Knowles Syfer 1111J5000240FQT
- Part Number:
- 1111J5000240FQT
- Manufacturer:
- Knowles Syfer
- Ventron No:
- 8090490-1111J5000240FQT
- Description:
- 24pF 500V Ceramic Capacitor ±1% C0G NP0 0.110Lx0.110W 2.79mmx2.79mm -55°C~125°C High Q, Low Loss Surface Mount, MLCC 1111 (2828 Metric)
- Datasheet:
- 1111J5000240FQT
Knowles Syfer 1111J5000240FQT technical specifications, attributes, parameters and parts with similar specifications to Knowles Syfer 1111J5000240FQT.
- Factory Lead Time8 Weeks
- Mounting TypeSurface Mount, MLCC
- Package / Case1111 (2828 Metric)
- Operating Temperature-55°C~125°C
- PackagingTape & Reel (TR)
- Size / Dimension0.110Lx0.110W 2.79mmx2.79mm
- Tolerance±1%
- FeatureHigh Q, Low Loss
- Part StatusActive
- Moisture Sensitivity Level (MSL)1 (Unlimited)
- Temperature CoefficientC0G NP0
- ApplicationsGeneral Purpose
- Voltage - Rated500V
- Capacitance24pF
- Thickness (Max)0.070 1.78mm
- RoHS StatusROHS3 Compliant
1111J5000240FQT Overview
A program's size/dimension is 0.110Lx0.110W 2.79mmx2.79mm for this device.Its coefficient is C0G NP0 and determines the change in resistance per degree of temperature for a substance.
1111J5000240FQT Features
a size/dimension of 0.110Lx0.110W 2.79mmx2.79mm
with C0G NP0 being the highest temperature coefficient
1111J5000240FQT Applications
There are a lot of Knowles Syfer
1111J5000240FQT applications of ceramic capacitors.
General electronic equipment
Mobile devices
Servers, PCs, tablets
Power supply circuit
A program's size/dimension is 0.110Lx0.110W 2.79mmx2.79mm for this device.Its coefficient is C0G NP0 and determines the change in resistance per degree of temperature for a substance.
1111J5000240FQT Features
a size/dimension of 0.110Lx0.110W 2.79mmx2.79mm
with C0G NP0 being the highest temperature coefficient
1111J5000240FQT Applications
There are a lot of Knowles Syfer
1111J5000240FQT applications of ceramic capacitors.
General electronic equipment
Mobile devices
Servers, PCs, tablets
Power supply circuit
1111J5000240FQT More Descriptions
CAP CER 24PF 500V C0G/NP0 1111
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