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LPE-6562-102MB Datasheet(PDF) 1 Page - Vishay Siliconix

Part # LPE-6562-102MB
Description  Surface Mount Transformers/Inductors Gapped and Ungapped Custom Configurations Available
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Manufacturer  VISHAY [Vishay Siliconix]
Direct Link  http://www.vishay.com
Logo VISHAY - Vishay Siliconix

LPE-6562-102MB Datasheet(HTML) 1 Page - Vishay Siliconix

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Document Number: 34066
Revision 28-Aug-02
www.vishay.com
106
LPE-6562
Vishay Dale
For technical questions, contact Magnetics@vishay.com
NOTE: Pad layout guidelines per MIL-STD-
275E (printed wiring for electronic equipment).
Tolerances: xx
± 0.01" [± 0.25mm]. xxx ± 0.005"
[
± 0.12mm].
Foot print Diagram
0.100 [2.54]
0.058
[1.47]
0.545
[13.84]
0.603
[15.32]
Reference Only
0.058 [1.47] Pad Dimensions
Typical, 10 places
Typical
4 places
0.606
[15.39]
Max.
5
1
6
10
0.335 [8.51]
Max.
0.695
[17.65]
Max.
0.575
[14.60]
0.028
[0.71]
0.028
[0.71]
0.100
[2.54]
Typ.
Pad Layout
Dimensional Outline
DESCRIPTION - LPE-6562-102NA
A
CORE
± 30%
INDUCTANCE TOLERANCE
1000
µH
INDUCTANCE VALUE
6562
SIZE
LPE
MODEL
SAP PART NUMBERING GUIDELINES (INTERNAL)
PRODUCT FAMILY
SIZE
See the end of this data book for conversion tables
INDUCTANCE
VALUE
PACKAGE
CODE
TOL.
CORE
LP
E
6
5
6
2
R
Y
1
0
2
N
U
ELECTRICAL SPECIFICATIONS
(Multiple winds are connected in parallel)
Inductance Range: 10
µH to 330000µH, measured at 0.10V RMS @ 10kHz
without DC current, using an HP 4263A or HP 4284A impedance analyzer.
DC Resistance Range: 0.03 ohm to 53.7 ohm, measured at + 25
°C ± 5°C.
Rated Current Range: 3.00 amps to .06 amps.
Dielectric Withstanding Voltage: 500V RMS, 60Hz, 5 seconds.
Surface Mount Transformers/Inductors
Gapped and Ungapped Custom Configurations Available
DIMENSIONS in inches (millimeters)
UNGAPPED MODELS:
Highest possible inductance with the lowest DCR and highest Q
capability. Beneficial in filter, impedance matching and line coupling devices.
GAPPED MODELS: Capable of handling large amounts of DC current, tighter inductance tolerance
with better temperature stability than ungapped models. Beneficial in DC to DC converters or other
circuits carrying DC currents or requiring inductance stability over a temperature range.
*DC current that will create a maximum temperature rise of 30
°C when applied at + 25°C
ambient. **DC current that will typically reduce the initial inductance by 20%.
MODEL
LPE-6562-221NA
LPE-6562-331NA
LPE-6562-471NA
LPE-6562-681NA
LPE-6562-102NA
LPE-6562-152NA
LPE-6562-222NA
LPE-6562-332NA
LPE-6562-472NA
LPE-6562-682NA
LPE-6562-103NA
LPE-6562-153NA
LPE-6562-223NA
LPE-6562-333NA
LPE-6562-473NA
LPE-6562-683NA
LPE-6562-104NA
LPE-6562-154NA
LPE-6562-224NA
LPE-6562-334NA
LPE-6562-100MB
LPE-6562-150MB
LPE-6562-220MB
LPE-6562-330MB
LPE-6562-470MB
LPE-6562-680MB
LPE-6562-101MB
LPE-6562-151MB
LPE-6562-221MB
LPE-6562-331MB
LPE-6562-471MB
LPE-6562-681MB
LPE-6562-102MB
LPE-6562-152MB
LPE-6562-222MB
LPE-6562-332MB
LPE-6562-472MB
Ungapped Models
Gapped Models
STANDARD ELECTRICAL SPECIFICATIONS
IND.
TOL.
DCR
MAX.
(Ohms)
MAX. RATED*
DC CURRENT
(Amps)
SATURATING**
CURRENT
(Amps)
220
330
470
680
1000
1500
2200
3300
4700
6800
10000
15000
22000
33000
47000
68000
100000
150000
220000
330000
10
15
22
33
47
68
100
150
220
330
470
680
1000
1500
2200
3300
4700
± 30%
± 30%
± 30%
± 30%
± 30%
± 30%
± 30%
± 30%
± 30%
± 30%
± 30%
± 30%
± 30%
± 30%
± 30%
± 30%
± 30%
± 30%
± 30%
± 30%
± 20%
± 20%
± 20%
± 20%
± 20%
± 20%
± 20%
± 20%
± 20%
± 20%
± 20%
± 20%
± 20%
± 20%
± 20%
± 20%
± 20%
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
B
B
B
B
D
C
D
E
E
E
E
E
E
E
E
E
E
0.28
0.34
0.40
0.48
0.59
0.72
0.87
1.07
1.27
1.53
1.86
2.27
8.67
10.6
12.7
15.2
18.5
37.7
45.6
53.7
0.03
0.04
0.05
0.08
0.12
0.19
0.29
0.45
0.54
0.84
1.24
1.89
2.91
4.50
6.90
10.4
15.7
0.90
0.81
0.74
0.67
0.61
0.55
0.50
0.45
0.41
0.38
0.34
0.31
0.16
0.14
0.13
0.12
0.11
0.08
0.07
0.06
3.09
2.79
2.26
1.81
1.48
1.20
0.98
0.78
0.71
0.57
0.47
0.38
0.31
0.25
0.20
0.16
0.13
N/A
N/A
N/A
N/A
N/A
N/A
N/A
N/A
N/A
N/A
N/A
N/A
N/A
N/A
N/A
N/A
N/A
N/A
N/A
N/A
5.055
4.160
3.460
2.840
2.390
1.990
1.650
1.350
1.115
0.912
0.765
0.637
0.526
0.430
0.355
0.290
0.243
IND.
(
µH)
SCHEMATIC
LETTER


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