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    參數(shù)資料
    型號: C062K102K5X5CM
    廠商: KEMET Corporation
    英文描述: MILITARY SPECIFCATIONS ON BACK
    中文描述: 背面軍事SPECIFCATIONS
    文件頁數(shù): 5/40頁
    文件大?。?/td> 580K
    代理商: C062K102K5X5CM
    KEMET Electronics Corporation, P.O. Box 5928, Greenville, S.C. 29606, (864) 963-6300
    5
    KEMET
    CERAMIC CONFORMALLY COATED/AXIAL & RADIAL
    PERFORMANCE CHARACTERISTICS
    GENERAL SPECIFICATIONS
    Working Voltage:
    C0G
    X7R
    Z5U
    Temperature Characteristics:
    C0G
    0 ± 30 PPM/°C from - 55°C to + 125°C
    (1)
    X7R
    ± 15% from - 55°C to + 125°C
    Z5U
    + 22%; - 56% from + 10°C to + 85°C
    Capacitance Tolerance:
    C0G
    ± 5%, ± 10%, ± 20%
    X7R
    ± 10%, ± 20%
    Z5U
    ± 20%, - 20 + 80%, - 0 + 100%
    Construction:
    Epoxy encapsulated - meets flame test require-
    ments of UL Standard 94V-0.
    High-temperature solder - meets EIA RS-198D,
    Method 302, Condition B (260°C for 10 sec.)
    Lead Material:
    Solder Coated Copper Clad Steel
    Solderability:
    EIA RS-198D, Method 302, Solder temperature -
    230° ± 5°C. Dwell time in solder - 7 ± 1/2 seconds.
    Terminal Strength:
    EIA RS-198D, Method 303, Condition A (2.2 kg)
    ELECTRICAL @ 25°C
    Capacitance:
    Within specified tolerance at 25°C and following
    test conditions.
    C0G - Greater than 1000 pF with 1.0 vrms at 1 kHz.
    - 1000 pF and less with 1.0 vrms at 1 MHz.
    X7R - with 1.0 vrms at 1 kHz.
    Z5U - with 0.5 vrms at 1 kHz.
    Dissipation Factor:
    At 25°C - same test conditions as capacitance.
    C0G - 0.15% maximum
    X7R - 2.5% maximum
    Z5U - 4.0% maximum
    Insulation Resistance:
    EIA RS-198D, Method 104, Condition A
    C0G - 100 gigohms or 1000 megohm x μF,
    whichever is less.
    X7R -100 gigohms or 1000 megohm x μF,
    whichever is less.
    Z5U -10 gigohms or 1000 megohm x μF,
    whichever is less.
    Dielectric Withstanding Voltage:
    EIA RS-198D, Method 103 (250% of rated voltage
    for 5 seconds, with current limited to 50mA)
    ENVIRONMENTAL
    Vibration:
    EIA RS-198D, Method 304, Condition D (10-2000
    Hz; 20g)
    Shock:
    EIA RS-198D, Method 305, Condition I (100g)
    Axial
    Radial
    50 & 100 volts
    50 & 100 volts
    50 & 100 volts
    100 & 200 volts
    50, 100 & 200 volts
    50 & 100 volts
    Life Test:
    EIA RS-198D, Method 201, Condition D. Test
    Potential and Temperature.
    C0G- 200% of rated voltage at + 125°C
    X7R - 200% of rated voltage at + 125°C
    Z5U - 200% of rated voltage at + 85°C
    Post-Test Limits at + 25°C are:
    Capacitance Change:
    C0G - ± 3%, or 0.25 pF, whichever is greater.
    X7R - ± 20% of initial value.
    (2)
    Z5U - ± 30% of initial value.
    (2)
    Dissipation Factor:
    C0G - 0.25% maximum
    X7R - 3.0% maximum
    Z5U - 4.0% maximum
    Insulation Resistance:
    C0G- 10 gigohms or 100 megohm x μF,
    whichever is less.
    X7R - 10 gigohms or 100 megohm x μF,
    whichever is less.
    Z5U - 1 gigohm or 100 megohm x μF,
    whichever is less.
    Moisture Resistance:
    EIA RS-198D, Method 204, Condition A (10 cycles
    without applied voltage.
    Post-Test Limits at + 25°C are:
    Capacitance Change:
    C0G - 3%, or 0.25 pF, whichever is greater.
    X7R - ± 20% of initial value.
    (2)
    Z5U - ± 30% of initial value.
    (2)
    Dissipation Factor:
    C0G - 0.25% maximum
    X7R - 3.0% maximum
    Z5U - 4.0% maximum
    Insulation Resistance:
    C0G- 10 gigohms or 100 megohm x μF,
    whichever is less.
    X7R - 10 gigohms or 100 megohm x μF,
    whichever is less.
    Z5U - 1 gigohm or 100 megohm x μF,
    whichever is less.
    Thermal Shock:
    EIA RS-198D, Method 202, Condition B (C0G &
    X7R: - 55°C to + 125°C; Z5U: - 55°C to + 85°C)
    (1)
    +53 ppm -30 ppm/°C from + 25°C to - 55°C, ± 60
    ppm below 10 pF.
    X7R & Z5U dielectrics exhibit aging characteristics;
    therefore, it is highly recommended that capacitors
    be deaged for 2 hours at 150°C and stabilized at
    room temperature for 48 hours before capacitance
    measurements are made.
    (2)
    C
    A
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