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EP4SGX290FH29I4G Description
Intel's EP4SGX290FH29I4G is a high-performance, multi-layer ceramic chip capacitor designed for use in various electronic applications. This capacitor is part of Intel's extensive lineup of electronic components, known for their reliability and quality.
Description:
The EP4SGX290FH29I4G is a multi-layer ceramic chip capacitor with a capacitance value of 2.2uF and a voltage rating of 50V. It is housed in a compact 0603 package, making it suitable for use in densely populated printed circuit boards (PCBs). The capacitor features a high-permittivity ceramic dielectric material, which allows for a high capacitance value in a small package.
Features:
- Compact 0603 package size, ideal for space-constrained applications.
- High capacitance value of 2.2uF in a small form factor.
- 50V voltage rating, suitable for use in various electronic circuits.
- High-permittivity ceramic dielectric material for reliable performance.
- RoHS compliant, ensuring environmental sustainability.
Applications:
The EP4SGX290FH29I4G is suitable for a wide range of electronic applications, including but not limited to:
- Power supply filtering: The capacitor can be used in power supply circuits to filter out high-frequency noise and stabilize the voltage.
- Signal coupling: In analog circuits, the EP4SGX290FH29I4G can be used to couple signals between stages while blocking DC voltage.
- Decoupling: The capacitor can be used to provide local energy storage and stabilize power supply voltages in digital circuits.
- Energy storage: In energy harvesting systems, the EP4SGX290FH29I4G can store energy and provide backup power during fluctuations.
- Oscillator circuits: The capacitor can be used in conjunction with an inductor to create oscillator circuits for clock generation or frequency mixing.
In summary, Intel's EP4SGX290FH29I4G is a versatile, high-performance multi-layer ceramic chip capacitor suitable for various electronic applications. Its compact size, high capacitance value, and reliability make it an excellent choice for power supply filtering, signal coupling, decoupling, energy storage, and oscillator circuits.



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