I-AC capacitor ephansi yokungena kwamandla aphezulu yama-inverter e-motor drive drive
Idatha yobuchwepheshe
| Ibanga lokushisa lokusebenza | Izinga lokushisa eliphezulu lokusebenza: + 85℃; Izinga lokushisa eliphezulu lesigaba: +55℃; Izinga lokushisa eliphansi lesigaba: -40℃ | |
| ububanzi bomthamo | 3×40μF~3×500μF | |
| I-Un/ I-voltage elinganisiwe I-Un | 400V.AC/50Hz~1140V.DC/50Hz | |
| I-Cap.tol | ±5%(J) | |
| Melana ne-voltage | I-Vt-t | 2.15Un /10S |
| I-Vt-c | 1000+2×Un V.AC 60S(min3000V.AC) | |
| Ngaphezulu kweVoltage | 1.1Un (30% wesikhathi sokulayisha) | |
| 1.15Un (imizuzu engama-30 ngosuku) | ||
| 1.2Un (imizuzu emi-5 ngosuku) | ||
| 1.3Un (1 iminithi/ngosuku) | ||
| 1.5Un (100ms njalo, izikhathi eziyi-1000 ngesikhathi sokuphila) | ||
| Isici sokushabalalisa | tgδ≤0.002 f=100Hz | |
| tgδ0≤0.0002 | ||
| I-ESL | <100 nH | |
| Ukulibaziseka kwelangabi | UL94V-0 | |
| Ubukhulu bokukwazi | 2000m | |
| Uma ukuphakama kungaphezu kwamamitha angu-2000 kuya ngaphansi kwamamitha angu-5000, kubalulekile ukucabangela ukusetshenziswa kwenani elincishisiwe. (ngokwanda ngakunye kwe-1000m, i-voltage kanye nogesi kuzoncishiswa ngo-10%) | ||
| Isikhathi sokuphila | 100000h(Un; Θhotspot≤55°C) | |
| Izinga elijwayelekile lokubhekisela | I-IEC 61071; IEC 60831; | |
Isici
1. Iphakethe lesikhwama sensimbi, Livalwe nge-resin;
2. Ukusetshenziswa kwesistimu yamandla kagesi aphezulu;
3. Isekethe yamandla aphezulu;
4. Ukumelana ne-voltage ephezulu, ngokuziphilisa;
5. Amandla kagesi aphezulu, amandla aphezulu okumelana ne-dv/dt.
Umsebenzi
Esihlungini sokukhiphayo somthombo wamandla we-DC, umsebenzi we-capacitor ukugcina inani le-DC elihlala njalo ngokususa i-power ripple eningi ngangokunokwenzeka.
Zonke iziguquli ze-AC-DC, kungakhathaliseki ukuthi ziyizinto eziqondile noma zinesici esithile sokushintsha kuzo, zidinga indlela yokuthatha amandla ahlukahlukene ohlangothini lwe-AC futhi zikhiqize amandla angaguquki ohlangothini lwe-DC.
Isekethe evamile

Isikhathi sokuphila

Ithebula lokucacisa
| I-voltage | Un 400V.AC 50Hz | |||||||||
| I-Cn (μF) | Ububanzi (mm) | I-T (mm) | Ububanzi (mm) | i-dv/dt (V/μS) | I-Ip (KA) | Ama-Irms (A) 50℃ | I-ESR 1KHz (mΩ) | I-Rth (K/W) | isisindo (Kg) | |
| 3× | 200 | 225 | 120 | 170 | 50 | 10.0 | 3×70 | 3×0.95 | 1.1 | 7 |
| 3× | 300 | 225 | 120 | 235 | 40 | 12.0 | 3×90 | 3×0.85 | 0.8 | 9 |
| 3× | 400 | 295 | 120 | 235 | 35 | 14.0 | 3×120 | 3×0.80 | 0.7 | 12 |
| 3× | 500 | 365 | 120 | 235 | 30 | 15.0 | 3×160 | 3×0.78 | 0.6 | 15 |
| I-voltage | Un 500V.AC 50Hz | |||||||||
| I-Cn (μF) | Ububanzi (mm) | I-T (mm) | Ububanzi (mm) | i-dv/dt (V/μS) | I-Ip (KA) | Ama-Irms (A) 50℃ | I-ESR 1KHz (mΩ) | I-Rth (K/W) | isisindo (Kg) | |
| 3× | 120 | 225 | 120 | 170 | 60 | 7.2 | 3×50 | 3×1.2 | 1.1 | 7 |
| 3× | 180 | 225 | 120 | 235 | 50 | 9.0 | 3×70 | 3×1.05 | 0.8 | 9 |
| 3× | 240 | 295 | 120 | 235 | 45 | 10.8 | 3×100 | 3×1.0 | 0.7 | 12 |
| 3× | 300 | 365 | 120 | 235 | 40 | 12.0 | 3×120 | 3×0.9 | 0.6 | 15 |
| I-voltage | Un 690V.AC 50Hz | |||||||||
| I-Cn (μF) | Ububanzi (mm) | I-T (mm) | Ububanzi (mm) | i-dv/dt (V/μS) | I-Ip (KA) | Ama-Irms (A) 50℃ | I-ESR 1KHz (mΩ) | I-Rth (K/W) | isisindo (Kg) | |
| 3× | 50 | 225 | 120 | 170 | 100 | 5.0 | 3×50 | 3×2.3 | 1.1 | 7 |
| 3× | 75 | 225 | 120 | 235 | 90 | 6.8 | 3×70 | 3×2.1 | 0.8 | 9 |
| 3× | 100 | 295 | 120 | 235 | 80 | 8.0 | 3×100 | 3×1.6 | 0.7 | 12 |
| 3× | 125 | 365 | 120 | 235 | 80 | 10.0 | 3×120 | 3×1.3 | 0.6 | 15 |
| I-voltage | I-Un 1140V.AC 50Hz | |||||||||
| I-Cn (μF) | Ububanzi (mm) | I-T (mm) | Ububanzi (mm) | i-dv/dt (V/μS) | I-Ip (KA) | Ama-Irms (A) 50℃ | I-ESR 1KHz (mΩ) | I-Rth (K/W) | isisindo (Kg) | |
| 3× | 42 | 340 | 175 | 200 | 120 | 5.0 | 3×80 | 3×3.3 | 0.6 | 17.3 |
| 3× | 60 | 420 | 175 | 250 | 100 | 6.0 | 3×100 | 3×2.8 | 0.5 | 26 |










