EEWORLDEEWORLDEEWORLD

Part Number

Search

TJ71U5.6UH20%T07

Description
General Purpose Inductor, 5.6uH, 20%, Ferrite-Core,
CategoryPassive components    inductor   
File Size117KB,8 Pages
ManufacturerVishay
Websitehttp://www.vishay.com
Download Datasheet Parametric View All

TJ71U5.6UH20%T07 Overview

General Purpose Inductor, 5.6uH, 20%, Ferrite-Core,

TJ71U5.6UH20%T07 Parametric

Parameter NameAttribute value
Is it Rohs certified?incompatible
MakerVishay
Reach Compliance Codecompliant
ECCN codeEAR99
TJ
Vishay Dale
Inductors, Toroid, High Current, Radial Leaded
FEATURES
Printed circuit mounting
Wide range of inductance and current ratings
Toroid design reduces EMI
Vertical or horizontal mounting to optimize
P.C. board layout
APPLICATION
Switching power supplies, EMI/RFI filtering, output chokes
DIMENSIONS
in inches [millimeters]
VERTICAL MOUNT
(MOUNTING/COATING CODE - 1U)
H
HORIZONTAL MOUNT
(MOUNTING/COATING CODE - 2U)
Part
Marking
Part
Marking
Hot Solder Dip
Leads
Ld
D
0.062 [1.58]
Max.
(1)
0.500 [12.7]
Min.
Ls
D
Ls
0.062 [1.58]
Max.
(1)
H
0.500
[12.7]
Min.
Ld
Hot Solder Dip
Leads
MODEL
TJ3
TJ4
TJ5
TJ6
TJ7
TJ8
TJ9
DIAMETER
(D)
(max.)
0.65
[16.5]
0.88
[22.4]
1.00
[25.4]
1.38
[35.1]
1.65
[41.9]
1.92
[48.8]
2.66
[67.6]
HEIGHT
(H)
(max.)
0.30
[7.6]
0.40
[10.2]
0.45
[11.4]
0.83
[21.1]
0.75
[19.1]
1.00
[25.4]
1.42
[36.1]
NOM. LEAD
SPACING
(Ls)
0.26 ± 0.04
[6.60 ± 1.02]
0.31 ± 0.09
[7.87 ± 2.29]
0.37 ± 0.08
[9.40 ± 2.03]
0.73 ± 0.10
[18.5 ± 2.54]
0.62 ± 0.13
[15.8 ± 3.30]
0.82 ± 0.18
[20.8 ± 4.57]
1.25 ± 0.17
[31.8 ± 4.32]
NOM. LEAD
DIAMETER
(Ld)
see TJ3 data
see TJ4 data
see TJ5 data
see TJ6 data
see TJ7 data
see TJ8 data
see TJ9 data
MODEL
TJ3
TJ4
TJ5
TJ6
TJ7
TJ8
TJ9
DIAMETER
(D)
(max.)
0.66
[16.8]
0.88
[22.4]
1.00
[25.4]
1.38
[35.1]
1.65
[41.9]
1.94
[49.3]
2.72
[69.1]
HEIGHT
(H)
(max.)
0.32
[8.1]
0.40
[10.2]
0.45
[11.4]
0.83
[21.1]
0.75
[19.1]
1.00
[25.4]
1.42
[36.1]
NOM. LEAD
SPACING
(Ls)
0.58 ± 0.08
[14.7 ± 2.03]
0.78 ± 0.10
[19.8 ± 2.54]
0.90 ± 0.10
[22.9 ± 2.54]
1.22 ± 0.16
[31.0 ± 4.06]
1.48 ± 0.17
[37.6 ± 4.32]
1.76 ± 0.18
[44.7 ± 4.57]
2.49 ± 0.23
[63.2 ± 5.84]
NOM. LEAD
DIAMETER
(Ld)
see TJ3 data
see TJ4 data
see TJ5 data
see TJ6 data
see TJ7 data
see TJ8 data
see TJ9 data
Notes
• On larger units and units with finer wire, additional mechanical mounting is recommended.
(1)
Leads stripped to within 0.062" [1.58 mm] of the coil.
ENVIRONMENTAL PERFORMANCE
TEST
Thermal Shock
Resistance to Soldering Heat
Solderability
CONDITIONS
Test Condition B1
-
-
SPECIFICATIONS
MIL-STD-202, method 107
MIL-STD-202, method 210
MIL-STD-202, method 208
Document Number: 34079
Revision: 08-Jul-09
For technical questions, contact:
magnetics@vishay.com
www.vishay.com
1
Some tips for interviewing new embedded system users
[color=#333333][font="][size=14px]Many novices have mastered the theoretical knowledge of embedded systems and are eager to enter the society and achieve some project results. Let's not talk about the...
苳天里的一把火 Linux and Android
Cannot download CCS from TI
After registration is complete, click Download CCS to fill in relevant information. After filling in, click Submit and it will result in 404 [b] The page does not exist or has been deleted [/b]...
shun060527 Microcontroller MCU
Regarding the VLOCLK frequency issue, please help
I want to know the frequency of VLO, so I use a very simple program to set P1.0 to ACLK output. The book says that ACLK uses LFXT1, so I set LFXT1 to VLO. The logic should be fine, right? Now the freq...
挨紧 Microcontroller MCU
How can I get the output of Windbg (without logging)?
I want to write an extension to analyze the output results of Windbg, hoping that the output results can be intercepted before they are printed to the windbg window and log file. I looked at the outpu...
iceflasher Embedded System
The most common high-speed, low-power, low-voltage 8-bit microcontroller EM78P156
EM78156 series microcontrollers are high-performance, high-quality, low-cost, multi-functional and multi-field applications. Complete development means can fully replace the high-cost PIC16C54/56/84. ...
rain MCU
【MicroPython】Usage of I2C
先看看基本用法:[code]from pyb import I2Ci2c = I2C(1)# create on bus 1 i2c = I2C(1, I2C.MASTER)# create and init as a master i2c.init(I2C.MASTER, baudrate=20000) # init as a master i2c.init(I2C.SLAVE, addr=0x...
dcexpert MicroPython Open Source section

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 1113  1271  1550  2564  1969  23  26  32  52  40 
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