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LanTu Micro SDRI127-1R5NT Shielded SMD Power Inductor Designed for Automatic Mounting and Power Supplies

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LanTu Micro SDRI127-1R5NT Shielded SMD Power Inductor Designed for Automatic Mounting and Power Supplies

Current - Saturation (Isat) : 26A

Description : 26A SMD,12.5x12.5mm Fixed Inductors RoHS

Mfr. Part # : SDRI127-1R5NT

Model Number : SDRI127-1R5NT

Package : SMD,12.5x12.5mm

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Product Overview

The SDRI127 Series Shielded SMD Power Inductors from SHENZHEN LANTU MICRO ELECTRIC TECHNOLOGY CO., LTD. are designed for high-performance power supply applications. Featuring a closed magnetic circuit design to minimize leakage, high saturation current, and low DC resistance, these inductors are ideal for automatic mounting due to their high-precision dimensions. They are available in various package sizes and a wide inductance range, complying with RoHS, Halogen Free, and REACH standards. Applications include power supplies for VTRs, LCD televisions, notebook PCs, portable communication equipment, and DC/DC converters.

Product Attributes

  • Brand: LANTU MICRO
  • Origin: SHENZHEN, CHINA
  • Series: SDRI127
  • Type: Shielded SMD Power Inductors
  • Magnetic Circuit Design: Closed magnetic circuit
  • Certifications: RoHS, Halogen Free, REACH Compliance

Technical Specifications

Part No. Inductance (H) Tolerance Test Frequency (L) Q Factor Min Test Frequency (Q) DCR () Max Saturation Current (A) Max Temperature Rise Current (A) Max
SDRI127-1R0N 1.0 30% 100KHz 20 1MHz 0.009 26.00 10.00
SDRI127-1R5N 1.5 30% 100KHz 20 1MHz 0.0096 26.00 10.00
SDRI127-2R2N 2.2 30% 100KHz 20 1MHz 0.012 21.00 8.00
SDRI127-2R7N 2.7 30% 100KHz 20 1MHz 0.013 19.00 8.00
SDRI127-3R3N 3.3 30% 100KHz 20 1MHz 0.013 16.00 8.00
SDRI127-3R9N 3.9 30% 100KHz 20 1MHz 0.013 14.00 7.50
SDRI1274R7N 4.7 30% 100KHz 30 1MHz 0.016 12.00 6.80
SDRI127-6R1N 6.1 30% 100KHz 30 1MHz 0.018 11.50 6.60
SDRI127-6R8N 6.8 30% 100KHz 30 1MHz 0.019 10.50 6.60
SDRI127-7R6N 7.6 30% 100KHz 30 1MHz 0.020 10.00 5.90
SDRI127-8R2N 8.2 30% 100KHz 30 1MHz 0.020 9.50 5.60
SDRI127-100N 10 30% 100KHz 35 1MHz 0.021 9.00 5.40
SDRI127-120M 12 20% 100KHz 35 1MHz 0.240 8.50 4.90
SDRI127-150M 15 20% 100KHz 35 1MHz 0.027 8.00 4.50
SDRI127-180M 18 20% 100KHz 35 1MHz 0.039 7.50 3.90
SDRI127-220M 22 20% 100KHz 35 1MHz 0.043 7.00 3.60
SDRI127-270M 27 20% 100KHz 35 1MHz 0.046 6.50 3.40
SDRI127-330M 33 20% 100KHz 35 1MHz 0.065 5.50 3.00
SDRI127-390M 39 20% 100KHz 35 1MHz 0.072 5.00 2.75
SDRI127-470M 47 20% 100KHz 35 1MHz 0.100 4.60 2.50
SDRI127-560M 56 20% 100KHz 35 1MHz 0.110 4.40 2.35
SDRI127-680M 68 20% 100KHz 35 1MHz 0.140 4.00 2.10
SDRI127-820M 82 20% 100KHz 35 1MHz 0.160 3.80 1.95
SDRI127-101M 100 20% 100KHz 40 0.796MHz 0.220 3.50 1.70
SDRI127-121M 120 20% 100KHz 40 0.796MHz 0.250 3.00 1.60
SDRI127-151M 150 20% 100KHz 40 0.796MHz 0.280 2.70 1.42
SDRI127-181M 180 20% 100KHz 40 0.796MHz 0.350 2.50 1.30
SDRI127-221M 220 20% 100KHz 40 0.796MHz 0.390 2.00 1.16
SDRI127-271M 270 20% 100KHz 40 0.796MHz 0.560 1.95 1.06
SDRI127-331M 330 20% 100KHz 40 0.796MHz 0.640 1.90 0.95
SDRI127-391M 390 20% 100KHz 40 0.796MHz 0.700 1.65 0.88
SDRI127-471M 470 20% 100KHz 40 0.796MHz 0.980 1.50 0.79
SDRI127-561M 560 20% 100KHz 40 0.796MHz 1.070 1.40 0.73
SDRI127-681M 680 20% 100KHz 40 0.796MHz 1.460 1.30 0.67
SDRI127-821M 820 20% 100KHz 40 0.796MHz 1.640 1.10 0.60
SDRI127-102M 1000 20% 100KHz 40 0.796MHz 1.820 1.00 0.55
Part No. Dimensions (LWH) (mm) Inductance Tolerance Codes Packing Codes
SDRI127 12.512.58.0 J:5%, K: 10%, L: 15%, M: 20%, P: 25%, N: 30% T: Tape & Reel, B: Bulk Package

Environmental Data:

  • Operating Temperature: -40 to +125 (Including coils self-temperature rise)

Test Equipment:

  • Inductance (L): HP4284A, HP4285A LCR meter or equivalent
  • Saturation Current (Isat) & Temperature Rise Current (Irms): HP4284+42841A or equivalent
  • Quality Factor (Q): HP4285A or equivalent
  • DC Resistance (DCR): Chroma 16502 or equivalent

Definitions:

  • Saturation Current: DC current at which inductance drops 30% from its value without current.
  • Temperature Rise Current: The actual value of DC current when the temperature rise is T 40 (Ta=25).
  • Rated DC Current: The lesser value between Isat and Irms.

Special Remind: Circuit design, component, PCB trace size and thickness, airflow and other cooling provisions all affect the part temperature. Part temperature should be verified in the end application.

Recommended Land Pattern: (Refer to diagram in source document)

Packaging:

  • Tape and Reel Specifications: (Refer to diagrams and dimensions in source document)
  • Reel Dimensions: (Refer to diagram in source document)
  • Tape Dimension: (Refer to diagram in source document)
  • Cover tape peel off condition: Peel force 10 to 120g, Peeling angle 165 to 180
  • Packing Quantity: REEL, Bag, Inside Box, Outside Carton (Refer to table in source document)

Reliability Testing: (Refer to detailed requirements and test methods in source document for Terminal Strength, Resistance to Flexure, Dropping, Solderability, Vibration, Thermal Shock, Low Temperature Storage, High Temperature Storage, Damp Heat, Heat endurance of Reflow soldering, Resistance to solvent, Overload test, Voltage resistance test)

Recommended Reflow Soldering Curve: (Refer to diagram in source document. Conditions may need adjustment based on user's environment/equipment.)

Reminders for Using These Products:

  • Storage Period: Within 12 months. Storage conditions: 5~40C, 35~65% RH.
  • Avoid use and storage in gas corrosive environments (salt, acid, alkali, etc.).
  • Avoid direct contact with terminals by bare hands to prevent soldering issues.
  • Handle products carefully to prevent damage.
  • Do not bend terminals excessively.
  • Do not rinse coils; contact supplier if cleaning is necessary.
  • Do not expose products to magnets or magnetic fields.
  • Preheat components before soldering; temperature difference between solder and chip should not exceed 150C.
  • Soldering corrections after mounting should be within specified conditions. Overheating may cause issues.
  • Allow sufficient margin for thermal design due to self-heating.
  • For non-magnetic shield types, careful PCB layout is required to prevent malfunction due to magnetic interference.

2410121625_LanTu-Micro-SDRI127-1R5NT_C19267902.pdf


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