KEMET Industrial High Temperature +200°C C0G MLCCs

KEMET Industrial High Temperature +200°C C0G MLCCs are designed for harsh environments. These capacitors have extremely low ESR and ESL, no piezoelectric noise, and feature high thermal stability and high ripple current capability. The high temperature C0G MLCCs feature an operating temperature range of -55°C to +200°C, DC voltage ratings ranging from 10V to 200V, and are available in a variety of case sizes. These devices come with a capacitance range from 0.5pF to 470nF, and capacitance tolerances of ±0.10pF, ±0.25pF, ±0.5pF, ±1%, ±2%, ±5%, ±10%, or ±20%. Applications include aerospace engine compartments, downhole exploration, geophysical probes, and more.

Features

  • Available with Gold, SnPb, or tin terminations
  • Complies with RoHS and REACH requirements
  • Delivers high ripple current
  • Ensures thermal stability
  • Maintains capacitance over time
  • Maintains capacitance with DC voltage
  • Maintains capacitance with temperature
  • Minimizes piezoelectric noise
  • Offers high insulation resistance
  • Offers low ESR and ESL
  • Provides reliable solderability
  • Resists capacitance aging
  • Supports high-frequency operation
  • Supports operation at elevated temperatures
  • Uses a non-polar construction
  • Withstands thermal cycling

Applications

  • Aerospace engine compartments
  • Blocking circuits
  • Bypass circuits
  • Critical timing circuits
  • Current handling circuits
  • Decoupling circuits
  • Downhole exploration equipment
  • Energy storage
  • Extreme-environment systems
  • Filtering circuits
  • Geophysical probes
  • High-current circuits
  • Low-loss circuits
  • Pulse circuits
  • Transient voltage suppression
  • Tuning circuits

Technical Specifications

Parameters Values
Operating Temperature Range -55°C to +200°C
DC Voltage Ratings 10V, 16V, 25V, 50V, 100V, and 200V
Capacitance Range 0.5pF to 470nF
Capacitance Tolerances ±0.10pF, ±0.25pF, ±0.5pF, ±1%, ±2%, ±5%, ±10% or ±20%
Case Sizes 0402, 0603, 0805, 1206, 1210, 1812, and 2220