CDV16FF271JO3 Allicdata Electronics
Allicdata Part #:

CDV16FF271JO3-ND

Manufacturer Part#:

CDV16FF271JO3

Price: $ 0.64
Product Category:

Capacitors

Manufacturer: Cornell Dubilier Electronics (CDE)
Short Description: CAP MICA 270PF 5% 1KV RADIAL
More Detail: 270pF Mica Capacitor 1kV Radial
DataSheet: CDV16FF271JO3 datasheetCDV16FF271JO3 Datasheet/PDF
Quantity: 1000
Lead Free Status / RoHS Status: Contains lead / RoHS non-compliant
Moisture Sensitivity Level (MSL): 1 (Unlimited)
200 +: $ 0.57645
Stock 1000Can Ship Immediately
$ 0.64
Specifications
Series: CDV16
Packaging: Bulk 
Lead Free Status / RoHS Status: --
Part Status: Active
Moisture Sensitivity Level (MSL): --
Capacitance: 270pF
Tolerance: ±5%
Voltage - Rated: 1kV
Dielectric Material: Mica
Operating Temperature: -55°C ~ 150°C
Mounting Type: Through Hole
Package / Case: Radial
Lead Spacing: 0.234" (5.94mm)
Features: RF, High Q, Low Loss
Size / Dimension: 0.449" L x 0.161" W (11.40mm x 4.10mm)
Height - Seated (Max): 0.469" (11.90mm)
Description

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Mica and PTFE capacitors are an important component in the field of electronic engineering due to their high energy storage capabilities and long operational life. The CDV16FF271JO3 capacitor is a high-temperature, high-voltage, field-effect transistor (FET) based mica and PTFE capacitor which is specifically designed to withstand temperatures as high as 250 °C. The capacitor\'s structure, along with its FET-based architecture, provides exceptional thermal stability and reliability in demanding applications.

The CDV16FF271JO3 capacitor combines mica and PTFE as its dielectric materials, thus providing greater capacitance density at high voltages while also reducing the device\'s overall internal resistance. The device\'s dielectric materials also act as an insulation between the capacitor\'s two electrodes, helping to prevent short-circuits. This makes the capacitor suitable for use in a range of high voltage applications.

The CDV16FF271JO3 capacitor also utilizes a double-layer structure. This consists of a PTFE dielectric layer between two layers of aluminium oxide. This ensures that the capacitor can achieve high voltages with low losses while also having excellent insulation properties. The double-layer structure of the CDV16FF271JO3 capacitor also produces excellent AC characteristics and provides excellent noise suppression.

The CDV16FF271JO3 capacitor is ideal for use in a wide range of applications including high-voltage power supplies, inverters, power control modules, industrial equipment, motor drives, microwave ovens, UPS systems, LED lights, and smart grids. The device can also be utilized in switch-mode power supplies, rectifiers, energy-saving systems, and other high-voltage applications.

The working principle of the CDV16FF271JO3 capacitor is based on the Faraday\'s Law of Electrolysis. This law states that the current flowing in an external electric circuit produces an opposing electric field in the capacitor\'s dielectric material. This electric field creates an interaction between the electric charge and the atoms in the device\'s dielectric material, thereby producing an electric potential difference. This electric potential difference is then used to store electrical charge in the capacitor.

The Faraday\'s Law of Electrolysis also dictates that the amount of charge stored in the capacitor depends on the size of the dielectric. Therefore, mica and PTFE capacitors have a higher capacitance density which allows them to store more charge. This makes them suitable for use in high-voltage applications such as those mentioned above.

The CDV16FF271JO3 capacitor is an excellent choice in a wide range of applications requiring improved thermal stability and reliability. The device\'s FET-based architecture and double-layer structure ensures excellent capacitance density, low internal resistance, and excellent noise-suppression. Additionally, the device utilizes Faraday\'s Law of Electrolysis to store electrical charges, making it suitable for a range of high-voltage applications.

The specific data is subject to PDF, and the above content is for reference

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