The CS0402-27NJ-S is a wire-wound chip inductor manufactured by Chilisin. This inductor is designed for high-frequency applications and provides excellent performance in a small form factor. It is commonly used for impedance matching, filtering, and RF signal processing in various electronic circuits.
Applications
- Mobile communication devices (smartphones, tablets)
- Wireless communication systems (Bluetooth, Wi-Fi)
- RF transceivers
- High-frequency circuits
- Filters
Features
- Small size: 0402 (0.4 x 0.2 mm) footprint
- High Q value
- Excellent SRF (Self-Resonant Frequency) characteristics
- Wire-wound construction
- Operating temperature: -55°C to +125°C
- Inductance: 27nH
- Tolerance: ±5%
Benefits
- Improved signal integrity due to high Q value
- Reduced board space requirements due to its small size
- Stable performance over a wide temperature range
- Reliable performance in high-frequency applications
- Provides efficient impedance matching
Additional Details
The CS0402-27NJ-S features a wire-wound construction, resulting in a high Q factor and excellent performance at high frequencies. The self-resonant frequency (SRF) is a critical parameter that indicates the frequency at which the inductor's impedance becomes purely resistive. The high SRF of this part allows for its use in high-frequency applications without significant performance degradation. Its compact size is ideal for miniaturized electronic devices. The 27nH inductance with a tolerance of ±5% makes it suitable for precise circuit design. The inductor is designed for reflow soldering processes, ensuring ease of manufacturing. The operating temperature range of -55°C to +125°C makes it suitable for a wide range of environmental conditions. This component is RoHS compliant. The small size makes it suitable for dense board layouts. Its wire wound construction makes it robust compared to thin film inductors. The inductor is suitable for use in RF filters and impedance matching networks. The product packaging is designed for automated assembly. The high Q value contributes to reduced signal loss. The component is widely used in wireless communication devices.