ceramic capacitors

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High‑Performance Ceramic Capacitors for Signal Integrity These multilayer ceramic capacitors (MLCCs) provide reliable, high‑frequency performance in compact packages, ideal for filtering, coupling, and decoupling in a wide range of consumer and industrial electronics. Utilizing a ceramic dielectric (X7R/X5R) and a copper core, they offer low equivalent series resistance (ESR), excellent temperature stability, and high voltage handling in both radial and surface‑mount formats. They are engineered to meet stringent EMI/EMC requirements while maintaining pristine signal integrity up to several gigahertz. Whether employed in power‑rail smoothing, clock‑signal conditioning, or noise suppression, these capacitors are tailored to deliver consistent capacitance over temperature, voltage,…

980 in stock

Description

High‑Performance Ceramic Capacitors for Signal Integrity

These multilayer ceramic capacitors (MLCCs) provide reliable, high‑frequency performance in compact packages, ideal for filtering, coupling, and decoupling in a wide range of consumer and industrial electronics. Utilizing a ceramic dielectric (X7R/X5R) and a copper core, they offer low equivalent series resistance (ESR), excellent temperature stability, and high voltage handling in both radial and surface‑mount formats. They are engineered to meet stringent EMI/EMC requirements while maintaining pristine signal integrity up to several gigahertz.

Whether employed in power‑rail smoothing, clock‑signal conditioning, or noise suppression, these capacitors are tailored to deliver consistent capacitance over temperature, voltage, and frequency variations. Their robust construction and low inductance make them a go‑to component for designers demanding precision and space savings.

  • Key Spec 1: Capacitance range 0.01 µF–10 µF, tolerance ±5 % / ±10 %
  • Key Spec 2: Voltage rating up to 50 V (SMD) / 100 V (radial)
  • Key Spec 3: ESR < 0.1 Ω at 100 kHz, operating temperature –55 °C → +125 °C
  • Common Use Case: Power‑rail decoupling on high‑speed processors and FPGA board design

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