Polymer Electrolytic Capacitors - T528 Series

KEMET’s low-ESL KO-CAP™ facedown terminal polymer electrolytic capacitors feature halogen-free epoxy and are RoHS-compliant

Image of KEMET Low ESL Polymer Electrolytic Capacitors – T528 SeriesKEMET, a YAGEO Company's T528 series low ESL facedown terminal polymer electrolytic combines ultra-low ESR and high capacitance in a package design that offers one of the lowest ESL in the market. This series offers exceptional performance for high-speed microprocessor, FPGA, or ASIC decoupling designs. The T528 utilizes a unique termination design that allows for a reduction in the inductance loop area and comes in a low profile 1.7 mm case height. This series offers improved capacitance retention at frequencies of up to 1 MHz.

Features
  • Low ESL < 0.7 nH at 20 MHz
  • Improved volumetric efficiency
  • High-frequency capacitance retention
  • 100% accelerated steady-state aging
  • 100% surge current tested
  • EIA standard case sizes
  • Halogen-free epoxy and RoHS-compliant
  • Lead-free, reflow capable at +260°C
Applications
  • High-speed servers
  • Microprocessor decoupling
  • High-ripple current applications
  • FPGA
  • ASIC Decoupling designs

Click to Enlarge Diagrams

Aerospace Considerations
    Image of KEMET Low ESL Polymer Electrolytic Capacitors – T528 Series - Aerospace 
DC/DC Conversion - Ripple Reduction
    Image of KEMET Low ESL Polymer Electrolytic Capacitors – T528 Series - RippleReduction 
High Volumetric Efficiency
    Image of KEMET Low ESL Polymer Electrolytic Capacitors – T528 Series - High Volume 
Long Life and Capacitance Stability
    Image of KEMET Low ESL Polymer Electrolytic Capacitors – T528 Series - Long LIfe 
Derating
    Image of KEMET Low ESL Polymer Electrolytic Capacitors – T528 Series - Derating 
Mechanical Construction
    Image of KEMET Low ESL Polymer Electrolytic Capacitors – T528 Series - Mechanical Construction 
Safety/Piezo Effect
    Image of KEMET Low ESL Polymer Electrolytic Capacitors – T528 Series - Safety 
Published: 2024-03-26