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XAL7050 High-inductance Shielded Power Inductors
XGL4020 Ultra-low DCR Power Inductors

MSD1583 Series

Shielded Coupled Power Inductors

RoHS compliant halogen free
Coilcraft's MSD1583 Series of 1:1 coupled power inductors feature magnetic shielding for compact packaging and tight winding-to-winding coupling. They are ideal for Flyback, SEPIC, Ćuk, Zeta and other applications.
  • Ideal for Flyback, SEPIC, Ćuk, Zeta and other applications
  • Magnetic shielding allows high-density mounting
  • Tight winding coupling
  • Industry standard footprint
See Selecting inductors for SEPIC

Buy Now:
Count Unit price
1 $3.95
300 $2.59
600 $1.56
1200 $1.21
2400 $1.04
4800 $0.96

For high volume or non-stock items, request a quote.

. in stock, ready to ship today.
Request a Sample:

Designer's Kit:
Kit Values Price
C463 41 (3 of each) $160.00

Specifications

Electrical specifications at 25°C.

For Flyback Applications

Part number 1
(Hover for schematics)
Inductance (µH) 2 Tolerance (%) DCR (Ω) 3 Isolation
Voltage (V)
Leakage
Inductance (µH) 5
Turns Ratio
typ max
MSD1583-103ME_ 10 20 0.026 0.031 500 0.33 1 : 1
MSD1583-123ME_ 12 20 0.029 0.037 500 0.36 1 : 1
MSD1583-153ME_ 15 20 0.039 0.045 500 0.38 1 : 1
MSD1583-183ME_ 18 20 0.042 0.048 500 0.40 1 : 1
MSD1583-223ME_ 22 20 0.054 0.065 500 0.40 1 : 1
MSD1583-333ME_ 33 20 0.083 0.095 500 0.54 1 : 1
MSD1583-473ME_ 47 20 0.10 0.12 500 0.46 1 : 1
MSD1583-683ME_ 68 20 0.15 0.17 500 0.79 1 : 1
MSD1583-104KE_ 100 10 0.23 0.26 500 0.59 1 : 1
MSD1583-154KE_ 150 10 0.34 0.38 500 0.70 1 : 1
MSD1583-224KE_ 220 10 0.42 0.46 500 0.89 1 : 1
MSD1583-474KE_ 470 10 0.95 1.0 500 1.2 1 : 1
MSD1583-105KE_ 1000 10 2.2 2.4 500 2.0 1 : 1

For SEPIC Applications

Part number 1
(Hover for schematics)
Inductance (µH) 2 Tolerance (%) DCR (Ω) 3 SRF typ (MHz) 4 Coupling coefficient Leakage
Inductance (µH) 5
Isat (A) 6 Irms (A)
typ max 10% drop 20% drop 30% drop both windings 7 one winding 8
MSD1583-103ME_ 10 20 0.026 0.031 16.0 0.98 0.33 11.7 13.3 14.5 3.7 5.2
MSD1583-123ME_ 12 20 0.029 0.037 14.5 0.98 0.36 10.6 12.1 13.2 3.5 5.0
MSD1583-153ME_ 15 20 0.039 0.045 12.0 0.99 0.38 9.5 10.8 11.8 3.2 4.5
MSD1583-183ME_ 18 20 0.042 0.048 11.5 0.99 0.40 8.7 9.9 10.8 3.0 4.3
MSD1583-223ME_ 22 20 0.054 0.065 10.5 0.99 0.40 7.9 9.0 9.8 2.4 3.5
MSD1583-333ME_ 33 20 0.083 0.095 8.0 0.99 0.54 6.4 7.3 8.0 2.2 3.1
MSD1583-473ME_ 47 20 0.10 0.12 7.1 0.99 0.46 5.4 6.1 6.7 2.0 2.8
MSD1583-683ME_ 68 20 0.15 0.17 5.7 0.99 0.79 4.5 5.1 5.5 1.6 2.2
MSD1583-104KE_ 100 10 0.23 0.26 5.1 >0.99 0.59 3.7 4.2 4.6 1.2 1.8
MSD1583-154KE_ 150 10 0.34 0.38 3.7 >0.99 0.70 3.0 3.4 3.8 1.1 1.5
MSD1583-224KE_ 220 10 0.42 0.46 3.2 >0.99 0.89 2.5 2.8 3.1 0.92 1.3
MSD1583-474KE_ 470 10 0.95 1.0 2.2 >0.99 1.2 1.7 1.9 2.1 0.65 0.92
MSD1583-105KE_ 1000 10 2.2 2.4 1.6 >0.99 2.0 1.2 1.3 1.5 0.42 0.60
Notes
  1. When ordering, please specify termination and packaging codes: e.g. MSD1583-105KEC
  2. Inductance shown for each winding, measured at 100 kHz, 0.1 Vrms, 0 Adc on an Agilent/HP 4284A LCR meter or equivalent.
    For SEPIC: 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. DCR at 25°C. For other operating temperatures, use this DCR at Temperature calculator.
    For SEPIC: 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.
  5. Leakage inductance is for L1 and is measured with L2 shorted.
  6. Isat: 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.
  7. Irms, both windings: 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. Determine temperature rise.
  8. Irms, one winding: 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. Determine temperature rise.

Termination:

  • E = Halogen free component. RoHS compliant matte tin over nickel over phos bronze terminations.
  • Q = RoHS tin-silver-copper (95.5/4/0.5). (Special order, added cost)
  • P = non-RoHS tin-lead (63/37). (Special order, added cost)

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.
Environmental
Environmental:
RoHS compliant , halogen free
Ambient temperature range:
–40°C to +85°C with (40°C rise) Irms current
Storage temperature range:
Component: –40°C to +125°C
Tape and reel packaging: –40°C to +80°C
Maximum part temperature:
+125°C (ambient + temp rise)
Failures in Time (FIT) / Mean Time Between Failures (MTBF):

Performance curves

Inductance vs Current

Inductance vs. Frequency

Schematics

msd1583schem.gif

Physical characteristics

msd1583d.gif
dims_inches_mm.gif

Tape and Reel specification

tapereel_pl.gif

 
Parts per reel Reel dimensions (mm) Tape dimensions (mm) Orientation
13" (330 mm) A B C D E W P Po P1 H T part_or_ak.gif
300 330 100 13 38,4 32,4 32 24 4 2 8,6 0,5

General specification

Core Material:
Ferrite
Weight:
3.7 – 4.4 g
Packaging:
300/13″ reel; Plastic tape: 32 mm wide, 0.5 mm thick, 24 mm pocket spacing, 8.6 mm pocket depth.
Winding to Winding Isolation:
500 Vrms, one minute

Soldering/Washing

Moisture Sensitivity Level (MSL):
1 (unlimited floor life at <30°C / 85% relative humidity)
Resistance to soldering heat:
Max three 40 second reflows at +260°C, parts cooled to room temperature between cycles
Refer to Soldering Coilcraft Components before soldering.
PCB Washing:
Tested with pure water or alcohol only. More info.

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