Technical Data 11187
Effective November 2020
EXL1V0402
High current molded inductor
Applications
Product features
•
Voltage regulator module (VRM)
•
Multi-phase regulators
•
Point-of-load (POL) converters
•
Desktop and server VRMs and EVRDs
•
Base station equipment
•
Laptop and notebook regulators
•
Tablets and e-readers
•
Cellular phones
•
High current carrying capacity
•
Battery power systems
•
Low DCR, high efficiency
•
Graphics cards
•
Magnetically shielded, low EMI
•
Data networking and storage system
•
Soft saturation
•
Inductance range from 0.47 μH to 3.3 μH
•
Current range from 4.4 A to 13.2 A
•
4.6 mm x 4.6 mm footprint surface mount
package in a 2.1 mm height
•
Storage temperature range (Component):
-40 °C to +125 °C
•
Alloy powder core material
•
•
Moisture Sensitivity Level (MSL) 1
Operating temperature range: -40 °C to +125 °C
(ambient plus self-temperature rise)
•
Solder reflow temperature:
J-STD-020 (latest revision) compliant
Environmental compliance and general
specifications
HALOGEN
Pb HF
FREE
EXL1V0402
High current molded inductor
Technical Data 11187
Effective November 2020
Product specifications
Part number5
Part
marking
designator
OCL1
(μH) ± 20%
FLL2 (μH)
minimum
Irms3 (A) typical
+20 °C rise
+40 °C rise
Isat4
(A)
DCR (mΩ)
typical @ +25 °C
DCR (mΩ)
maximum @ +25 °C
SRF (MHz)
typical
EXL1V0402-R47-R
A
0.47
0.26
9.8
13.2
12.5
6.0
6.8
90
EXL1V0402-R56-R
B
0.56
0.31
9.5
12.6
11.3
6.9
7.8
85
EXL1V0402-R60-R
C
0.60
0.33
9.4
12.4
11.1
6.9
7.8
85
EXL1V0402-R68-R
D
0.68
0.38
9.2
12
10
7.3
8.2
73
EXL1V0402-R82-R
E
0.82
0.45
8.5
11.5
9.0
8.6
9.5
62
EXL1V0402-1R0-R
F
1.0
0.56
8.0
11
8.0
10.6
11.7
56
EXL1V0402-1R2-R
G
1.2
0.67
7.2
9.5
7.5
12.2
13.4
53
EXL1V0402-1R5-R
H
1.5
0.84
6.7
9.1
6.7
14.4
15.8
45
EXL1V0402-2R0-R
I
2.0
1.12
6.2
8.2
5.0
21.15
23.3
40
EXL1V0402-2R2-R
J
2.2
1.23
6.0
8.0
4.8
21.35
23.5
38
EXL1V0402-3R3-R
K
3.3
1.84
4.4
5.5
4.4
34.2
38.3
26
4. Isat: Peak current for approximately 30% rolloff @ +25 °C
5. Part Number Definition: EXL1V0402-xxx-R
EXL1V0402 = Product code and size
xxx= inductance value in μH, R= decimal point,
If no R is present then third digit equals the number of zeros
-R suffix = RoHS compliant
6. Rated operating voltage: 15 V typical
1. Open circuit inductance (OCL) Test parameters: 100 kHz, 0.1 Vrms, 0.0 Adc, +25 °C
2. Full load inductance (FLL) Test parameters: 100 kHz, 0.1 Vrms, Isat, , +25 °C
3. Irms: Heat rated current (Irms) will cause the part temperature rise approximately ΔT of 40 °C. Circuit design,
component, PCB trace size and thickness, airflow and other cooling provisions all affect the part temperature. Part
temperature should be verified in the end application. The part temperature (ambient + temperature rise) should not
exceed +125 °C under worst case operating conditions.
Mechanical parameters, schematic, pad layout (mm)
Recommended pad layout
Schematic
Figure 1. DCR test
Part number
A
B
EXL1V0402-xxx-R
4.4 ± 0.20
4.4 ± 0.20
C
1.9 ± 0.20
D
E
F
3.4 ± 0.30
0.88 ± 0.20
1.6 ± 0.25
Part marking: 1st digit = Inductance value per the “Part marking designator” letter code in specification table, 2nd digit = revision level
All soldering surfaces to be coplanar within 0.1 millimeters
Tolerances are ± 0.3 millimeters unless stated otherwise
Dimensions of recommended PCB layout are reference only.
Pad layout tolerances are ± 0.1 millimeters unless stated otherwise
Four terminal kelvin-clip recommended for DCR testing as shown in Figure 1.
Traces or vias underneath the inductor is not recommended
2
www.eaton.com/electronics
Technical Data 11187
EXL1V0402
High current molded inductor
Effective November 2020
Packaging information (mm)
Drawing not to scale
Supplied in tape and reel packaging, 3000 parts per 13” diameter reel (EIA-481 compliant)
W ± 0.30
12.00
F ± 0.5
5.50
E1 ± 0.10
1.75
P0 ± 0.10
4.00
P1 ± 0.10
8.00
P2 ± 0.05
2.00
D0 + 0.10/-0
1.50
D1 + 0.10/-0
1.50
A0 ± 0.10
4.70
B0 ± 0.10
4.70
K0 ± 0.10
2.30
T ± 0.05
0.35
P0 X 10 ± 0.20
40.0
Qualification testing
No.
Test item
Reference standards
Test condition
Acceptable value/range
1
Life
MIL-STD-202
Method 108
+125 °C + Irms for 1000 hours
a. Appearance
b. ΔL/L
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