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14.4v 2600mAh Baturi Mai jituwa Mai jituwa tare da Eufy RoboVac 11, 11S, 11S MAX, 11S PLUS, 12, 15C, 15C MAX, 15T, 25C, 30, 30C MAX, 35C

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14.4v 2600mAh Baturi Mai jituwa Mai jituwa tare da Eufy RoboVac 11, 11S, 11S MAX, 11S PLUS, 12, 15C, 15C MAX, 15T, 25C, 30, 30C MAX, 35C

 

Girman jigilar kayayyaki na shekara-shekara na raka'a 300000, tabbacin inganci mai ƙarfi

Tsawon lokacin aiki

Ƙara ƙirar tef ɗin hannu.

Yi amfani da waya mai laushi da sassauƙa, sanya fakitin baturi sauƙi don shigarwa

Matosai masu riƙe wuta, ƙarin aminci

    Bayanin samfur

    14s9q1484 j144zv

    Ƙayyadaddun baturi:

    Ƙarfin baturi

    2600mAh

    Wutar Batir

    14.4V

    Nau'in Baturi

    Lithium ion

    Launi

    Green ko Blue

    Girma

    70 x 40 x 38mm

    Nauyi

    200 g

    Kunshin sun haɗa da

    1 * 14.4V 2600mAh Baturi + 1 * Manual a cikin akwatin ciki, sa'an nan kwalaye shirya a cikin akwatin kwali

    FAQ

    tarihin fm (1) sfvtarihin fm (2)4cifm tarihi (3) byx

    Q: Menene tarihin batirin lithium ion?
    A: An ƙirƙiri batirin lithium-ion a cikin 1970, Stanley Whittingham, wanda ya yi aiki da wayar tafi da gidanka ta Exxon, ya fara aiki akan baturin da zai yi sauri. Ya yi baturi, amma a gwajin farko, an samu wuta saboda ya yi baturi ta amfani da lithium da titanium. An yi wani ɗan gajeren kewayawa kuma gobara ta tashi. Bayan yunƙurin sa batir ɗin ya kasance mai aminci don amfani da shi, ya daina gwajin.
    An ci gaba da aikin Stanley Whittingham a cikin 1980 ta John B. Goodenough, injiniya a Jami'ar Texas a Austin. Maimakon lithium da titanium, ya yi hadaddiyar sinadarin lithium cobalt oxide, abin mamaki, ya ninka karfin baturi da karfinsa yayin da ya sa ya fi aminci amfani.
    Bayan ƴan shekaru, wani injiniya kuma masanin kimiyya ya yanke shawarar ƙoƙarin ingantawa da haɓaka batirin lithium. Sunansa Akira Yoshino sannan ya yi aiki a jami'ar Meijo da ke Nagoya a kasar Japan. Maimakon lithium a matsayin anode, ya yi amfani da coke na man fetur kuma ya yi baturi wanda ya fi aminci kuma yana da ƙarfin aiki. Haƙiƙa ita ce samfurin farko na batirin lithium-ion.
    Idan ba don waɗannan binciken guda uku ba, da ba za mu sami batir lithium-ion ba kamar yadda suke a halin yanzu. Waɗannan batura suna sarrafa wayoyin hannu masu daraja, na'urorin dafa abinci da na gida, kayan aikin wuta, kwamfyutocin tafi-da-gidanka, motocin lantarki irin su babur, kekuna, babura da motoci.
    Abin farin ciki, bincike da haɓaka baturin lithium-ion bai tsaya ba. Ya zama dole don sanya irin wannan baturi ya fi aminci don amfani da ƙara ƙarfin ƙarfinsa.
    Godiya ga microscopy da spectrometry na lantarki, masana kimiyya sun sami damar ƙirƙirar hotuna na 2D da 3D waɗanda za su iya yin nazarin baturin da aka yi zuwa yanzu da inganta shi cikin inganci, iya aiki, aminci har ma da aiki a duk yanayin yanayi. Masana kimiyya daga UC San Diego sun ƙara silicone zuwa baturin anode don kiyaye baturin a ƙananan zafi da zafi, da farko don amfani da motocin lantarki.