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MPI40-V2 Datasheet Preview

MPI40-V2 Datasheet

miniature power inductors

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Technical Data 10651
Effective April 2017
MPI40-V2
High current, low profile, miniature power inductors
Product features
High current carrying capacity
Magnetically shielded, Low EMI
Rugged flexible construction
Self resonant frequency (SRF) greater
than 9.5 MHz
Inductance range from 0.1 μH to 22 μH
Current range from 1.2 A to 22 A
4.75 mm x 4.45 mm footprint surface mount
package in 1.2 mm, 1.5 mm, and 2.0 mm
heights
Moisture Sensitivity Level (MSL): 1
Applications
Handheld/mobile devices
Portable media players
Notebook/netbook/laptop regulators
Tablets/smartbooks
Battery operated devices
LED drivers
LCD displays
Point-of-load (POL) converters
Environmental data
Storage temperature range (Component):
-55 °C to +125 °C
Operating temperature range: -55 °C to +125 °C
(ambient plus self-temperature rise)
Solder reflow temperature:
J-STD-020 (latest revision) compliant
Halogen free, lead free, RoHS compliant
Pb HFHALOGEN
FREE




EATON

MPI40-V2 Datasheet Preview

MPI40-V2 Datasheet

miniature power inductors

No Preview Available !

Technical Data 10651
Effective April 2017
MPI40-V2
High current, low profile, miniature power inductors

Product specifications
Part Number5
1.2 mm height
MPI4012V2-R33-R
MPI4012V2-R47-R
MPI4012V2-R68-R
MPI4012V2-1R0-R
MPI4012V2-1R5-R
MPI4012V2-2R2-R
MPI4012V2-4R7-R
1.5 mm height
MPI4015V2-R22-R
MPI4015V2-R33-R
MPI4015V2-R47-R
MPI4015V2-R56-R
MPI4015V2-R68-R
MPI4015V2-1R0-R
MPI4015V2-1R5-R
MPI4015V2-2R2-R
MPI4015V2-3R3-R
MPI4015V2-4R7-R
MPI4015V2-6R8-R
MPI4015V2-100-R
2.0 mm height
MPI4020V2-R10-R
MPI4020V2-R22-R
MPI4020V2-R33-R
MPI4020V2-R47-R
MPI4020V2-R56-R
MPI4020V2-R68-R
MPI4020V2-1R0-R
MPI4020V2-1R2-R
MPI4020V2-1R5-R
MPI4020V2-2R2-R
MPI4020V2-3R3-R
MPI4020V2-4R7-R
MPI4020V2-6R8-R
MPI4020V2-100-R
MPI4020V2-150-R
MPI4020V2-220-R
OCL1
(μH) ±20%
Part marking
designator
I(rAm)s2
I(sAat)3
DCR (mΩ)
typical @ +20 °C
DCR (mΩ)
maximum @
+20 °C
SRF
(MHz)
typical
K-factor4
0.33 A
0.47 B
0.68 C
1.0 D
1.5 E
2.2 F
4.7 G
7.5 11 11
5.6 6.8 19
4.5 6.7 28
4.3 6.5 38.5
3.3 4.3 55
2.9 4.2 75
1.8 2.8 175
13.5 128 2480
23 106 2470
33.5 98 2223
46.5 64 1477
66 63 1264
90 35 1143
210 29 890
0.22 A
0.33 B
0.47 C
0.56 D
0.68 E
1.0 F
1.5 G
2.2 H
3.3 I
4.7 J
6.8 K
10 L
10.5 14
9.5 11
7.8 9.0
7.5 8.3
6.8 8.0
5.5 6.0
4.2 4.6
2.9 4.5
3.0 3.2
2.2 3.0
2.0 2.3
1.8 2.1
6.0
7.0
11
12
16
23
48
65
77
108
172
245
7.5 153 2649
8.5 120 2158
14 98 1991
14 84 1942
19 81 1437
27 56 1382
58 48 1468
78 42 920
92 31 854
130 22 791
207 21 609
294 14 766
0.10 A
0.22 B
0.33 C
0.47 D
0.56 E
0.68 F
1.0 G
1.2 H
1.5 I
2.2 J
3.3 K
4.7 L
6.8 M
10 N
15 O
22 P
16 22 3.5
13 17 5.5
9.5 12 7.5
8.5 11 10.5
8.0 10 12
7.5 9.0 12.5
6.5 7.0 20
6.5 6.8 23
5.0 6.0 25
3.8 5.5 40
3.3 4.0 71
2.7 3.2 98
2.0 2.6 167
1.7 2.2 245
1.5 1.8 320
1.2 1.65 350
4.5 343 2692
6.6 165 2036
9.0 113 1268
13 95 1219
15 87 1205
16 80 1201
24 65 1168
28 52 1110
30 45 1038
48 33 711
85 25 643
118 24 453
192 23 482
281 17 307
384 13 257
402 9.5 215
1. Open Circuit Inductance (OCL) Test Parameters: 100 kHz, 1.0 Vrms, 0.0 Adc, +25 °C.
2. Irms: DC current for an approximate temperature rise of 40 °C without core loss. Derating is
necessary for AC currents. PCB layout, trace thickness and width, air-flow, and proximity of
other heat generating components will affect the temperature rise. It is recommended that the
temperature of the part not exceed +125 °C under worst case operating conditions verified in the
end application.
3. Isat : Peak current for approximately 30% rolloff @ +25 °C.
4. K-factor: Used to determine Bp-p for core loss (see graph). Bp-p = K * L * ΔI. Bp-p :(Gauss),
K: (K-factor from table), L: (Inductance in uH), ΔI (Peak to peak ripple current in Amps).
5. Part Number Definition: MPI40xxV2-xxx-R
MPI40 = Product code
xx= Height indicator
V2=Version indicator
xxx= inductance value in μH, R= decimal point,
If no R is present then last character equals number of zeros
-R suffix = RoHS compliant
2 www.eaton.com/electronics


Part Number MPI40-V2
Description miniature power inductors
Maker EATON
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