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LPS5030 Series Low Profile
Shielded Power Inductors

  • Compact shielded power inductor – only 5 mm square
  • Handles current up to 4 Amps!
  • Inductance values from 0.9 µH to 4.7 mH
  • AEC-Q200 Grade 3 (−40°C to +85°C)
  • RoHS-compliant. 260°C compatible. Silver-palladium-platinum-glass frit terminations
  • COTS Plus tin-silver-copper and tin-lead terminations available

SPECIFICATIONS


Part number1 Inductance2
±20% (µH)
DCR
max
3
(Ohms)
SRF
typ4
(MHz)
Isat (A)5 Irms (A)6
10% drop 20% drop 30% drop 20°C rise 40°C rise
LPS5030-901ML_ 0.90 0.040 250 3.8 4.0 4.1 2.10 2.80
LPS5030-122ML_ 1.2 0.043 210 3.5 3.6 3.7 2.00 2.65
LPS5030-172ML_ 1.7 0.051 190 3.0 3.2 3.3 1.90 2.50
LPS5030-222ML_ 2.2 0.057 168 2.9 3.1 3.2 1.60 2.15
LPS5030-332ML_ 3.3 0.066 125 2.3 2.5 2.6 1.40 1.80
LPS5030-472ML_ 4.7 0.083 84 1.9 2.0 2.0 1.30 1.75
LPS5030-562ML_ 5.6 0.089 70 1.8 1.8 1.9 1.25 1.65
LPS5030-682ML_ 6.8 0.099 56 1.6 1.7 1.7 1.20 1.60
LPS5030-822ML_ 8.2 0.125 45 1.6 1.7 1.7 1.10 1.55
LPS5030-103ML_ 10 0.127 30 1.4 1.4 1.4 1.00 1.50
LPS5030-123ML_ 12 0.155 24 1.3 1.4 1.4 0.95 1.40
LPS5030-153ML_ 15 0.160 32 0.80 0.90 0.90 0.92 1.40
LPS5030-183ML_ 18 0.170 27 0.80 0.82 0.87 0.90 1.30
LPS5030-223ML_ 22 0.190 24 0.70 0.75 0.78 0.88 1.25
LPS5030-333ML_ 33 0.260 19 0.60 0.63 0.64 0.85 1.20
LPS5030-473ML_ 47 0.330 16 0.50 0.53 0.55 0.75 1.00
LPS5030-683ML_ 68 0.440 12 0.40 0.43 0.44 0.65 0.900
LPS5030-823ML_ 82 0.470 11 0.38 0.40 0.40 0.60 0.830
LPS5030-104ML_ 100 0.600 10 0.27 0.31 0.32 0.55 0.750
LPS5030-124ML_ 120 0.800 9.0 0.26 0.29 0.30 0.45 0.660
LPS5030-154ML_ 150 0.860 7.5 0.22 0.25 0.263 0.42 0.570
LPS5030-224ML_ 220 1.35 6.0 0.21 0.235 0.245 0.36 0.500
LPS5030-334ML_ 330 1.80 5.0 0.155 0.155 0.200 0.32 0.420
LPS5030-474ML_ 470 2.80 4.0 0.117 0.134 0.146 0.28 0.370
LPS5030-564ML_ 560 3.20 3.6 0.110 0.130 0.140 0.23 0.320
LPS5030-684ML_ 680 3.80 3.0 0.100 0.120 0.126 0.20 0.290
LPS5030-105ML_ 1000 5.10 2.5 0.100 0.110 0.110 0.18 0.250
LPS5030-155ML_ 1500 7.60 2.0 0.068 0.080 0.089 0.15 0.210
LPS5030-185ML_ 1800 10.0 1.8 0.069 0.081 0.086 0.13 0.170
LPS5030-225ML_ 2200 11.0 1.6 0.063 0.074 0.080 0.10 0.150
LPS5030-335ML_ 3300 19.5 1.3 0.056 0.063 0.067 0.090 0.125
LPS5030-475ML_ 4700 26.0 1.1 0.049 0.056 0.059 0.080 0.110
1 When ordering, please specify termination and packaging codes: e.g. LPS5030-475MLC
  Termination: L = Silver-palladium-platinum-glass frit terminations
Special order, added cost: T = RoHS tin-silver-copper (95.5/4/0.5) or
S
= non-RoHS tin-lead (63/37).
Packaging:

 

C = 7" machine-ready reel
EIA-481 embossed plastic tape 750 parts per full reel).
B = Less than full reel
In tape, but not machine-ready. To have a leader and trailer added ($25 charge), use code letter C instead.
D = 13" machine-ready reel
EIA-481 embossed plastic tape. Factory order only, not stocked (2500 parts per full reel).
2 Inductance tested at 100 kHz, 0.1 Vrms, 0 Adc using an Agilent/HP 4192A impedance analyzer or equivalent.
3 DCR measured at 25°C on a micro-ohmmeter. For other operating temperatures, use this DCR at Temperature calculator.
4 SRF measured using an Agilent/HP 8753ES or equivalent.
5 Isat: DC current at which the inductance drops the specified amount from its value without current. Details
6 Irms: Current that causes the specified temperature rise from 25°C ambient. This information is for reference only and does not represent absolute maximum ratings. Temperature derating curves.
7 Ambient temperature range: −40°C to +85°C with (40°C rise) Irms Derating curves
8 Storage temperature range: Component: −40°C to +125°C
Tape and reel packaging: −40°C to +80°C
9 Maximum part temperature: +125°C (Ambient + temperature rise)
10 Resistance to soldering heat: Three reflows at >217°C for 90 seconds (+260°C ±5°C for 20 – 40 seconds), allowing parts to cool to room temperature between.
11 Electrical specifications at 25°C.
Refer to Soldering Coilcraft Components before soldering.
PCB washing: Tested to MIL-STD-202 Method 215 plus an additional aqueous wash. More info.

Your comments and suggestions are welcome. Contact [email protected]
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Updated: April 16, 2018