LanTu Micro AL0510-151K axial fixed inductors designed for in televisions personal computers and radios
Axial Fixed Inductors - AL0510 Series
Product Overview
The AL0510 Series Axial Fixed Inductors from SHENZHEN LANTU MICRO ELECTRIC TECHNOLOGY CO., LTD. are designed for RF choke applications. These compact, lightweight inductors feature an epoxy resin coating for enhanced humidity resistance and longevity. They offer a wide inductance range, high Q values, and self-resonant frequencies, making them suitable for automated insertion processes. The series is RoHS, Halogen Free, and REACH compliant.
Product Attributes
- Brand: SHENZHEN LANTU MICRO ELECTRIC TECHNOLOGY CO., LTD.
- Product Type: Axial Fixed Inductors
- Series: AL0510 Series
- Coating: Epoxy resin
- Certifications: RoHS, Halogen Free, REACH Compliance
- Packaging Options: Tape packaging for auto-insertion, Bulk Package
Applications
- Televisions, personal computers
- Radios, telephones
- Chargers, fast charge
- Other various electronic products
Environmental Data
- Operating Temperature: -25 to +85 (Including coils self-temperature rise)
Technical Specifications
Product Identification: AL 0510 100 K T
- Type: AL Axial Fixed Inductors
- Inductance Range: Wide
- Dimensions (L x W x H): 0510 (5.0 x 11.0 mm)
- Inductance Tolerance: J: 5%, K: 10%, L: 15%, M: 20%, P: 25%, N: 30%
- Packing: B (Bulk Package), TF (Tape)
Electrical Characteristics
| Part No | Inductance L(uH) | Tolerance | Q Min @ 1KHz | Test Freq. (MHz) | SRF Min (MHz) | DCR Max () | Rated Current (mA) Max |
|---|---|---|---|---|---|---|---|
| AL0510-3R3M | 3.3 | 20% | 20 | 7.96MHz | 50 | 0.18 | 1100 |
| AL0510-4R7M | 4.7 | 20% | 20 | 7.96MHz | 45 | 0.20 | 1000 |
| AL0510-6R8M | 6.8 | 20% | 20 | 7.96MHz | 45 | 0.25 | 790 |
| AL0510-100K | 10 | 10% | 15 | 7.96MHz | 30 | 0.45 | 750 |
| AL0510-150K | 15 | 10% | 15 | 7.96MHz | 30 | 0.50 | 650 |
| AL0510-220K | 22 | 10% | 30 | 2.52MHz | 8.0 | 0.65 | 500 |
| AL0510-330K | 33 | 10% | 30 | 2.52MHz | 6.0 | 0.75 | 400 |
| AL0510-470K | 47 | 10% | 30 | 2.52MHz | 6.3 | 0.8 | 370 |
| AL0510-680K | 68 | 10% | 30 | 2.52MHz | 5.0 | 0.8 | 350 |
| AL0510-820K | 82 | 10% | 20 | 2.52MHz | 3.8 | 0.82 | 330 |
| AL0510-101K | 100 | 10% | 20 | 2.52MHz | 3.5 | 0.90 | 300 |
| AL0510-121K | 120 | 10% | 20 | 0.796MHz | 3.3 | 1.20 | 250 |
| AL0510-151K | 150 | 10% | 20 | 0.796MHz | 3.2 | 1.80 | 225 |
| AL0510-181K | 180 | 10% | 20 | 0.796MHz | 2.8 | 2.00 | 200 |
| AL0510-221K | 220 | 10% | 30 | 0.796MHz | 2.6 | 2.10 | 180 |
| AL0510-271K | 270 | 10% | 30 | 0.796MHz | 2.4 | 2.50 | 170 |
| AL0510-331K | 330 | 10% | 30 | 0.796MHz | 2.2 | 3.00 | 160 |
| AL0510-391K | 390 | 10% | 30 | 0.796MHz | 2.0 | 3.50 | 150 |
| AL0510-471K | 470 | 10% | 30 | 0.796MHz | 1.9 | 4.00 | 140 |
| AL0510-561K | 560 | 10% | 30 | 0.796MHz | 1.8 | 5.40 | 130 |
| AL0510-681K | 680 | 10% | 40 | 0.796MHz | 1.5 | 6.00 | 120 |
| AL0510-821K | 820 | 10% | 50 | 0.796MHz | 1.2 | 7.50 | 110 |
| AL0510-102K | 1000 | 10% | 50 | 0.252MHz | 1.0 | 8.00 | 100 |
| AL0510-122K | 1200 | 10% | 60 | 0.252MHz | 0.95 | 14.50 | 95 |
| AL0510-152K | 1500 | 10% | 60 | 0.252MHz | 0.9 | 16.50 | 90 |
| AL0510-182K | 1800 | 10% | 60 | 0.252MHz | 0.9 | 19.00 | 85 |
| AL0510-222K | 2200 | 10% | 60 | 0.252MHz | 0.8 | 27.50 | 80 |
| AL0510-272K | 2700 | 10% | 60 | 0.252MHz | 0.75 | 40.00 | 75 |
| AL0510-332K | 3300 | 10% | 50 | 0.252MHz | 0.7 | 50.00 | 62 |
| AL0510-392K | 3900 | 10% | 50 | 0.252MHz | 0.65 | 53.00 | 59 |
| AL0510-472K | 4700 | 10% | 50 | 0.252MHz | 0.6 | 60.00 | 55 |
| AL0510-562K | 5600 | 10% | 50 | 0.252MHz | 0.5 | 64.00 | 40 |
| AL0510-682K | 6800 | 10% | 50 | 0.252MHz | 0.45 | 73.00 | 35 |
| AL0510-822K | 8200 | 10% | 30 | 0.252MHz | 0.4 | 80.00 | 30 |
| AL0510-103K | 10000 | 10% | 25 | 79.6KHz | 0.35 | 132.00 | 25 |
| AL0510-123K | 12000 | 10% | 25 | 79.6KHz | 0.3 | 143.00 | 20 |
| AL0510-153K | 15000 | 10% | 25 | 79.6KHz | 0.25 | 166.00 | 18 |
| AL0510-183K | 18000 | 10% | 25 | 79.6KHz | 0.2 | 185.00 | 15 |
| AL0510-223K | 22000 | 10% | 20 | 79.6KHz | 0.15 | 330.00 | 12 |
| AL0510-273K | 27000 | 10% | 20 | 79.6KHz | 0.1 | 370.00 | 10 |
| AL0510-333K | 33000 | 10% | 40 | 79.6KHz | 0.25 | 240.00 | 10 |
Current Specifications
- Saturation Current (Isat): Current at which inductance becomes 10% lower than its initial value (Ta=25).
- Temperature Rise Current (Irms): Actual DC current value when the temperature rise is T 40 (Ta=25).
- Rated DC Current: The lesser value between Isat or Irms.
Shape and Dimensions
| Part No | A (mm) | B (mm) | C (mm) | (mm) |
|---|---|---|---|---|
| AL0510 | 5.0 Max | 11.0 Max | 0.600.1 | 5.0 Max |
Packaging
- Tape Specifications (mm): Available
- Tape Specifications for T5A: Straight lead tape box packaging, standard packaging method.
- Tape and Reel Specification (mm): Series Type, Packaging Quantity (pcs), Carton Size (mm), Parts/Box, Parts/Reel, Parts/Carton.
- T5A: 1000 pcs/Box, 24,000 pcs/Carton, Carton Size: 440 x 275 x 392 mm.
Reliability Testing
The AL0510 series undergoes various reliability tests including Terminal Strength (SMT & DIP), Resistance to Flexure, Dropping, Solderability, Vibration, Thermal Shock, Low Temperature Storage, High Temperature Storage, Damp Heat (Steady States), Heat endurance of Reflow soldering, Resistance to solvent test, Overload test, and Voltage resistance test, with specified requirements and test methods.
Recommended Lead-free Wave Soldering Curve (DIP-Type)
A recommended wave soldering curve is provided as a reference for single wave soldering. Users should adjust and confirm soldering conditions based on their specific environment and equipment.
Reminders for Using These Products
- Storage: Within 12 months, under 5~40C and 35~65% RH.
- Environment: Avoid gas corrosive environments (salt, acid, alkali, etc.).
- Handling: Avoid direct contact with terminals to prevent soldering issues; handle carefully to prevent damage.
- Bending: Do not excessively bend terminals to avoid wire fracture.
- Cleaning: Do not rinse coils; contact the manufacturer if cleaning is necessary.
- Magnetic Fields: Keep away from magnets or magnetic objects.
- Preheating: Preheat components before soldering; temperature difference between solder and chip should not exceed 150C.
- Soldering Correction: Perform within specified conditions to avoid short circuits, performance degradation, or lifespan reduction.
- Self-heating: Account for self-heating during thermal design.
- Layout: For non-magnetic shield types, careful coil placement is needed to prevent malfunctions due to magnetic interference.
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