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C2012C0G1E153JT000N

Part No C2012C0G1E153JT000N
Manufacturer TDK Corporation
Catalog OEM Parts (C - E)
Sample
Rohs State Need to verify
ECAD Module
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RoHS Non-Compliant
Win Source Part Number 975662-C2012C0G1E153JT000N
Categories OEM Parts(C-E)
Manufacturer TDK Corporation
Popularity Low
Supply and Demand Status Shortage
Ultra Librarian 3D Model Ultra Librarian C2012C0G1E153JT000N CAD Model

Description

The C2012C0G1E153JT000N is a multilayer ceramic capacitor (MLCC) from TDK Corporation, designed for applications demanding high stability and low losses. It employs a C0G (Class 1) dielectric material, ensuring minimal capacitance change with temperature, voltage, and time.

Applications:

  • High-frequency circuits
  • Timing circuits
  • RF applications
  • Filter circuits
  • Precision analog circuits

Features:

  • Size: 2012 (EIA 0805) - 2.0mm x 1.25mm
  • Capacitance: 15nF (nanofarads)
  • Voltage Rating: 25V (Volts)
  • Dielectric: C0G (Class 1) - Offers excellent stability and low losses
  • Termination: Nickel barrier with Tin plating - Ensures good solderability
  • RoHS Compliant

Benefits:

  • Exceptional Stability: The C0G dielectric ensures minimal capacitance drift over temperature, voltage, and time.
  • Low Losses: Ideal for high-frequency applications due to its low ESR and dissipation factor.
  • Reliable Performance: Manufactured by TDK, a trusted brand known for high-quality components.
  • Compact Size: The 0805 package allows for high-density circuit designs.
  • Wide Operating Temperature Range: Suitable for use in various environmental conditions.

Technical Specifications:

The C2012C0G1E153JT000N capacitor's C0G dielectric offers a temperature coefficient of capacitance (TCC) close to 0 ±30 ppm/°C. This minimal capacitance change over temperature makes it suitable for critical timing and frequency-sensitive applications. The nickel barrier terminations ensure reliable solder joints and prevent silver migration. This capacitor is widely utilized in circuits where precision and stability are paramount.

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