
| Yankunan Aikace-aikace | Nau'in Capacitor | Hoto | Zaɓin da aka ba da shawarar |
| Motherboard na Sabar | Capacitor mai ƙarfi na aluminum electrolytic mai yawan Layer polymer | ![]() | MPS,MPD19,MPD28,MPU41 |
| Masu amfani da wutar lantarki na tantalum electrolytic polymer | ![]() | TPB19,TPD19,TPD40 | |
| Ƙarfin wutar lantarki mai ƙarfi na aluminum mai ƙarfi | ![]() | VPC,VPW | |
![]() | NPC |
Domin tabbatar da ingantaccen aiki na sabar a ƙarƙashin yanayi mai yawa, uwa-uba suna buƙatar capacitors masu ƙarancin ESR, aminci mai yawa, juriya ga zafi, da tsawon rai.
- Masu Ƙarfin Ƙarfin Aluminum Mai Tsari Mai Ƙarfin ...: Suna da ƙarancin ESR na 3mΩ, waɗannan capacitors suna taimakawa rage asarar makamashi yayin canza wutar lantarki, don haka inganta ingancin wutar lantarki. Capacitors masu tarin yawa suna tace hayaniya da hayaniya daga wutar lantarki yadda ya kamata, suna samar da tushen wutar lantarki mai tsabta da kwanciyar hankali ga uwayen uwar garken.
- Masu amfani da na'urar Tantalum mai sarrafa sinadarai: An san su da saurin amsawar mitar su, waɗannan capacitors sun dace da adana makamashi da tacewa a cikin da'irori masu yawan mita. Suna taimakawa rage tasirin hayaniyar mitar mai yawa akan da'irar, suna haɓaka daidaiton watsa bayanai da kwanciyar hankali.
- Masu haɗakar Aluminum Mai ƙarfi da ƙarfin lantarki: Tare da ƙarancin ESR, waɗannan capacitors suna amsawa da sauri ga buƙatun yanzu daga sassan uwar garken, suna tabbatar da ingantaccen fitarwa yayin canjin kaya. Ƙaramin ESR kuma yana rage asarar wutar lantarki kuma yana haɓaka ingancin canza wutar lantarki, yana tallafawa aiki mai ɗorewa da babban aiki na sabar a cikin yanayin da ke da babban kaya.
SASHE NA 02 Wutar Lantarki ta Sabis
| Yankunan Aikace-aikace | Nau'in Capacitor | Hoto | Zaɓin da aka ba da shawarar |
| Samar da Wutar Lantarki ta Sabar | Na'urar Capacitor ta Aluminum Electrolytic Capacitor | ![]() | IDC3 |
| Masu haɗakar Polymer Aluminum Electrolytic Capacitors | ![]() | VHT | |
![]() | NHT | ||
| Ƙarfin wutar lantarki mai ƙarfi na aluminum mai ƙarfi | ![]() | NPC | |
| Mai sarrafa polymercapacitors na tantalum electrolytic | ![]() | TPD40 | |
| Capacitors na polymer mai ƙarfi na aluminum electrolytic masu yawa | ![]() | MPD19,MPD28 |
Ƙara yawan amfani da wutar lantarki na sassan sabar kamar na'urori masu sarrafawa da GPUs yana buƙatar samar da wutar lantarki mai iya aiki na dogon lokaci, ba tare da matsala ba, shigar da wutar lantarki mai faɗi, fitarwa mai ƙarfi, da sarrafa nauyin da ya wuce kima yayin canjin lissafi. Amfani da kayan semiconductor na ƙarni na uku (SiC, GaN) ya haɓaka ƙarancin uwar garken sosai kuma ya inganta ingantaccen aiki sosai. A watan Yuli, Navitas ta fitar da sabon mafita na cibiyar bayanai ta CRPS185 4.5kW AI, tare da YMIN tana ba da mafita mai ƙarfi da ƙananan ƙarfin capacitor. Capacitors masu ƙarfi na CW3 daLKMAna ba da shawarar capacitors na toshe-in na ruwa don ɓangaren shigarwa na samar da wutar lantarki ta uwar garken, yayin da ake da kwanciyar hankali kuma abin dogaroNPXAna ba da shawarar ƙarfin capacitors masu ƙarfi don ɓangaren fitarwa. YMIN tana haɗin gwiwa da masu samar da mafita masu aiki don haɓaka ci gaban cibiyar bayanai.
KASHI NA 03 Ajiya na Sabar
| Yankunan Aikace-aikace | Nau'in Capacitor | Hoto | Zaɓin da aka ba da shawarar |
| Ajiya ta sabar (Server Storage) | Masu amfani da wutar lantarki na tantalum electrolytic polymer | ![]() | TPD15,TPD19 |
| Capacitors na polymer mai ƙarfi na aluminum electrolytic masu yawa | ![]() | MPX,MPD19,MPD28 | |
| Capacitors na polymer masu haɗakar aluminum electrolytic | ![]() | NGY,NHT | |
| Ruwa mai ruwacapacitors na aluminum electrolytic | ![]() | LKM,LKF |
A matsayin babban ɓangaren, SSDs dole ne su sami saurin karantawa/rubuta mai yawa, ƙarancin jinkiri, yawan ajiya mai yawa, da kuma ƙira mai ƙanƙanta, yayin da suke tabbatar da sahihancin bayanai yayin asarar wutar lantarki.
- Masu haɗakar Polymer Aluminum Electrolytic Capacitors: Tare da yawan ƙarfin su, waɗannan capacitors za su iya amsawa da sauri kuma su samar da wutar lantarki da ake buƙata, suna tabbatar da aiki mai santsi na SSD a ƙarƙashin manyan kaya da hana lalacewar aiki ko asarar bayanai saboda rashin isasshen wutar lantarki.
- Masu amfani da na'urori masu ...: Suna da ƙarancin ESR (Juriyar Jerin Daidaito), waɗannan capacitors suna taimakawa rage asarar kuzari yayin caji da fitarwa, don haka suna samar da ingantaccen fitarwa na wutar lantarki.
-Masu amfani da na'urar Tantalum Electrolytic Polymer: An san su da yawan ƙarfinsu mai yawa, waɗannan capacitors suna adana ƙarin caji a cikin sarari mai iyaka, suna ba da tallafin wutar lantarki mai ƙarfi don ajiyar uwar garken. Haɗin tallafin DC mai ɗorewa da yawan ƙarfin lantarki mai yawa yana ba SSD damar amsawa da sauri ga buƙatun wutar lantarki nan take, yana tabbatar da ci gaba da watsa bayanai da adanawa.
SASHE NA 04 Canjin Sabar
| Yankunan Aikace-aikace | Nau'in Capacitor | Hoto | Zaɓin da aka ba da shawarar |
| Canjin Sabar | Capacitors na polymer mai ƙarfi na aluminum electrolytic masu yawa | ![]() | MPS,MPD19,MPD28 |
| Ƙarfin wutar lantarki mai ƙarfi na aluminum mai ƙarfi | ![]() | NPC |
Don samar da babban bandwidth da ƙarancin latency, biyan buƙatun watsa bayanai da kuma girman kwance na ayyukan kwamfuta na AI, sabar suna buƙatar maɓallan don samun babban aiki, babban aminci, sassauƙan tsari, da kuma kyakkyawan faɗaɗawa.
- Masu haɗakar Aluminum Mai ƙarfi da ƙarfin lantarki: Da ikonsu na jure wa manyan kwararar ruwa, waɗannan masu ƙarfin lantarki za su iya jure wa bambance-bambancen nauyin wutar lantarki masu rikitarwa, suna taimakawa masu kunna wutar lantarki su kiyaye kwanciyar hankali yayin da suke mu'amala da zirga-zirgar hanyar sadarwa mai saurin canzawa. Bugu da ƙari, waɗannan masu kunna wutar lantarki suna da juriya mai ƙarfi ga hauhawar wutar lantarki mai yawa, suna kare da'irori daga lalacewa yayin manyan tasirin wutar lantarki. Wannan yana hana lalacewar da'ira saboda yawan kwararar wutar lantarki mai sauri, yana tabbatar da ingantaccen aikin masu kunna wutar lantarki a ƙarƙashin mawuyacin yanayi.
- Masu Ƙarfin Ƙarfin Aluminum Mai Tsari Mai Ƙarfin ...: Suna da ƙarancin ESR (ƙasa da 3mΩ) da ƙarfin ripple current guda ɗaya na 10A, waɗannan capacitors suna rage asarar makamashi kuma suna inganta ingancin makamashi na maɓallan. Babban haƙurin ripple current yana tabbatar da cewa capacitors da aka tara suna kiyaye fitowar wutar lantarki mai ɗorewa lokacin da maɓallan ke sarrafa bayanai masu yawa, yana tabbatar da isar da zirga-zirgar hanyar sadarwa mai santsi.
KASHI NA 05 Ƙofar Sabar
| Yankunan Aikace-aikace | Nau'in Capacitor | Hoto | Zaɓin da aka ba da shawarar |
| Ƙofar Sabar | Capacitor mai ƙarfi na aluminum electrolytic mai yawan Layer polymer | ![]() | MPS,MPD19,MPD28 |
A matsayin muhimmin cibiya don watsa bayanai, hanyoyin shiga uwar garken suna ci gaba da bunƙasa zuwa ga babban aiki, ƙarancin amfani da makamashi, da kuma haɗakarwa mai yawa. Duk da haka, hanyoyin shiga da ake da su har yanzu suna fuskantar ƙalubale a fannin sarrafa wutar lantarki, ƙarfin tacewa, watsa zafi, da kuma tsarin sarari.
- Masu amfani da na'urori masu ...: ESR mai ƙarancin ƙarfi (ƙasa da 3mΩ) na waɗannan capacitors yana nufin cewa asarar makamashi a manyan mitoci kaɗan ne, yana taimakawa wajen rage asarar makamashi yayin aikin canza wutar lantarki da inganta ingancin wutar lantarki. Bugu da ƙari, ƙarfin tacewa mai ƙarfi da hauhawar zafin ripple mai ƙarancin ƙarfi yana rage saurin wutar lantarki da hayaniyar ripple yadda ya kamata. Wannan raguwar tsangwama a cikin hayaniya yana ƙara sahihancin watsa bayanai da kwanciyar hankali yayin sarrafa sadarwa mai sauri.
Kammalawa
Daga uwa-uba zuwa kayan wutar lantarki, daga ajiya zuwa ƙofofi, da maɓallan wuta, masu ƙarfin lantarki na YMIN, tare da ƙarancin ESR, yawan ƙarfin lantarki mai yawa, juriya ga manyan kwararar ruwa, da juriyar zafin jiki mai yawa, sun zama muhimman abubuwan da ke tallafawa ingantaccen aiki na sabar. Suna ba da gudummawa gaba ɗaya ga ƙirƙira da haɓaka aiki na kayan aikin sabar masu mahimmanci. Zaɓi masu ƙarfin lantarki na YMIN don gina yanayin aiki mai ƙarfi da aminci ga sabar ku.
Lokacin Saƙo: Nuwamba-11-2024














