SELF-LEADED SMT
DUAL INDUCTORS
Materials meet UL 94V-0 rating
Frequency range of up to 1 MHz
Can be used as a simple inductor,
1:1 coupled inductor, or 1:1 transformer
Electrical Specifications @ 25擄C 鈥?Operating Temperature -40擄C to +130擄C
ID
Part
Number
P0403
P0402
P0401
P0400
P0399
P0403
P0398
P0402
P0397
P0401
P0400
P0396
P0399
P0398
P0395
P0397
P0396
P0395
Hookup
Series
Series
Series
Series
Series
Parallel
Series
Parallel
Series
Parallel
Parallel
Series
Parallel
Parallel
Series
Parallel
Parallel
Parallel
I
DC
(amp)
1.50
1.77
2.20
2.70
2.85
3.00
3.40
3.54
4.10
4.40
5.40
5.60
5.70
6.80
7.20
8.20
11.20
14.40
Reference Values
L @ DC
ET
L
DC
(V-碌sec)
(碌H)
139.1
45.00
108.0
41.00
72.0
33.00
48.5
27.70
30.6
20.50
34.8
22.50
23.1
18.10
27.0
20.50
17.0
15.70
18.0
16.50
12.1
13.85
9.7
12.00
7.6
10.25
5.8
9.05
6.1
9.60
4.2
7.85
2.4
6.00
1.5
4.80
Storage
Capacity
(碌Joules)
156.47
169.14
174.26
176.62
124.18
156.47
133.80
169.14
142.57
174.26
176.62
152.83
124.18
133.80
159.01
142.57
152.83
159.01
Control Values
L
W/O
DC
DCR (TYP)
L
0
鹵20%
(m鈩?
(碌H)
202.2
295.60
161.8
212.80
109.8
152.60
74.1
93.00
40.5
84.00
50.5
73.89
31.5
59.70
40.5
53.21
23.7
41.90
27.4
38.15
18.5
23.24
14.0
26.20
10.1
20.99
7.9
14.94
9.0
17.60
5.9
10.47
3.5
6.54
2.2
4.41
Calculation Data
100 Gauss
1 Amp DC
ET
100
H
1
(V-碌sec)
(Orsted)
16.26
35.78
14.55
32.01
11.98
26.36
9.84
21.66
7.27
16.01
8.13
17.89
6.42
14.12
7.27
16.01
5.56
12.24
5.99
13.18
4.92
10.83
4.28
9.42
3.64
8.00
3.21
7.06
3.42
7.53
2.78
6.12
2.14
4.71
1.71
3.77
NOTES:
1. The reference inductance is a typical value at the AC and DC excitation listed.
2. Temperature rise is 55擄C in typical buck or boost circuits at 100 KHz and with the
reference ET applied to the inductor.
3. Total loss in the inductor is 634 mWatts for a 55擄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, calculate I
DC
2
X R
N
.
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), calculate ET (V-碌sec) for the application, divide by ET
100
from
the table, and multiply by 100.
8. For estimating L with DC current, calculate H by multiplying H
1
from the table by
I
DC
of the application. Using H, determine the DC perm Factor (F
UDC
). Multiply
L
W/O
DC by F
UDC
for L @ DC.
9. Add suffix
"T"
to part number for tape and reel package (i.e. P0395T).
Mechanical
.590 MAX
14,99
.370
9,40
R
Schematic
1
4
2
.600
15,24
P0XXX
Date Code
Country of Origin
1
.715 MAX
18,16
4X .060
1,52
.610
15,49
4X .175
4,45
2
1:1 鹵1%
3
3
4
Suggested Pad Layout
.300 MAX
7,62
.005 MIN
0,13
.365
9,27
.005/0,13
4 SURFACES
Weight
. . . . . . . . 4.2 grams
Tape & Reel
. . . . . . 300/reel
Tube
. . . . . . . . . . . . 35/tube
Dimensions:
Inches
mm
Unless otherwise specified,
all tolerances are 鹵 .010
0,25
US 858 674 8100
鈥?/div>
UK 44 1483 401 700
鈥?/div>
France 33 3 84 35 04 04
鈥?/div>
Singapore 65 287 8998
鈥?/div>
Taiwan 886 2 2698 0228
鈥?/div>
Hong Kong 852 2788 6588
鈥?/div>
http://www.pulseeng.com
25
PC500.B (5/02)
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