資料介紹
描述
首先讓我告訴你,我們人類有幸擁有迄今為止發現或發明的技術,我們需要永遠采用它。
在您的安卓移動設備中安裝應用程序“UVC 消毒設備”。以前,必須啟用 Android 設備才能安裝來自未知來源的應用程序。將 UVC 消毒設備插入電網。綠色 LED 將亮起
執行之前安裝在您的移動設備上的應用程序。
通過藍牙連接UVC消毒設備。建立連接后,藍色 LED 將亮起。
選擇輻射時間,您可以手動設置時間或從下拉菜單中選擇。
單擊“激活”按鈕。該應用程序將 UVC 設備的資產顯示為“已激活”。紅色 LED 將亮起并開始閃爍。此燈會伴隨蜂鳴器發出幾聲短促的嗶嗶聲。在最后一聲較長的嗶聲后,UVC 燈將打開。只要 UVC 燈正常工作,紅色 LED 將從閃爍切換為持續亮起。
該應用程序將在編程時間完成后關閉設備。該應用程序會將設備的資產顯示為“未激活”,并且紅燈將關閉。或者,可以通過單擊“停止”按鈕關閉設備。單擊“重置”按鈕可以重置計時器。
劑量參考表顯示了消毒高達 99.9% 的不同種類微生物所需的 UVC 劑量參考值。
單擊“退出”按鈕退出應用程序。藍色 LED 將關閉。
?
The main use of this sanitizer is to reduce or eliminate a wide range of microorganisms existing in a specific area. The reference values for dosage are provided to allow the user estimation of the minimum exposure time that needs to be used. These values are only indicative, and therefore, the optimal exposure time should be determined experimentally according to the needs. The dosages values indicated in reference??can be used to estimate the required exposure time according to the following simplified method: The UV-C dosage received by surface unit (D, expressed in J/cm2) at a given distance (r) from the sanitizer, depends on the power of the emitted UV-C light (P, equal to 8?W for our device) according to this equation: (1) D=(P.t)/(2π.L.r) where L is the length of the UV-C lamps (30?cm) and t is the exposure time expressed in seconds. Based on this equation, the exposure time can be calculated as follows: (2) t=(2π.L.r.D)/P Using this method, a tool to estimate the minimum exposure time to reach the desired dosage for a certain distance from the device (Fig. 5b) was developed and is available in the initial screen of the app controlling the device.
?
希望你覺得這令人興奮。如果您對此感興趣,請繼續關注此空間以獲取更多詳細信息
設計階段
謝謝你。
注意:如果我們需要更多信息,請與我聯系。
參考
[1]
?
D.J.?Weber, ?H.?Kanamori, ?W.A.?Rutala ‘No touch’ technologies for environmental decontamination: focus on ultraviolet devices and hydrogen peroxide systems Curr. Opin. Infect. Dis., ?29?(4)?(2016), pp.?424-431 View Record in ScopusGoogle Scholar [2] N.?Mahida, ?N.?Vaughan, ?T.?Boswell First UK evaluation of an automated ultraviolet-C room decontamination device (Tru-D?) J. Hosp. Infect., ?84?(4)?(2013), pp.?332-335 ArticleDownload PDFView Record in ScopusGoogle Scholar [3] A.?Beal, ?N.?Mahida, ?K.?Staniforth, ?N.?Vaughan, ?M.?Clarke, ?T.?Boswell First UK trial of Xenex PX-UV, an automated ultraviolet room decontamination device in a clinical haematology and bone marrow transplantation unit J. Hospital Infect., ?93?(2)?(2016), pp.?164-168 ArticleDownload PDFView Record in ScopusGoogle Scholar [4] M.M.?Nerandzic, ?J.L.?Cadnum, ?M.J.?Pultz, ?C.J.?Donskey Evaluation of an automated ultraviolet radiation device for decontamination of Clostridium difficile and other healthcare-associated pathogens in hospital rooms BMC Infect. Dis., ?10?(1)?(2010) Google Scholar [5] J.C.?Chang, ?et al. UV inactivation of pathogenic and indicator microorganisms Appl. Environ. Microbiol., ?49?(6)?(1985), pp.?1361-1365 CrossRefView Record in ScopusGoogle Scholar [6] T.A.?Conner-Kerr, ?P.K.?Sullivan, ?J.?Gaillard, ?M.E.?Franklin, ?R.M.?Jones The effects of ultraviolet radiation on antibiotic-resistant bacteria in vitro Ostomy Wound Manage., ?44?(10)?(1998), pp.?50-56 View Record in ScopusGoogle Scholar [7] S.I.?Ahmad?(Ed.), ?Ultraviolet Light in Human Health, Diseases and Environment, ?vol. 996, ?Springer International Publishing, ?Cham?(2017) [8] A.?Downes, ?T.P.?Blunt On the influence of light upon protoplasm Proc. R. Soc. London, ?28?(190–195)?(1878), pp.?199-212 View Record in ScopusGoogle Scholar [9] P.?G?tzsche Niels Finsen’s treatment for lupus vulgaris J. R. Soc. Med., ?104?(1)?(Jan. 2011), pp.?41-42 CrossRefView Record in ScopusGoogle Scholar [10] E.A.?Nardell, ?et al. Safety of upper-room ultraviolet germicidal air disinfection for room occupants: results from the tuberculosis ultraviolet shelter study Public Health Rep., ?123?(1)?(2008), pp.?52-60 CrossRefView Record in ScopusGoogle Scholar [11] R.M.?Ryan, ?G.E.?Wilding, ?R.J.?Wynn, ?R.C.?Welliver, ?B.A.?Holm, ?C.L.?Leach Effect of enhanced ultraviolet germicidal irradiation in the heating ventilation and air conditioning system on ventilator-associated pneumonia in a neonatal intensive care unit J. Perinatol., ?31?(9)?(2011), pp.?607-614 CrossRefView Record in ScopusGoogle Scholar [12] G.?Messina, ?S.?Burgassi, ?D.?Messina, ?V.?Montagnani, ?G.?Cevenini A new UV-LED device for automatic disinfection of stethoscope membranes Am. J. Infect. Control, ?43?(10)?(2015), pp.?e61-e66 ArticleDownload PDFView Record in ScopusGoogle Scholar [13] M.U.?Owens, ?D.R.?Deal, ?M.O.?Shoemaker, ?G.B.?Knudson, ?E.?Janet, ?J.L.?Deal High-dose ultraviolet C light inactivates spores of Bacillus subtilis var. niger and Bacillus anthracis sterne on non-reflective surfaces Area, ?10?(November)?(2005), pp.?1-6 CrossRefGoogle Scholar [14] R.L.?Riley, ?E.A.?Nardell Clearing the air: the theory and application of ultraviolet air disinfection Am. Rev. Respiratory Dis., ?139?(5)?(1989), pp.?1286-1294 CrossRefView Record in ScopusGoogle Scholar [15] Arduino, https://www.arduino.cc. Google Scholar [16] J.M.?Pearce Chapter 1 – Introduction to open-source hardware for science Open-Source Lab, ?Elsevier, ?Boston?(2014), pp.?1-11 ArticleDownload PDFView Record in ScopusGoogle Scholar [17] MIT App Inventor 2, http://ai2.appinventor.mit.edu/. Google Scholar [18] “Light Sources Inc and American Ultraviolet Company. UV irradiation dosage table.” [Online]. Available: http://www.americanairandwater.com/uv-facts/uvdosage.htm. Google Scholar [19] “ClorDISys Company. UV irradiation dosage table.” [Online]. Available: http://www.clordisys.com/pdfs/misc/UV Data Sheet.pdf. Google Scholar [20] K.C.?Dhankani, ?J.M.?Pearce Open source laboratory sample rotator mixer and shaker HardwareX, ?1?(2017), pp.?1-12 ArticleDownload PDFView Record in ScopusGoogle Scholar [21] “UV-C lamps, Phillips TUV-T8 special lamps family.” [Online]. Available: http://www.lighting.philips.com/main/prof/conventional-lamps-and-tubes/special-lamps/purificationwater-and-air/commercial-and-professional-air/tuv-t8. Google Scholar [22] Teamviewer, https://www.teamviewer.com/.
?
?
- 電暈消毒紫外線機器人開源分享
- 使用UVC和垃圾場材料的自主消毒機器人
- Pinaka:UVD(紫外線消毒)機器人開源分享
- LIDIA光消毒機開源分享
- UV-C消毒機器人開源分享
- 全自動UV-C消毒機器人開源分享
- 紫外線消毒機器人
- 消毒機器人開源項目
- Roboboi智能紫外線消毒機器人
- Amabie消毒機器人開源分享
- 自主UVC消毒機器人開源
- 低成本機器人消毒系統開源分享
- 紫外線燈消毒機器人開源分享
- 自動地板消毒機器人
- 瞳步消毒機器人方案
- 字節發布機器人領域首個開源視覺-語言操作大模型,激發開源VLMs更大潛能 562次閱讀
- 機器人技術中常用的路徑規劃算法的開源庫 1188次閱讀
- VASS 標準機器人的附加功能 874次閱讀
- 鑄造機器人是什么?選擇工業機器人應該考慮的方向 1186次閱讀
- 面對疫情 醫療機器人能幫上什么忙? 2236次閱讀
- dfrobotSparki機器人套裝簡介 2207次閱讀
- 工業機器人編程入門_工業機器人的編程要求 9787次閱讀
- 醫用機器人的定義_醫用機器人發展 3257次閱讀
- 醫用機器人的功能_醫用機器人分類 2462次閱讀
- 協作機器人的起源_為什么需要協作機器人 8322次閱讀
- 揭開關于機器人自主移動的神秘面紗 3093次閱讀
- 機器視覺的機器人取代四臺傳統的火焰處理機器人 3370次閱讀
- 如何區分機器人、協作機器人和移動機器人? 7029次閱讀
- 軟體機器人 前所未見的機器人 3770次閱讀
- 機器人的最佳編程語言是什么?機器人十大流行編程語言匯總 3.5w次閱讀
下載排行
本周
- 1山景DSP芯片AP8248A2數據手冊
- 1.06 MB | 532次下載 | 免費
- 2RK3399完整板原理圖(支持平板,盒子VR)
- 3.28 MB | 339次下載 | 免費
- 3TC358743XBG評估板參考手冊
- 1.36 MB | 330次下載 | 免費
- 4DFM軟件使用教程
- 0.84 MB | 295次下載 | 免費
- 5元宇宙深度解析—未來的未來-風口還是泡沫
- 6.40 MB | 227次下載 | 免費
- 6迪文DGUS開發指南
- 31.67 MB | 194次下載 | 免費
- 7元宇宙底層硬件系列報告
- 13.42 MB | 182次下載 | 免費
- 8FP5207XR-G1中文應用手冊
- 1.09 MB | 178次下載 | 免費
本月
- 1OrCAD10.5下載OrCAD10.5中文版軟件
- 0.00 MB | 234315次下載 | 免費
- 2555集成電路應用800例(新編版)
- 0.00 MB | 33566次下載 | 免費
- 3接口電路圖大全
- 未知 | 30323次下載 | 免費
- 4開關電源設計實例指南
- 未知 | 21549次下載 | 免費
- 5電氣工程師手冊免費下載(新編第二版pdf電子書)
- 0.00 MB | 15349次下載 | 免費
- 6數字電路基礎pdf(下載)
- 未知 | 13750次下載 | 免費
- 7電子制作實例集錦 下載
- 未知 | 8113次下載 | 免費
- 8《LED驅動電路設計》 溫德爾著
- 0.00 MB | 6656次下載 | 免費
總榜
- 1matlab軟件下載入口
- 未知 | 935054次下載 | 免費
- 2protel99se軟件下載(可英文版轉中文版)
- 78.1 MB | 537798次下載 | 免費
- 3MATLAB 7.1 下載 (含軟件介紹)
- 未知 | 420027次下載 | 免費
- 4OrCAD10.5下載OrCAD10.5中文版軟件
- 0.00 MB | 234315次下載 | 免費
- 5Altium DXP2002下載入口
- 未知 | 233046次下載 | 免費
- 6電路仿真軟件multisim 10.0免費下載
- 340992 | 191187次下載 | 免費
- 7十天學會AVR單片機與C語言視頻教程 下載
- 158M | 183279次下載 | 免費
- 8proe5.0野火版下載(中文版免費下載)
- 未知 | 138040次下載 | 免費
評論
查看更多