MKP1839439124HQG vs BFC238311394

Part Number
MKP1839439124HQG
BFC238311394
Category Film Capacitors Film Capacitors
Manufacturer Vishay Beyschlag/Draloric/BC Components Vishay Beyschlag/Draloric/BC Components
Description CAP FILM 0.39UF 5% 1.25KVDC AXL CAP FILM 0.39UF 5% 400VDC RADIAL
Package Tape & Box (TB) Bulk
Series MKP1839 HQ MMKP383
Features - -
Operating Temperature -55°C ~ 110°C -55°C ~ 105°C
Mounting Type Through Hole Through Hole
Package / Case Axial Radial
Applications High Pulse, DV/DT High Pulse, DV/DT
Tolerance ±5% ±5%
Size / Dimension 0.591" Dia x 1.240" L (15.00mm x 31.50mm) 1.024" L x 0.394" W (26.00mm x 10.00mm)
Termination PC Pins PC Pins
Voltage Rating - AC 425V 200V
Voltage Rating - DC 1250V (1.25kV) 400V
Lead Spacing - 0.886\" (22.50mm)
Ratings - -
Height - Seated (Max) - 0.768\" (19.50mm)
Capacitance 0.39 µF 0.39 µF
ESR (Equivalent Series Resistance) - -
Dielectric Material Polypropylene (PP), Metallized Polypropylene (PP), Metallized
What is a Film Capacitor?
2024-08-26 20:49:59, What is a Film Capacitor?
Film capacitors, also known as plastic film capacitors, are capacitors with metal foil as electrodes, overlapping them with plastic films such as polyethylene, polypropylene, polystyrene or polycarbonate from both ends and winding them into a cylindrical structure.
  • 1. Is a film capacitor AC or DC?

    AC, DC
    Film capacitors can be used in both AC and DC circuits. According to the current type, film capacitors can be divided into DC film capacitors and AC film capacitors.
    DC film capacitors
    DC film capacitors are mainly used in DC circuits and have the following characteristics:
    Large capacity: has a higher capacitance.
    Low withstand voltage: the withstand voltage value is relatively low.
    Polarity: has positive and negative poles.
    Application scenarios: commonly used in motor drives, uninterruptible power supplies (UPS), solar inverters, electronic ballasts, small automotive motors, household appliances, etc.
    AC film capacitors
    AC film capacitors are mainly used in AC circuits and have the following characteristics:
    Small capacity: relatively small capacitance.
    High withstand voltage: high withstand voltage value.
    Pass AC, block DC: conduct electricity in AC circuits, equivalent to open circuits in DC circuits.
    Application scenarios: widely used in industrial AC power supplies, asynchronous motor starting and operation, uninterruptible power supplies (UPS) and output filters of photovoltaic inverters, etc.

  • 2. Are film capacitors suitable for audio?

    Suitable
    Film capacitors are very suitable for audio applications. Film capacitors perform well in audio circuits and have the following advantages:
    Non-polarity: Film capacitors have no positive or negative poles, which gives them greater flexibility in circuit design.
    High insulation impedance: The insulation impedance of film capacitors is very high, which can effectively reduce leakage current in the circuit and improve the stability of the circuit.
    Excellent frequency characteristics: Film capacitors have a wide frequency response and can provide stable capacitance performance in the high and low frequency ranges, which is suitable for various frequency changes in audio circuits.
    Low dielectric loss: The dielectric loss of film capacitors is very small, which means that during the transmission of audio signals, less energy is lost and the integrity of the signal is maintained.
    Self-healing properties: Film capacitors have self-healing properties and can automatically repair internal defects when they occur, extending their service life.

  • 3. Are film capacitors better than electrolytic capacitors?

    Not necessarily
    Film capacitors and electrolytic capacitors each have their own advantages and disadvantages, and the specific choice depends on the application scenario.
    Advantages of film capacitors
    Non-polarity: Film capacitors are non-polar, and there is no need to distinguish between positive and negative poles, avoiding the risk of capacitor explosion due to reverse connection.
    Long life: Film capacitors have significantly longer life and better stability.
    Wide temperature range: Film capacitors have a wide operating temperature range, generally -40℃~+105℃/110℃, suitable for various ambient temperatures.
    High withstand voltage: Film capacitors can withstand overvoltages higher than 1.5 times the rated voltage in a short period of time, and have strong withstand voltage.
    Low loss: Film capacitors have low loss and are suitable for high-frequency circuits, especially for occasions requiring low loss and high-frequency applications.
    Advantages of electrolytic capacitors
    Large capacity: Electrolytic capacitors usually have large capacitance and are suitable for occasions requiring large amounts of energy storage.
    Low cost: The cost of electrolytic capacitors is relatively low, suitable for occasions with strict cost requirements.
    High energy density: Electrolytic capacitors are a strong choice when cost-effective, high-capacity energy storage is required, especially when maintaining DC output voltage during power outages.

  • 4. Will the performance of film capacitors degrade?

    Yes
    The performance of film capacitors will degrade. The performance degradation of film capacitors is mainly due to their internal structure and material properties.
    Reasons for performance degradation
    Metal plating oxidation: During the capacitor manufacturing process, there is a trace amount of air between the film layers, which may be ionized under the action of the electric field to produce ozone. Ozone is a strong oxidant that oxidizes the metal plating to produce non-conductive metal oxides, resulting in a reduction in the plate area and a decrease in the capacitor capacity.

    Humid air: During the winding process of film capacitors, if the workshop environment is not properly controlled, there will be a large amount of humid air. These humid air will produce air ionization reactions when the capacitor is working, generating ozone, which further causes the capacitor capacity to decay.
    Poor quality materials: The film materials used are of poor quality, such as uneven evaporation and defects on the film, which will cause the capacitor capacity to decay.

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