Imingcele yezobuchwepheshe eyinhloko
Izinto | Izici | ||||||||||
Ibanga lokushisa elisebenzayo | -55℃--+105℃ | ||||||||||
I-voltage elinganiselwe | 6.3--100V.DC | ||||||||||
Ukubekezelela amandla | ±20% (25±2℃ 120Hz) | ||||||||||
Ukuvuza kwamanje(uA) | 6.3WV--100WV 1≤0.01CVor3uA Ekhudlwana C:Amandla okuzisholo(Uf) V:I-voltage elinganiselwe(V) Ukufunda ngemva kwemizuzu emi-2 | ||||||||||
Inani le-engeli yokulahlekelwa (25±2℃ 120Hz) | I-voltage elinganiselwe(V) | 6.3 | 10 | 16 | 25 | 35 | 50 | 63 | 80 | 100 | |
tg | 0.38 | 0.32 | 0.2 | 0.16 | 0.14 | 0.14 | 0.16 | 0.16 | 0.16 | ||
Uma umthamo wegama udlula u-1000 uF, ku-1000 uF ngayinye eyengeziwe, i-engeli yokulahlekelwa inyuke ngo-0.02 | |||||||||||
Isici sezinga lokushisa (120Hz) | I-voltage elinganiselwe(V) | 6.3 | 10 | 16 | 25 | 35 | 50 | 63 | 80 | 100 | |
Isilinganiso se-Impedans Z (-40℃)/ Z(20℃) | 10 | 10 | 6 | 6 | 4 | 4 | 6 | 6 | 6 | ||
Ukuqina | Kuhhavini eku-105 ℃, sebenzisa i-voltage elinganiselwe isikhathi esithile, bese uyibeka ekamelweni lokushisa amahora angu-16 ngaphambi kokuhlolwa.Izinga lokushisa lokuhlola lingu-25± 2 ℃.Ukusebenza kwe-capacitor kufanele kuhlangabezane nezidingo ezilandelayo | ||||||||||
Izinga lokushintsha amandla | Ngaphakathi kuka-± 30% yenani lokuqala | ||||||||||
Inani le-engeli yokulahlekelwa | Ngaphansi kuka-300% yenani elishiwo | ||||||||||
Ukuvuza kwamanje | Ngaphansi kwevelu eshiwo | ||||||||||
Layisha impilo | 6.3WV-100WV | Amahora angu-1000 | |||||||||
Ukugcinwa kwezinga lokushisa eliphezulu | Gcina ku-105 ℃ amahora angu-1000, bese uhlola ekamelweni lokushisa amahora angu-16.Izinga lokushisa lokuhlola lingu-25 ± 2 ℃.Ukusebenza kwe-capacitor kufanele kuhlangabezane nezidingo ezilandelayo | ||||||||||
Izinga lokushintsha amandla | Ngaphakathi kuka-± 30% yenani lokuqala | ||||||||||
Inani le-engeli yokulahlekelwa | Ngaphansi kuka-300% yenani elishiwo | ||||||||||
Ukuvuza kwamanje | Ngaphansi kuka-200% yenani elishiwo |
Umdwebo Dimensional womkhiqizo
D | 4 | 5 | 6.3 |
L | 3.55 | 3.55 | 3.55 |
d | 0.45 | 0.5 (0.45) | 0.5 (0.45) |
F | 105 | 2.0 | 2.5 |
α | +0/-0.5 |
I-Ripple current frequency correct coefficient
Imvamisa (Hz) | 50 | 120 | 1K | ≥10K |
i-coefficient | 0.70 | 1.00 | 1.37 | 1.50 |
Uhlobo lokuhola lwe-aluminium electrolytic capacitoriyingxenye ye-elekthronikhi esetshenziswa kabanzi, ngokuvamile esetshenziselwa ukugcina ukushaja nokugeleza kwamanje, inikeze inani elizinzile le-capacitance kanye ne-impedance ephansi kanye nenani eliphansi le-ESR (ukumelana nochungechunge olulinganayo), ngaleyo ndlela kuthuthukiswe ukuthembeka kwemikhiqizo ye-elekthronikhi nokuzinza kokusebenza.Okulandelayo kuzokwethula ukusetshenziswa kweuhlobo oluholayo lwe-aluminium electrolytic capacitorsemikhakheni eminingana ebalulekile.
Okokuqala, i-lead aluminium electrolytic capacitor isetshenziswa kabanzi emikhiqizweni ye-elekthronikhi.Ngokuthuthuka okuqhubekayo kobuchwepheshe nobuhlakani, imikhiqizo ehlukahlukene ye-elekthronikhi isiyingxenye ebalulekile yokuphila kwabathengi emakethe.Noma ngabe omakhalekhukhwini, amakhompyutha wethebhulethi emkhakheni wezokuxhumana ngomakhalekhukhwini, noma ama-TV, imikhiqizo yomsindo neminye imikhiqizo emkhakheni wokuzijabulisa kwasekhaya,i-lead aluminium electrolytic capacitorsdlala indima ebalulekile.Inganikeza inani elithembekile le-capacitance, i-impedance ephansi kanye nenani eliphansi le-ESR, ngaleyo ndlela iqinisekise ukuzinza nokusebenza nokuthembeka kwemikhiqizo ye-elekthronikhi.
Okwesibili,i-lead aluminium electrolytic capacitorsasetshenziswa kakhulu kumasekethe okuphakela amandla.I-aluminium electrolytic capacitor yohlobo lomthofu inganikeza i-voltage ezinzile, futhi umthamo wawo ophezulu nesisindo esilula kuwenza asetshenziswe kabanzi.Kumasekhethi okuphakelwa kukagesi,i-lead aluminium electrolytic capacitorsingasetshenziswa esikhundleni sezingxenye ezifana nama-inductors kanye nezilawuli zamandla kagesi ukuze kuzuzwe ukulethwa kwamandla okuzinzile nokuvikela impilo ende yokunikezwa kwamandla.
Ngaphezu kwalokho,i-lead aluminium electrolytic capacitorsasetshenziswa kabanzi kumasekethe ezimoto.Emasekhethini ezimoto, ngenxa yobuchwepheshe bendawo yokusebenza kwayo, kuyadingeka ukusebenzisa ama-capacitor anokubekezelela ukushisa okuphezulu kanye nesici samandla kagesi aphansi.Ama-capacitor e-aluminium e-electrolytic ehamba phambili angahlangabezana nalezi zidingo, futhi ngesikhathi esifanayo abe nezinzuzo zokubumbana, ukukhanya, kanye nokusebenziseka kalula.Kumasekhethi ezimoto,i-lead aluminium electrolytic capacitorsasetshenziswa ezinhlelweni eziningi ezahlukene, okuhlanganisa amasistimu okuthungela injini, umsindo wemoto, namalambu emoto.
Enye indawo ebalulekile yesicelo isitoreji samandla nokuguqulwa.Ama-capacitor e-aluminium e-electrolytic ehamba phambiliisebenza njengokugcinwa kwamandla kanye neziguquli zamandla ezinhlelweni zedivayisi yamandla avuselelekayo njengamaseli elanga namaseli wamandla omoya.Inezici zokulahlekelwa okuphansi nokusebenza kahle okuphezulu, futhi idlala indima ebaluleke kakhulu embonini yamandla.
Ekugcineni,i-lead aluminium electrolytic capacitorszibuye zisetshenziswe kabanzi kumishini yokulawula izimboni.Isibonelo, ingasetshenziswa ekulawulweni kokusebenza kwemoto kalayini wamandla embonini, amasistimu wokucupha i-elekthronikhi, ukuvikelwa kwe-inverter, njll. Endaweni yezimboni,i-lead-type aluminium electrolytic capacitorsisidingo sokuba nezici zokuzinza okuphezulu, ukumelana nokushisa, ukumelana nokudlidliza, nokumelana nokuphazamiseka ukuze kuqinisekiswe ukunemba okuphezulu nokuzinza kwesistimu yokulawula.
Ukufingqa, iuhlobo oluholayo lwe-aluminium electrolytic capacitoriyingxenye ye-elekthronikhi esetshenziswa kakhulu, futhi ububanzi bokusebenza kwayo bubanzi kakhulu.Kungakhathaliseki ukuthi kusemikhiqizweni ye-elekthronikhi, noma emkhakheni wezimoto, amandla, ukulawulwa kwezimboni, njll., kungabonakala.Kodwa-ke, kufanele kuqashelwe ukuthi lapho ukhetha i-lead aluminium electrolytic capacitor, kufanele ikhethwe ngokuya ngendawo ethile yesicelo kanye nezidingo.
Amandla kagesi | 6.3 | 10 | 16 | 25 | 35 | 50 | ||||||
into ivolumu(uF) | isilinganiso D*L(mm) | I-Ripple current (mA rms/105℃ 120Hz) | isilinganiso D*L(mm) | I-Ripple current (mA rms/105℃ 120Hz) | isilinganiso D*L(mm) | I-Ripple current (mA rms/105℃ 120Hz) | isilinganiso D*L(mm) | I-Ripple current (mA rms/105℃ 120Hz) | isilinganiso D*L(mm) | I-Ripple current (mA rms/105℃ 120Hz) | isilinganiso D*L(mm) | I-Ripple current (mA rms/105℃ 120Hz) |
1 | 4*3.55 | 6 | ||||||||||
2.2 | 4*3.55 | 10 | ||||||||||
3.3 | 4*3.55 | 13 | ||||||||||
4.7 | 4*3.55 | 12 | 4*3.55 | 14 | 5*3.55 | 17 | ||||||
5.6 | 4*3.55 | 17 | ||||||||||
10 | 4*3.55 | 20 | 5*3.55 | 23 | ||||||||
10 | 4*3.55 | 17 | 5*3.55 | 21 | 5*3.55 | 23 | 6.3*3.55 | 27 | ||||
18 | 4*3.55 | 27 | 5*3.55 | 35 | ||||||||
22 | 6.3*3.55 | 58 | ||||||||||
22 | 4*3.55 | 20 | 5*3.55 | 25 | 5*3.55 | 27 | 6.3*3.55 | 35 | 6.3*3.55 | 38 | ||
33 | 4*3.55 | 34 | 5*3.55 | 44 | ||||||||
33 | 5*3.55 | 27 | 5*3.55 | 32 | 6.3*3.55 | 37 | 6.3*3.55 | 44 | ||||
39 | 6.3*3.55 | 68 | ||||||||||
47 | 4*3.55 | 34 | ||||||||||
47 | 5*3.55 | 34 | 6.3*3.55 | 42 | 6.3*3.55 | 46 | ||||||
56 | 5*3.55 | 54 | ||||||||||
68 | 4*3.55 | 34 | 6.3*3.55 | 68 | ||||||||
82 | 5*3.55 | 54 | ||||||||||
100 | 6.3*3.55 | 54 | 6.3*3.55 | 68 | ||||||||
120 | 5*3.55 | 54 | ||||||||||
180 | 6.3*3.55 | 68 | ||||||||||
220 | 6.3*3.55 | 68 |
Amandla kagesi | 63 | 80 | 100 | |||
into ivolumu(uF) | isilinganiso D*L(mm) | I-Ripple current (mA rms/105℃ 120Hz) | isilinganiso D*L(mm) | I-Ripple current (mA rms/105℃ 120Hz) | isilinganiso D*L(mm) | I-Ripple current (mA rms/105℃ 120Hz) |
1.2 | 4*3.55 | 7 | ||||
1.8 | 4*3.55 | 10 | ||||
2.2 | 5*3.55 | 10 | ||||
3.3 | 4*3.55 | 13 | ||||
3.9 | 5*3.55 | 16 | 6.3*3.55 | 17 | ||
5.6 | 5*3.55 | 17 | ||||
6.8 | 6.3*3.55 | 22 | ||||
10 | 6.3*3.55 | 27 |