The C1608C0G1H470JT000N is a multilayer ceramic capacitor (MLCC) manufactured by TDK Corporation. It is a high-quality capacitor designed for general-purpose applications that require stability and reliability.
Applications
- Bypass and decoupling in power supplies
- Filtering in signal processing circuits
- Timing circuits where accuracy is critical
- Resonant circuits
- High-frequency circuits
- Consumer electronics such as smartphones and tablets
Features
- Capacitance: 47pF (Picofarads)
- Voltage Rating: 50V (Volts)
- Dielectric Material: C0G (NP0)
- Case Size: 0603 (1.6mm x 0.8mm)
- Capacitance Tolerance: ±5%
- Temperature Coefficient: 0 ±30 ppm/°C
- Termination Type: SMD (Surface Mount Device)
- Operating Temperature Range: -55°C to +125°C
Benefits
- High Stability: The C0G dielectric provides excellent stability over temperature and voltage, ensuring consistent performance.
- Low Loss: Low Equivalent Series Resistance (ESR) and Dissipation Factor (DF) minimize power loss in high-frequency applications.
- Small Size: The compact 0603 case size allows for high-density mounting on PCBs, saving valuable board space.
- Reliability: TDK capacitors are known for their high reliability and long lifespan.
- RoHS Compliant: Complies with Restriction of Hazardous Substances (RoHS) directive, making it environmentally friendly.
Additional Details
The C1608C0G1H470JT000N is constructed using a multilayer ceramic structure, which provides high capacitance in a small form factor. The C0G dielectric is a Class I ceramic material known for its exceptional stability and low losses. The capacitor is terminated with nickel barrier plating, which provides excellent solderability and prevents solder leaching. The '000N' suffix likely denotes specific packaging or production control parameters.
It is particularly well-suited for applications where stable capacitance and low losses are critical requirements. The small size and high reliability of the C1608C0G1H470JT000N make it a preferred choice for a wide range of electronic devices requiring consistent performance across varying environmental conditions.