Document 889-2
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© Coilcraft Inc. 2017
This product may not be used in medical or high
risk applications without prior Coilcraft appr
oval.
Specification subject to change without notice.
Please check web site for latest infor
Document 889-2 Revised 1/5/16
SRF Coupling Leakage Isat (A)5 Irms (A)
Inductance2 DCR (Ohms)3
typ4 coefficient inductance 10% 20% 30% both one
Part number1 (µH) typ max (MHz) typ typ (µH) drop drop drop
windings6 winding7
MSD1583-103ME_ 10 ±20% 0.026 0.031 16.0 0.98 0.33 11.7 13.3 14.5 3.68 5.20
MSD1583-123ME_ 12 ±20% 0.029 0.037 14.5 0.98 0.36 10.6 12.1 13.2 3.54 5.00
MSD1583-153ME_ 15 ±20% 0.039 0.045 12.0 0.99 0.38 9.50 10.8 11.8 3.18 4.50
MSD1583-183ME_ 18 ±20% 0.042 0.048 11.5 0.99 0.40 8.70 9.90 10.8 3.04 4.30
MSD1583-223ME_ 22 ±20% 0.054 0.065 10.5 0.99 0.40 7.90 8.95 9.80 2.44 3.45
MSD1583-333ME_ 33 ±20% 0.083 0.095 8.0 0.99 0.54 6.40 7.30 8.00 2.16 3.05
MSD1583-473ME_ 47 ±20% 0.100 0.115 7.1 0.99 0.46 5.40 6.10 6.70 1.98 2.80
MSD1583-683ME_ 68 ±20% 0.145 0.165 5.7 0.99 0.79 4.50 5.10 5.50 1.56 2.20
MSD1583-104KE_ 100 ±10% 0.230 0.260 5.1 >0.99 0.59 3.70 4.20 4.60 1.24 1.75
MSD1583-154KE_ 150 ±10% 0.340 0.380 3.7 >0.99 0.70 3.00 3.42 3.75 1.06 1.50
MSD1583-224KE_ 220 ±10% 0.420 0.460 3.2 >0.99 0.89 2.50 2.83 3.10 0.92 1.30
MSD1583-474KE_ 470 ±10% 0.950 1.04 2.2 >0.99 1.16 1.70 1.93 2.12 0.65 0.92
MSD1583-105KE_ 1000 ±10% 2.20 2.40 1.6 >0.99 2.02 1.17 1.32 1.45 0.42 0.60
1. When ordering, please specify termination and packaging codes:
MSD1583-105KED
Termination: E = RoHS compliant matte tin over nickel over phos bronze.
Special order: Q = RoHS tin-silver-copper (95.5/4/0.5)
or P = non-RoHS tin-lead (63/37).
Packaging: D = 13″ machine-ready reel. EIA-481 embossed plastic
tape (300 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 D instead.
2. Inductance shown for each winding, measured at 100 kHz, 0.1 Vrms,
0 Adc on an Agilent/HP 4284A LCR meter or equivalent. When leads
are connected in parallel, inductance is the same value. When leads
are connected in series, inductance is four times the value.
3. DCR is for each winding. When leads are connected in parallel, DCR is
half the value. When leads are connected in series, DCR is twice the value.
4. SRF measured using an Agilent/HP 4191A or equivalent. When leads
are connected in parallel, SRF is the same value.
MSD1583 Shielded Coupled Inductors for SEPIC applications
Typical L vs FrequencyTypical L vs Current
1
10
100
1000
0.1 110010
10 µH
15 µH
22 µH
47 µH
100 µH
150 µH
220 µH
470 µH
1000 µH
1
10
100
1000
0.1 110010
10 µH
15 µH
22 µH
47 µH
100 µH
150 µH
220 µH
470 µH
1000 µH
Coupled Inductor Core and Winding Loss Calculator
This web-based utility allows you to enter frequency, peak-to-peak
(ripple) current, and Irms current to predict temperature rise and overall
losses, including core loss. Go to online calculator.
5. DC current at which the inductance drops the specified amount from its
value without current. It is the sum of the current flowing in both windings.
6. Equal current when applied to each winding simultaneously that
causes a 40°C temperature rise from 25°C ambient. This information is
for reference only and does not represent absolute maximum ratings.
To predict temperature rise go to online calculator.
7. Maximum current when applied to one winding that causes a 40°C
temperature rise from 25°C ambient. This information is for reference
only and does not represent absolute maximum ratings. o predict
temperature rise go to online calculator.
8. Electrical specifications at 25°C.
Refer to Doc 639 “Selecting Coupled Inductors for SEPIC Applications.”
Refer to Doc 362 “Soldering Surface Mount Components” before soldering.