SFD37T45-15K391E-F Allicdata Electronics
Allicdata Part #:

SFD37T45-15K391E-F-ND

Manufacturer Part#:

SFD37T45-15K391E-F

Price: $ 0.00
Product Category:

Capacitors

Manufacturer: Cornell Dubilier Electronics (CDE)
Short Description: CAP 370VAC 2.0" OVAL QC TERM
More Detail: 15µF, 45µF Bussed Capacitor 2 Array 370V Radial, ...
DataSheet: SFD37T45-15K391E-F datasheetSFD37T45-15K391E-F Datasheet/PDF
Quantity: 1000
Moisture Sensitivity Level (MSL): 1 (Unlimited)
Lead Free Status / RoHS Status: Lead free / RoHS Compliant
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Dielectric Material: Polypropylene (PP) Film, Metallized
Height - Seated (Max): 4.030" (102.36mm)
Size / Dimension: 2.620" Dia (66.55mm), Lip
Package / Case: Radial, Can
Mounting Type: Chassis Mount
Ratings: --
Temperature Coefficient: --
Circuit Type: Bussed
Number of Capacitors: 2
Series: SF, Dual Motor Start
Voltage - Rated: 370V
Tolerance: ±10%
Capacitance: 15µF, 45µF
Moisture Sensitivity Level (MSL): --
Part Status: Active
Lead Free Status / RoHS Status: --
Packaging: Bulk 
Description

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Capacitor networks and capacitor arrays are essential components of various electronic systems. The capacitor network SFD37T45-15K391E-F is an extremely versatile capacitor array suitable for a wide range of applications. This document will discuss the applications and working principles of the SFD37T45-15K391E-F capacitor network.

The SFD37T45-15K391E-F is a four pole, five-stage capacitor array with a 600V rating. The array has a number of features which make it suitable for a wide range of applications. Firstly, the array is designed to provide robust and reliable performance even under harsh environmental conditions. The array is rated to operate over a wide temperature range and can withstand high humidity and moisture. Secondly, the array is designed to provide a high degree of input and output impedance matching to reduce power losses across the system. Thirdly, the array is designed to minimize self-heating and thermal drift. Finally, the array is designed to be easy to configure and use.

One of the primary applications of the SFD37T45-15K391E-F capacitor network is in the filtering of power supplies. The array provides high quality filtering which is capable of eliminating low frequency noise or carrying high frequency noise away from the power supply. The array is also suitable for noise suppression in audio systems, reducing unwanted noise from the system without adversely affecting the sound quality. The array is also suitable for data filtering applications, as it can quickly and efficiently reject unwanted signals from a data stream. Finally, the array is suitable for high frequency switching applications, such as in motor switching and solid state relays.

The working principle of the SFD37T45-15K391E-F capacitor network is based on the principle of capacitive reactance. Capacitive reactance is a measure of the opposition to the flow of current through a capacitor. The amount of reactance is proportional to the frequency of the current and inversely proportional to the capacitance. The resistor network in the array is designed to present a specific impedance to the incoming signals, which reduces the amplitude of the signals and reduces the amount of power transferred through the capacitor array. The array is also designed to provide an efficient path for the outgoing signals, allowing them to pass with minimal loss of power or signal integrity.

In summary, the SFD37T45-15K391E-F capacitor network is an extremely versatile and reliable array suitable for a wide range of applications. The array is designed to provide robust performance under harsh environmental conditions and is capable of providing a high degree of input and output impedance matching for efficient power management. The capacitor network is suitable for power supply filtering, audio noise suppression, data filtering, and high frequency switching applications. The array is based on the principle of capacitive reactance, which allows the array to provide efficient filtering with minimal power loss or signal degradation.

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

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