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KEMET C430C682J5G5TA

KEMET - C430C682J5G5TA - Capacitor; Ceramic; Cap 6800pF; Tol 5%; Axial; Vol-Rtg 50V View larger image View larger image
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KEMET Capacitor; Ceramic; Cap 6800pF; Tol 5%; Axial; Vol-Rtg 50V
Mfr. Part#:
C430C682J5G5TA

Allied Stock#: 70095002

 RoHS Compliant Part

 

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View C430C682J5G5TA Datasheet Datasheet

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Pricing (USD) & Availability
Standard Pricing
$0.742 (Each)
1$0.742
25$0.412
100$0.337
250$0.309
500$0.285
1000$0.265
2500$0.247
Availability

0 can ship immediately.

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Minimum Quantity: 200 |  Multiples Of: 200

Specifications

Brand/Series: Aximax 400 Series
Capacitance: 6800 pF
Dielectric Characteristic: COG (NP0)
Material, Element: Ceramic
Termination: Axial Leads
Tolerance: ±5 %
Voltage Rating: 50 VDC

Overview


  • Working Voltage:
    C0G - 50 & 100
    X7R - 50 & 100
    Z5U - 50& 100
  • Dielectric:
    C0G - 0± 30PPM / -55 C to + 125 C
    X7R - ± 15% from -55 C to + 125 C
    Z5U - ± 22% / - 56% from + 10 C to + 85 C
  • Tolerance:
    C0G - ±0.5pF, ±1%,±2%, ±5%,±10%
    X7R - ±10%, ± 20%, +80% / -20%, +100% / -0%
    Z5U - ±20%, +80% / -20%

    Multilayer ceramic capacitors are available in a variety of physical sizes and configurations, including leaded devices and surface mounted chips. Leaded styles include molded and conformally coated parts with axial and radial leads. Ceramic dielectric materials can be formulated with a wide range of characteristics. The EIA standard for ceramic dielectric capacitors (RS-198) divides ceramic dielectrics into the following classes: Class I, Class II and Class III. Class I: Temperature compensating capacitors, suitable for resonant circuit application or other applications where high Q and stability of capacitance characteristics are required. Class II: Stable capacitors, suitable for bypass or coupling applications or frequency discriminating circuits where Q and stability of capacitance characteristics are not of major importance. Class III: General purpose capacitors, suitable for by-pass coupling or other appllications in which dielectic losses, high insulation resistance and stability of capacitance characteristics are of little or no importance.