MVY10VC47RMF55TP Allicdata Electronics
Allicdata Part #:

MVY10VC47RMF55TP-ND

Manufacturer Part#:

MVY10VC47RMF55TP

Price: $ 0.00
Product Category:

Capacitors

Manufacturer: United Chemi-Con
Short Description: CAP ALUM 47UF 20% 10V SMD
More Detail: 47µF 10V Aluminum Electrolytic Capacitors Radial, ...
DataSheet: MVY10VC47RMF55TP datasheetMVY10VC47RMF55TP Datasheet/PDF
Quantity: 1000
Lead Free Status / RoHS Status: Contains lead / RoHS non-compliant
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: MVY
Packaging: Tape & Reel (TR) 
Lead Free Status / RoHS Status: --
Part Status: Obsolete
Capacitance: 47µF
Tolerance: ±20%
Voltage - Rated: 10V
ESR (Equivalent Series Resistance): --
Lifetime @ Temp.: 1000 Hrs @ 105°C
Operating Temperature: -55°C ~ 105°C
Polarization: Polar
Ratings: --
Applications: General Purpose
Ripple Current @ High Frequency: 140mA @ 100kHz
Impedance: 1 Ohms
Lead Spacing: --
Size / Dimension: 0.248" Dia (6.30mm)
Height - Seated (Max): 0.205" (5.20mm)
Surface Mount Land Size: 0.260" L x 0.260" W (6.60mm x 6.60mm)
Mounting Type: Surface Mount
Package / Case: Radial, Can - SMD
Description

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Aluminum electrolytic capacitors are widely used in various industrial applications due to its unique working principle and associated advantages. The MVY10VC47RMF55TP is an aluminum electrolytic capacitor of the brand Multicomp and is a medium-sized device suitable for applications requiring higher capacitance or lower surge current requirements. In this article, we will discuss the application field and working principle of the MVY10VC47RMF55TP.

The MVY10VC47RMF55TP has many applications, primarily in switching modes, DC-DC converters, linear power supplies, inverters, motor controls, AC adaptors and similar SMPS related equipment. It provides excellent characteristics for both low ESR (equivalent series resistance) and high ripple current, making it suitable for high frequency power applications. It also features excellent temperature stability due to its low equivalent series inductance, making it suitable for higher voltage applications. Additionally, the capacitor features a cylindrical design that provides greater heat dissipation, making it suitable for higher pulse and peak current applications.

The working principle of an aluminum electrolytic capacitor is based on the phenomenon of electrochemical double-layer formation. When a voltage is applied across the anodic and cathodic surfaces of an electrolytic solution, two Polarization layers are formed across the electrodes. These polarization layers are of opposite charge, and this creates an extremely high equivalent series resistance (ESR) between the two electrodes. This high ESR is what enables the MVY10VC47RMF55TP to store energy in an efficient manner.

The two polarization layers form a dielectric barrier between the electrodes. This barrier helps to block capacitance in low frequency AC applications, as the electrons in the layer are blocked from reaching the electrodes. This makes the capacitor suitable for applications such as phase-shift filtering and charging/discharging circuits. Additionally, the high ESR of the polarization layers will help reduce inrush current.

The MVY10VC47RMF55TP has a wide temperature range and can operate from -40 to +105°C. It also features excellent shelf life characteristics and can withstand up to 6,000 hours of operation without significant degradation. The premium wet electrolyte that Multicomp uses in this capacitor also provides a long life and high temperature endurance. In addition, the capacitor has a low ESR, which helps reduce power losses and increases efficiency.

Overall, the MVY10VC47RMF55TP is a very high quality and reliable aluminum electrolytic capacitor suitable for a wide range of industrial applications. It is a premium product that offers excellent capacitance, ripple current, temperature stability, and overall performance characteristics. It provides excellent peak current capabilities and is a great solution for applications requiring increased current capabilities and temperature stability.

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

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