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14.4v 2600mAh baytari la jaan qaadaya Eufy RoboVac 11, 11S, 11S MAX, 11S PLUS, 12, 15C, 15C MAX, 15T, 25C, 30, 30C MAX, 35C
Sharaxaada Alaabta



Tilmaamaha Batteriga:
| Awoodda baytari | 2600mAh |
| Voltage Battery | 14.4V |
| Nooca baytari | Lithium ion |
| Midabka | Cagaar ama Buluug |
| Cabirka | 70 x 40 x 38mm |
| Miisaanka | 200g |
Xidhmada waxaa ka mid ah
1 * 14.4V 2600mAh Battery + 1 * Buug ku jira sanduuqa gudaha, ka dibna sanduuqyada ku xidh sanduuqa kartoon
FAQ


S: Waa maxay taariikhda baytari lithium ion?
A: Batariyada Lithium-ion ayaa la sameeyay 1970-kii, Stanley Whittingham, oo markaas u shaqaynayey Exxon mobile, waxa uu bilaabay in uu ku shaqeeyo baytari si degdeg ah u dallaci doona. Waxa uu sameeyay baytari, laakiin tijaabadii ugu horaysay waxa ka dhashay dab, sababtoo ah waxa uu sameeyay baytari isaga oo isticmaalaya lithium iyo titanium. Wareeg gaaban ayaa dhacay oo dab ayaa kacay. Ka dib markii uu isku dayay in uu batteriga ka dhigo mid badbaado leh oo la isticmaalo, wuu ka tanaasulay tijaabada.
Shaqada Stanley Whittingham waxa sii waday 1980 kii John B. Goodenough, oo ah injineer ka tirsan Jaamacadda Texas ee Austin. Halkii lithium iyo titanium, wuxuu sameeyay isku-darka lithium cobalt oxide, si la yaab leh, wuxuu labanlaabay awoodda iyo awoodda baytariga isagoo ka dhigaya mid ammaan ah in la isticmaalo.
Dhowr sano ka dib, injineer kale iyo saynisyahano ayaa go'aansaday in ay isku dayaan hagaajinta iyo cusboonaysiinta baytariga lithium. Magaciisu waa Akira Yoshino, ka dibna wuxuu ka shaqeeyay Jaamacadda Meijo ee Nagoya, Japan. Halkii uu lithium ka ahaan lahaa anode, waxa uu isticmaalay petroleum coke oo uu sameeyay baytari ka sii badbaado badan oo awood badan leh. Dhab ahaantii waxay ahayd nooca ugu horreeya ee baytari lithium-ion ah.
Haddaysan ahayn saddexdan sahan, ma haysan lahayn baytariyada lithium-ion sida ay hadda yihiin. Baytariyadani waxay ku shaqaynayaan moobilada qaaliga ah, kushiinka iyo aaladaha wireless-ka guriga, qalabka korontada, laptop-yada, baabuurta korontada sida mootooyinka, baaskiiladaha, mootooyinka iyo baabuurta.
Nasiib wanaag, cilmi baarista iyo horumarinta baytariga lithium-ion ma joogsan. Waxay ahayd lagama maarmaan in la sameeyo batteriga noocaas ah xitaa ka badbaado isticmaalka iyo kordhinta awoodda tamarta.
Thanks to microscopy elektarooniga ah iyo spectrometry, saynisyahannadu waxay awoodeen inay abuuraan sawirro 2D iyo 3D kuwaas oo ay ku baran karaan baytariga ilaa hadda la sameeyay oo ay ku wanaajiyaan tayada, awoodda, badbaadada iyo xitaa ka shaqeynta dhammaan xaaladaha cimilada. Saynis yahano ka socda UC San Diego ayaa ku daray silikoon batari anode ah si uu batteriga ugu shaqeeyo heerkul hoose iyo mid sare, ugu horrayn isticmaalka baabuurta korontada.















