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Informace o produktu
Přehled produktu
Flexible Termination System (FT-CAP), U2J dielectric surface mount multilayer ceramic chip capacitors (SMD MLCCs). The KEMET flexible termination (FT-CAP) multilayer ceramic capacitor in U2J dielectric incorporates a unique, flexible termination system that is integrated with KEMET’s standard termination materials. A conductive silver epoxy is utilized between the base metal and nickel barrier layers of the KEMET standard termination system in order to establish pliability while maintaining terminal strength, solderability and electrical performance. Flexible termination technology inhibits the transfer of board stress to the rigid ceramic body, therefore mitigating flex cracks which can result in low insulation resistance (IR) or short circuit failures. FT-CAP complements KEMET’s open mode, floating electrode (FE-CAP), floating electrode with flexible termination (FF-CAP) and KEMET power solutions (KPS) product lines provide a complete portfolio of flex mitigation solutions.
- AEC-Q200 automotive qualified
- Low dissipation factor DF <lt/> 0.1% and low noise solution similar to C0G
- Low ESR and ESL
- High thermal stability, high ripple current capability
- Preferred capacitance solution at line frequencies and into the MHz range
- Retains over 99% of nominal capacitance at full rated voltage
- Small predictable and linear capacitance change with respect to temperature
- Operating temperature range of −55°C to +125°C
- Non-polar device, minimizing installation concerns
- 100% pure matte tin-plated termination finish allowing for excellent solderability
Technické specifikace
0.33µF
1812 [4532 Metrické]
U2J
4.58mm
Flexibilní Zakončení
125°C
MSL 1 - Neomezené
50V
± 5%
Flexible Termination (FT-CAP) Series
3.2mm
-55°C
AEC-Q200
No SVHC (25-Jun-2025)
Technické dokumenty (3)
Legislativa a životní prostředí
Country in which last significant manufacturing process was carried outZemě původu:Mexico
Country in which last significant manufacturing process was carried out
RoHS
RoHS
Osvědčení o shodě