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C2012COG1H272JT

Part No C2012COG1H272JT
Manufacturer TDK Corporation
Catalog OEM Parts (C - E)
Sample
Rohs State Need to verify
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Win Source Part Number 977253-C2012COG1H272JT
Categories OEM Parts(C-E)
Manufacturer TDK Corporation
Popularity Low
Supply and Demand Status Shortage
Ultra Librarian 3D Model Ultra Librarian C2012COG1H272JT CAD Model

Description

The C2012COG1H272JT is a multilayer ceramic capacitor (MLCC) manufactured by TDK Corporation. It is designed for high-frequency and high-stability applications due to its C0G dielectric material.

Applications

  • RF circuits
  • High-frequency filters
  • Timing circuits
  • Oscillators
  • Resonant circuits
  • Bypass capacitors in high-speed digital circuits

Features

  • Capacitance: 2700pF (Picofarads)
  • Voltage Rating: 50V (Volts)
  • Dielectric Material: C0G (NP0)
  • Case Size: 0805 (2.0mm x 1.25mm)
  • Capacitance Tolerance: ±5%
  • Temperature Coefficient: 0 ±30 ppm/°C
  • Termination: Nickel barrier with tin plating
  • Operating Temperature Range: -55°C to +125°C

Benefits

  • High Stability: The C0G dielectric ensures extremely stable capacitance over temperature and voltage, making it ideal for critical applications.
  • Low Loss: Exhibits very low Equivalent Series Resistance (ESR) and Dissipation Factor (DF), minimizing power loss in high-frequency circuits.
  • Small Size: The 0805 case size allows for high-density mounting on PCBs, saving space while providing significant capacitance.
  • Reliability: TDK capacitors are known for their high reliability and long lifespan.
  • RoHS Compliant: Complies with the Restriction of Hazardous Substances directive.

Additional Details

The C2012COG1H272JT is built using a multilayer structure with C0G dielectric layers and metal electrodes. The C0G (NP0) dielectric is a Class I ceramic material known for its exceptional stability and low losses. The nickel barrier termination provides excellent solderability and prevents solder leaching during reflow soldering.

It is particularly well-suited for applications where stable capacitance and minimal losses are critical, such as in RF circuits, oscillators, and high-frequency filters. The small size and stable characteristics make it a preferred choice in demanding electronic designs.

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