SMD-Kondensatoren
B40910A7277M000
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Grösse
| Diameter (D) |
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| Length (L) |
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| Detail Size Information |
Elektrische Kennwerte
| Rated Capacitance |
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| Rated Voltage VR [DC] |
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| Surge Voltage Vs [DC] |
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| Rated Ripple Current IAC, R |
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| Maximum Permissible Ripple Current IAC, max. |
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| ESRmax. |
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| Dissipation Factor tan δ |
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| Leakage Current |
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| ESL (Self Inductance) |
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| Lower Category Temperature |
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| Upper Operating Temperature |
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| Rated Useful Life |
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| Further Details |
Weiteres
| Vibration Resistance |
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| Vibration Fixation Method |
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| Terminal Style |
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| Terminal Configuration |
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| Design |
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| Reference Standards |
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| Soldering Method |
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| Packing |
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| Package Quantity |
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| Minimum Order Quantity |
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| Weight |
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| Further Details |
Technische Information
Documents
Technical Support Tools
Verwandter Inhalt
Kunden, die sich dieses Produkt angesehen haben, haben sich auch Folgendes angesehen
Keramik-Vielschichtkondensatoren (MLCC)
C1608C0G1H272J080AA
Capacitance=2.7nF
Edc=50V
T.C.=C0G
LxWxT:1.6x0.8x0.8mm
General
Keramik-Vielschichtkondensatoren (MLCC)
C1608C0G1H272J080AE
Capacitance=2.7nF
Edc=50V
T.C.=C0G
LxWxT:1.6x0.8x0.8mm
Soft termination
Keramik-Vielschichtkondensatoren (MLCC)
C3216C0G2E682J160AA
Capacitance=6.8nF
Edc=250V
T.C.=C0G
LxWxT:3.2x1.6x1.6mm
Mid Volt. (100 to 630V)
Keramik-Vielschichtkondensatoren (MLCC)
CGA2B3X8R2A332K050BE
Capacitance=3.3nF
Edc=100V
T.C.=X8R
LxWxT:1x0.5x0.5mm
Soft termination
AEC-Q200
Keramik-Vielschichtkondensatoren (MLCC)
CGA5L3C0G2E682J160AA
Capacitance=6.8nF
Edc=250V
T.C.=C0G
LxWxT:3.2x1.6x1.6mm
Mid Volt. (100 to 630V)
AEC-Q200
Hybrid-Polymer-Kondensatoren
B40920A5477M000
470µF/25V DC
10mm dia x 10.2mm length
Hybrid-Polymer-Kondensatoren
B40921A5687M000
680µF/25V DC
10mm dia x 12.5mm length
Hybrid-Polymer-Kondensatoren
B40940A8826M000
82µF/63V DC
10mm dia x 10.2mm length
Kondensatoren für Snubber, Resonanzkreise, Bildleistungskompensation (BLK)
B32656S0225J562
2.2uF, 1000V DC
30mm(W) x 45mm(H) x 42mm(L)
SMD / SMT-Induktivitäten (Spulen)
B82422H1472K000
L=4.7μH
Rated current=0.905A
3.2mm x 2.5mm [EIA 1210]