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Unshielded DIP Power Inductor LanTu Micro SPK0608-4R7MB with High Saturation and Spike Suppression Features

Price Negotiable
Price: Negotiable
MOQ: Negotiable
Delivery Time: Negotiable
Product Description

Product Overview

The SPK Series from SHENZHEN LANTU MICRO ELECTRIC TECHNOLOGY CO., LTD. are unshielded DIP power inductors designed for spike suppression. These inductors offer a low-cost solution with high power, high saturation, and low resistance characteristics. They are encapsulated in UL heat shrink tubing for excellent mechanical and environmental protection, making them suitable for a wide range of applications including TVs, audio equipment, telecommunication devices, noise filters, chargers, fast charge circuits, and DC/DC converters. Available in various package sizes and inductance ranges, they are also offered in tape packaging for automated insertion and comply with RoHS, Halogen Free, and REACH standards.

Product Attributes

  • Brand: LT- (Implied from logo)
  • Manufacturer: SHENZHEN LANTU MICRO ELECTRIC TECHNOLOGY CO., LTD.
  • Product Series: SPK Series
  • Type: Unshielded DIP Power Inductors, Spike suppression coil
  • Certifications: RoHS, Halogen Free, REACH Compliance
  • Packaging Options: Tape packaging for auto-insertion, Bulk Package (B), Tape (TF)

Technical Specifications

General Specifications

Feature Description
Low Cost Yes
Power Handling High power
Saturation High saturation
Resistance Low resistance
Shielding Unshielded
Core Protection Encapsulated by UL heat shrink tube
Package Sizes Various
Inductance Range Wide
Operating Temperature -40 to +125 (including coil self-temperature rise)

Test Equipment

Parameter Equipment
Inductance (L) HP4284A, HP4285A LCR meter or equivalent
Saturation Current (Isat) & RMS Current (Irms) HP4284+42841A or equivalent
Self-Resonant Frequency (SRF) HM 9461 or equivalent
Quality Factor (Q) HP4285A or equivalent
DC Resistance (DCR) Chroma 16502 or equivalent

Product Identification

Code Description
SPK Type (Radial Leaded Fixed Inductors)
0608, 0707, etc. External Dimensions (LWH) in mm
503 Inductance (e.g., 50 mH)
K Inductance Tolerance (e.g., 10%)
B Packaging (Bulk)

Inductance Tolerance Codes

Code Tolerance
J 5%
K 10%
L 15%
M 20%
P 25%
N 30%

Shape and Dimensions (mm)

Part No A (Max) B (Min) C () D (Max) E () F H
SPK0406 8.0 15.0 2.0 5.0 0.55 0.85 2.0
SPK0608 11.0 15.0 2.5 7.0 0.65 0.95 2.5
SPK0707 9.5 15.0 5.0 8.0 0.65 0.95 5.0
SPK0807 9.5 15.0 5.0 9.0 0.65 0.95 5.0
SPK0810 13.0 15.0 5.0 9.0 0.65 0.95 5.0
SPK0912 15.0 15.0 5.0 10.0 0.80 1.1 5.0
SPK1010 13.0 15.0 5.0 12.0 0.80 1.1 5.0
SPK1012 15.0 15.0 6.0 12.0 0.80 1.1 6.0
SPK1016 19.0 15.0 6.0 12.0 0.80 1.1 6.0
SPK1018 21.0 15.0 6.0 12.0 0.80 1.1 6.0
SPK1213 16.0 15.0 7.5 14.0 0.80 1.1 7.5

Electrical Characteristics (Sample: SPK0406 Series)

Part No Inductance L(H) Tole Q Min SRF Min (MHz) DCR Max () Rated Current Max (mA)
SPK0406-1R0M- 1.0 M 100 @1KHz 7.96 0.035 2000
SPK0406-1R2M- 1.2 M 100 @1KHz 7.96 0.058 1950
SPK0406-100M- 10 M 80 @1KHz 2.52 0.230 1000
SPK0406-101K- 100 K 45 @1KHz 0.796 1.000 400
SPK0406-103K- 10000 K 45 @1KHz 0.0796 72.000 47

Electrical Characteristics (Sample: SPK0608 Series)

Part No Inductance L(H) Tole Q Min SRF Min (MHz) DCR Max () Rated Current Max (mA)
SPK0608-3R3M- 3.3 M 20 @1KHz 7.96 0.016 3500
SPK0608-100M- 10 M 30 @1KHz 2.52 0.039 2000
SPK0608-101K- 100 K 20 @1KHz 0.796 0.350 650
SPK0608-102K- 1000 K 100 @1KHz 0.252 2.1 200
SPK0608-103K- 10000 K 70 @1KHz 0.0796 29.500 65

Electrical Characteristics (Sample: SPK0707 Series)

Part No Inductance L(H) Tole Q Min SRF Min (MHz) DCR Max () Saturation Current Max (mA) Temperature Rise Current Max (mA)
SPK0707-1R0M- 1.0 M 10 @1KHz 7.96 0.006 6600 5000
SPK0707-100M- 10 M 20 @1KHz 2.52 0.043 2100 1900
SPK0707-101K- 100 K 20 @1KHz 7.96 0.330 600 670
SPK0707-102K- 1000 K 70 @1KHz 2.52 4.300 200 190

Electrical Characteristics (Sample: SPK0807 Series)

Part No Inductance L(H) Tole Q Min SRF Min (MHz) DCR Max () Saturation Current Max (mA) Temperature Rise Current Max (mA)
SPK0807-2R2M- 2.2 M 10 @1KHz 7.96 0.011 5500 4000
SPK0807-100M- 10 M 20 @1KHz 2.52 0.031 2500 2200
SPK0807-101K- 100 K 15 @1KHz 0.796 0.230 810 750
SPK0807-102K- 1000 K 20 @1KHz 0.252 1.5 260 230

Electrical Characteristics (Sample: SPK0810 Series)

Part No Inductance L(H) Tole Q Min SRF Min (MHz) DCR Max () Rated Current Max (mA)
SPK0810-3R3M- 3.3 M 30 @1KHz 7.96 0.012 5000
SPK0810-100M- 10 M 50 @1KHz 2.52 0.025 3200
SPK0810-101K- 100 K 30 @1KHz 0.796 0.200 900
SPK0810-102K- 1000 K 40 @1KHz 0.252 1.5 280
SPK0810-103K- 10000 K 20 @1KHz 0.0796 0.42 90

Electrical Characteristics (Sample: SPK0912 Series)

Part No Inductance L(H) Tole DCR Max () Rated Current Max (mA)
SPK0912-1R0M- 1.0 M 0.011 6000
SPK0912-100M - 10 M 0.040 4000
SPK0912-101K- 100 K 0.250 1500
SPK0912-102K- 1000 K 2.000 200
SPK0912-103K- 10000 K 16.00 90

Electrical Characteristics (Sample: SPK1010 Series)

Part No Inductance L(H) Tole Q Min SRF Min (MHz) DCR Max () Saturation Current Max (mA) Temperature Rise Current Max (mA)
SPK1010-3R3M- 3.3 M 10 @1KHz 7.96 0.010 8800 5900
SPK1010-100M- 10 M 20 @1KHz 2.52 0.025 5000 3700
SPK1010-101K- 100 K 20 @1KHz 796 0.160 1600 1400
SPK1010-102K- 1000 K 20 @1KHz 252 1.1 510 500
SPK1010-103K- 10000 K 30 @1KHz 79.6 0.38 170 140

Electrical Characteristics (Sample: SPK1012 Series)

Part No Inductance L(H) Tole DCR Max () Saturation Current Max (mA) Temperature Rise Current Max (mA)
SPK1012-3R3M- 3.3 M 0.025 5500 5500
SPK1012-100M- 10 M 0.050 4200 4200
SPK1012-101K - 100 K 0.180 1500 1500
SPK1012-102K - 1000 K 1.400 300 300
SPK1012-103K- 10000 K 12.000 180 170

Electrical Characteristics (Sample: SPK1016 Series)

Part No Inductance L(H) Tole DCR Max () Saturation Current Max (mA) Temperature Rise Current Max (mA)
SPK1016-4R7M - 4.7 M 0.020 8500 5800
SPK1016-100M - 10 M 0.035 7600 5000
SPK1016-101K- 100 K 0.180 2500 2000
SPK1016-102K- 1000 K 1.200 700 700
SPK1016-103K- 10000 K 10.00 180 180

Electrical Characteristics (Sample: SPK1018 Series)

Part No Inductance L(H) Tole DCR Max () Saturation Current Max (mA) Temperature Rise Current Max (mA)
SPK1018-4R7K- 4.7 K 0.008 10000 6000
SPK1018-100K- 10 K 0.017 7000 4500
SPK1018-101K- 100 K 0.090 2200 2000
SPK1018-102K- 1000 K 0.844 660 660
SPK1018-103K- 10000 K 7.3000 220 220

Electrical Characteristics (Sample: SPK1213 Series)

Part No Inductance L(H) Tole DCR Max () Saturation Current Max (mA) Temperature Rise Current Max (mA)
SPK1213-100M- 10 M 0.023 8000 5100
SPK1213-101K- 100 K 0.097 2600 2500
SPK1213-102K- 1000 K 1.000 780 780
SPK1213-103K- 10000 K 10.000 240 240

Current Definitions

Term Definition
Saturation Current (Isat) DC current at which inductance drops 10% from its value without current.
Temperature Rise Current (Irms) The actual value of DC current when the temperature rise is T 40 (Ta=25).
Rated DC Current The lesser of Isat or Irms.

Packaging Information

Part No. PCS per Bag
SPK0406 1000
SPK0608 1000
SPK0707 1000
SPK0807 1000
SPK0810 500
SPK0912 300
SPK1010 200
SPK1012 200
SPK1016 200
SPK1018 200
SPK1213 200

Reliability Testing Summary

Test Item Requirements Test Method Reference
Terminal Strength No loose terminal after force application. GB/T 2423.60-2008
Resistance to Flexure No visible mechanical damage. JIS C 5321:1997
Dropping No case deformation, appearance change, short, or open. GB/T 2423.7-2018
Solderability Terminals must have 95% minimum solder coverage. GB/T 2423.28-2005
Vibration Inductance change: Within 10%; Q factor change: Within 20%. GB/T 2423.10-2019
Thermal Shock Inductance change: Within 10%; Q factor change: Within 20%. GB/T 2423.22-2012 Method Na
Low temperature Storage Inductance change: Within 10%; Q factor change: Within 20%. GB/T 2423.1-2008 Method Ab
High temperature Storage Inductance change: Within 10%; Q factor change: Within 20%. GB/T 2423.2-2008 Method Bb
Damp Heat (Steady States) Inductance change: Within 10%; Q factor change: Within 20%. GB/T 2423.3-2016
Heat endurance of Reflow soldering L/L10%; Q/Q30%; DCR/DCR10%. GJB 360B-2009
Resistance to solvent test No case deformation or change in appearance or obliteration of marking. IEC 68-2-45:1993
Overload test No smoke, peculiar smell, or fire during test. JIS C5311-6.13
Voltage resistance test No breakdown during test. MIL-STD-202G Method 301

Soldering Recommendations

Lead-free Wave Soldering (DIP-TYP) Recommended Curve:

Note: The recommended reflow conditions are based on the manufacturer's soldering equipment. Users should adjust and confirm conditions based on their specific environment and equipment.

Reminders for Using These Products

  • Storage Period: Within 12 months. Conditions: Temperature 5~40C, Humidity 35~65% RH or less.
  • Avoid use and storage in corrosive environments (salt, acid, alkali, etc.).
  • Avoid touching electrodes directly with bare hands due to oil secretions affecting soldering.
  • Handle products carefully to prevent damage from dropping or improper removal.
  • Do not bend terminals with excessive stress to avoid wire fracture.
  • Do not rinse coils; contact the manufacturer 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 to avoid overheating.
  • Allow sufficient thermal design margin for self-heating when power is on.
  • For non-magnetic shield types, careful PCB layout is required to prevent malfunctions due to magnetic interference.

Get in Touch

Have questions about our products or want to discuss a custom order? Our team is ready to help you.

Company Beijing Silk Road Enterprise Management Services Co., Ltd.
Location 16 Floor, Unit B, Jiatai International Mansion, No 41, Dongsihuan Zhong Road, Chaoyang District, Beijing
Contact Person Sellina

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