CL05B104KO5NNNC
100nF multi-layer surface mount ceramic capacitor rated to 16V and in a 0402 package.
Samsung Electro-MechanicsThe Samsung CL05B104KO5NNNC is a 100nF surface mount capacitor that can tolerate a wide range of temperatures – from -55°C to 125°C – with a capacitance variance of ±15% over that range. Ideal for portable and miniature applications, the ceramic capacitor is in a 0402 package minimizing PCB retail space while providing excellent decoupling, filter, or bypass operation. With a rated voltage of 16V, the CL05B104KO5NNNC can be used in a range of applications, including portable equipment using batteries and devices operating off USB power. The RoHS compliance of this component ensures that products integrating the CL05B104KO5NNNC fully comply with European Law as well as helping to further protect the environment.
Drawings / Package
Key Features
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-55°C to 125°C operation with a ±15% variance over entire temperature range
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16V maximum voltage
-
RoHS Compliant
-
Non-polarised
General Applications
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Decoupling
-
Bypass
-
Filter
Evaluation Board
No evaluation board is available for the CL05B104KO5NNNC.
CL05B104KO5NNNC Capacitor Ceramic Multilayer
Product Technical Specifications
EU RoHS
Compliant
ECCN (US)
EAR99
Part Status
Active
HTS
8532.24.00.60
Automotive
No
PPAP
No
Capacitance Value
0.1uF
Tolerance
10%
Voltage
16VDC
Equivalent Series Resistance Type
Low
Dielectric
X7R
Technology
Standard
Microwave Application
Yes
Special Features
Highly Reliable Performance|Highly Reliable Tolerance and High Speed Automatic Chip Placement on PCBs|Wide Capacitance Range
Construction
Flat
Mounting
Surface Mount
Termination Style
Pad
Number of Terminals
2
Case Style
Ceramic Chip
Dissipation Factor (%)
5
Size (mm)
1 X 0.5 X 0.5
Package/Case
0402
Minimum Operating Temperature (°C)
-55
Maximum Operating Temperature (°C)
125
Packaging
Tape and Reel
Product Length (mm)
1
Product Depth (mm)
0.5
Product Height (mm)
0.5
Product Weight (g)
0.0015
Length Tolerance (mm)
±0.05
Depth Tolerance (mm)
±0.05
Height Tolerance (mm)
±0.05

