P0400NL

USA 858 674 8100
Germany 49 7032 7806 0
Singapore 65 6287 8998
Shanghai
86 21 54643211 / 2
China 86 755 33966678
Taiwan 886 3 4641811
www.pulseeng.com
73 SPM2007 (11/07)
.590
MAX
14,99
.300
MAX
7,62
.600
15,24
.005/0,13
4 SURFACES
.365
9,27
1
2
3
4
P0XXX
Date Code
Country of Origin
4X
.060
1,52
4X
.175
4,45
Suggested Pad Layout
.370
9,40
.610
15,49
R
.715
MAX
18,16
.005
MIN
0,13
4
1
2
3
1:1 ±1%
Mechanical
Schematic
Inductance Storage Inductance 100 Gauss 1 Amp DC
Part
8,9
@ Irated
Irated DCR (TYP) ET
Capacity @ 0ADC ET
100
H
1
Connection
Number
(µH)
(A) (mΩ) (V-µsec)
(µJoules) (µH ±20%) (V-µsec) (Orsted)
P0395NL 1.5 14.40 4.41 4.80 159.01 2.2 1.71 3.77 Parallel
P0396NL 2.4 11.20 6.54 6.00 152.83 3.5 2.14 4.71 Parallel
P0397NL 4.2 8.20 10.47 7.85 142.57 5.9 2.78 6.12 Parallel
P0398NL 5.8 6.80 14.94 9.05 133.80 7.9 3.21 7.06 Parallel
P0395NL 6.1 7.20 17.60 9.60 159.01 9.0 3.42 7.53 Series
P0399NL 7.6 5.70 20.99 10.25 124.18 10.1 3.64 8.00 Parallel
P0396NL 9.7 5.60 26.20 12.00 152.83 14.0 4.28 9.42 Series
P0400NL 12.1 5.40 23.24 13.85 176.62 18.5 4.92 10.83 Parallel
P0397NL 17.0 4.10 41.90 15.70 142.57 23.7 5.56 12.24 Series
P0401NL 18.0 4.40 38.15 16.50 174.26 27.4 5.99 13.18 Parallel
P0398NL 23.1 3.40 59.70 18.10 133.80 31.5 6.42 14.12 Series
P0402NL 27.0 3.54 53.21 20.50 169.14 40.5 7.27 16.01 Parallel
P0399NL 30.6 2.85 84.00 20.50 124.18 40.5 7.27 16.01 Series
P0403NL 34.8 3.00 73.89 22.50 156.47 50.5 8.13 17.89 Parallel
P0400NL 48.5 2.70 93.00 27.70 176.62 74.1 9.84 21.66 Series
P0401NL 72.0 2.20 152.60 33.00 174.26 109.8 11.98 26.36 Series
P0403NL 139.1 1.50 295.60 45.00 156.47 202.2 16.26 35.78 Series
P0402NL 108.0 1.77 212.80 41.00 169.14 161.8 14.55 32.01 Series
Electrical Specifications @ 25°C — Operating Temperature -40°C to +130°C
10
NOTES:
1. The reference inductance is a typical value at the AC and DC excitation listed.
2. Temperature rise is 55°C in typical buck or boost circuits at 100kHz and with the
reference ET applied to the inductor.
3. Total loss in the inductor is 634mW for a 55°C temperature rise above ambient.
4. To estimate temperature rise in a given application, determine copper and core
losses, divide by 634 and multiply by 50.
5. For the copper loss (mW), calculate I
DC
2
X RN.
6. For core loss (mW), using frequency (f in Hertz) and operating flux density (B in
Gauss), calculate 2.24 x 10
-10
x B
2.11
x f
1.26
.
7. For flux density (B in Gauss), calculate ET (V-µsec) for the application, divide by
ET
100 from the table, and multiply by 100.
8.
Optional Tape & Reel packaging can be ordered by adding a "T" suffix to
the part number (i.e. P0395NL becomes P0395NLT). Pulse complies to indus-
try standard tape and reel specification EIA481.
9. The "NL" suffix indicates an RoHS-compliant part number. Non-NL suffixed
parts are not necessarily RoHS compliant, but are electrically and mechanically
equivalent to NL versions. If a part number does not have the "NL" suffix, but
an RoHS compliant version is required, please contact Pulse for availability.
10. The temperature of the component (ambient plus temperature rise) must be within
the stated operating temperature range.
Weight . . . . . . . . 4.2 grams
Tape & Reel. . . . . . 300/reel
Tube . . . . . . . . . . . . 35/tube
Dimensions:
Inches
mm
Unless otherwise specified,
all tolerances are ±
.010
0,25
SMT POWER INDUCTORS
Toroid - Tomcat Series
Height: 7.6mm Max
Footprint: 18.2mm x 15.0mm Max
Current Rating: up to 14.4A
Inductance Range: 1.5µH to 139µH

P0400NL

Mfr. #:
Manufacturer:
Pulse Electronics
Description:
Coupled Inductors 12.1uH 20% 5.4A
Lifecycle:
New from this manufacturer.
Delivery:
DHL FedEx Ups TNT EMS
Payment:
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