www.wikidata.uk-ua.nina.az
USB angl Universal Serial Bus abreviatura chitayetsya yu es bi ukr universalna poslidovna shina standart roz yemiv i kabeliv dlya peredachi danih do 40 Gbit c ta zhivlennya do 240 Vt nevelikih pristroyiv Simvol USBOriginalnij logotip USBNajposhirenishij USB tipu AUSB Tip VUSB Tip B miniKontakti shtekeriv USB 1 0 USB 2 0 1 Zhivlennya VBUS 5 V 2 Signal D 3 Signal D 4 Zhivlennya Metoyu stvorennya USB standartu ye krasha unifikaciya roz yemiv i kabeliv normuvannya vikoristannya energiyi stvorennya protokoliv obminu danimi unifikaciya funkcionalnosti i drajveriv priladiv mozhlivist garyachogo priyednannya ta yak pravilo i vid yednannya pristroyiv Zmist 1 Zagalni vidomosti 2 Shina 3 Konstruktivni osoblivosti 3 1 Obmezhennya kilkosti pristroyiv 3 2 Perevagi USB 4 USB 1 0 4 1 USB 1 1 5 USB 2 0 5 1 USB OTG 5 2 Bezdrotovij USB 6 USB 3 0 6 1 USB 3 1 6 2 USB 3 2 7 USB4 8 Tipi konektoriv 9 Elektrozhivlennya 9 1 USB Battery Charging 9 2 USB Power Delivery USB PD 9 2 1 USB PD 1 0 9 2 2 USB PD 2 0 9 2 3 USB PD 3 0 9 2 4 USB PD 3 1 9 2 5 USB PD PPS 9 3 Nestandartni rishennya 9 3 1 Qualcomm Quick Charge QC 9 3 2 MediaTek Pump Express MTK PE 9 3 3 PoweredUSB 9 4 USB PowerShare 9 5 Tipi kabeliv 9 6 Posilannya 10 Div takozh 11 Dzherela 12 PosilannyaZagalni vidomosti RedaguvatiStandart USB rozrobili sim kompanij Compaq Digital Equipment IBM Intel Microsoft NEC i Northern Telecom Z listopada 1994 do listopada 1995 roku bulo anonsovano kilka versij protokolu USB 0 7 0 8 0 9 0 99 1 0 Release Candidate Vlitku 1996 roku na rinku z yavilisya pershi komp yuteri z portami USB Simvolom USB ye chotiri geometrichni figuri kvadrat trikutnik velike kolo ta male kolo Shina RedaguvatiShina USB poslidovnij interfejs peredavannya danih dlya seredno ta nizko shvidkisnih periferijnih pristroyiv Dlya visokoshvidkisnih pristroyiv krashoyu vvazhalasya shina FireWire hocha z vipuskom pristroyiv na bazi USB 3 0 ce stalo nebezsumnivnim Konstruktivni osoblivosti RedaguvatiUSB kabel ce po suti dvi zviti pari odniyeyu z nih peredayutsya dani v kozhnomu napryamku diferencialne vklyuchennya a insha vikoristovuyetsya dlya zhivlennya periferijnogo pristroyu 5 V 500 mA Vbudovani liniyi zhivlennya dozvolyayut vikoristovuvati USB pristroyi sho ne mayut vlasnogo bloku zhivlennya chi zaryadzhati akumulyatori perenosnih pristroyiv foto ta videokamer pleyeriv tosho yaksho ci pristroyi spozhivayut strum siloyu do 500 mA Standart USB 3 0 dopuskaye navantazhennya liniyi zhivlennya strumom do 900 mA Z yednannya USB kabelyami formuye interfejs mizh USB pristroyami ta USB hostom Yak host vikoristovuyetsya kerovanij z operacijnoyi sistemi USB kontroler do skladu yakogo vhodit USB koncentrator abo zh hab Cej hab ye vidpravnoyu tochkoyu v stvorenni lancyuzhka pristroyiv sho vidpovidayut vimogami topologiyi zirka za analogiyeyu topologiyi merezh Vin maye specialnu nazvu korenevij koncentrator Obmezhennya kilkosti pristroyiv Redaguvati Do roz yemiv jogo portiv pid yednuyetsya inshe USB priladdya ta zovnishni habi Zagalna yih kilkist ne mozhe perevishuvati 127 pristroyiv uvimknenih ne bilsh nizh u p yat kaskadiv ne rahuyuchi riven korenevogo habu Perevagi USB Redaguvati Konstrukciya USB konektoriv rozrahovana na garyache priyednannya ta vid yednannya pristroyiv do hostu vid nogo Ce zabezpecheno bilshoyu dovzhinoyu kontaktu zazemlennya GND proti inshih Vnaslidok cogo potenciali korpusiv virivnyuyutsya she do zamikannya signalnih kontaktiv a ce ubezpechuye elektroniku priladu vid poshkodzhennya statichnoyu elektrikoyu USB 1 0 RedaguvatiVersiya predstavlena v sichni 1995 roku Tehnichni harakteristiki visokoshvidkisne z yednannya 12 Mbit s maksimalna dovzhina kabelyu dlya visokoshvidkisnogo z yednannya 3 m nizkoshvidkisne z yednannya 1 5 Mbit s maksimalna dovzhina kabelyu dlya nizkoshvidkisnogo z yednannya 5 m maksimalna kilkist pristroyiv pidklyuchennya vrahovuyuchi koncentratori 127 mozhlive pidklyuchennya pristroyiv iz riznimi shvidkostyami obminu informaciyeyu napruga zhivlennya dlya periferijnih pristroyiv 5 V maksimalnij strum spozhivannya na odin pristrij 500 mAUSB 1 1 Redaguvati Vipushena u veresni 1998 Vipravleni problemi viyavleni u versiyi 1 0 v osnovnomu pov yazani z koncentratorami Persha masova versiya USB 2 0 Redaguvati nbsp Versiya USB 2 0 vipushena v kvitni 2000 roku vidriznyayetsya vid USB 1 1 lishe pidvishenoyu shvidkistyu peredachi ta neznachnimi zminami v protokoli peredachi danih dlya rezhimu Hi Speed 480 Mbit s Signali v 4 providnih kabelyah USB 1 0 USB 2 0 peredayutsya dvoma ekranovanimi provodami na 2 j ta 3 j kontakti shtekera Isnuye tri shvidkosti roboti pristroyiv USB 2 0 Low speed 10 1500 Kbit c vikoristovuyetsya dlya interaktivnih pristroyiv klaviaturi mishki igrovi kontroleri Full speed 0 5 12 Mbit s audio video pristroyi Hi speed 25 480 Mbit s video pristroyi pristroyi zberigannya informaciyi V dijsnosti zh hocha shvidkist USB 2 0 teoretichno j mozhe dosyagati 480Mbit s pristroyi tipu zhorstkih diskiv chi vzagali bud yaki inshi nosiyi informaciyi nikoli ne dosyagayut yiyi hocha j mogli b Ce mozhna poyasniti dovoli prosto shina USB maye dovoli veliku zatrimku mizh zapitom na peredachu informaciyi j samoyu peredacheyu danih dovgij ping Napriklad shina FireWire hocha j zabezpechuye maksimalnu shvidkist 400 Mbit s tobto na 80 Mbit s menshu nizh USB dozvolyaye dosyagti bilshoyi shvidkosti obminu danimi USB OTG Redaguvati Dokladnishe USB On The Go nbsp Tehnologiya USB On The Go rozshiryuye specifikaciyi USB 2 0 dlya legkogo z yednannya periferijnih USB pristroyiv bezposeredno mizh soboyu bez zadiyannya komp yutera Prikladom zastosuvannya ciyeyi tehnologiyi ye mozhlivist pidklyuchennya fotoaparata napryamu do printera Cej standart vinik cherez ob yektivnu potrebu nadijnogo z yednannya osoblivo poshirenih USB pristroyiv bez zastosuvannya komp yutera yakogo v potribnij moment mozhe j ne buti pid rukami Bezdrotovij USB Redaguvati Dokladnishe Wireless USBOficijna specifikaciya protokolu bula anonsovana v travni 2005 roku Dozvolyaye organizovuvati bezdrotovij zv yazok iz visokoyu shvidkistyu peredachi danih do 480 Mbit s na vidstani 3 metriv ta do 110 Mbit s na vidstani 10 metriv Dlya bezprovidnogo USB chasom vikoristovuyut abreviaturu WUSB Rozrobnik protokolu USB IF viddaye perevagu oficijnij nazvi protokolu Certified Wireless USB nbsp Micro B USB 3 0 shteker 1 Zhivlennya VBUS 5 V 2 USB 2 0 diferencialna zvita para D 3 USB 2 0 diferencialna para D 4 USB OTG ID identifikaciya liniyi 5 GND 6 USB 3 0 liniya peredachi signalu 7 USB 3 0 liniya peredachi signalu 8 GND DRAIN 9 USB 3 0 liniya prijmannya signalu 10 USB 3 0 liniya prijmannya signalu USB 3 0 RedaguvatiDokladnishe USB 3 0U listopadi 2008 roku robocha grupa USB 3 0 Promoter Group zayavila pro zavershennya robit nad specifikaciyeyu novogo visokoshvidkisnogo interfejsu USB 3 0 nazvanogo SuperSpeed USB USB 3 0 ye nastupnim etapom evolyuciyi tehnologiyi USB Novij interfejs zabezpechuye maksimalnu shvidkist peredachi danih v 10 raziv bilshu nizh USB 2 0 tobto 10 480 Mbit s 4 8 Gbit s Inshi vazhlivi vlastivosti pokrasheni pokazniki energoefektivnosti ta zbilshenij maksimalnij strum zhivlennya periferijnogo pristroyu do 900 mA Krim togo rozrobnikami zayavlena zvorotna sumisnist USB 3 0 iz poperednoyu versiyeyu USB 2 0 prichomu roz yemi novogo standartu prijnyato vidilyati sinim kolorom plastiku inkoli chervonim Dokladnishi vidomosti mozhna otrimati z opublikovanih specifikacij redakciya 1 0 Arhivovano 1 chervnya 2012 u WebCite Pidtrimka USB 3 0 proektom Linux zabezpechena z versiyi yadra 2 6 31 1 U Microsoft Windows 8 8 1 10 interfejs USB 3 0 pidtrimanij zasobami samoyi OS USB 3 1 Redaguvati Dokladnishe USB 3 0 USB 3 19 veresnya 2013 roku USB 3 0 Promoter Group opublikuvala specifikaciyi onovlenogo standartu USB 3 1 zi shvidkistyu peredachi do 10 Gbit s 2 angl Pislya vihodu standartu USB 3 1 organizaciya USB IF ogolosila sho roz yem USB 3 0 z shvidkistyu 5 Gbit s SuperSpeed teper budut klasifikuvatisya yak USB 3 1 Gen 1 a novi roz yemi USB 3 1 SuperSpeed USB 10Gbps yak USB 3 1 Gen 2 V USB 3 1 Gen 2 okrim zbilshennya shvidkosti do 10 Gbit s buli znizheni zatrimki koduvannya do 3 perehodom na shemu koduvannya 128b 132b USB 3 2 Redaguvati Dokladnishe USB 3 0 USB 3 2Onovlennya prineslo vdvichi bilshu shvidkist peredachi danih u porivnyanni z USB 3 1 zavdyaki dvom liniyam na 5 Gbit s abo 10 Gbit s tobto v rezultati 10 abo 20 Gbit s Suchasni kabeli USB C vzhe pidtrimuyut takij dvolinijnij rezhim tomu kupuvati novi kabeli ne dovedetsya USB4 RedaguvatiUSB4 ce novij standart interfejsu Forumu USB vikonavciv USB IF Specifikaciya chetvertoyi versiyi bula opublikovana 29 serpnya 2019 r 3 4 USB4 pidtrimuye visokoshvidkisni protokoli interfejsiv DisplayPort PCI Express i Thunderbolt 3 dlya efektivnoyi peredachi danih video z visokoyu rozdilnoyu zdatnistyu ta odnochasne elektrozhivlennya cherez odin kabel USB Type C USB4 proponuye shvidkist peredachi danih do 40 Gbit s sho vdvichi bilshe nizh u poperednogo standartu USB 3 2 Gen 2x2 5 Tipi konektoriv RedaguvatiViznacheni she specifikaciyeyu USB 1 0 dva tipi A na kinci kabelyu sho priyednuyetsya do komp yutera chi koncentratora haba V na inshomu kinci kabelyu priznachenomu dlya z yednannya z periferijnim pristroyem Zvichajnij Mini Micro Usb c type cTip A 4 12 mm nbsp 3 7 mm nbsp 2 7 mm nbsp Tip B 7 8 mm nbsp 3 7 mm nbsp 2 7 mm nbsp Cej rozdil potrebuye dopovnennya lipen 2013 USB roz yem tipu A najposhirenishij i najvidomishij iz ninishnih Bilshist pristroyiv sho pidklyuchayutsya cherez USB mayut same jogo Komp yuterna misha USB flesh nakopichuvach klaviatura foto j videokamera ta bagato inshih rechej osnasheni USB tipu A yakij bere svij pochatok she z 90 h Odna z najgolovnishih perevag cogo portu nadijnist Vin mozhe perezhiti dosit veliku kilkist pidklyuchen ne rozvalyuyetsya j dijsno zasluzhiv stati najposhirenishim zasobom pidklyuchennya vsogo chogo tilki mozhna Odnak dlya portativnih pristroyiv vin ne pidhodit tomu sho maye dosit veliki gabariti sho vreshti resht prizvelo do poyavi modifikacij z menshimi rozmirami Mini ta Micro USB roz yem tipu V najchastishe vikoristovuyetsya dlya priyednannya do komp yutera printeriv i skaneriv zridka inshih pristroyiv Rozrobleni takozh tipi Mini AB ta Micro AB dlya z yednannya cherez konektori vidpovidnogo rozmiru yak tipu A tak i tipu V Elektrozhivlennya RedaguvatiU standarti USB peredbachena mozhlivist postachannya pidklyuchenih pristroyiv nevelikoyu elektrichnoyu potuzhnistyu Spochatku standart USB 2 0 obmezhuvav maksimalnij spozhivanij pristroyem strum velichinoyu 0 5 A pri napruzi 5 V USB 3 0 zbilshiv maksimalnij strum do 0 9 A pri tij zhe napruzi Ci standarti dozvolyayut hostu kontrolyuvati spozhivannya pidklyuchenih do shini pristroyiv Dlya cogo v moment pidklyuchennya ta inicializaciyi pristrij povidomlyaye hostu svoyi energetichni potrebi Host ocinyuye energetichni mozhlivosti cogo segmentu merezhi i dozvolyaye abo zaboronyaye robotu pristroyu Namagayuchis standartizuvati zapiti energoyemnih pristroyiv USB IF u 2007 roci prijnyav specifikaciyu USB Battery Charging yaka v ramkah kabelnoyi infrastrukturi USB 2 0 3 0 dozvolyala zbilshiti spozhivanij pristroyem strum do 5 A 6 7 Piznishe bula prijnyata okrema specifikaciya USB Power Delivery yaka peredbachaye nabagato bilshu gnuchkist v upravlinni zhivlennyam USB Battery Charging Redaguvati nbsp Persha sproba standartizuvati pidvishene energospozhivannya gadzhetiv i dzherela zhivlennya z vihidnim roz yemom USB prizvela do poyavi specifikaciyi USB Battery Charging 8 Persha versiya vijshla v 2007 roci Aktualna versiya USB BC 1 2 opublikovana v 2010 roci Specifikaciya dozvolyala isnuvannya specialno poznachenih yak roz yemiv USB A z pidvishenoyu viddacheyu strumu do 1 5 A Protokol pochatkovogo konfiguruvannya USB dopovnyuvavsya mozhlivistyu domovitisya pro pidvishene energospozhivannya Kincevij pristrij mig zbilshiti spozhivannya strumu lishe pislya domovlenosti z hostom Takozh dozvolyalisya roz yemi USB A z ne pidklyuchenimi liniyami danih napriklad na zaryadnih pristroyah Taki zaryadni pristroyi identifikuvalisya gadzhetom po zamknutih mizh soboyu kontaktah D i D Takim zaryadnim pristroyam dozvolyalosya viddavati strum do 5 A Dlya malogabaritnih spozhivachiv elektroenergiyi specifikaciya rekomenduvala roz yem tipu MicroUSB B USB Power Delivery USB PD Redaguvati V novomu standarti USB Power Delivery koncepciya elektrozhivlennya bula znachno pereroblena 9 10 Teper rozrobniki yak hostu tak i pristroyiv sho do nogo pidklyuchalisya otrimali mozhlivist gnuchko upravlyati zhivlennyam cherez shinu USB Rishennya pro te hto ye dzherelom zhivlennya a hto jogo spozhivachem pro mozhlivosti dzherela zhivlennya ta kabelyu prijmayutsya v hodi dialogu mizh pristroyami po okremomu kanalu zv yazku Peredbachena mozhlivist sho v procesi dialogu pristrij mig vimagati a host pogoditisya na pidvishennya naprugi zhivlennya z metoyu peredachi po isnuyuchij kabelnij infrastrukturi bilshih potuzhnostej Pidvishena napruga vidavalasya hostom na provid zhivlennya Vusb Dlya sumisnosti zi starimi pristroyami host povertav naprugu do starogo znachennya 5 V yak tilki viyavlyav vid yednannya pristroyu Tehnologiya USB Power Delivery zabezpechuye peredachu energiyi potuzhnistyu do 100 Vt Cogo povinno vistachiti dlya bud yakih smartfoniv planshetiv ta inshih gadzhetiv Zavdyaki tehnologiyi z yavilasya mozhlivist zhiviti ta zaryadzhati vsi elektronni pristroyi za dopomogoyu zvichajnogo USB kabelyu pri comu dzherelom zhivlennya mozhe stati ne lishe blok zhivlennya zaryadnij pristrij a j smartfon noutbuk abo zovnishnij akumulyator 11 USB PD 1 0 Redaguvati Profili dzherela USB PD rev 1 12 Profil 5 V 12 V 20 V0 zarezervovano1 2 A ne vikor ne vikor 2 1 5 A3 3 A4 3 A5 5 A 5 AU 2012 roci predstavlena persha reviziya USB PD Vikoristovuvalasya standartna roz yemna i kabelna infrastruktura USB 2 0 i 3 0 Keruvannya zhivlennyam zdijsnyuvalosya shlyahom dialogu mizh spozhivachem i dzherelom zhivlennya po nezalezhnomu kanali zv yazku organizovanomu po provodu zhivlennya standartnogo USB kabelyu Vbus Vikoristovuvalasya chastotna modulyaciya z nesuchoyu chastotoyu 24 MGc USB PD 2 0 Redaguvati Profili dzherela USB PD rev 2 13 Potuzhnist dzherela Vt Strum A 5 V 9 V 15 V 20 V0 5 15 0 1 3 ne vikor ne vikor ne vikor 15 27 3 1 7 327 45 3 1 8 345 60 3 2 25 360 100 3 5Druga reviziya standartu vijshla v 2014 roci razom zi specifikaciyeyu USB 3 1 i priv yazana do novogo roz yemu USB Type C Zokrema teper dlya vidilenogo kanalu zv yazku mizh dzherelom zhivlennya i spozhivachem vikoristovuyetsya okremij provid v kabeli Configuration Channel Takozh pidtrimuyetsya viznachennya tipu kabelyu i jogo mozhlivostej peredachi potuzhnosti Dzherelo zhivlennya mensh zhorstko obmezhene vimogami profiliv nizh v pershij reviziyi standartu i maye mozhlivist bilsh gnuchko pidhoditi do viboru maksimalnogo strumu navantazhennya v zalezhnosti vid nayavnoyi v nogo potuzhnosti USB PD 3 0 Redaguvati U 2019 roci vijshla reviziya USB PD 3 0 Yiyi suttyeva vidminnist vizh USB PD 2 0 rezhim Programmable Power Supply koli spozhivach zapituye ne fiksovanu naprugu z pereliku 5 9 15 20 V a mozhe regulyuvati naprugu v diapazoni 3 3 21 V z krokom 20 mV Takozh spozhivach mozhe poprositi u dzherela obmezhiti strum z krokom u 50 mA USB PD 3 1 Redaguvati Vesnoyu 2021 roku vijshla reviziya USB PD 3 1 14 Suttyeva vidminnist rozdilennya rezhimiv na Standard Power Range sumisnij z USB PD 3 0 i Extended Power Range v yakomu mozhlivi naprugi 28 36 i 48 V Rezhim Programmable Power Supply zberezhenij lishe dlya Standard Power Range i ne pidtrimuyetsya v Extended Power Range Dlya otrimannya visokoyi regulovanoyi naprugi vvedenij rezhim Adjustable Voltage Supply kotrij dozvolyaye vstanoviti naprugu vid 15 do 48 V z krokom v 100 mV Takim chinom maksimalna peredavana potuzhnist dosyagla 240 Vt Dlya strumiv bilshe 3 A i naprug bilshe 20 V vimagayetsya vikoristannya specialnih kabeliv z vbudovanoyu mikroshemoyu identifikaciyi Dlya markuvannya kabeliv visokoyi potuzhnosti rozrobleni specialni logotipi 15 16 17 USB PD PPS Redaguvati Cej rozdil statti she ne napisano Vi mozhete dopomogti proyektu napisavshi jogo 15 bereznya 2023 Nestandartni rishennya Redaguvati Qualcomm Quick Charge QC Redaguvati Dokladnishe Quick Charge nbsp Zaryadni pristroyi standartu Qualcomm Quick Charge 2 0Qualcomm Quick Charge QC 18 19 nabir tehnologij kompaniyi Qualcomm dlya energopostachannya mobilnih gadzhetiv z akumulyatorami Vklyuchaye v sebe tehnologiyu peredachi pidvishenoyi potuzhnosti cherez kabelnu infrastrukturu z roz yemami USB ponad standartnih specifikacij USB Dlya maksimalnoyi efektivnosti i zaryadnij pristrij i gadzhet povinni pidtrimuvati specifikaciyu Quick Charge tehnologiyu dbajlivogo i shvidkogo zaryadu akumulyatoriv komplekt mikroshem dlya obslugovuvannya akumulyatora i elektrozhivlennya mobilnogo pristroyu V oficijnih specifikaciyah USB ye analog Quick Charge USB Power Delivery Nezvazhayuchi na ce standart Quick Charge otrimav dosit shiroke poshirennya zavdyaki pidtrimci jogo populyarnimi mobilnimi procesorami Qualcomm Snapdragon i dostupnosti mikrokontroleriv sho zabezpechuyut robotu zaryadnih pristroyiv po comu standartu Bulo vipusheno p yat sumisnih mizh soboyu versiyi standartu 20 21 22 Sumisnih oznachaye sho pri z yednanni gadzhetiv bud yakih versij standartu QC voni zmozhut domovitisya po protokolu najstarishoyi z versij Specifikaciyi zakriti sama tehnologiya ye licenzovanoyu tobto ye platnoyu dlya virobnikiv obladnannya MediaTek Pump Express MTK PE Redaguvati Tehnologiya shvidkogo zaryadzhannya rozroblena kompaniyeyu MediaTek 23 Stanom na 14 bereznya 2018 roku ostannoyu versiyeyu ciyeyi tehnologiyi ye Pump Express 4 0 24 Pochinayuchi z versiyi 3 0 tehnologiya sumisna z tehnologiyeyu USB Power Delivery 25 24 Cej rozdil potrebuye dopovnennya 15 bereznya 2023 PoweredUSB Redaguvati U 1999 roci grupa virobnikiv torgovogo ustatkuvannya prijnyala korporativnij standart za yakim roz yem USB osnashuvavsya dodatkovimi kontaktami z naprugoyu 5 12 abo 24 V i strumom do 6 A Ce rishennya ne bulo pidtrimano USB IF USB PowerShare Redaguvati Funkciya USB PowerShare dozvolyaye vikonuvati zaryadku pristroyiv USB chi yih zhivlennya vid takogo komp yutera chi noutbuka v yakogo vidklyuchene zhivlennya abo koli vin u rezhimi snu gibernaciyi tosho Yaksho roz yem USB pidtrimuye funkciyu PowerShare to poznachayetsya vin dodatkovo bliskavkoyu Tipi kabeliv Redaguvati Cej rozdil statti she ne napisano Vi mozhete dopomogti proyektu napisavshi jogo 15 serpnya 2020 Posilannya Redaguvati Bystraya zaryadka standarty osobennosti i problemy sovmestimosti arh 15 08 2020 Oleg Afonin blog elcomsoft ru 2018 25 aprelya Tehnologii bystroj zaryadki konec nerazberihe arh 15 08 2020 4pda ru 2017 12 marta Mediatek Pump Express Introduction cdn cw mediatek com 2016 Div takozh RedaguvatiUSB Mass Storage USB C RNDISDzherela Redaguvati Linuks pershim u sviti pidtrimuvatime USB 3 0 linux org ua 13 06 2009 Arhivovana kopiya Arhiv originalu za 13 serpnya 2014 Procitovano 9 listopada 2014 USB4 Specification USB IF USB Implementers Forum angl 29 serpnya 2019 Arhiv originalu za 12 serpnya 2021 Procitovano 4 veresnya 2019 USB4 USB IF www usb org Arhiv originalu za 24 listopada 2021 Procitovano 3 veresnya 2019 Morten Christensen Upgrade Your SoC Design to USB4 Arhivovano 4 serpnya 2020 u Wayback Machine Tipy zaryadnyh portov Arhiv originalu za 16 lipnya 2020 Procitovano 15 serpnya 2020 The Basics of USB Battery Charging A Survival Guide Arhiv originalu za 9 veresnya 2019 Procitovano 15 serpnya 2020 USB Battery Charging v1 2 nedostupne posilannya arh 28 03 2016 www usb org Data zvernennya 08 11 2016 Kak rabotaet Power Delivery Arhivovano 21 veresnya 2017 u Wayback Machine Habr 22 01 2013 Revolyuciya interfejsov USB 3 1 Type C v detalyah Vzglyad elektronshika Arhivovano 11 kvitnya 2018 u Wayback Machine Habr 18 05 2015 USB Power Delivery chto eto i kak rabotaet Evgeniya Korol AndroidLime ru 27 04 2018 Data zvernennya 06 05 2018 USB Power Delivery Specification 1 0 Introduction nedostupne posilannya arh 04 04 2016 USB IF www usb org 2012 16 July P 9 Data zvernennya 27 04 2016 USB Power Delivery Specification Revision 2 0 V1 2 25 March 2016 USB Implementers Forum Chapter 10 Power Rules P 489 Data zvernennya 09 04 2016 USB C Power Delivery Hits 240W with Extended Power Range arh 14 11 2021 Data zvernennya 23 02 2022 Predstavleny novye logotipy kabelej USB Type C sertificirovannyh po nominalnoj moshnosti arh 02 10 2021 Data zvernennya 02 10 2021 Na kabelyah i ustrojstvah s USB Type C teper budet ukazyvatsya ne tolko skorost peredachi dannyh no moshnost zaryadki arh 02 10 2021 Data zvernennya 02 10 2021 USB IF Announces New Certified USB Type C Cable Power Rating Logos arh 01 10 2021 Data zvernennya 02 10 2021 Setevoe zaryadnoe ustrojstvo CHUWI A 100 QC 3 0 iXBT com 21 03 2017 Vybor est bystrye zaryadki dlya smartfonov Quick Charge i Pump Express Natalya Rafalskaya 4pda ru 04 11 2017 Qualcomm Quick Charge chto eto i kak rabotaet tehnologiya bystroj zaryadki Arhiv originalu za 18 travnya 2021 Procitovano 12 veresnya 2020 Tehnologiya Qualcomm Quick Charge 4 uskorit zaryadku na 15 Arhiv originalu za 30 travnya 2020 Procitovano 12 veresnya 2020 How the ZTE Nubia Z17 Phone Draws Power from the BatPower PD6 Power Bank Through USB Power Delivery Arhiv originalu za 20 veresnya 2017 Procitovano 12 veresnya 2020 Bystraya zaryadka MediaTek Pump Express chto eto za tehnologiya i kak ona rabotaet mob mobile ru Data zvernennya 15 03 2023 a b Charge with Confidence Pump Express 4 0 www mediatek com 14 03 2018 Mediatek Pump Express Introduction p 25 Posilannya RedaguvatiOficijnij sajt USB Implementers Forum Inc Arhivovano 25 sichnya 2006 u Wayback Machine mistit specifikaciyu USB 2 0 Arhivovano 1 chervnya 2012 u WebCite angl USB4 vse tot zhe USB RaccoonSecurity Habr 2020 7 sentyabrya ros Otrimano z https uk wikipedia org w index php title USB amp oldid 40368160