TWM412807U - Smart solution atomizer - Google Patents
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- TWM412807U TWM412807U TW100203363U TW100203363U TWM412807U TW M412807 U TWM412807 U TW M412807U TW 100203363 U TW100203363 U TW 100203363U TW 100203363 U TW100203363 U TW 100203363U TW M412807 U TWM412807 U TW M412807U
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- 238000000889 atomisation Methods 0.000 claims description 37
- 239000007788 liquid Substances 0.000 claims description 33
- 239000000919 ceramic Substances 0.000 claims description 16
- 230000004913 activation Effects 0.000 claims description 8
- 230000008054 signal transmission Effects 0.000 claims description 8
- 238000001514 detection method Methods 0.000 claims description 2
- 239000000243 solution Substances 0.000 description 61
- 239000002245 particle Substances 0.000 description 8
- 238000009792 diffusion process Methods 0.000 description 4
- 239000002904 solvent Substances 0.000 description 4
- 239000000341 volatile oil Substances 0.000 description 4
- 230000005540 biological transmission Effects 0.000 description 3
- 238000010586 diagram Methods 0.000 description 3
- 230000000694 effects Effects 0.000 description 3
- 230000005484 gravity Effects 0.000 description 3
- 230000010355 oscillation Effects 0.000 description 3
- 238000004659 sterilization and disinfection Methods 0.000 description 3
- 239000003205 fragrance Substances 0.000 description 2
- 150000002500 ions Chemical class 0.000 description 2
- 238000004519 manufacturing process Methods 0.000 description 2
- 238000000034 method Methods 0.000 description 2
- 239000000203 mixture Substances 0.000 description 2
- 239000003921 oil Substances 0.000 description 2
- 230000001954 sterilising effect Effects 0.000 description 2
- 125000003118 aryl group Chemical group 0.000 description 1
- 230000003203 everyday effect Effects 0.000 description 1
- 230000006870 function Effects 0.000 description 1
- 239000011259 mixed solution Substances 0.000 description 1
- 229910052760 oxygen Inorganic materials 0.000 description 1
- 239000001301 oxygen Substances 0.000 description 1
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 description 1
Landscapes
- Disinfection, Sterilisation Or Deodorisation Of Air (AREA)
- Special Spraying Apparatus (AREA)
Description
M412807 五、新型說明: 【新型所屬之技術領域】 本創作係關於一種智慧型溶液霧化裝置,尤指一種適 用於釋放消毒殺菌、或芳香擴香之智慧型溶液霧化裝置。 【先前技術】 請參閱圖1,圖1係習知霧化裝置之示意圖。圖中所示 ' 之霧化裝置9即俗稱之水氧機,一般常用於精油芳香擴散之 ' 用途。目前常見之霧化裝置9主要包括以下主要元件’一精 油皿91、及一超音波震盪器92。通常使用者需先將水跟精 油、或多種其他芳香液體混合調配後,倒入精油皿91內’ 再啓動超音波震盪器92利用高頻震盪,將混合溶液霧化成 液體粒子。 然而,目前習知之霧化裝置9有相當多的操作步驟,還 是要靠人工,例如芳香劑的比例調配、啓動的時間、釋出 的量、及霧化的強度等,皆須使用者進行人爲控制、及調 φ 配,相當不便。再且,在習知技術中,當同時使用多種溶 劑時、或溶劑無標示其名稱或種類時,4往難以分辨散發 中的溶劑爲何。另外,溶液的存量,有時也難以用肉眼來 判斷。 由此可知,如何達成一種方便、構造簡單、省時省力、 可隨時得知霧化溶液之正確名稱或種類、及其剩餘容量, 又能完全自動化控制霧化,產生芳香、或消毒殺菌之功效 的智慧型溶液霧化裝置,實在是產業上的一種迫切需要。 M412807 【新型內容】M412807 V. New description: [New technical field] This creation is about a smart solution atomization device, especially a smart solution atomization device suitable for releasing disinfection or aroma spread. [Prior Art] Please refer to FIG. 1, which is a schematic diagram of a conventional atomizing device. The atomizing device 9 shown in the figure is commonly used as a water-oxygen machine, which is commonly used for the aroma diffusion of essential oils. The conventional atomizing device 9 mainly includes the following main components 'a fine oil tank 91' and an ultrasonic oscillator 92. Usually, the user first mixes the water with the essential oil or a plurality of other aromatic liquids, and then pours it into the essential oil tank 91. Then the ultrasonic oscillator 92 is activated to converge the mixed solution into liquid particles by high frequency oscillation. However, the conventional atomizing device 9 has a considerable number of operating steps, and it is still necessary to rely on labor, such as the proportioning of the fragrance, the time of starting, the amount of the release, and the intensity of the atomization. It is quite inconvenient to control and adjust the φ. Further, in the prior art, when a plurality of solvents are used at the same time, or when the solvent does not indicate its name or type, it is difficult to distinguish the solvent in the emission. In addition, the stock of the solution is sometimes difficult to judge with the naked eye. It can be seen that how to achieve a convenient, simple structure, saves time and effort, can know the correct name or type of the atomized solution, and its remaining capacity at any time, and can fully control the atomization, produce aroma, or disinfection The intelligent solution atomization device is really an urgent need in the industry. M412807 [New content]
本創作爲一種智慧型溶液霧化裝置,包括:至少一容 器、至少一液滴偵測元件、一霧化模組、及一控制模組。 其中,每一容器包括有一出液口、一記憶元件、及一溶液 釋出閥,該記憶元件儲存有一第一剩餘容量時間,該溶液 釋出閥設置於該出液口處。溶液釋出閥係連通至霧化模 組。至少一液滴偵測元件是組設於溶液釋出閥與霧化模組 間。至於,控制模組是電性連接每一容器之該記憶元件、 每一容器之該溶液釋出閥 '至少一液滴偵測元件、及霧化 模組。其中,控制模組控制讀取每一容器之記憶元件內的 第一剩餘容量時間,並控制至少一液滴偵測元件偵測一液 滴時間,控制模組運算將第一剩餘容量時間扣除液滴時間 爲一第二剩餘容量時間,控制模組控制將第二剩餘容量時 間儲存於記憶元件內;控制模組控制溶液釋出閥開啓或關 閉、及霧化模組啓動或關閉。因此’本創作俾能達成隨時 得知霧化溶液之剩餘容量,且又可自動調配欲霧化之溶液 成分、自動啓動或關閉的時程控制、並控制霧化強度、及 霧化粒子大小之功效。 其中,本創作之霧化模組可包括有一壓電陶瓷震盪 器、及一集液皿。而壓電陶瓷震盪器是連接於集液皿並電 性連接至控制模組,溶液釋出閥係連通至集液皿。其中, 壓電陶瓷震盪器是利用電子震盪原理’產生高頻率震波將 液態分子結構打散’藉此將溶液震成極小的霧狀粒子’霧The present invention is a smart solution atomization device comprising: at least one container, at least one droplet detecting component, an atomizing module, and a control module. Wherein each container includes a liquid outlet, a memory element, and a solution release valve, the memory element stores a first remaining capacity time, and the solution release valve is disposed at the liquid outlet. The solution release valve is connected to the atomization module. At least one droplet detecting element is disposed between the solution releasing valve and the atomizing module. The control module is electrically connected to the memory component of each container, the solution release valve of each container, at least one droplet detecting component, and an atomizing module. The control module controls reading the first remaining capacity time in the memory component of each container, and controls at least one droplet detecting component to detect a droplet time, and the control module calculates the first remaining capacity time subtracting liquid. The drop time is a second remaining capacity time, and the control module controls to store the second remaining capacity time in the memory component; the control module controls the solution release valve to be opened or closed, and the atomization module is activated or deactivated. Therefore, 'this creation can achieve the remaining capacity of the atomized solution at any time, and can automatically adjust the composition of the solution to be atomized, the time control of automatic start or shutdown, and control the atomization intensity, and the atomization particle size. efficacy. The atomization module of the present invention may include a piezoelectric ceramic oscillator and a liquid collection dish. The piezoelectric ceramic oscillator is connected to the collecting vessel and electrically connected to the control module, and the solution releasing valve is connected to the collecting vessel. Among them, the piezoelectric ceramic oscillator uses the principle of electronic oscillation to generate high-frequency seismic waves to break up the liquid molecular structure, thereby causing the solution to vibrate into extremely small hazy particles.
A M412807 化過程中將釋放負離子。使用壓電陶瓷震盪器更具一優 勢,於不慎處於乾燒狀態時’並不會產生高溫燒毀。當然, 本創作亦可採用超音波震盪器’惟須特別注意使用超音波 震盪器應避免乾燒,否則將導致裝置燒毀。 再者,本創作更可包括有至少一導流管,是連通於溶 液釋出閥與霧化模組之集液皿間,其用以將自溶液釋出閥 流出的溶液導流至集液皿內。據此,容器無須設置於集液 皿正上方,可設於集液皿上方其他位置處,藉由溶液自身 重力及導流管的引導即可,因設於集液皿正上方將影響霧 化後的液體粒子的擴散流向。 此外,本創作之至少一液滴偵測元件可爲一紅外線偵 測器、或其他等效之液滴偵測元件。再且,本創作可更包A M412807 will release negative ions during the process. The use of piezoelectric ceramic oscillators is even more advantageous. When accidentally in a dry state, it does not cause high temperature burnout. Of course, this creation can also use ultrasonic oscillators', but special attention should be paid to the use of ultrasonic oscillators to avoid dry burning, otherwise the device will burn out. Furthermore, the creation may further comprise at least one flow guiding tube connected between the solution releasing valve and the collecting plate of the atomizing module for guiding the solution flowing out of the solution releasing valve to the liquid collecting liquid. Inside the dish. Accordingly, the container does not need to be disposed directly above the liquid collecting dish, and can be disposed at other positions above the liquid collecting dish, and can be guided by the gravity of the solution and the guiding tube, and the atomization will be affected directly above the liquid collecting dish. The flow direction of the liquid particles after the diffusion. In addition, at least one of the droplet detecting elements of the present invention may be an infrared detector or other equivalent droplet detecting element. Moreover, this creation can be more packaged.
括有一顯示螢幕,是電性連接至控制模組,用以顯示剩餘 容量、或第一或第二剩餘容量時間,亦即剩餘容量、或其 剩餘時間。當然,亦可用來顯示溶液名稱或種類等溶液資 訊、以及相關設定內容,諸如啓動時間、強度、持續時間、 或配方顯示等。然而,顯示螢幕亦可爲一觸控蛋幕,同時 擔任顯示、及輸入控制之任務。當然,本創作之指示單元 不以顯示螢幕爲限,其亦可爲顯示燈號、語音或其他等效 輸出裝置。另外,本創作可更包括有一輸入模組,是電性 連接至控制模組,用以輸入設定,諸如設定啓動時程、強 度、持續時間、或設定配方比例等。 再者,本創作可更包括有一電源模組,是電性連接至 控制模組,用以提供電源,其可以是外接電源、或電池等。 -5- έ M412807 又,本創作可更包括有一遙控器,是用以發射一無線訊號, 控制模組更包括有一無線訊號傳輸介面,其用以接收遙控 器所發射之無線訊號,並傳送溶液剩餘量。據此,本創作 亦可透過遙控器進行設定或控制。再且,本創作之遙控器 可包括有一顯示單元。其中,遙控器接收控制模組之無線 訊號傳輸介面所傳送的溶液剩餘量,並將其顯示於顯示單 元。據此,不僅本機之顯示螢幕可顯示霧化溶液之剩餘容 量外,透過無線傳輸使的遙控器上之顯示單元亦可同步顯 Φ 示相關資訊。 較佳的是,本創作可更包括有一記憶體,是電性連接 至控制模組。而記憶體內儲存有至少一釋出閥啓動時間、 及至少一釋出閥開啓持續時間。其中,控制模組可根據至 少一釋出閥啓動時間、及至少一釋出閥開啓持續時間來進 行控制溶液釋出閥。據此,釋出閥啓動時間可以是釋出閥 啓動時程的儲存設定,而釋出閥開啓持續時間控制可以是 釋出閥開啓持續時間的儲存設定。當然,霧化模組的啓動 Φ 及關閉時間亦可透過相同方式控制之,抑或可隨著釋出閥 的開啓隨之啓動。 【實施方式】 請同時參閱圖2、圖3,圖2係本創作智慧型溶液霧化裝 置一較佳實施例之立體圖,圖3係本創作一較佳實施例之系 統架構圖。圖中顯示有四個容器20,21,22,23,其分別容裝 有四種不同之溶液,其可以是四種不同之精油、芳香劑、 或其他消毒殺菌之溶劑。且每一容器20,21,22,23包括有一 Λ M412807 出液口 201,211,221,231、一記憶元件 202,212,222,232、 及一溶液釋出閥3。 其中,每一容器20,21,22,23之記憶元件202,2 1 2, 222, 323儲存有容器內所存放之溶液的第一剩餘容量時間Τ,當 然亦可儲存其他預先輸入之溶液相關資訊,包括名稱、品 牌或廠商、品號或料號、保存期限及製造日期、功效或療 效等其他備註事項。然而,圖中所示記憶元件202, 212, 222, 3 23之位置僅爲示意,本創作中並不侷限設置於該位置處。A display screen is included, which is electrically connected to the control module for displaying the remaining capacity, or the first or second remaining capacity time, that is, the remaining capacity, or the remaining time. Of course, it can also be used to display solution information such as the name or type of the solution, as well as related settings such as startup time, intensity, duration, or recipe display. However, the display screen can also be a touch screen, as well as the task of display and input control. Of course, the instruction unit of this creation is not limited to the display screen, and it can also be a display signal, voice or other equivalent output device. In addition, the creation may further include an input module electrically connected to the control module for inputting settings such as setting a startup schedule, intensity, duration, or setting a recipe ratio. Furthermore, the creation may further include a power module electrically connected to the control module for providing power, which may be an external power source, or a battery. -5- έ M412807 In addition, the creation may further include a remote controller for transmitting a wireless signal. The control module further includes a wireless signal transmission interface for receiving the wireless signal transmitted by the remote controller and transmitting the solution. remaining. According to this, the creation can also be set or controlled through the remote control. Moreover, the remote controller of the present invention may include a display unit. The remote controller receives the remaining amount of the solution transmitted by the wireless signal transmission interface of the control module and displays it on the display unit. According to this, not only the display screen of the machine can display the remaining capacity of the atomized solution, but also the display unit on the remote controller through the wireless transmission can simultaneously display relevant information. Preferably, the creation includes a memory that is electrically connected to the control module. The memory stores at least one release valve activation time and at least one release valve opening duration. Wherein, the control module can control the solution release valve according to at least one release valve activation time and at least one release valve opening duration. Accordingly, the release valve activation time may be a storage setting of the release valve activation time period, and the release valve opening duration control may be a storage setting for the release valve opening duration. Of course, the start-up Φ and the closing time of the atomizing module can also be controlled in the same way, or can be started with the opening of the release valve. [Embodiment] Please refer to FIG. 2 and FIG. 3 at the same time. FIG. 2 is a perspective view of a preferred embodiment of the present invention. FIG. 3 is a structural diagram of a preferred embodiment of the present invention. The figure shows four containers 20, 21, 22, 23 which respectively contain four different solutions which may be four different essential oils, fragrances, or other sterilizing solvents. And each container 20, 21, 22, 23 includes a port 412, 211, 221, 231, a memory element 202, 212, 222, 232, and a solution release valve 3. Wherein, the memory elements 202, 2 1 2, 222, 323 of each container 20, 21, 22, 23 store the first remaining capacity time of the solution stored in the container, and of course may also store other pre-input solutions. Information, including name, brand or manufacturer, article number or item number, shelf life and date of manufacture, efficacy or efficacy, and other remarks. However, the positions of the memory elements 202, 212, 222, 3 23 shown in the figures are merely illustrative and are not limited to this position in the present creation.
另外,液滴偵測元件203, 213,223,233設置於溶液釋 出閥3下方處,其主要用以偵測容器之液滴的情況 > 再透過 控制模組5紀錄其時間。在本實施例中,液滴偵測元件203, 2 13,22 3,2 3 3爲紅外線偵測器,其透過紅外線偵測是否有 溶液滴出,當然本發明並不以此方式爲限。至於,出液口 201,211,221,231則用以排出容器20,21,22,23內之溶液。 此外,再如圖中所示,四個溶液釋出閥3是分別組設於 四個容器20,21,22,23之出液口 201,211,221,231處,其用以 分別控制容器20,21,22,23內之溶液的釋出。在本實施例 中,溶液釋出閥3爲一電磁閥,其主要工作原理是利用電磁 線圈產生的電磁力的作用,進而控制開啓或關閉。當然, 本創作並不限於電磁閥,其亦可爲氣壓閥、油壓閥、或其 他等效裝置。 再者,圖中另顯示有一霧化模組4,是組設於溶液釋出 閥3下方。霧化模組4包括有一壓電陶瓷震盪器41、及一集 Λ M412807 液皿43。其中,集液皿43主要收集溶液釋出閥3流出的溶 液,並供壓電陶瓷震盪器41產生霧化。而壓電陶瓷震盪器 41組設於集液皿43下方,並直接接觸集液皿43所收集之溶 液,以利運轉霧化該溶液。本實施例便是利用壓電陶瓷震 盪器41之電子震盪原理,產生高頻率震波將液態分子結構 打散,並運用此方式將溶液震成極小的霧狀粒子,其霧化 - 過程中將釋放負離子。 . 其中,本實施例使用壓電陶瓷震盪器41除具較一般震 ® 盪器能產生更小之液體粒子、或更高強度或濃度的霧化效 果外,壓電陶瓷震盪器41更另具一優勢,其運轉時無須保 持有液體存在,也就是說不慎處於乾燒狀態時,並不會產 生高溫燒毀。當然,本創作亦可採用超音波震盪器、或其 他一般的震盪器,惟須特別注意,倘若使用超音波震盪器、 或其他一般的震盪器時,應避免乾燒,嚴重者將導致裝置 燒毀。In addition, the droplet detecting elements 203, 213, 223, 233 are disposed below the solution releasing valve 3, which is mainly used to detect the droplets of the container > and then record the time through the control module 5. In this embodiment, the liquid droplet detecting elements 203, 2, 22, 3, and 2 3 3 are infrared detectors, and the infrared rays are used to detect whether or not a solution is dripped. Of course, the present invention is not limited thereto. As for the liquid outlets 201, 211, 221, 231, the solution in the containers 20, 21, 22, 23 is discharged. In addition, as shown in the figure, the four solution release valves 3 are respectively disposed at the liquid outlets 201, 211, 221, 231 of the four containers 20, 21, 22, 23 for respectively controlling the containers. Release of the solution in 20, 21, 22, 23. In the present embodiment, the solution releasing valve 3 is a solenoid valve whose main working principle is to use the electromagnetic force generated by the electromagnetic coil to control the opening or closing. Of course, the creation is not limited to solenoid valves, but it can also be a pneumatic valve, a hydraulic valve, or the like. Furthermore, an atomization module 4 is shown in the figure and is disposed below the solution release valve 3. The atomization module 4 includes a piezoelectric ceramic oscillator 41 and a set of M412807 liquid vessels 43. Among them, the liquid collecting tank 43 mainly collects the solution flowing out of the solution releasing valve 3, and is atomized by the piezoelectric ceramic oscillator 41. The piezoelectric ceramic oscillator 41 is disposed under the liquid collection vessel 43 and directly contacts the solution collected by the liquid collection vessel 43 to facilitate the atomization of the solution. In this embodiment, the electronic oscillation principle of the piezoelectric ceramic oscillator 41 is utilized to generate a high-frequency seismic wave to break up the liquid molecular structure, and the solution is used to vibrate the solution into extremely small misty particles, which are released during the atomization process. Negative ions. In this embodiment, the piezoelectric ceramic oscillator 41 is further provided with a piezoelectric ceramic oscillator 41, in addition to a smaller atomic particle or a higher intensity or concentration atomization effect than a general vibration oscillator. An advantage is that it does not need to maintain the presence of liquid during operation, that is to say, when it is in a dry burning state, it does not cause high temperature burnout. Of course, this creation can also use ultrasonic oscillators or other general oscillators, but special attention should be paid. If ultrasonic oscillators or other general oscillators are used, dry burning should be avoided. In severe cases, the device will be burned. .
另外,圖中又顯示有四根導流管31,是分別連通四個 容器20,21,22,23之出液口 201,211,221,231處的溶液釋出閥 3與霧化模組4之集液皿4 3間。導流管3 1主要用以將自溶液 釋出閥3流出的溶液導流至集液皿43內。據此,容器 20,21,22,23無須設置於集液皿43正上方,可設於集液皿43 上方其他位置處,藉由溶液自身重力及導流管31的引導即 可。因爲倘若容器20,2 1,22,23設於集液皿43正上方將影響 霧化後的液體粒子的擴散流向。又,本實施例之霧化模組4In addition, four draft tubes 31 are shown in the figure, which are respectively connected to the solution release valve 3 and the atomization module 4 at the liquid outlets 201, 211, 221, 231 of the four containers 20, 21, 22, 23. 4 sets of liquid storage tanks. The draft tube 31 is mainly used to divert the solution flowing out of the solution releasing valve 3 into the collecting pan 43. Accordingly, the containers 20, 21, 22, 23 need not be disposed directly above the liquid collecting pan 43, and may be disposed at other positions above the liquid collecting pan 43, by the gravity of the solution itself and the guiding of the draft tube 31. This is because if the containers 20, 2 1, 22, 23 are placed directly above the collecting pan 43, the diffusion flow direction of the atomized liquid particles will be affected. Moreover, the atomization module 4 of the embodiment
A M412807 更包括有一風扇42,是組設於集液皿43下方之一側,用以 快速擴散經壓電陶瓷震盪器41霧化後的溶液粒子,達到更 佳的消毒殺菌、或芳香擴散功效。A M412807 further includes a fan 42 disposed on one side of the liquid collecting pan 43 for rapidly diffusing the solution particles atomized by the piezoelectric ceramic oscillator 41 to achieve better sterilization and aroma diffusion effect. .
再且,圖中另顯示有一控制模組5,是電性連接每一容 器之記億元件202,212,222, 232、液滴偵測元件203,213, 22 3, 2 3 3、每一容器之溶液釋出閥3、霧化模組4、顯示螢幕 6、輸入模組7、及電源模組5 2。其中,控制模組5控制讀取 每一容器之記憶元件202,2 12, 222,2 3 2內的第一剩餘容量 時間T,並控制液滴偵測元件203, 2 1 3, 223, 23 3偵測一液滴 時間。控制模組5運算將第一剩餘容量時間扣除液滴時間爲 一第二剩餘容量時間,並控制顯示螢幕6顯示第二剩餘容量 時間,並控制將第二剩餘容量時間儲存於記億元件202, 2 1 2, 2 2 2 , 2 3 2內。較佳的是,第二剩餘容量時間直接取代第一剩 餘容量時間T。此外,控制模組控制溶液釋出閥3開啓或關 閉、及霧化模組4啓動或關閉。 至於,顯示螢幕6除了用以顯示剩餘容量時間外,其他 相關資訊、及相關設定內容,諸如名稱、品牌或廠商、品 號或料號、保存期限及製造日期、功效或療效等其他備註 事項)、溶液的存量、啓動時間、強度、持續時間、或配方 顯示等亦可顯示於其上。當然,顯示螢幕6亦可爲一觸控螢 幕,同時擔任顯示、及輸入控制之任務。輸入模組7用以輸 入設定,諸如設定啓動時程、強度、持續時間、或設定配 方比例等。 Λ M412807 圖中另顯示有一遙控器71,是用以發射一無線訊號》 而控制模組5更包括有一無線訊號傳輸介面51。其中,無線 訊號傳輸介面51是接收遙控器71所發射之無線訊號,並傳 送記憶元件2 02, 212,222,232內的第二剩餘容量時間。另 外,本實施例可藉由遙控器71進行控制或設定。此外,遙 控器71包括有一顯示單元72,而遙控器71接收控制模組5 之無線訊號傳輸介面51所傳送的第二剩餘容量時間,並將 之顯示於顯示單元72。據此,不僅本機之指示單元6可顯示 霧化溶液之正確名稱或種類、及其剩餘容量外,透過無線 傳輸使得遙控器71上之顯示單元72亦可同步顯示相關資 訊。至於,電源模組52是用以提供電源,其可以是外接交 流電源、經整流之直流電源、或電池等。 同時,本實施例更包括有一記憶體8,其電性連接至控 制模組5。其中,記憶體8儲存有釋出閥啓動時間8 1、及釋 出閥開啓持續時間82。而控制模組5是根據釋出閥啓動時間Furthermore, a control module 5 is additionally shown in the figure, which is electrically connected to each container of the components 202, 212, 222, 232, droplet detecting elements 203, 213, 22 3, 2 3 3, each The solution release valve 3 of the container, the atomization module 4, the display screen 6, the input module 7, and the power module 52. The control module 5 controls the first remaining capacity time T in the memory elements 202, 2 12, 222, 2 3 2 of each container, and controls the droplet detecting elements 203, 2 1 3, 223, 23 3 detects a droplet time. The control module 5 calculates that the first remaining capacity time minus the drop time is a second remaining capacity time, and controls the display screen 6 to display the second remaining capacity time, and controls to store the second remaining capacity time in the remembered component 202. 2 1 2, 2 2 2 , 2 3 2 inside. Preferably, the second remaining capacity time directly replaces the first remaining capacity time T. In addition, the control module controls the solution release valve 3 to be opened or closed, and the atomization module 4 is activated or deactivated. As for the display screen 6, in addition to displaying the remaining capacity time, other related information, and related setting contents, such as name, brand or manufacturer, article number or item number, shelf life and date of manufacture, efficacy or efficacy, and other remarks) The solution stock, start-up time, strength, duration, or recipe display can also be displayed thereon. Of course, the display screen 6 can also be a touch screen, and at the same time serve as a display and input control task. The input module 7 is used to input settings such as setting the start time, intensity, duration, or setting the proportion of the recipe. Λ M412807 The figure further shows a remote controller 71 for transmitting a wireless signal, and the control module 5 further includes a wireless signal transmission interface 51. The wireless signal transmission interface 51 receives the wireless signal transmitted by the remote controller 71 and transmits the second remaining capacity time in the memory elements 02, 212, 222, 232. In addition, the present embodiment can be controlled or set by the remote controller 71. In addition, the remote controller 71 includes a display unit 72, and the remote controller 71 receives the second remaining capacity time transmitted by the wireless signal transmission interface 51 of the control module 5 and displays it on the display unit 72. Accordingly, not only the pointing unit 6 of the unit can display the correct name or type of the atomized solution, but also the remaining capacity thereof, the display unit 72 on the remote controller 71 can also simultaneously display the related information through wireless transmission. As for the power module 52, it is used to provide power, which may be an external AC power source, a rectified DC power source, or a battery. In the meantime, the embodiment further includes a memory 8 electrically connected to the control module 5. The memory 8 stores a release valve activation time 81 and a release valve opening duration 82. The control module 5 is based on the release valve start time
8 1、及釋出閥開啓持續時間82控制溶液釋出閥3。再者,釋 出閥啓動時間8 1可以是溶液釋出閥3啓動時程的儲存設 定,而釋出閥開啓持續時間82控制可以是溶液釋出閥3開啓 持續時間的儲存設定。 據此,本實施例中,透過控制模組5可達成如下控制功 能:一、控制溶液釋出閥3以進一步控制容器20,21,22,2 3 內之溶液釋出。亦即,如上述透過預先儲存之釋出閥啓動 時間8 1、及釋出閥開啓持續時間82,可進行控制欲霧化之 -10- 4 M412807 成份及其比重,例如控制容器20與容器23分別釋出20CC、 及5 C C。二、控制霧化強度' 或濃度,亦即控制壓電陶瓷 震盪器41的功率大小,使之產生的霧化效果不同。三、啓 動時程之控制,透過控制溶液釋出閥3、及壓電陶瓷震盪器 4 1可進行啓動時程之控制,例如每天早上十點開啓運轉, 且運轉一小時等類似之時程設定。因此,本實施例透過運 先設定儲存後,可達到完全自動,包括何時啓動運轉、運 轉強度或濃度、運轉持續時間、以及霧化的成份、及其比 例等。此外,又可透過顯示螢幕6、或遙控器71上的顯示單 元7 2得知所有溶液的相關資訊、及其剩餘量。 上述實施例僅係爲了方便說明而舉例而已,本創作所 主張之權利範圍自應以申請專利範圍所述爲準,而非僅限 於上述實施例。 【圖式簡單說明】8 1. The release valve opening duration 82 controls the solution release valve 3. Further, the release valve start time 8 1 may be a storage setting of the solution release valve 3 start time period, and the release valve open duration 82 control may be a storage setting of the solution release valve 3 open duration. Accordingly, in the present embodiment, the following control functions can be achieved through the control module 5: 1. The solution release valve 3 is controlled to further control the release of the solution in the containers 20, 21, 22, 2 3 . That is, as described above, the pre-stored release valve activation time 81 and the release valve opening duration 82 can be used to control the composition of the -10-4 M412807 to be atomized and its specific gravity, for example, the control container 20 and the container 23 Release 20CC, and 5 CC respectively. Second, control the atomization intensity ' or concentration, that is, control the power of the piezoelectric ceramic oscillator 41 to make the atomization effect different. Third, the start time control, through the control solution release valve 3, and the piezoelectric ceramic oscillator 4 1 can be controlled by the start time, for example, every day at 10 o'clock to open the operation, and run for one hour, and so on. . Therefore, in the present embodiment, after the storage is set, the automatic operation can be achieved, including when the operation is started, the running strength or concentration, the running duration, and the atomized components, and their proportions. Further, information on all the solutions and the remaining amount thereof can be known through the display screen 6, or the display unit 7 2 on the remote controller 71. The above-described embodiments are merely examples for convenience of description, and the scope of the claims is intended to be based on the scope of the patent application, and is not limited to the above embodiments. [Simple description of the map]
圖1係習知霧化裝置 圖2係本創作一較佳 圖3係本創作一較佳 【主要元件符號說明 20,21,22,23 201.211.221.231 202.212.222.232 203.213.223.233 之示意圖。 實施例之立體圖。 實施例之系統架構圖。 】 容器 出液口 記憶元件 液滴偵測元件 溶液釋出閥 -11 - M412807Fig. 1 is a conventional atomizing device. Fig. 2 is a preferred embodiment of the present invention. Fig. 3 is a preferred embodiment of the present invention. [Main element symbol description 20, 21, 22, 23 201.211.221.231 202.212.222.232 203.213.223.233. A perspective view of an embodiment. System architecture diagram of an embodiment. 】 Container Outlet Memory Element Drop Detection Element Solution Release Valve -11 - M412807
3 1 導 流 管 4 霧 化 模 組 4 1 壓 電 陶 瓷 震 盪 器 42 風 扇 43 集 液 皿 5 控 制 模 組 5 1 Arrr 撕 線 訊 傳 輸 介 面 52 電 源 模 組 6 顯 示 螢 幕 7 輸 入 模 組 7 1 遙 控 器 72 顯 示 單 元 8 記 憶 體 8 1 釋 出 閥 啓 動 時 間 82 釋 出 閥 開 啓 持 續 時間 9 霧 化 裝 置 9 1 棺 油 Μ 92 超 波 震 盪 器 T 溶 液 資 訊 -12-3 1 Diversion tube 4 Atomization module 4 1 Piezoelectric ceramic oscillator 42 Fan 43 Liquid collection tank 5 Control module 5 1 Arrr tearing transmission interface 52 Power module 6 Display screen 7 Input module 7 1 Remote control 72 Display unit 8 Memory 8 1 Release valve start time 82 Release valve open duration 9 Atomizer 9 1 Oil Μ 92 Ultrawave oscillator T Solution information-12-
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| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN113145376A (en) * | 2021-05-24 | 2021-07-23 | 深圳市帝拓电子有限公司 | Transverse wave type high-frequency atomization method and transverse wave atomization structure |
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| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN113145376A (en) * | 2021-05-24 | 2021-07-23 | 深圳市帝拓电子有限公司 | Transverse wave type high-frequency atomization method and transverse wave atomization structure |
| CN113145376B (en) * | 2021-05-24 | 2025-10-24 | 深圳市帝拓电子有限公司 | Shear wave high frequency atomization method and shear wave atomization structure |
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