Allicdata Part #: | QXK2G155KTP7ZHFX-ND |
Manufacturer Part#: |
QXK2G155KTP7ZHFX |
Price: | $ 0.89 |
Product Category: | Capacitors |
Manufacturer: | Nichicon |
Short Description: | CAP FILM 1.5UF 10% 400VDC RAD |
More Detail: | 1.5µF Film Capacitor 200V 400V Polyester, Metalliz... |
DataSheet: | QXK2G155KTP7ZHFX Datasheet/PDF |
Quantity: | 1000 |
200 +: | $ 0.81099 |
Mounting Type: | Through Hole |
Features: | -- |
Ratings: | -- |
Applications: | General Purpose |
Lead Spacing: | 1.083" (27.50mm) |
Termination: | PC Pins |
Height - Seated (Max): | 1.028" (26.10mm) |
Size / Dimension: | 1.220" L x 0.484" W (31.00mm x 12.30mm) |
Package / Case: | Radial |
Series: | QXK-ZH |
Operating Temperature: | -40°C ~ 105°C |
Dielectric Material: | Polyester, Metallized |
Voltage Rating - DC: | 400V |
Voltage Rating - AC: | 200V |
Tolerance: | ±10% |
Capacitance: | 1.5µF |
Part Status: | Active |
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Film Capacitors are a kind of electrical equipment for storing electric charge and maintaining voltage. They’re also called film capacitors, film-coated capacitors, film dies, and capacitors with foils. QXK2G155KTP7ZHFX is one kind of them. In this article, we’ll introduce QXK2G155KTP7ZHFX application field and working principle.
QXK2G155KTP7ZHFX film capacitors are widely used in industrial equipment, communication equipment, and consumer electronics, mainly for AC and pulse signal filtering, frequency conversion and power factor correction. Nearly all control systems, electronic circuits and automatic devices need these kind of film capacitors. QXK2G155KTP7ZHFX can be widely used in power electronics, electronic drives, various power conversion equipment and other devices that require high frequency AC voltage compensation, so it is the most popular film capacitors used in the field.
QXK2G155KTP7ZHFX’s construction design is based on the principle of dielectric and electrostatic field. It consists of a honeycomb-like array of metal films and two high-precision dielectric layers. The metal films are configured in a specific combination and separated by dielectric layers. The metal films are connected to two electrodes, one of them being the power, the other being the ground. When a voltage is applied, the electric field forms in the area between the metal films and the two dielectric layers. This electric field forms a polarization of the molecules in the dielectric, which in turn creates an electrostatic displacement of the metal films.
The dielectric of QXK2G155KTP7ZHFX capacitors also plays an important role in the working principle. The electric field forms between the dielectric and the metal films, and the current in the electric field is then transferred to the dielectric. The electric field induces molecular polarization and the molecules are shifted. This induces a potential difference between the two layers of the dielectric, and the potential difference in turn induces an electric field. This electric field can then be used to energize the metal films, creating a voltage.
Finally, the electric field will start to flow through the metal films, and this flow will generate capacitance. The capacitance generated by QXK2G155KTP7ZHFX is much greater than the capacitance of other film capacitors. This capacitance is maintained by the fact that the electric field does not dissipate in the metal films, and thus the capacitor has a greater capacity. This allows the capacitor to store more energy for use in applications such as frequency conversion and power factor correction.
In conclusion, QXK2G155KTP7ZHFX is a kind of film capacitor that is capable of storing high-frequency, low-impedance AC and DC voltages and pulses. The working principle of the capacitor involves the creation of an electric field between the dielectric layers and the metal films, and the polarization of the dielectric molecules which creates an electric field. The electric field induces a potential difference between the two dielectric layers, and the potential difference induces an electric field which can be used to energize the metal films. This energization creates a greater capacitance, which makes it ideal for applications like frequency conversion and power factor correction.
The specific data is subject to PDF, and the above content is for reference
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