The GRM188R61H225KE11D is a multilayer ceramic capacitor (MLCC) from Murata Electronics. These capacitors are known for their small size, high capacitance values, and excellent reliability. This particular capacitor is designed for general-purpose applications requiring stable performance over a wide range of temperatures.
Applications:
- Bypass Capacitors: Used to suppress noise and ripple in power supplies and digital circuits.
- Decoupling Capacitors: Employed to provide stable voltage levels to integrated circuits (ICs).
- Smoothing Capacitors: Used to smooth out voltage fluctuations in DC power lines.
- Filtering Applications: Utilized in filtering circuits to remove unwanted frequencies.
- General-Purpose Circuits: Suitable for a wide range of applications where a stable and reliable capacitor is needed.
Features:
- High Capacitance: Offers a capacitance value of 2.2µF (microfarads).
- Small Size: Compact 0603 package size (1.6mm x 0.8mm).
- X5R Dielectric: Provides stable performance over a wide temperature range (-55°C to +85°C).
- Rated Voltage: Withstands a rated voltage of 50V.
- High Reliability: Manufactured with high-quality materials and stringent quality control processes.
Benefits:
- Stable Performance: X5R dielectric ensures stable capacitance over temperature and voltage variations.
- Compact Design: Small size allows for high-density circuit designs.
- Noise Suppression: Effectively suppresses noise and ripple in sensitive circuits.
- Reliable Operation: High-quality construction ensures long-term reliability.
- Cost-Effective: Provides excellent performance at a competitive price.
Specifications:
The GRM188R61H225KE11D features a capacitance value of 2.2µF with a tolerance of ±10%. It has a rated voltage of 50V and operates over a temperature range of -55°C to +85°C. The dielectric is X5R, ensuring stable capacitance characteristics. Its dimensions are 1.6mm x 0.8mm (0603 package). It's commonly used in a variety of consumer electronics, industrial equipment, and automotive applications where stable and reliable capacitance is required.