HV RAD-LDD Indust C0G HV Series, Ceramic Capacitors

Results:
105
Manufacturer
Series
Capacitance
Lead Spacing
Size / Dimension
Voltage - Rated
Height - Seated (Max)
Tolerance
Operating Temperature
Applications
Mounting Type
Temperature Coefficient
Ratings
Package / Case
Thickness (Max)
Features
Failure Rate
Lead Style
Results remaining105
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HV RAD-LDD Indust C0G HV
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ImageProduct DetailPriceAvailabilityECAD ModelMounting TypeToleranceOperating TemperaturePackage / CaseRatingsCapacitanceVoltage - RatedTemperature CoefficientApplicationsFeaturesFailure RateSeriesSize / DimensionHeight - Seated (Max)Thickness (Max)Lead SpacingLead Style
100HV35N331JC
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Quantity
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PCB Symbol, Footprint & 3D Model
Through Hole
±5%
-55°C ~ 125°C
Radial
-
330 pF
10000V (10kV)
C0G, NP0
SMPS Filtering
High Voltage
-
HV RAD-LDD Indust C0G HV
1.250" L x 0.270" W (31.75mm x 6.86mm)
0.600" (15.24mm)
-
1.175" (29.84mm)
Straight
100HV34N271JN
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Quantity
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PCB Symbol, Footprint & 3D Model
Through Hole
±5%
-55°C ~ 125°C
Radial
-
270 pF
10000V (10kV)
C0G, NP0
SMPS Filtering
High Voltage
-
HV RAD-LDD Indust C0G HV
1.050" L x 0.270" W (26.67mm x 6.86mm)
0.500" (12.70mm)
-
0.975" (24.76mm)
Straight
10HV23N102KN
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Quantity
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PCB Symbol, Footprint & 3D Model
Through Hole
±10%
-55°C ~ 125°C
Radial
-
1000 pF
1000V (1kV)
C0G, NP0
SMPS Filtering
High Voltage
-
HV RAD-LDD Indust C0G HV
0.470" L x 0.270" W (11.94mm x 6.86mm)
0.400" (10.16mm)
-
0.375" (9.52mm)
Straight
05HV21N561JN
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Quantity
Contact us
PCB Symbol, Footprint & 3D Model
Through Hole
±5%
-55°C ~ 125°C
Radial
-
560 pF
500V
C0G, NP0
SMPS Filtering
High Voltage
-
HV RAD-LDD Indust C0G HV
0.320" L x 0.250" W (8.13mm x 6.35mm)
0.280" (7.11mm)
-
0.220" (5.59mm)
Straight
100HV35N101KNM
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Quantity
Contact us
PCB Symbol, Footprint & 3D Model
Through Hole
±10%
-55°C ~ 125°C
Radial
-
100 pF
10000V (10kV)
C0G, NP0
SMPS Filtering
High Voltage
-
HV RAD-LDD Indust C0G HV
1.250" L x 0.270" W (31.75mm x 6.86mm)
0.600" (15.24mm)
-
1.175" (29.84mm)
Straight

About  Ceramic Capacitors

Capacitors are essential passive electronic components that have the ability to store electric charge. Ceramic capacitors, specifically, are constructed using alternating layers of ceramic material as the dielectric and metal layers as the non-polarized electrodes. Ceramic capacitors find extensive use in various applications such as automotive electronics, bypassing, decoupling, filtering, radio frequency (RF) circuits, and electrostatic discharge (ESD) protection. They are particularly valued for their compact size, high capacitance values, and excellent performance across a wide range of frequencies. Through-hole versions of ceramic capacitors are commonly found in disc or "blob" shapes, featuring two wire leads for easy insertion into circuit boards. This form factor allows for convenient soldering and secure mechanical connection. Ceramic capacitors offer numerous advantages, including high reliability, low cost, and stability under different environmental conditions. The dielectric material used in these capacitors determines their temperature coefficient and voltage characteristics. Manufacturers typically provide datasheets specifying the capacitance values, voltage ratings, tolerances, and other important parameters to aid in proper selection and implementation. In summary, ceramic capacitors are widely used in electronics for various purposes such as automotive applications, signal filtering, and ESD protection. They consist of alternating layers of ceramic and metal, with through-hole versions having a disc or blob-like shape and two wire leads for easy integration into circuit boards. These capacitors exhibit excellent performance, compact size, and reliability, making them a popular choice in electronic designs.