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    2.2μF 16V Multilayer Ceramic Chip Capacitor

    $33.16
    Cost-effective SMD multilayer ceramic chip capacitor is widely used for household appliances with ceramic (porcelain) medium material, 2.2μF (2200000pF, 2200nF) capacitance, medium rated voltage 50V, 10% tolerance, 1000PCS per roll. This MLCC surface mount capacitor is compact and high performance.
    SKU: ATO-MLCC-16V225K
    This product has a minimum quantity of 10
    30-day Returns
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    Delivery date: 6-12 days

    SMD Multilayer ceramic chip capacitor is stable and has high capacitance. Laminated monolithic structure, excellent solderability and solder resistance, MLCC capacitors are suitable for reflow and wave soldering, various filtering and coupling circuits.

    Specification

    • Model: ATO-16V225K0402
    • Series: Multilayer Ceramic Chip Capacitor
    • Capacitance: 2.2μF (2200000pF, 2200nF)
    • Rated voltage: 16V
    • Tolerance: 10%
    • Operating Temperature Range: -40℃ - 105℃
    • Lead Type: SMD
    • Size: 15mm
    • Thickness: 0.5mm
    • Package: 1000PCS / 1 roll
    • Application: Household Appliances
    • Medium Material: Ceramic (Porcelain)
    • Loss: 0.01%
    • Weight: 0.5kg

    Structure

    Structure of MLCC multilayer ceramic capacitor

    Structure of multilayer ceramic chip capacitor

    Tips for troubleshooting multilayer ceramic chip capacitor

    1. When dealing with faulty chip capacitors, all capacitors should be taken out of operation first, and then the isolation switch should be opened, otherwise it is easy to cause arcing of the isolation switch and cause damage.
    2. After the capacitor fails, the casing may still be charged, so you have to wait for about 3 minutes before touching the capacitor, and use the wire to short-circuit the outgoing terminal to discharge, and confirm that there is no remaining power before disposal.
    3. When replacing the capacitor, clean up the original oil stains, which is convenient for the operation and observation of the new capacitor.
    4. The tightening part of the wire should be properly tightened to avoid damage caused by excessive force or insufficient tightening, resulting in poor contact and burning of the terminal.
    5. When disposing of faulty capacitors, if there is a situation that cannot be confirmed, consult the manufacturer's technicians in time, and do not blindly dispose of them, which will cause larger failures.
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