- NP0 (C0G) Chip ceramic capacitor with negative TC
- Highest quality and reliability, suitable for safety-critical industries
- Dissipation factor under 10.10-4 at 1Vrms and 1kH (or 1MHz)
- Insulation resistance of 25°C/Un 105 MΩ or 1000 Ohm-Farad whichever is less and 125°C/Un 104 MΩ or 100 Ohm-Farad whichever is less
- Dielectric strength test performed per method 103 of EIA 198-2-E
- MLCC Capacitor for RF and Microwave communication
- Highest quality and reliability, suitable for safety-critical industries
- Dissipation factor under 5.10-4 at 1Vrms and 1MHz for values ≤ 1000pF and under 5.10-4 at 1Vrms and 1KHz for values > 1000pF
- Insulation resistance of 25°C/Un 105 MΩ or 1000 Ohm-Farad whichever is less and 125°C/Un 104 MΩ or 100 Ohm-Farad whichever is less
- Dielectric strength test performed per method 103 of EIA 198-2-E
- MLCC high power, low capacitance variation with voltage capacitors
- Highest quality and reliability, suitable for safety-critical industries
- Dissipation factor under 10.10-4 at 1Vrms and 1kHz (or 1MHz)
- Insulation resistance under 20000 MOhm or 500 Ohm-Farad at 25°C under 500V
- Dielectric strength test performed per method 103 of EIA 198-2-E
- High Temperature, ultra stable MLCC Capacitor
- Highest quality and reliability, suitable for safety-critical industries
- Dissipation factor under 10.10-4 at 1Vrms and 1kHz (or 1MHz)
- Insulation resistance of 25°C/Un 105 MΩ or 1000 Ohm-Farad whichever is less and 125°C/Un 104 MΩ or 100 Ohm-Farad whichever is less
- Dielectric strength test performed per method 103 of EIA 198-2-E
- High Temperature MLCC Capacitor
- Highest quality and reliability, suitable for safety-critical industries
- Dissipation factor up to 0.025
- Insulation resistance of 25°C/Un 105 MΩ or 1000 Ohm-Farad whichever is less and 125°C/Un 104 MΩ or 100 Ohm-Farad whichever is less
- Dielectric strength test performed per method 103 of EIA 198-2-E
- Ultra stable ceramic capacitor
- Highest quality and reliability, suitable for safety-critical industries
- Dissipation factor under 10.10-4 at 1Vrms and 1kHz (or 1MHz)
- Insulation resistance of 25°C/Un 105 MΩ or 1000 Ohm-Farad whichever is less and 125°C/Un 104 MΩ or 100 Ohm-Farad whichever is less
- Dielectric strength test performed per method 103 of EIA 198-2-E
- Ultra stable ceramic capacitor
- Highest quality and reliability, suitable for safety-critical industries
- Dissipation factor under 10.10-4 at 1Vrms and 1kHz (or 1MHz)
- Insulation resistance of 25°C/Un 105 MΩ or 1000 Ohm-Farad whichever is less and 125°C/Un 104 MΩ or 100 Ohm-Farad whichever is less
- Dielectric strength test performed per method 103 of EIA 198-2-E
- Stable ceramic capacitor
- High quality and reliability, suitable for safety-critical industries
- Dissipation factor up to 0.025 at 1kHz for C over 1nF, and up to 0.025 at 1MHz for C up to 1nF
- Insulation resistance of 25°C/Un 105 MΩ or 1000 Ohm-Farad whichever is less and 125°C/Un 104 MΩ or 100 Ohm-Farad whichever is less
- Dielectric strength test performed per method 103 of EIA 198-2-E
- Stable ceramic capacitor
- High quality and reliability, suitable for safety-critical industries
- Dissipation factor up to 0.025 at 1kHz for C over 1nF, and up to 0.025 at 1MHz for C up to 1nF
- Insulation resistance of 25°C/Un 105 MΩ or 1000 Ohm-Farad whichever is less and 125°C/Un 104 MΩ or 100 Ohm-Farad whichever is less
- Dielectric strength test performed per method 103 of EIA 198-2-E
- Low inductance capacitors for high energy transfer
- Highest quality and reliability, suitable for safety-critical industries
- Dissipation factor under 2.5% at 1KHz
- Insulation resistance of 20°C/Un 105 MΩ or 1000 Ohm-Farad whichever is less
- Stable ceramic capacitor
- Better voltage behaviour compared to X7R dielectric
- Highest quality and reliability, suitable for safety-critical industries
- Dissipation factor up to 0.025 at 1kHz for C over 1nF, and up to 0.025 at 1MHz for C up to 1nF
- Insulation resistance of 25°C/Un 105 MΩ or 1000 Ohm-Farad whichever is less and 125°C/Un 104 MΩ or 100 Ohm-Farad whichever is less
- Dielectric strength test performed per method 103 of EIA 198-2-E
- Ultra stable ceramic capacitor
- Highest quality and reliability, suitable for safety-critical industries
- Dissipation factor under 10.10-4 at 1Vrms and 1kHz (or 1MHz)
- Insulation resistance of 25°C/Un 105 MΩ or 1000 Ohm-Farad whichever is less and 125°C/Un 104 MΩ or 100 Ohm-Farad whichever is less
- Dielectric strength test performed per method 103 of EIA 198-2-E
- Stable ceramic capacitor
- Highest quality and reliability, suitable for safety-critical industries
- Dissipation factor up to 0.025 at 1kHz for C over 1nF, and up to 0.025 at 1MHz for C up to 1nF
- Insulation resistance of 25°C/Un 105 MΩ or 1000 Ohm-Farad whichever is less and 125°C/Un 104 MΩ or 100 Ohm-Farad whichever is less
- Dielectric strength test performed per method 103 of EIA 198-2-E
- Non magnetic NP0 (Type 1) MLCC Capacitors
- Highest quality and reliability, suitable for safety-critical industries
- Dissipation factor under 10.10-4 at 1Vrms and 1kHz (or 1MHz)
- Insulation resistance of 25°C/Un 105 MΩ or 1000 Ohm-Farad whichever is less and 125°C/Un 104 MΩ or 100 Ohm-Farad whichever is less
- Dielectric strength test performed per method 103 of EIA 198-2-E
- Non magnetic X7R (Type 2) MLCC Capacitors
- Highest quality and reliability, suitable for safety-critical industries
- Dissipation factor maximum of 2.5% at 1Vrms and 1kHz for Un between 16V and 25V and maximum 1% at 1Vrms and 1kHz for Un between 25V and 50V
- Insulation resistance of 25°C/Un 105 MΩ or 1000 Ohm-Farad whichever is less and 125°C/Un 104 MΩ or 100 Ohm-Farad whichever is less
- Dielectric strength test performed per method 103 of EIA 198-2-E
- Ultra stable ceramic capacitor
- Highest quality and reliability, suitable for safety-critical medical applications
- Dissipation factor maximum of 0.1% at 1Vrms and 1kHz (values under 1nF measured at 1MHz)
- Insulation resistance of 25°C/Un 105 MΩ or 1000 Ohm-Farad whichever is less and 125°C/Un 104 MΩ or 100 Ohm-Farad whichever is less
- Dielectric withstanding voltage of 250% of rated voltage for 5s + 1s, 50mA maximum
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