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TDK CeraLink SMD Capacitors

By Sponsored Content December 1, 2024

TDK CeraLink SMD Capacitors are designed for fast-switching semiconductors and optimized for high frequencies up to several MHz. These capacitors provide high ripple current capability, high-temperature robustness, low power loss, low dielectric absorption, and high capacitance density. The CeraLink capacitors utilize multilayer technology with lead lanthanum zirconium titanate (PLZT) ceramic, copper inner electrodes, and nickel (CuNiSn) barrier termination. These SMD Capacitors are AEC-Q200 qualified and can achieve 56nF effective capacitance at 800V operating voltage. The CeraLink capacitors are used in power converters and inverters in renewable energy, automotive, and industrial drive applications.

 

Features:

  • High ripple current capability
  • High capacitance density
  • Increasing capacitance with DC bias up to operating voltage
  • No limitation in dV/dt
  • Optimized for high frequencies up to several MHz
  • Low Equivalent Series Inductance (ESL)
  • Low Equivalent Series Resistance (ESR)
  • High-temperature robustness with low losses at high temperatures
  • Generally low self-heating and good thermal self-regulation properties
  • Multilayer technology
  • Qualification based on AEC-Q200 Rev. E
  • RoHS-compatible PLZT ceramic
  • -40°C to 150°C operating temperature range

Applications:

  • Automotive
  • Renewable energy
  • Industrial drive applications
  • Power converters and inverters
  • DC link/snubber capacitors for power converters and inverters

Construction:

  • Multilayer technology
  • RoHS-compatible PLZT ceramic (lead lanthanum zirconium titanate, see RoHS exemption 7c-II).
  • Copper inner electrodes
  • Nickel barrier termination (Cu/Ni/Sn), recommended for lead-free soldering and compatible with
  • tin/lead solder
  • Conductive resin layer between Cu and Ni layer (soft termination type only)
Learn more

Sponsored Content by Mouser Electronics

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Filed Under: Sponsored Content
Tagged With: mouserelectronics
 

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