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JP3104861U - Eye health organ - Google Patents

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JP3104861U
JP3104861U JP2004002335U JP2004002335U JP3104861U JP 3104861 U JP3104861 U JP 3104861U JP 2004002335 U JP2004002335 U JP 2004002335U JP 2004002335 U JP2004002335 U JP 2004002335U JP 3104861 U JP3104861 U JP 3104861U
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water
eye
health device
eye health
firing
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陳文賓
鄭乃▲イン▼
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凱智實業股▲分▼有限公司
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Abstract

【課題】 高周波振動の圧電セラミック振動素子を備えた霧発生装置により、熱を発さずに最短距離で直接噴流を眼部に作用させる、眼部保健器の提供。
【解決手段】 本体上の作用側に眼部周囲を覆うカバー体を設け、該カバー体は通孔を介し、眼部に最も近い状態で直線的に霧発生装置と対接し、該霧発生装置は、高周波振動の圧電セラミック振動素子を利用して直接発射板を作動させ、発射板の霧発射側は直接前記通孔に向かい、注入側は導水部が形成する水膜表面に接して微量の励起を起こさせ、該導水部は、水容器から水液を導引し、熱を発さずに最短距離で直接霧化粒子の噴流を眼部に作用させる。
【選択図】 図2
PROBLEM TO BE SOLVED: To provide an eye health device in which a mist generating device provided with a piezoelectric ceramic vibrating element of high frequency vibration causes a jet to directly act on an eye at a shortest distance without generating heat.
SOLUTION: A cover body which covers the periphery of the eye is provided on the working side of the main body, and the cover body linearly comes into contact with the mist generator in a state closest to the eye via a through hole, and the mist generator is provided. Operate the firing plate directly using a piezoelectric ceramic vibrating element of high frequency vibration, the fog emitting side of the firing plate directly faces the through hole, and the injection side contacts the water film surface formed by the water guide part and traces Upon excitation, the water guide draws the water liquid from the water container and causes the jet of atomized particles to directly act on the eye at the shortest distance without generating heat.
[Selection] Figure 2

Description

本考案は、眼部保健器であって、特に眼部に薬性作用またはケア効果を提供する保健器で、主に圧電セラミック振動素子により、高周波で発射板を作動し、該発射板により、導引した水膜を機械的振動で微粒の霧状にして発射し、最も近づいた状態で直接この霧化粒子を眼部に噴射し、薬物の構造を完全に維持しながら、低電力で高い効果を発揮し、エネルギー節約と迅速な作業が可能である眼部保健器に関する。   The present invention is an eye health device, particularly a health device that provides a medicinal action or a care effect to the eye, and mainly operates a firing plate by a piezoelectric ceramic vibrating element at a high frequency, and by the firing plate, The induced water film is launched into a fine atomized mist by mechanical vibration, and the atomized particles are ejected directly to the eye in the closest state, thereby maintaining the structure of the drug completely while maintaining low power and high power. The present invention relates to an eye health device that is effective, saves energy and enables quick work.

コンタクトレンズが使用されるようになり、多くの眼鏡使用者に便をもたらしたが、同時に多くの後続的問題が発生している。コンタクトレンズは装着後、水分が持続して蒸発し失われるため、コンタクトレンズ表面が乾燥し、使用者に不快感を与えたり、視界がぼんやりしたりすることがあり、特に、埃の多い場所や乾燥した環境での使用、または目の涙液分泌が元々不足しがちなコンタクトレンズ使用者にとっては大きな問題となっている。   While contact lenses have become used and have provided convenience to many spectacle users, many subsequent problems have also occurred. After the contact lens is worn, moisture evaporates and is lost continuously, so the surface of the contact lens dries and may cause discomfort to the user or blur the view. This is a major problem for use in dry environments, or for contact lens users who tend to have a lack of tears in the eyes.

さらに、コンタクトレンズの洗浄と保存、消毒の作業は面倒な日課であり、洗浄液や消毒錠剤などだけでも様々なものがあり、大体以下のように分類することができる。
1. 洗浄液:高い洗浄力があり、優れた殺菌効果を備え、アメーバを含めた微生物を除去できる。
2. 生理食塩水:細菌の発生を防止する。
3. 蛋白除去錠剤:酵素洗浄でコンタクトレンズ表面に付着した蛋白を分解・除去する。
4. 過酸化水素水:殺菌效果があるが、過酸化水素水は空気との接触及び高温下では効果が弱まる。
Furthermore, the work of cleaning, preserving, and disinfecting contact lenses is a troublesome routine, and there are various kinds of cleaning liquids and disinfecting tablets alone, which can be roughly classified as follows.
1. Cleaning liquid: It has high detergency, has an excellent sterilizing effect, and can remove microorganisms including amoeba.
2. Physiological saline: prevents bacterial outbreaks.
3. Protein removal tablet: Decomposes and removes protein attached to the contact lens surface by enzyme washing.
4. Hydrogen peroxide water: Although it has a bactericidal effect, the effect of hydrogen peroxide water weakens under contact with air and at high temperatures.

前述のコンタクトレンズケア製品を見ると、それぞれ効果と特長を備えているが、使用方法には共通の特徴があり、即ち、コンタクトレンズを溶液に浸す方法によりその効果を発揮する点であり、中にはさらに専用の器材を併せて使用しなければ効果が発揮できないものもある。   Looking at the above contact lens care products, each has its own effects and features.However, there is a common feature in the method of use, that is, the effect is exerted by immersing the contact lens in a solution. In some cases, the effects cannot be achieved unless special equipment is also used.

別に、特許第83204854号の「霧化薬物治療用目鼻マスク」と第91207965号の「眼部蒸気マッサージ器」等の特許が公開されている。   Separately, patents such as Patent No. 83204854, “Eye and Nose Mask for Atomized Drug Treatment” and Patent No. 91207965, “Eye Vapor Massager” are disclosed.

そのうち、該「眼部蒸気マッサージ器」は、蒸気発生装置を利用し、加熱により水を水蒸気にした後、ノズルから噴射するものである。そのうち、該蒸気発生装置を薬理性液に用いると、熱反応により薬物構造が破壊されてしまうため、薬性のケアへの応用には適していない。
中華民国特許第91207965号
The “eye steam massager” uses a steam generator, converts water into steam by heating, and then jets the water from a nozzle. When the vapor generator is used for a pharmacological liquid, the drug structure is destroyed by a thermal reaction, and is not suitable for application to medical care.
Republic of China Patent No. 91207965

さらに、第83204854号のマスクは、基本的にマスク本体から成り、該マスク本体が眼部と鼻を密閉し、スイッチを備えた三通装置を介し入口に通じ、該入口がさらに連結管により霧化噴霧器に接続され、これにより霧化噴霧器が連結管を介して該入口に接続され、さらに、該三通装置のスイッチにより目または鼻へ選択的に導通する。該霧化噴霧器が形成する霧は、該連結管を介し導通される方式であり、該連結管は一定の長さを備えているため、管壁が流体の減衰を形成し、この減衰効果により、水液が凝集され霧の圧送に不利となり、異なる薬剤を交換して使用する場合、前に使用した薬剤が残留し、洗浄も困難である。   Further, the mask of No. 83204854 basically consists of a mask body, which seals the eyes and the nose, communicates with the inlet through a three-way device equipped with a switch, and the inlet is further atomized by a connecting pipe. The atomizer is connected to the inlet via a connecting pipe, and is selectively connected to the eyes or the nose by a switch of the three-way device. The mist formed by the atomizing atomizer is a system in which the mist is conducted through the connecting pipe, and the connecting pipe has a certain length. In addition, the water liquid is condensed, which is disadvantageous for pumping the mist, and when a different medicine is used after being exchanged, the medicine used before remains and cleaning is difficult.

また、該マスク本体は眼部と鼻を含んでいるため、眼部だけに使用したい場合にも鼻に不必要な負担がかかり、呼吸も難しく、且つ、使用者が吐き出す気体がマスクを直接汚してしまう。   In addition, since the mask body includes the eyes and the nose, an unnecessary burden is applied to the nose even when it is desired to use the mask only for the eyes, breathing is difficult, and gas exhaled by the user directly contaminates the mask. Would.

さらに、該マスク本体は顔の上半部全体を覆うため、眼部のケアのみをしたい場合、マスク本体の面積が大きすぎ、使用する薬剤量も相対的に増加し、無駄を招く。
中華民国特許第83204854号
Furthermore, since the mask main body covers the entire upper half of the face, if only the care of the eyes is desired, the area of the mask main body is too large, and the amount of medicine to be used is relatively increased, resulting in waste.
Republic of China Patent No. 83204854

本考案は、本体の作用側に眼部周囲を覆うカバー体を設け、該カバー体は通孔を介し、眼部に最も近い状態で、直線的に霧発生装置と対接し、該霧発生装置は、高周波振動の圧電セラミック振動素子を利用して直接発射板を作動させ、発射板の霧発射側は直接通孔に向かい、注入側は導水部が形成する水膜表面に対接して微量の励起を起こさせ、該導水部は、水容器から水液を導引し、熱を発さずに最短距離で直接噴流を眼部に作用させる眼部保健器の提供を主な目的とする。   According to the present invention, a cover body is provided on the working side of the main body to cover the periphery of the eye, and the cover body linearly contacts the fog generator in a state closest to the eye through a through hole, and , The firing plate is directly operated using a piezoelectric ceramic vibrating element of high frequency vibration, the fog emitting side of the firing plate goes directly to the through hole, and the injection side contacts a water film surface formed by the water guide section and traces The main purpose of the present invention is to provide an eye health device that causes excitation, guides water from a water container, and directly applies a jet to the eye in the shortest distance without generating heat.

本考案は、さらに、発射板の霧発射側とカバー体の通孔との間に、さらに殺菌のための反応空間を形成し、該反応空間に紫外線発生器を設けて紫外光を発生させ、相対する霧は微粒子状であるため、水の分子が最大の反応面積を得てオゾンを産出し、効果的に殺菌を行なうことを第二の目的とする。   In the present invention, further, a reaction space for sterilization is further formed between the mist emission side of the firing plate and the through hole of the cover body, and an ultraviolet ray generator is provided in the reaction space to generate ultraviolet light, Since the opposing fog is in the form of fine particles, it is a second object of the present invention that water molecules obtain a maximum reaction area to produce ozone and effectively sterilize.

本考案は、さらに、必要な液体を外から注入する方式を採用することができ、利便性が高く迅速に薬液を交換することが可能であり、水容器の底部に圧電振動素子を設け、上方向の開口部が直接カバー体と相通し、該カバー体の通孔を介し液体の進出が可能であることを第三の目的とする。   The present invention can further adopt a method of injecting necessary liquid from the outside, and it is possible to quickly and easily exchange a chemical solution, and a piezoelectric vibrating element is provided at the bottom of the water container. It is a third object of the present invention to allow the opening in the direction to directly communicate with the cover body and allow the liquid to advance through the through hole of the cover body.

本考案は、さらに、該水容器に分岐した2本の水路を設け、それぞれが2つの発射板に同時に作業をさせ、両眼に同時にケアを行なうことができることを第四の目的とする。   A fourth object of the present invention is to provide two branched water passages in the water container, each of which allows two firing plates to work at the same time and care for both eyes simultaneously.

本考案は、さらに、該振動素子の相対する2つの側縁部に、2つの対等な質量の発射板を設け、中間の単一の振動素子を介して該発射板を同時に振動させ、単一の振動素子で同時に駆動する操作を形成することを第五の目的とする。   The present invention further provides two equal-weight launch plates at two opposing side edges of the vibrating element, and simultaneously vibrates the launch plate via a single intermediate vibrating element, and It is a fifth object of the present invention to form an operation of simultaneously driving the vibrating elements.

本考案は、さらに、該発射板と振動素子間を、クリップ方式で着脱自在に組立て可能にし、発射板の交換や洗浄の利便性を高め、そのうち、発射板の交換は、異なる開孔形態の発射板で霧の発射量や粒径を選択して使用することを可能にすることを第六の目的とする。   The present invention further enables the detachable assembly between the launching plate and the vibrating element by a clip method to enhance the convenience of replacement and cleaning of the launching plate. A sixth object is to make it possible to select and use the emission amount and particle size of fog on a firing plate.

本考案は、さらに、該導水部と水容器間の組立てに接合管を用い、該接合管により、該水容器を取り外し、交換または洗浄が可能であることを第七の目的とする。   A seventh object of the present invention is to use a joining pipe for assembling the water guide section and the water container, and to remove, replace, or wash the water container with the joining pipe.

本考案は、該水容器と本体間をさらに着脱自在の嵌置方式で組み立てることができ、水液の補給または異なる薬性の薬液の交換における利便性を高めることを第八の目的とする。   An eighth object of the present invention is to increase the convenience in replenishing water or exchanging chemicals of different medicinal properties, since the water container and the main body can be further assembled by a detachable fitting method.

本考案は、さらに、該発射板に設けた発射孔を、線状を呈する線槽として設け、且つ、該線槽の隙間を塵埃の粒径より小さくし、且つ、該線槽の長さを塵埃の粒径よりずっと大きくすることで発射孔の詰まりを防止し、不均等な曲線または折れ線、或いは交互に配置した分布方式で、不均等な形態の霧を発射することができることを第九の目的とする。   According to the present invention, further, the firing hole provided in the firing plate is provided as a linear wire tank, and the gap between the wire tanks is smaller than the particle diameter of dust, and the length of the wire tank is reduced. By making the diameter of the dust much larger than that of the above, it is possible to prevent clogging of the discharge hole, and to discharge unequally shaped fog with uneven curves or broken lines or a distribution method arranged alternately. Aim.

本考案はさらに、コンピュータ本体に対応して電力を得るPS2またはUSBコネクタを本体に設け、コンピュータの操作と同時に水気を得て目に加湿を行なうことができることを第十の目的とする。   A tenth object of the present invention is to provide a PS2 or USB connector for obtaining electric power corresponding to the computer main body, and to obtain moisture and humidify the eyes simultaneously with operation of the computer.

本考案は、本体の作用側に眼部周囲を覆うカバー体を設け、該カバー体は通孔を介し、眼部に最も近い状態で直線的に霧発生装置と対接し、該霧発生装置は、高周波振動の圧電セラミック振動素子を利用して直接発射板を作動させ、発射板の霧発射側は直接通孔に向かい、注入側は導水部が形成する水膜表面に接して微量の励起を起こさせ、該導水部は、水容器から水液を導引し、熱を発さずに最短距離で直接霧化粒子の噴流を眼部に作用させる。   The present invention provides a cover body that covers the periphery of the eye on the working side of the main body, the cover body linearly contacts the fog generator in a state closest to the eye through the through hole, and the fog generator is The firing plate is directly operated by using a piezoelectric ceramic vibrating element of high frequency vibration, the fog emitting side of the firing plate goes directly to the through hole, and the injection side contacts the water film surface formed by the water guide section to generate a small amount of excitation. The water guiding section guides the water liquid from the water container, and causes the jet of the atomized particles to directly act on the eye at the shortest distance without generating heat.

本考案は、霧発生端と眼部間に最短距離で噴流を作り、霧化粒子が目に達するときに細かさを確保でき、さらに、本考案は小電力の超音波霧化器により、溶液や水を2〜10ミクロンの液体微粒子に霧化し、さらに、紫外線LEDの照射により、微量のオゾンを発生させ、消毒殺菌の效果を得、処理後の液体微粒子を直接コンタクトレンズ上に噴射し、洗浄、潤滑、消毒の機能を発揮する。本考案の最良の実施例によれば、全体の消費電力は約0.5wと低いため、電池で操作を行なうこともでき、また、本体の体積もゴーグル程度の大きさにまで縮小でき、携帯に便利であるだけでなく、随時場所を選ばず目のケアを行なうことができ、利便性が非常に高い。   In the present invention, a jet is created at the shortest distance between the mist generating end and the eye, and fineness can be secured when the atomized particles reach the eyes. Atomizing water and water into liquid fine particles of 2 to 10 microns, further irradiating ultraviolet LED to generate a small amount of ozone, obtain the effect of disinfection and sterilization, and spray the processed liquid fine particles directly onto the contact lens, Performs cleaning, lubrication and disinfection functions. According to the best embodiment of the present invention, since the total power consumption is as low as about 0.5 watt, it can be operated with a battery, and the volume of the main body can be reduced to the size of goggles, so that it is portable. In addition to being convenient, it can provide eye care anytime and anywhere, making it extremely convenient.

本考案の主要な霧発生原理は、小電力の超音波霧化器により、溶液または水を2〜10ミクロンの粒径の微小な水滴にした後、半導体の紫外線光源(UV LED)で紫外線照射を行い、それと同時に微量のオゾンが発生し、水の粒径がごく小さいため、最大の表面積を得ることができ、反応時間もごく短く、且つ、必要なオゾン量も約0.01〜0.015 PPMと非常に少なく、紫外線及びオゾン処理を経た後の水の微粒子は、霧化された状態でコンタクトレンズコンタクトレンズ表面上に満遍なく分布され、オゾンの強い酸化能力により殺菌効果が得られ、微生物の消滅と蛋白の分解を行なうことができる。このため、霧化粒子を表面に高速で衝突させることにより、より効果的に汚れを除去することができ、また、目薬を使用するとき、まばたきの反射的動作でその効き目に影響することを防ぐことができる。   The main principle of fog generation in the present invention is that a solution or water is made into small water droplets with a particle size of 2 to 10 microns by a small power ultrasonic atomizer, and then irradiated with ultraviolet light from a semiconductor ultraviolet light source (UV LED). At the same time, a small amount of ozone is generated and the particle size of water is very small, so that the maximum surface area can be obtained, the reaction time is very short, and the required ozone amount is about 0.01 to 0.015 ppm. The fine particles of water after ultraviolet and ozone treatment are distributed evenly on the contact lens surface in the form of atomized water, and the strong oxidizing power of ozone has a bactericidal effect, eliminating microorganisms and eliminating protein. Can be decomposed. For this reason, it is possible to more effectively remove dirt by colliding the atomized particles with the surface at a high speed, and when using eye drops, it is possible to prevent the effect of the reflex action of blinking from affecting the effectiveness. be able to.

以下、本考案の最良の実施例について、図面に基づき詳細に説明する。 Hereinafter, the best embodiment of the present invention will be described in detail with reference to the drawings.

図1に示すように、本考案は主に箱状の本体1と、その作用側に設けたカバー体2を含み、該カバー体2は曲げ性を備え、圧着により顔の眼部周囲表面に密着させることができ、該カバー体2内部に通孔21を形成し、該通孔21内部に直接霧発生装置4を設置し、該通孔21は防塵蓋20により収納時に塵埃の進入を防ぐことができ、前記本体1の上面両端に収納槽12を形成し、該収納槽12の間の適所に制御スイッチ11を設け、該収納槽12は電池の設置または合理的に設計した接受対等の儲水ケースの設置に用い、該制御スイッチ11により、霧発生装置4の作動を制御する設計である。   As shown in FIG. 1, the present invention mainly includes a box-shaped main body 1 and a cover body 2 provided on the working side thereof. A through hole 21 is formed inside the cover body 2, and the fog generator 4 is directly installed inside the through hole 21. The through hole 21 prevents dust from entering during storage by the dustproof cover 20. A storage tank 12 is formed at both ends of the upper surface of the main body 1, and a control switch 11 is provided at an appropriate position between the storage tanks 12, and the storage tank 12 is provided with a battery or a reasonably designed receiving pair. It is designed to be used for installing a water supply case, and the operation of the fog generator 4 is controlled by the control switch 11.

本考案は、前記本体1内部に設置した圧電セラミック振動素子41(図2に示す)を利用し、霧発射板42を直接作動し、該発射板42の霧発射側が直接最短距離で前記カバー体2に対面しており、また、該発射板42の水液の注入側に導水部5を設け、その毛細繊維の作用で水容器3内部の水液を導引し、該導水部5と発射板42の接触界面に水膜が形成され、該発射板42に微量の励起を起こさせ、効果的に水膜を霧化して噴出させることができる。本考案の実施例の霧の噴流距離は約8-10 cm(無気流の室内での試験における)であり、本考案の設計によれば、該霧発生装置4に最短距離で前記カバー体2に対し霧を噴出させることができ、また、最短距離で直接導水部5が水容器3に通じ、霧の噴流過程における流体の粘滯と、遠端の霧の粒子の凝集を防ぎ、満遍なく霧の粒径を細かく保つことができる。   The present invention utilizes a piezoelectric ceramic vibrating element 41 (shown in FIG. 2) installed inside the main body 1 to directly operate the mist emitting plate 42, and the mist emitting side of the emitting plate 42 is directly connected to the cover body at the shortest distance. 2, and a water guide 5 is provided on the injection side of the firing plate 42 for injecting the water, and the water liquid inside the water container 3 is guided by the action of the capillary fibers, and the water is introduced into the water guide 3. A water film is formed on the contact interface of the plate 42, and a small amount of excitation is caused in the firing plate 42, so that the water film can be effectively atomized and ejected. The jet distance of the mist in the embodiment of the present invention is about 8-10 cm (in a test in a room with no airflow), and according to the design of the present invention, the cover body 2 is provided to the mist generating device 4 at the shortest distance. Mist can be jetted out of the mist, and the water guide 5 directly communicates with the water container 3 at the shortest distance to prevent the fluid from sticking in the mist jetting process and the aggregation of the mist particles at the far end. Can be kept fine.

十分な噴流エネルギーにより、霧の衝突機械エネルギーが形成され、該噴流のエネルギーはスイッチにより制御及び調節が可能である。そのうち、前記霧発生装置4は、圧電セラミック振動素子41により、200〜300 KHZの高周波振動で発射板42を作動させ、該高周波作動エネルギーにより、水液を直接霧化し、この霧化の過程において、その高周波振動が高速であるため、発生する熱エネルギーも迅速に水液を代替し相対して冷却され、発生された霧の温度と水容器3内部の水の温度はほぼ同等であるため、熱を生じない作業と見なすことができ、水容器3内部の水液の薬性を変化させることはない。   With sufficient jet energy, the impingement mechanical energy of the fog is formed, and the energy of the jet can be controlled and adjusted by switches. Among them, the fog generating device 4 operates the firing plate 42 by high frequency vibration of 200 to 300 KHZ by the piezoelectric ceramic vibration element 41, and directly atomizes the water liquid by the high frequency operation energy. Since the high-frequency vibration is high-speed, the generated heat energy is also quickly substituted for the water liquid and cooled relative to each other, and the temperature of the generated mist and the temperature of the water inside the water container 3 are substantially equal. It can be regarded as an operation that does not generate heat, and does not change the chemical property of the water liquid inside the water container 3.

本考案の別の実施例は、該発射板42とカバー体の間に、殺菌を行なうための反応空間40を設ける。該反応空間40は、基本的には略球形であり、殺菌の実施は、紫外光により殺菌を行なう方法で、該紫外光にはLED紫外線発生器410を採用し紫外線を発生させ、該反応空間40を通過する霧に紫外光を照射する。半導体技術の進歩に伴い、発光ダイオードについても大きな進展があり、本考案においては、紫外光ダイオードを率先して使用することによりオゾンを発生させる。紫外光LEDランプ(UV LED LAMP)は高効率で、波長の一致性が高く、また体積が小さいために、省電力で小型の携帯型商品の光源とするのに適している。このほか、球形の反応空間の配置により、紫外線が外へ洩れることなく、反応空間内で生成されたオゾンは霧化された噴流により導引されて発射される。紫外光LEDランプの駆動には、50?デューティサイクル(DUTY CYCLE)方式で点滅させ、LEDが温度の上昇の影響による発光効率の低下を減少する。また、微粒の水の直径は2-10μmであるため、単位容積の液体が霧化を経て微粒子となった後、その形体が分解を経て微粒となったため、その体外接触の総和表面積が非常に大きくなり、それにより、約10PPM程度の少量のオゾンで、迅速に満遍なくその反応効果が得られる。 In another embodiment of the present invention, a reaction space 40 for sterilization is provided between the firing plate 42 and the cover body. The reaction space 40 is basically spherical, and sterilization is performed by sterilization using ultraviolet light. For the ultraviolet light, an LED ultraviolet ray generator 410 is used to generate ultraviolet light, The fog passing through 40 is irradiated with ultraviolet light. With the advance of semiconductor technology, there has been a great progress in light emitting diodes. In the present invention, ozone is generated by initiatively using ultraviolet light diodes. Ultraviolet LED lamps (UV LED LAMPs) are highly efficient, have high wavelength consistency, and are small in volume, making them suitable as light sources for power-saving and compact portable products. In addition, due to the arrangement of the spherical reaction space, the ozone generated in the reaction space is guided and emitted by the atomized jet without the ultraviolet rays leaking out. To drive the UV LED lamp, it flashes in a 5050 duty cycle (DUTY CYCLE) system to reduce the decrease in luminous efficiency due to the temperature rise of the LED. In addition, since the water diameter of the fine particles is 2-10 μm, after the unit volume of liquid becomes fine particles through atomization, the form becomes fine particles through decomposition, so the total surface area of extracorporeal contact is extremely large As a result, the reaction effect can be obtained quickly and uniformly with a small amount of ozone of about 10 PPM.

該紫外線発生器410は、水容器3の箱体が透明であることを条件に、その光を水容器内部に向けた設計で設置してもよく、水容器内部の水液に、同様に相対する該紫外線発生器410の光波作用を受けさせることができる。 The ultraviolet ray generator 410 may be installed so that its light is directed toward the inside of the water container, provided that the box of the water container 3 is transparent. The light wave action of the UV generator 410 can be applied.

また、該水容器3を耐熱機能付のものにすれば、高温の熱水を入れることができ、該高温の熱水は、前記発射板42作動後、その速度が速いため、形成された霧も同様の温度を有しており、顔部に熱湿布として用いることができ、例えば、蒸気熱湿布として物理医療効果を得ることができる。該水容器3はさらに、加温装置付とすることもできるが、本考案の要旨は携帯に便利であることであるため、その消費電力の程度を考慮し、選択的な設計で室外での利用における利便性を備えていることを主な条件とする。 Further, if the water container 3 is provided with a heat-resistant function, high-temperature hot water can be filled therein, and the high-temperature hot water has a high speed after the firing plate 42 is actuated. Also has a similar temperature, and can be used as a hot compress on the face, for example, a physical medical effect can be obtained as a steam hot compress. The water container 3 may be further provided with a heating device. However, since the gist of the present invention is that it is portable and convenient, the degree of power consumption thereof is taken into consideration, and the design of the water container 3 is selected in the outdoor. The main condition is to have convenience in use.

本考案で用いる霧発生装置4が必要とする消費電力は、約50mAの電気エネルギーで精確に動作するため、電源入力端にさらにコンピュータ端子PS2またはUSBに対応するコネクタを設けてもよく、コンピュータを操作するとき、コンピュータ本体の端子を利用して電源を得ることができる。   The power consumption required by the fog generator 4 used in the present invention is accurate with an electric energy of about 50 mA. Therefore, a connector corresponding to the computer terminal PS2 or USB may be provided at the power input end. When operating, power can be obtained using terminals on the computer body.

本考案の圧電セラミック振動素子41は、単変換方式で圧電片を動かす目的を達することができるため、本考案が採用する回路の効率が以達到η>85?のレベルに達し、実施において、本考案は3VDC直流電源電圧下で総消費電力が0.5Wの時、霧化量は100.C.C/hの霧化水準に達する。 Since the piezoelectric ceramic vibrating element 41 of the present invention can achieve the purpose of moving the piezoelectric piece by the single conversion method, the efficiency of the circuit adopted by the present invention reaches a level of η> 85 ?. The idea is that when the total power consumption is 0.5W under 3VDC DC power supply voltage, the amount of atomization reaches 100.CC/h atomization level.

且つ、本回路は、定電圧(CV)方式であり、霧化器の負荷量と消費電力を追跡・制御することができ、電圧負荷変動率(LOAD REGULATION)を1%以内に維持し、また、電源電圧変動範囲(LINE REGULATION)も±50%以上に達する。 In addition, this circuit is a constant voltage (CV) system, which can track and control the load and power consumption of the atomizer, maintain the voltage load regulation (LOAD REGULATION) within 1%, and In addition, the power supply voltage fluctuation range (LINE REGULATION) also reaches ± 50% or more.

このほか、周波数の定値と出力電力の定値を、抵抗値を変えることで随意に変え、霧化形態を調節することができ、非常に便利である。 In addition, the constant value of the frequency and the constant value of the output power can be arbitrarily changed by changing the resistance value to adjust the atomization form, which is very convenient.

本考案はさらに、水液の交換の利便性を高めるため、容器方式を採用し、図3に示すように、容器8の底部の内部または外部に圧電振動素子420を設け、そのうち、外部に設けた場合は、該容器8の材質は曲げ性を備えたものとし、効果的に全体の振動を接受し、その内部の水液を振動させて霧化する。また、該振動素子420は前述(図2)のような規格のほか、円盤形の軸方向に振幅する円形振動素子420(図3に示す)としてもよく、水容器8の内側底面に設置し、水液を注入後、その軸方向振動の機械的エネルギーが水体を介し液面に伝わり、さらに、振動波の液面における干渉を利用し霧を発生する。この設計は、住居内や室内で使用する固定式の霧化に応用でき、容器の上端に最短距離でカバー体2を床面と垂直に設置し、使用者が前かがみになり眼部を下に向けた姿勢でケアを行なうことができる。   The present invention further employs a container system in order to enhance the convenience of exchanging the liquid, and as shown in FIG. 3, a piezoelectric vibrating element 420 is provided inside or outside the bottom of the container 8, of which the outside is provided. In this case, the material of the container 8 is provided with a bendability, effectively receives the whole vibration, and vibrates the water liquid in the inside to atomize. The vibration element 420 may be a disk-shaped circular vibration element 420 (shown in FIG. 3) that oscillates in the axial direction in addition to the above-mentioned standard (FIG. 2). After the injection of the water liquid, the mechanical energy of the axial vibration is transmitted to the liquid surface via the water body, and further, fog is generated by utilizing the interference of the vibration wave on the liquid surface. This design can be applied to fixed atomization used in a house or indoors. The cover body 2 is installed at the upper end of the container at the shortest distance and perpendicular to the floor, and the user leans forward and turns his eyes down. The care can be performed in the posture aimed at.

前述の円形の振動素子420の容器8に対しての設置方式は、同様に外側に設置する方式で該円形の振動素子420を該容器8の底部に設置し、電気絶縁加工工程を省略することができる。そのうち、該容器8は曲げ性を備え、その軸方向の振動が同時に該容器8を経由し、内部に入れた水液に伝わり、満遍なく振動させることができる。   The above-mentioned method of installing the circular vibration element 420 on the container 8 is similar to the method of installing the circular vibration element 420 on the bottom of the container 8 by installing the circular vibration element 420 at the bottom of the container 8, and omitting the electrical insulation process. Can be. The container 8 has a bending property, and the vibration in the axial direction is simultaneously transmitted to the liquid contained in the container 8 via the container 8 and can be vibrated uniformly.

図4に示すように、本考案の反応空間40は、基本的に略球形とし、一方の側面に前記発射板42を設置し、該発射板42の水液の注入側が導水部5に接続し、該反応空間40は主に相対して設置された紫外線波を発射する紫外線発生器410を備え、該発射板42が発生する霧が該反応空間40を通過する時、該紫外光の照射を最大面積で接受した後、霧が霧出口45から顔部に向けて発射され、該霧出口45と紫外線発生器410の間にさらに阻光板44を設け、眼部が直接該紫外光発生器410の光源による照射を受けるのを防ぎ、また、該反応空間40は、一定容積の略球体を備えているため、通過する霧が部分的に凝集して水液を形成するが、溜まった水液は拭き取るか、排水装置43を利用し、残存した水液を排出してもよく、該排水装置43は、毛細繊維により導引する設計またはその他あらゆる吸水装置とすることができ、ここでは説明を省略する。 As shown in FIG. 4, the reaction space 40 of the present invention is basically spherical, and the launching plate 42 is installed on one side, and the water-liquid injection side of the launching plate 42 is connected to the water guide 5. The reaction space 40 is provided with an ultraviolet ray generator 410 that emits an ultraviolet wave, which is installed mainly in opposition. When the mist generated by the firing plate 42 passes through the reaction space 40, the irradiation of the ultraviolet light is performed. After receiving the maximum area, the fog is emitted from the fog outlet 45 toward the face, and the light blocking plate 44 is further provided between the fog outlet 45 and the ultraviolet ray generator 410 so that the eye can directly contact the ultraviolet light generator 410. In addition, since the reaction space 40 is provided with a substantially spherical body having a fixed volume, the passing mist partially aggregates to form a water liquid. May be wiped or the drainage device 43 may be used to drain the remaining water solution, Drainage device 43 may be a design or any other water apparatus Shirube引 by capillary fibers, and a description thereof will be omitted.

図5に示すように、本考案の本体1は、双孔の設計としてもよく、単一の本体1に長方形の眼部カバー2を設置し、該眼部カバー2に2つの通孔21を形成し、該通孔21内部が発射板42に相通し、該発射板42と通孔21間に反応空間40を設けてもよく、該本体1の一側面に電源装置6及び着脱自在な水容器3を設置し、該水容器3は、大気圧力に対応するための圧力平衡バルブ31を備え、さらに、別の一側面に指で自在に操作ができる位置に制御スイッチ13を設け、左右両側にストラップ孔14を設置し、あらゆる紐状のストラップを利用し、使用者の頭部に固定してもよい。そのうち、該電源装置6は、本考案の消費電力が極めて低いため、則可採用3VDCの電池を採用することができ、また、自宅での使用には市電を直流に変換するか、または、あらゆる手動発電の発電機を利用し、電源を得ることができる。該電源装置6が必要な電力を供給し、該眼部カバー2が長孔状であるため、顔部の曲線に対応でき、また、中央部に鼻梁に対応する凹部22を形成し、装着後使用者の鼻梁の位置に合わせて開口しているため便利である。さらに、該眼部カバー2は曲げ性を備えた材質であるため、押圧力でその周縁と使用者の顔部表面を圧着させることができ、また、該水容器3はカセット式の組み立て方法を採用することができ、着脱自在に本体1に設置され、該着脱自在のカセット式の組立て設計は、一般的な嵌入機構であるため、ここでは説明を省略する。   As shown in FIG. 5, the main body 1 of the present invention may have a double-bore design, in which a single main body 1 is provided with a rectangular eye cover 2, and two through holes 21 are provided in the eye cover 2. The inside of the through-hole 21 may communicate with the firing plate 42, and a reaction space 40 may be provided between the firing plate 42 and the through-hole 21. The container 3 is installed, the water container 3 is provided with a pressure balance valve 31 for responding to atmospheric pressure, and further, a control switch 13 is provided on another side at a position where it can be freely operated by a finger. The strap hole 14 may be provided on the user's head using any strap. Among them, the power supply 6 has a very low power consumption according to the present invention, so that a 3 VDC battery can be adopted. In addition, the street power can be converted to direct current for use at home, or any other power source can be used. A power source can be obtained using a generator for manual power generation. Since the power supply device 6 supplies necessary power and the eye cover 2 has a long hole shape, it can correspond to the curve of the face, and a concave portion 22 corresponding to the bridge of the nose is formed in the center, and It is convenient because it is opened according to the position of the nose bridge of the user. Further, since the eye cover 2 is made of a material having flexibility, the peripheral edge thereof can be pressed against the surface of the face of the user by pressing force, and the water container 3 has a cassette type assembling method. The detachable cassette type assembling design, which can be adopted and is detachably mounted on the main body 1, is a general fitting mechanism, and therefore, the description thereof is omitted here.

図6に示すように、該水容器3は、分岐させて設けた2本の水路30を介し、個別に水液を2つの導水部5に供給し、水液は該導水部5の毛細繊維を介しその端口51表面に導引されて水膜を形成し、発射板42の霧の発生源として用いられる。該発射板42は、圧電セラミック振動素子41の両側に相対し立てて設置され、該振動素子41により同時に振動され、該振動素子41両側の発射板42が同時に導水部5の水液に対し霧発生の操作を行う。この霧発生操作は、該発射板42が導水部5の端口51に対面して接しており、振動後形成された水膜が、発射孔421を介し外側へ霧化されて発射される。そのうち、該2つの発射板42の構造形態及び質量は相等であり、同等の形態の霧を発生することができる。この設計の霧発生装置4は、図4のように実施することができる。 As shown in FIG. 6, the water container 3 separately supplies the water liquid to the two water guide sections 5 through two branched water paths 30, and the water liquid is supplied to the capillary fibers of the water guide section 5. Through the surface of the end port 51 to form a water film, which is used as a source of fog on the firing plate 42. The firing plates 42 are installed upright on both sides of the piezoelectric ceramic vibrating element 41, are simultaneously vibrated by the vibrating elements 41, and the firing plates 42 on both sides of the vibrating element 41 are simultaneously sprayed with the water liquid in the water guide 5. Perform the operation of generation. In this mist generation operation, the firing plate 42 is in contact with the end port 51 of the water guide 5 so that the water film formed after the vibration is atomized to the outside through the firing hole 421 and is fired. Among them, the two fire plates 42 have the same structure and mass, and can generate fog of the same shape. The fog generator 4 of this design can be implemented as shown in FIG.

さらに、異なる性質または形態の導水部5が形成する端口51に対応し、該発射板42に一定形態の水膜を提供するため、該端口51と該発射板42との間に、拡散片510を設置し、該拡散片510は同様に毛細繊維による導水機能を備え、該拡散片510を一定の形態及び質料とすることで、該発射板42に面する界面に定量定形の水膜を形成し、発射板42に提供することができ、その背面はあらゆる材料で形成された導水部5の端口51に対応し、水液を導引して補給することができる。   Further, a diffusion piece 510 is provided between the end port 51 and the firing plate 42 so as to correspond to the end port 51 formed by the water guide portion 5 having a different property or form and to provide the firing plate 42 with a certain form of water film. The diffusion piece 510 is similarly provided with a water guiding function by the capillary fiber, and by forming the diffusion piece 510 in a fixed form and a material, a fixed-form water film is formed on the interface facing the firing plate 42. However, it can be provided to the firing plate 42, the back surface of which corresponds to the end port 51 of the water guide 5 made of any material, and can supply and supply water liquid.

図7に示すように、該水容器3と導水部5間は、挿入式としてもよく、該導水部5は、該水容器3の管口32から内部へ向って進入し、外端部に端口51を維持し、両者間は接合管33により固定され、まず導水部5の外端部を該接合管33に嵌置し、さらに、該水容器3の管口32に接続される。該接合管33は、導水部5と水容器3間の着脱操作を容易にし、該導水部5の挿入と抜き取り、及び防水の実施に便利であり、且つ、この挿入式の構造を利用し、該導水部5の交換及び洗浄における利便性も高く、該接合管33の間接的使用により、導水部5と管口32の防水密閉性を補助することができる。   As shown in FIG. 7, the space between the water container 3 and the water guiding portion 5 may be of an insertion type. The water guiding portion 5 enters from the pipe port 32 of the water container 3 toward the inside, and enters the outer end portion. The end port 51 is maintained, and the two are fixed by the connecting pipe 33. First, the outer end of the water guide 5 is fitted to the connecting pipe 33, and further connected to the pipe port 32 of the water container 3. The joining pipe 33 facilitates the attachment / detachment operation between the water guide 5 and the water container 3, is convenient for inserting and extracting the water guide 5, and implementing waterproofing. The convenience of replacement and cleaning of the water guide 5 is also high, and the indirect use of the joint pipe 33 can assist the waterproof and airtightness of the water guide 5 and the pipe port 32.

図8に示すように、本考案が使用する振動素子41と発射板42間の組立ては、溶接またはあらゆる粘着接合方式とすることができ、その接合方式において、本考案は、発射板42の交換を可能にするため、振動素子41の対接面にクリップ7を形成し、該クリップ7がクリップ板71により挟み込む形で該発射板42を保持し、着脱自在に組み立てることができる。   As shown in FIG. 8, the assembly between the vibrating element 41 and the firing plate 42 used in the present invention may be welding or any adhesive bonding method, in which the present invention is based on the replacement of the firing plate 42. In order to enable the above, the clip 7 is formed on the contact surface of the vibrating element 41, and the clip 7 is held by the clip plate 71 to hold the firing plate 42, and the clip 7 can be detachably assembled.

この着脱自在な構造の目的は、使用者が該発射板42を取り外して交換したり、洗浄したりする際の利便性を高めるためであり、例えば不均等な開孔形態の発射板(図9に示す)に交換するなどして利用することができる。 The purpose of this detachable structure is to enhance the convenience when the user removes and replaces the firing plate 42 or cleans the firing plate 42. For example, the firing plate 42 has an uneven opening shape (FIG. 9). ) Can be used.

該発射板42に開設する発射孔421は、前述の図6に示す方式のほか、さらに発射板42の表面に線状を呈する線槽422を開設してもよく、該線槽422は曲線や直線、または折れ線とすることができ、該線槽の幅は、一般的な塵埃の粒径(該塵埃粒径の大きさの定義は目に傷害や影響を与える大きさとする)より小さく設計し、また、該線槽422の長さは、塵埃の粒径よりずっと長いものとし、このため、この線状の線槽422を利用することで、該発射板42が詰まる確率を大幅に減少することができ、該線槽422に塵埃が1つ詰まったとしても、該線槽422の長さは該塵埃の粒径よりずっと長いため、該線槽422は詰まることなく、円滑な霧化を確保することができる。   The firing hole 421 opened in the firing plate 42 may be a line tank 422 having a linear shape on the surface of the firing plate 42 in addition to the method shown in FIG. 6 described above. It can be a straight line or a polygonal line, and the width of the line tank is designed to be smaller than a general dust particle size (the size of the dust particle size is defined as a size that causes injury or influence on eyes). In addition, the length of the wire tank 422 is set to be much longer than the particle diameter of the dust. Therefore, the use of the linear wire tank 422 greatly reduces the probability that the firing plate 42 becomes clogged. Even if one dust is clogged in the wire tub 422, since the length of the wire tub 422 is much longer than the particle size of the dust, the wire tub 422 is not clogged and can be smoothly atomized. Can be secured.

本考案の実施例1の立体外観図である。1 is a three-dimensional external view of a first embodiment of the present invention. 本考案の実施例2の側面透視図である。FIG. 4 is a side perspective view of Embodiment 2 of the present invention. 本考案に円形の振動素子を利用した場合の透視図である。FIG. 4 is a perspective view of a case where a circular vibration element is used in the present invention. 本考案の反応空間の作用を示す透視図である。FIG. 4 is a perspective view showing the operation of the reaction space of the present invention. 本考案の実施例3の立体外観図である。FIG. 4 is a three-dimensional external view of a third embodiment of the present invention. 本考案の霧発生装置に2つの発射板と水容器を設置した場合の位置関係を示す立体分解図である。FIG. 4 is a three-dimensional exploded view showing a positional relationship when two firing plates and a water container are installed in the fog generator of the present invention. 本考案の接合管を用いた組立ての状態を示す側面図である。FIG. 4 is a side view showing an assembled state using the joint pipe of the present invention. 本考案の振動素子にクリップで発射板を挟み組み立てた状態を示す上面図と部分拡大図である。FIG. 4 is a top view and a partially enlarged view showing a state where the firing plate is assembled with the clip on the vibrating element of the present invention. 本考案の発射板に不均等な開孔を設けた状態を示す平面図である。FIG. 4 is a plan view showing a state in which the firing plate of the present invention has uneven openings.

符号の説明Explanation of reference numerals

1 本体
11 制御スイッチ
12 収納槽
13 制御スイッチ
14 ストラップ孔
2 カバー体
20 防塵蓋
21 通孔
22 凹部
3 水容器
30 水路
31 圧力平衡バルブ
32 管口
33 接合管
4 霧発生装置
40 反応空間
41 圧電セラミック振動素子
410 紫外線発生器
42 発射板
420 振動素子
421 発射孔
422 線槽
43 排水装置
44 阻光板
45 霧出口
5 導水部
51 端口
510 拡散片
6 電源装置
7 クリップ
71 クリップ板
8 水容器
DESCRIPTION OF SYMBOLS 1 Main body 11 Control switch 12 Storage tank 13 Control switch 14 Strap hole 2 Cover body 20 Dust cover 21 Through hole 22 Concave part 3 Water container 30 Water path 31 Pressure balance valve 32 Pipe mouth 33 Joining pipe 4 Fog generator 40 Reaction space 41 Piezoelectric ceramic Vibration element 410 Ultraviolet ray generator 42 Launch plate 420 Vibration element 421 Launch hole 422 Wire tank 43 Drainage device 44 Light blocking plate 45 Mist outlet 5 Water guide 51 End port 510 Diffusion piece 6 Power supply device 7 Clip 71 Clip plate 8 Water container

Claims (11)

眼部に対し霧の噴流を発射する保健器であって、主に、本体と、眼部周囲を覆うカバー体と、霧発生装置とを含み、該カバー体は通孔を備え、通孔は前記霧発生装置に対接し、該霧発生装置は、圧電セラミック振動素子で作動する発射板を備え、該発射板の霧発射側は前記カバー体側に対向させ、発射板に供給する必要な水液の注入側は導水部の端口に接し、該導水部の別の一端が水容器に導通していることを特徴とする眼部保健器。   A health device that emits a jet of fog to an eye, which mainly includes a main body, a cover that covers the periphery of the eye, and a fog generator, wherein the cover has a through hole, and the through hole has a through hole. In contact with the mist generating device, the mist generating device includes a firing plate operated by a piezoelectric ceramic vibrating element, and a mist emitting side of the firing plate is opposed to the cover body side, and a necessary liquid liquid is supplied to the firing plate. An eye health device, wherein the injection side of (1) is in contact with the end opening of the water guide, and another end of the water guide is connected to the water container. 発射板の霧発射側と前記カバー体の間に、さらに反応空間を設け、該反応空間において光波作用を発生するLED紫外線発生器を設けたことによる請求項1に記載の眼部保健器。   2. The eye health device according to claim 1, wherein a reaction space is further provided between the fog emission side of the firing plate and the cover body, and an LED ultraviolet generator that generates a light wave action in the reaction space is provided. 該水容器にさらに分岐した2本の水路を設け、個別に2つの発射板に水液を提供する構成としたことを特徴ととする請求項1に記載の眼部保健器。   2. The eye health device according to claim 1, wherein the water container is further provided with two branched water passages to separately supply the water liquid to the two firing plates. 該振動素子の相対する側縁部に、さらに2つの対等な形態の発射板を設置することを特徴とする請求項1に記載の眼部保健器。   2. The eye health device according to claim 1, further comprising two equal-shaped firing plates installed at opposite side edges of the vibration element. 該振動素子と発射板間を、さらにクリップを利用し挟持方式で組み立てた構成としたことを特徴とする請求項1に記載の眼部保健器。   2. The eye health device according to claim 1, wherein the vibrating element and the firing plate are assembled by a clamping method using a clip. 該振動素子と発射板間を、粘着剤または金属溶接の方式で接合した構成としたことを特徴とする請求項1に記載の眼部保健器。   2. The eye health device according to claim 1, wherein the vibrating element and the firing plate are joined by an adhesive or metal welding. 該導水部と水容器間の連結部に、さらに接合管を設け組立てた構成としたことを特徴とする請求項1に記載の眼部保健器。   2. The eye health device according to claim 1, wherein a connecting pipe is further provided at a connecting portion between the water guiding portion and the water container to be assembled. 該水容器と本体間の組立てが、着脱自在の嵌置方式である構成としたことを特徴とする請求項1に記載の眼部保健器。   The eye health device according to claim 1, wherein the water container and the main body are assembled by a detachable fitting method. 該発射板に設けた発射孔が、線状を呈した線槽である構成としたことを特徴とする請求項1に記載の眼部保健器。   2. The eye health device according to claim 1, wherein the firing hole provided in the firing plate is a linear bath. 電力を得るためにコンピュータ本体に接続することができるPS2またはUSBコネクタを設けた構成としたことを特徴とする請求項1に記載の眼部保健器。   The eye health device according to claim 1, wherein a PS2 or USB connector that can be connected to a computer main body to obtain power is provided. 眼部保健器であって、特に、霧を発生し、眼部に対してケアを行なう器材であり、主に、水容器の底部に圧電振動素子を設置し、該水容器上端の開口部に眼部周囲を覆うカバー体を直接設置し、該カバー体は通孔を備え、該水容器内部と相通していることを特徴とする眼部保健器。
An eye health device, in particular, a device that generates fog and provides care to the eye.Mainly, a piezoelectric vibrating element is installed at the bottom of the water container, and the opening at the upper end of the water container is provided. An eye health device, wherein a cover body covering the periphery of the eye is directly installed, the cover body has a through hole, and communicates with the inside of the water container.
JP2004002335U 2004-04-27 2004-04-27 Eye health organ Expired - Lifetime JP3104861U (en)

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JP2008279243A (en) * 2007-04-12 2008-11-20 Daikin Ind Ltd Spraying equipment
JP2009072313A (en) * 2007-09-19 2009-04-09 Doshisha Ophthalmic spray supply device
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US11839487B2 (en) 2010-07-15 2023-12-12 Eyenovia, Inc. Ophthalmic drug delivery
US11398306B2 (en) 2010-07-15 2022-07-26 Eyenovia, Inc. Ophthalmic drug delivery
JP2015120035A (en) * 2010-07-15 2015-07-02 アイノビア,インコーポレイティド Eye drop delivery
JP2016154868A (en) * 2010-07-15 2016-09-01 アイノビア,インコーポレイティド Droplet generating device
US10073949B2 (en) 2010-07-15 2018-09-11 Eyenovia, Inc. Ophthalmic drug delivery
US10154923B2 (en) 2010-07-15 2018-12-18 Eyenovia, Inc. Drop generating device
US10839960B2 (en) 2010-07-15 2020-11-17 Eyenovia, Inc. Ophthalmic drug delivery
US11011270B2 (en) 2010-07-15 2021-05-18 Eyenovia, Inc. Drop generating device
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US11938056B2 (en) 2017-06-10 2024-03-26 Eyenovia, Inc. Methods and devices for handling a fluid and delivering the fluid to the eye
US12213912B2 (en) 2017-06-10 2025-02-04 Eyenovia, Inc. Methods and devices for handling a fluid and delivering the fluid to the eye
US12161585B2 (en) 2019-12-11 2024-12-10 Eyenovia, Inc. Systems and devices for delivering fluids to the eye and methods of use
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