Iseva yedatha ye-AI

Kumaseva edatha e-AI, ama-capacitor asetshenziswa kakhulu ekuphathweni kwamandla, ekuhlungeni, nasekugcinweni kwamandla ukuqinisekisa ukuzinza nokusebenza kahle. Ama-capacitor asebenza kahle kakhulu anganciphisa umsindo wokunikezwa kwamandla, athuthukise ikhwalithi yamandla, asekele ukushaja nokukhipha ngokushesha, futhi ahlangabezane nezidingo ze-AI computing ze-bandwidth ephezulu kanye nokubambezeleka okuphansi. Esikhathini esizayo, njengoba isidingo sokusebenza kahle kwamandla okuphezulu kanye nezingxenye ezincane sanda, ama-capacitor azothuthuka ngokuya ngemvamisa ephezulu, izinga lokushisa eliphezulu, i-ESR ephansi (ukumelana nochungechunge olulinganayo), kanye nokuphila isikhathi eside. Ukusetshenziswa kwezinto ezintsha kanye nobuchwepheshe bokuklama kuzothuthukisa kakhulu ukusebenza kanye nokuthembeka kwama-capacitor kumaseva edatha e-AI.

Ukunikezwa kwamandla eseva i-ACDC/DCDC
Amandla okusekelayo e-BBU
Ibhodi Lomama Leseva
I-SSD Yesitoreji/Ukulawula Isitoreji
Shintsha
Idivayisi Yesango
Ukunikezwa kwamandla eseva i-ACDC/DCDC

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Amandla okusekelayo e-BBU

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Ibhodi Lomama Leseva

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I-SSD Yesitoreji/Ukulawula Isitoreji

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Shintsha

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Idivayisi Yesango

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Ama-Navitas
I-NVIDIA
Ama-Navitas

案例_01(1)

 

Isixazululo Sokunikezwa Kwamandla Seseva Esisebenzisanayo se-YMIN ne-Navitas GaN esingu-8.5KW

Ukuthuthukiswa Kokusebenza

Ukusebenza Kahle Komthamo: Ku-voltage efanayo elinganisiwe (isb., 500Vdc), amandla omkhiqizo ojwayelekile we-φ30*85mm akhushulwa abe yi-1400μF (uma kuqhathaniswa ne-820μF yemikhiqizo evamile, okuwukuthuthuka cishe okungu-70%).

Ukuthuthukisa Usayizi: Kufeza ukwehliswa kosayizi wemojula iyonke okungaphezu kuka-55%, noma kwandisa amandla esisekelo sesistimu ngo-63% ngaphandle kokushintsha usayizi.

Isikhathi Sokuphila Sokushisa Okuphezulu: Ku-105℃, isikhathi sokuphila komthwalo ku-voltage elinganisiwe sidlula amahora ayi-10,000, kanye nokwehla kwamandla ≤8%.

I-Ripple Current: Ngenxa yomklamo wayo ophansi we-ESR, i-ripple current elinganisiwe engamelana nokushisa okungu-105℃ inyuswe yaba yi-19Arms @100kHz, ihlangabezana nezidingo zokushintsha imvamisa ephezulu.

Igcina isikhala sesakhiwo, ithuthukisa isikhathi sokuphila kwesistimu kanye nokuthembeka kwayo, iqinisekisa ukusebenza okuzinzile ngaphansi kwezimo zokushisa okuphezulu, futhi ihlangabezana nezidingo zohlelo lokusebenza eziqinile.

I-NVIDIA

案例_05(1)

 

Ama-capacitor e-modular e-YMIN SLF kanye nesisombululo samandla esipele se-NVIDIA AI server GB300 BBU

Usayizi Oncishisiwe Nesisindo, Ukusebenza Kahle Kokushaja/Ukukhipha Ibhethri Okuthuthukisiwe: Umthamo wehliswa ngo-50%-70% kanye nesisindo ngo-50%-60% uma kuqhathaniswa nesisombululo sokuqala. Ukusebenza kahle kokushaja/ukukhipha ibhethri kuthuthukisiwe izikhathi ezingaphezu kwezi-5, kusekela ukushaja/ukukhipha ibhethri okusheshayo kusukela kumasekhondi ayi-10 kuya kumaminithi ayi-10.

Ukukhishwa Kwamandla Okunamandla Nesikhathi Sokuphila Isikhathi Eside: Imojula eyodwa isekela ukukhishwa kwamandla okungu-15-21kW, okuhambisana kahle nezidingo zokusetshenziswa kwamandla okuphezulu kwe-GB300, futhi inempilo yomjikelezo wemijikelezo engaphezu kwesigidi esingu-1, okuqinisekisa ukusebenza okuthembekile iminyaka engaphezu kwengu-6.

Ukwakhiwa Kwesitoreji Samandla Okusha: Isebenzisa ama-supercapacitor ukuze ithole isinxephezelo samandla esisheshayo sezinga le-millisecond, i-BBU iphatha isipele samandla sesikhathi eside sezinga lemizuzu, ixazulula izinkinga zezixazululo zendabuko njengokulibaziseka kokuphendula, impilo yomjikelezo omfushane, kanye nezindleko zokulungisa eziphezulu.