| PartNumber | NLV25T-R56J-PFD | NLV25T-R68J-EF | NLV25T-R68J-EFD |
| Description | Fixed Inductors 0.56uH 0.75ohm 325mA 2.5x2.0mm AEC-Q200 | Fixed Inductors 680nH 850mohms 300mA Wound Ferrite | Fixed Inductors 680nH 850mohms 300mA Wound Ferrite Auto |
| Manufacturer | TDK | TDK | TDK Corporation |
| Product Category | Fixed Inductors | Fixed Inductors | Fixed Inductors |
| Inductance | 560 nH | 680 nH | 680nH |
| Termination | - | - | - |
| Application | Automotive | - | - |
| Qualification | AEC-Q200 | - | - |
| Series | NLV25-PFD | NLV25-EF | NLV-EFD |
| Packaging | Reel | Reel | Digi-ReelR Alternate Packaging |
| Product | Fixed Inductors | Fixed Inductors | - |
| Brand | TDK | TDK | - |
| Product Type | Fixed Inductors | Fixed Inductors | - |
| Factory Pack Quantity | 2000 | 2000 | - |
| Subcategory | Inductors, Chokes & Coils | Inductors, Chokes & Coils | - |
| RoHS | - | Y | - |
| Termination Style | - | SMD/SMT | - |
| Shielding | - | Unshielded | Unshielded |
| Tolerance | - | 5 % | ±5% |
| Maximum DC Current | - | 0.3 A | - |
| Maximum DC Resistance | - | 850 mOhms | - |
| Self Resonant Frequency | - | 300 MHz | - |
| Minimum Operating Temperature | - | - 40 C | - |
| Maximum Operating Temperature | - | + 105 C | - |
| Q Minimum | - | 30 | - |
| Test Frequency | - | 25.2 MHz | - |
| Length | - | 2.5 mm | - |
| Width | - | 2 mm | - |
| Height | - | 1.9 mm | - |
| Core Material | - | Ferrite | - |
| Type | - | Wirewound | Wirewound |
| Unit Weight | - | 0.000882 oz | - |
| Current Rating | - | - | 300mA |
| Package Case | - | - | 1008 (2520 Metric) |
| Operating Temperature | - | - | -40°C ~ 105°C |
| Mounting Type | - | - | Surface Mount |
| Size Dimension | - | - | 0.098" L x 0.079" W (2.50mm x 2.00mm) |
| Height Seated Max | - | - | 0.075" (1.90mm) |
| Ratings | - | - | AEC-Q200 |
| DC Resistance DCR | - | - | 850 mOhm Max |
| Material Core | - | - | Ferrite |
| Current Saturation | - | - | - |
| Q Freq | - | - | 30 @ 25.2MHz |
| Frequency Self Resonant | - | - | 300MHz |
| Frequency Test | - | - | 25.2MHz |