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LPS3010 Series Low Profile
Shielded Power Inductors

This is a new halogen free version recommended for new designs. Only the termination material, part number, and orientation in the packing tape have changed. The previous version is available only to current customers.
  • Ultra-small shielded power inductor – only 0,9 mm high, 3 mm square
  • Handles current up to 2.4 Amps
  • Magnetic shielding allows high-density mounting
  • RoHS-compliant, halogen free. 260°C compatible. Matte tin over nickel over silver terminations
  • COTS Plus tin-silver-copper and tin-lead terminations available
  • Samples of selected values are available in Coilcraft Designer's Kits C392 and C402
  • Need parts for space, military or other critical applications? See Coilcraft CPS 378PJB series.

SPECIFICATIONS


Part number1
Click to get parts
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
LPS3010-471MR_ 0.47 0.070 370 1.8 1.9 2.0 1.3 1.80
LPS3010-681MR_ 0.68 0.080 270 1.6 1.7 1.7 1.3 1.75
LPS3010-102MR_ 1.0 0.085 230 1.5 1.6 1.6 1.1 1.50
LPS3010-152MR_ 1.5 0.120 165 1.3 1.4 1.4 1.05 1.40
LPS3010-182MR_ 1.8 0.150 150 1.2 1.2 1.3 1.00 1.40
LPS3010-222MR_ 2.2 0.220 130 1.3 1.4 1.4 0.90 1.10
LPS3010-332MR_ 3.3 0.220 110 0.83 0.88 0.90 0.85 1.10
LPS3010-472MR_ 4.7 0.300 92 0.72 0.75 0.77 0.70 0.95
LPS3010-562MR_ 5.6 0.400 80 0.67 0.69 0.71 0.60 0.78
LPS3010-682MR_ 6.8 0.450 70 0.61 0.63 0.64 0.56 0.74
LPS3010-822MR_ 8.2 0.520 62 0.56 0.59 0.59 0.53 0.70
LPS3010-103MR_ 10 0.540 58 0.50 0.53 0.55 0.48 0.64
LPS3010-123MR_ 12 0.700 47 0.46 0.49 0.50 0.44 0.58
LPS3010-153MR_ 15 0.950 43 0.41 0.43 0.44 0.37 0.48
LPS3010-183MR_ 18 1.10 40 0.38 0.40 0.41 0.33 0.47
LPS3010-223MR_ 22 1.20 36 0.32 0.35 0.36 0.30 0.41
LPS3010-333MR_ 33 2.00 27 0.25 0.27 0.28 0.26 0.35
LPS3010-473MR_ 47 3.20 21 0.23 0.24 0.25 0.22 0.31
LPS3010-683MR_ 68 3.50 21 0.20 0.21 0.22 0.20 0.28
LPS3010-104MR_ 100 5.25 14 0.140 0.160 0.170 0.18 0.24
LPS3010-124MR_ 120 6.10 12 0.130 0.150 0.150 0.14 0.19
LPS3010-154MR_ 150 9.15 11 0.130 0.140 0.140 0.13 0.17
LPS3010-184MR_ 180 10.1 9 0.110 0.120 0.130 0.11 0.15
LPS3010-224MR_ 220 12.5 8 0.100 0.110 0.120 0.095 0.13
For higher L values,
see LPZ series
330
1 When ordering, please specify termination and packaging codes: e.g. LPS3010-224MRC
  Termination: R = Matte tin over nickel over silver
Special order, added cost: Q = RoHS tin-silver-copper (95.5/4/0.5) or
P = non-RoHS tin-lead (63/37).
Packaging:

 

C = 7" machine-ready reel
EIA-481 embossed plastic tape (1000 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 (3500 parts per full reel).
2 Inductance tested at 100 kHz, 0.1 Vrms, 0 Adc using an Agilent/HP 4192A impedance analyzer or equivalent. Inductance at 1 MHz is the same for parts with SRF >10 MHz.
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.

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Updated: September 05, 2017