EEWORLDEEWORLDEEWORLD

Part Number

Search

LPE6562RY334NU

Description
General Fixed Inductor, 1 ELEMENT, 330000 uH, GENERAL PURPOSE INDUCTOR, SMD, CHIP, 6562
CategoryPassive components    inductor   
File Size108KB,3 Pages
ManufacturerVishay
Websitehttp://www.vishay.com
Download Datasheet Parametric View All

LPE6562RY334NU Overview

General Fixed Inductor, 1 ELEMENT, 330000 uH, GENERAL PURPOSE INDUCTOR, SMD, CHIP, 6562

LPE6562RY334NU Parametric

Parameter NameAttribute value
Is it lead-free?Contains lead
Is it Rohs certified?incompatible
MakerVishay
Reach Compliance Codeunknown
ECCN codeEAR99
DC Resistance53.7 Ω
Nominal inductance(L)330000 µH
Inductor ApplicationsFILTER CHOKE
Inductor typeGENERAL PURPOSE INDUCTOR
JESD-609 codee0
Manufacturer's serial numberLPE-6562
Number of functions1
Number of terminals10
Maximum operating temperature125 °C
Minimum operating temperature-55 °C
Maximum rated current0.06 A
Shape/Size DescriptionRECTANGULAR PACKAGE
shieldNO
special characteristicsPARALLEL CONNECTED
surface mountYES
Terminal surfaceTin/Lead (Sn/Pb)
Terminal locationDUAL IN-LINE
Terminal shapeGULL WING
Test frequency0.01 MHz
Tolerance30%
LPE-6562
Vishay Dale
Surface Mount Transformers/Inductors,
Gapped and Ungapped, Custom Configurations Available
FEATURES
• Compliant to RoHS directive 2002/95/EC
ELECTRICAL SPECIFICATIONS
(multiple winds are connected in parallel)
Inductance Range:
10 μH to 330 000 μH, measured
at 0.10 V
RMS
at 10 kHz without DC current, using an
HP 4263A or HP 4284A impedance analyzer
DC Resistance Range:
0.03
Ω
to 53.7
Ω,
measured at
+ 25 °C ± 5 °C
Rated Current Range:
3.00 A to 0.06 A
Dielectric Withstanding Voltage:
500 V
RMS
, 60 Hz, 5 s
STANDARD ELECTRICAL SPECIFICATIONS
IND.
IND.
SCHEMATIC DCR MAX. MAX. RATED DC CURRENT
SATURATING CURRENT
MODEL
(μH)
TOL.
LETTER
(Ω)
(A)
(1)
(A)
(2)
LPE6562ER221NU
220
± 30 %
A
0.28
0.90
N/A
LPE6562ER331NU
330
± 30 %
A
0.34
0.81
N/A
LPE6562ER471NU
470
± 30 %
A
0.40
0.74
N/A
LPE6562ER681NU
680
± 30 %
A
0.48
0.67
N/A
LPE6562ER102NU
1000
± 30 %
A
0.59
0.61
N/A
LPE6562ER152NU
1500
± 30 %
A
0.72
0.55
N/A
LPE6562ER222NU
2200
± 30 %
A
0.87
0.50
N/A
LPE6562ER332NU
3300
± 30 %
A
1.07
0.45
N/A
LPE6562ER472NU
4700
± 30 %
A
1.27
0.41
N/A
LPE6562ER682NU
6800
± 30 %
A
1.53
0.38
N/A
LPE6562ER103NU
10 000
± 30 %
A
1.86
0.34
N/A
LPE6562ER153NU
15 000
± 30 %
A
2.27
0.31
N/A
LPE6562ER223NU
22 000
± 30 %
A
8.67
0.16
N/A
LPE6562ER333NU
33 000
± 30 %
A
10.6
0.14
N/A
LPE6562ER473NU
47 000
± 30 %
A
12.7
0.13
N/A
LPE6562ER683NU
68 000
± 30 %
A
15.2
0.12
N/A
LPE6562ER104NU
100 000 ± 30 %
A
18.5
0.11
N/A
LPE6562ER154NU
150 000 ± 30 %
A
37.7
0.08
N/A
LPE6562ER224NU
220 000 ± 30 %
A
45.6
0.07
N/A
LPE6562ER334NU
330 000 ± 30 %
A
53.7
0.06
N/A
LPE6562ER100MG
10
± 20 %
B
0.03
3.09
5.055
LPE6562ER150MG
15
± 20 %
B
0.04
2.79
4.160
LPE6562ER220MG
22
± 20 %
B
0.05
2.26
3.460
LPE6562ER330MG
33
± 20 %
B
0.08
1.81
2.840
LPE6562ER470MG
47
± 20 %
D
0.12
1.48
2.390
LPE6562ER680MG
68
± 20 %
C
0.19
1.20
1.990
LPE6562ER101MG
100
± 20 %
D
0.29
0.98
1.650
LPE6562ER151MG
150
± 20 %
E
0.45
0.78
1.350
LPE6562ER221MG
220
± 20 %
E
0.54
0.71
1.115
LPE6562ER331MG
330
± 20 %
E
0.84
0.57
0.912
LPE6562ER471MG
470
± 20 %
E
1.24
0.47
0.765
LPE6562ER681MG
680
± 20 %
E
1.89
0.38
0.637
LPE6562ER102MG
1000
± 20 %
E
2.91
0.31
0.526
LPE6562ER152MG
1500
± 20 %
E
4.50
0.25
0.430
LPE6562ER222MG
2200
± 20 %
E
6.90
0.20
0.355
LPE6562ER332MG
3300
± 20 %
E
10.4
0.16
0.290
LPE6562ER472MG
4700
± 20 %
E
15.7
0.13
0.243
Notes
(1)
DC current that will create a maximum temperature rise of 30 °C when applied at + 25 °C ambient.
(2)
DC current that will typically reduce the initial inductance by 20 %.
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.
DESCRIPTION
LPE
6562
MODEL SIZE
1000 μH
INDUCTANCE VALUE
± 30 %
INDUCTANCE TOLERANCE
A
CORE
ER
PACKAGE CODE
e2
JEDEC LEAD (Pb)-FREE STANDARD
GLOBAL PART NUMBER
L
P
E
6
5
SIZE
6
2
E
R
1
0
2
N
TOL.
T
CORE
PRODUCT FAMILY
PACKAGE CODE
INDUCTANCE VALUE
Note
• Series is also available with SnPb terminations by using package code RY for tape and reel (in place of ER) or SM for bulk (in place of EB).
Document Number: 34066
Revision: 29-Jan-09
For technical questions, contact:
magnetics@vishay.com
www.vishay.com
1
GAPPED MODELS (B)
UNGAPPED MODELS (A)
How to port 51 program to STM32 program? Please give me some guidance!
I have the 51 program of this screen JLX12864G-086-PC. Now I want to change it to be used in STM32. How can I change it? ? ? Attached is the 51 program of the screen. Please guide me! ! ! !...
wkiddw stm32/stm8
DDS and converters that make up the signal generator
画中画广告开始For applications where the output signal needs to be amplified, you should use narrow-band filters before the gain stage to filter out unwanted noise. A third-order filter is sufficient to filt...
fighting Analog electronics
SQL CE database modification operations
I am developing SQL CE on wince6.0. After building a database, I allow users to modify the contents in the database, but the modifications cannot be saved. The database still has the original contents...
atommann Embedded System
AD sampling help!!! ...
{:1_110:} Help. The code is as follows. #include #include#include "UartTimer.h" #define HAL_ADC_CHN_A7 0x07 #define HAL_ADC_REF_AVDD 0x80 #define HAL_ADC_DEC_512 0x30 #define ADC_TO_CELSIUS(ADC_VALUE)...
fxmfxm9304 RF/Wirelessly
I have a question about DMA and LCD of s3c2410. Where should nXDreq and nXDACK be connected? I found a schematic diagram but I don't understand it.
When outputting images to the LCD at the application layer, you can write: unsigned long *nPhysicalAddress = 0x30000000; (frame buffer address) Just modify the memory pointed to by nPhysicalAddress. H...
phatato Embedded System
Seeking MTK Bluetooth technical support
Everyone: Is there anyone familiar with the MT6626 chip? I am using MUC to communicate with the Bluetooth UART port. I want to increase the Bluetooth baud rate. The default baud rate of the Bluetooth ...
wangang556 RF/Wirelessly

Technical ResourceMore

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 715  431  446  2224  1985  15  9  45  40  22 
Datasheet   0 1 2 3 4 5 6 7 8 9 A B C D E F G H I J K L M N O P Q R S T U V W X Y Z
Room 1530, 15th Floor, Building B, No. 18 Zhongguancun Street, Haidian District, Beijing Telephone: (010) 82350740 Postal Code: 100190
Copyright © 2005-2026 EEWORLD.com.cn, Inc. All rights reserved 京ICP证060456号 京ICP备10001474号-1 电信业务审批[2006]字第258号函 京公网安备 11010802033920号