R75TI1560AA30J Allicdata Electronics
Allicdata Part #:

399-17924-ND

Manufacturer Part#:

R75TI1560AA30J

Price: $ 0.28
Product Category:

Capacitors

Manufacturer: KEMET
Short Description: CAP FILM 5600PF 5% 1.6KVDC RAD
More Detail: 5600pF Film Capacitor 650V 1600V (1.6kV) Polypropy...
DataSheet: R75TI1560AA30J datasheetR75TI1560AA30J Datasheet/PDF
Quantity: 1000
Lead Free Status / RoHS Status: Lead free / RoHS Compliant
1 +: $ 0.24750
10 +: $ 0.17640
100 +: $ 0.11615
500 +: $ 0.08604
1000 +: $ 0.07313
2500 +: $ 0.06883
5000 +: $ 0.06453
Stock 1000Can Ship Immediately
$ 0.28
Specifications
Operating Temperature: -55°C ~ 105°C
Features: --
Ratings: --
Applications: High Frequency, Switching; High Pulse, DV/DT; Power Factor Correction (PFC)
Lead Spacing: 0.591" (15.00mm)
Termination: PC Pins
Height - Seated (Max): 0.437" (11.10mm)
Size / Dimension: 0.709" L x 0.197" W (18.00mm x 5.00mm)
Package / Case: Radial
Mounting Type: Through Hole
Series: R75
Dielectric Material: Polypropylene (PP), Metallized
Voltage Rating - DC: 1600V (1.6kV)
Voltage Rating - AC: 650V
Tolerance: ±5%
Capacitance: 5600pF
Part Status: Active
Lead Free Status / RoHS Status: --
Packaging: Bulk 
Description

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Film capacitors offer a range of values, from very small to very large, which can accommodate just about any application. The R75TI1560AA30J film capacitor is one such device, making it a popular choice for several applications. It is designed to provide reliable operations with excellent efficiency and energy savings. In this article, we will look into the application field and working principle of the R75TI1560AA30J film capacitor.

The R75TI1560AA30J film capacitor is a very versatile device, able to serve a range of applications. The device is primarily designed for energy storage and smoothing applications, providing an excellent solution to voltage fluctuation. It is also well-suited for high voltage, high voltage/temperature, and high ripple applications. Additionally, the device versions come in both Surface Mount and Through-hole, making them suitable for a range of circuit board configurations. The device ranges from 6-800V, with a variety of capacitance values ranging from 4500 to 2700μF. All of these variants help make the R75TI1560AA30J a popular choice for many applications.

The R75TI1560AA30J film capacitor is built on a solid film design, which is a form of high reliability capacitor. This design is more durable and reliable than other capacitor types, and it is especially suited for high reliability applications. This film design also allows for very low inductance and improved frequency response, making it a good choice for high frequency applications.

At the heart of the R75TI1560AA30J film capacitor are the internal materials. The most common materials used in this application are dielectrics such as polyester, polypropylene, and polycarbonate. These films are then laminated and stamped to create the desired shape for the capacitor. The resulting capacitor can then absorb impurities and provide more stable operations.

The working principle of the R75TI1560AA30J film capacitor is actually quite simple. When a voltage is applied, the voltage will cause the circuit to be charged up by the capacitor negative and positive terminals. This movement of electrons creates an electric field within the device, so that the electrons can reposition among the capacitor plates. As time passes, the capacitor will reach a steady-state condition where the capacitance of the device is at an even level.

In conclusion, the R75TI1560AA30J film capacitor is a very versatile device that can serve a range of applications. The device is well suited for energy storage and smoothing, as well as high voltage and high ripple applications. The device version is also available in both Surface Mount and Through-hole variants. The device is built on a solid film design, allowing for a very low inductance and improved frequency response. At the heart of the device are the internal materials, which are dielectrics such as polyester, polypropylene, and polycarbonate. The working principle is quite simple, relying on an electric field to charge up the device and reach a steady-state condition.

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

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