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XFL4012-601MEC
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FabricantProcessus de bobine
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Pièce fabricant #XFL4012-601MEC
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Fiche technique XFL4012-601MEC DataSheet
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Spécifications
| Attribut | Valeur |
| Brand | Coilcraft |
| Product Type | Power Inductors - SMD |
| Subcategory | Inductors, Chokes & Coils |
| Series | XFL4012 |
| Mounting Style | PCB Mount |
| Termination Style | SMD/SMT |
| Inductance | 600 nH |
| Tolerance | 20 % |
| Maximum DC Current | 7.65 A |
| Maximum DC Resistance | 19.14 mOhms |
| Minimum Operating Temperature | - 40 C |
| Maximum Operating Temperature | + 125 C |
| Length | 4 mm |
| Width | 4 mm |
| Height | 1.2 mm |
| Product | Power Inductors |
| Type | High Power Inductor |
| Shielding | Shielded |
| Test Frequency | 1 MHz |
| Unit Weight | 0.003351 oz |
| Packaging | Reel |
| Factory Pack Quantity:Factory Pack Quantity | 1500 |
| Package / Case | 1616 (4040 metric) |
| Saturation Current | 6.5 A |
| Termination | Standard |
| Core Material | Composite |
| Qualification | AEC-Q200 |
| Application | Automotive |
| Core Type | Molded |
| Part # Aliases | XFL4012-601MEB |
| Self Resonant Frequency | 95 MHz |
| Case Code - in | 1616 |
| Case Code - mm | 4040 |
Présentation
Description
Equivalent
Features
1. Inductance: 600 µH, providing optimal energy storage.
2. Current Rating: High saturation current, ensuring reliable performance under load.
3. Size: Smaller footprint (4.0 x 4.0 x 1.2 mm), suitable for space-constrained designs.
4. Core Material: Ferrite core for improved efficiency and thermal performance.
5. DC Resistance (DCR): Low DCR, minimizing power loss and enhancing overall efficiency.
6. Shielded Construction: Reduces electromagnetic interference (EMI), improving circuit performance.
7. Operating Temperature Range: Wide range, allowing use in various environmental conditions.
These features make the XFL4012-601MEC an ideal choice for portable devices, automotive applications, and other electronic systems requiring efficient power management.
Pinout
Additionally, the device supports multiple I/O standards and can be configured for different voltage levels, allowing it to interface with various components effectively. The specific pin assignments and their functions can be referenced in the device's datasheet or user guide provided by Xilinx for detailed information on configuration and usage.