆動せしめて該電動機の回転軸に 接触子を接触させて前記回転電極に電圧を印加すべく該電動機の背面に接触子が 収納されるホルダーを突設して構成すると、カーボンブラシの交換も極めて容易 に行えるという効果が得られる。[0030]   Further, for example, by rotating the rotary electrode by an electric motor, A contactor is attached to the rear surface of the electric motor to bring the contactor into contact with the rotary electrode to apply a voltage. It is extremely easy to replace the carbon brush if the holder that is stored is configured to project. The effect that can be done is obtained.

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

【図1】本考案に係る一実施例を示すオゾン発生装置の
断面図。
FIG. 1 is a sectional view of an ozone generator showing an embodiment according to the present invention.

【図2】本考案に係る一実施例を示すオゾン発生装置の
半裁断面図。
FIG. 2 is a half cutaway view of an ozone generator showing an embodiment according to the present invention.

【図3】従来例を示すオゾン発生装置の断面図。FIG. 3 is a sectional view of an ozone generator showing a conventional example.

【符号の説明】[Explanation of symbols]

1…ケーシング 2…吸気口 3…排気口 5…回転電極 7…電動機 7a…回転軸 14…固定電極 17…ホルダー 18…接触子 1 ... Casing 2 ... Intake port 3 ... Exhaust port 5 ... Rotating electrode 7 ... Electric motor 7a ... Rotation axis 14 ... Fixed electrode 17 ... Holder 18 ... Contact

Claims (2)

【実用新案登録請求の範囲】[Scope of utility model registration request] 【請求項1】 吸気口2及び排気口3を有するケーシン
グ1内に固定電極14と該固定電極14に放電用の空隙
部16を介して回転電極5が対面して設けられ且つ前記
吸気口2から吸入されたエアが排気口3から外部に排気
されるオゾン発生装置に於いて、前記ケーシング1の外
部に突出させた回転電極5の回転軸に接触子18を接触
せしめて該回転軸を介して回転電極5に電圧を印加する
構成にしてなることを特徴とするオゾン発生装置。
1. A fixed electrode 14 is provided in a casing 1 having an intake port 2 and an exhaust port 3, and a rotary electrode 5 is provided so as to face the fixed electrode 14 with a gap 16 for discharge therebetween. In the ozone generator in which the air sucked from the air is exhausted from the exhaust port 3 to the outside, the contact 18 is brought into contact with the rotary shaft of the rotary electrode 5 protruding to the outside of the casing 1 and the rotary shaft 5 is passed through the rotary shaft. An ozone generator having a configuration in which a voltage is applied to the rotating electrode 5 by means of the above.
【請求項2】 前記回転電極5が電動機7により回転駆
動され且つ該電動機7の回転軸7aに接触子18を接触
せしめて前記回転電極5に電圧を印加すべく該電動機7
の背面に接触子18が収納されるホルダー17が突設さ
れてなる請求項1記載のオゾン発生装置。
2. The rotating electrode 5 is driven to rotate by an electric motor 7, and a contact 18 is brought into contact with a rotating shaft 7a of the electric motor 7 to apply a voltage to the rotating electrode 5.
The ozone generator according to claim 1, wherein a holder 17 for accommodating the contactor 18 is provided on the back surface of the holder 17 in a protruding manner.
JP083293U 1991-07-10 1991-07-10 Ozone generator Pending JPH055825U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP083293U JPH055825U (en) 1991-07-10 1991-07-10 Ozone generator

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP083293U JPH055825U (en) 1991-07-10 1991-07-10 Ozone generator

Publications (1)

Publication Number Publication Date
JPH055825U true JPH055825U (en) 1993-01-26

Family

ID=13798350

Family Applications (1)

Application Number Title Priority Date Filing Date
JP083293U Pending JPH055825U (en) 1991-07-10 1991-07-10 Ozone generator

Country Status (1)

Country Link
JP (1) JPH055825U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2007169134A (en) * 2005-12-26 2007-07-05 Toshiba Corp Ozonizer

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS62153104A (en) * 1985-12-25 1987-07-08 Naoyoshi Shiraishi Ion generator
JPS63134503A (en) * 1986-11-25 1988-06-07 Inparu:Kk Rotary ozone generator
JP3115630B2 (en) * 1991-03-19 2000-12-11 キヤノン株式会社 Paper discharge transport device

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS62153104A (en) * 1985-12-25 1987-07-08 Naoyoshi Shiraishi Ion generator
JPS63134503A (en) * 1986-11-25 1988-06-07 Inparu:Kk Rotary ozone generator
JP3115630B2 (en) * 1991-03-19 2000-12-11 キヤノン株式会社 Paper discharge transport device

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2007169134A (en) * 2005-12-26 2007-07-05 Toshiba Corp Ozonizer
JP4634928B2 (en) * 2005-12-26 2011-02-16 株式会社東芝 Ozone generator

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