The GRM1882C1H182JA01D is a multilayer ceramic capacitor (MLCC) manufactured by Murata Electronics. This type of capacitor is widely used in electronic circuits for applications like bypassing, decoupling, and filtering. The specific part number indicates a specific combination of characteristics such as capacitance value, voltage rating, temperature coefficient, and case size.
Applications
- Bypassing in digital circuits
- Decoupling in power supplies
- Filtering in analog circuits
- Mobile devices (smartphones, tablets)
- Wireless communication devices
- Consumer electronics
- Automotive electronics
Features
- Small size: 0603 (1608 Metric)
- Capacitance: 1.8 nF
- Voltage rating: 50 VDC
- Temperature characteristic: CH
- High reliability
- RoHS compliant
- Excellent high-frequency performance
Benefits
- Effective noise suppression due to low ESR and ESL.
- Stable performance over temperature, benefiting from its CH characteristic.
- Compact size is ideal for dense PCB layouts.
- High reliability ensures consistent and long-lasting performance.
- Complies with environmental regulations, minimizing environmental impact.
- Optimized for high-frequency applications because of its excellent frequency response.
Additional Details
The GRM1882C1H182JA01D features a ceramic dielectric material providing stable electrical characteristics under various operating conditions. The CH temperature characteristic means the capacitance changes within a very narrow range (typically ±60 ppm/°C) from a reference temperature. The 0603 case size is a standard SMD package suitable for automated assembly processes. This capacitor is particularly useful in applications where a stable capacitance value is needed over a wide temperature range, such as in precision analog circuits and high-frequency applications. The manufacturer's datasheet contains comprehensive specifications, including electrical characteristics, mechanical dimensions, and soldering guidelines. Proper soldering and handling practices, as described in the datasheet, are essential to ensure reliable performance.