56nH, 1000mA, 1210 RF Inductor, Ceramic Wire Wound Chip Inductor
SWI1210CT56N
RF Ceramic Wire Wound Chip Inductor, General Grade
56nH, 1000mA, 1210 RF Ceramic Wire Wound Chip Inductor SWI CT series with minimum tolerance 2% available, advance in higher self resonate frequency (SRF), high Q factor, and is widely used in the co mmunication applications such as cellular phones, cable modem, ADSL, repeaters, Bluetooth, and other electronic devices.
Product Features
- Higher Self Resonate Frequency (SRF)
- High Q factor
- Tight tolerance ± 0.2nH and 2% available
- Operating temp.: -40°C ~ +125°C (including self-temperature rise)
Product Applications
- Metaverse application
- RF circuits
| Product Category | RF Inductor - Ceramic Wire Wound Chip Inductor | Inductance (µH) | 0.056 |
| Part Number | SWI1210CT56N | Tolerance | ±2% |
| Grade | General | RDC (Ω) | 0.1 |
| Length (mm) | 3.2 | IDC (A) | 1 |
| Width (mm) | 2.6 | Operating temp.°C (LOW) | -40 |
| Height (mm) | 2.1 | Operating temp.°C (HIGH) | 125 |
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RF Ceramic Wire Wound Chip Inductor SWI1210CT Series Datasheet
Include dimensions, electrical characteristics and curve diagrams for your reference
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How can you achieve precise impedance matching and superior signal integrity in next-generation cellular and wireless communication devices?
Our 56nH RF ceramic wire wound chip inductor delivers exceptional Q factor and self-resonant frequency performance, enabling precise RF circuit tuning without post-assembly adjustments. The ±2% tight tolerance specification ensures consistent performance across your production runs, reducing costly rework and field failures. With proven reliability in cellular phones, ADSL, and Bluetooth applications, this component provides the performance foundation your communication devices require.
ABC ATEC's 45 years of specialized expertise in inductor design and manufacturing is reflected in this component's superior electrical characteristics and manufacturing precision. The ceramic wire wound construction provides excellent stability and reproducibility, while the tight tolerance specifications eliminate the need for post-assembly tuning. Whether you're developing next-generation wireless communication devices, RF filtering networks, or metaverse-enabled hardware, this high-performance RF inductor delivers the precision and reliability your engineering team demands. Contact our technical team today to discuss customization options or request detailed electrical characterization data for your specific RF circuit requirements.



