EEWORLDEEWORLDEEWORLD

Part Number

Search

TKJ0E22B21HSB

Description
MIL Series Connector, 21 Contact(s), Aluminum Alloy, Female, Solder Terminal, Receptacle
CategoryThe connector    The connector   
File Size107KB,2 Pages
ManufacturerITT
Websitehttp://www.ittcannon.com/
Download Datasheet Parametric View All

TKJ0E22B21HSB Overview

MIL Series Connector, 21 Contact(s), Aluminum Alloy, Female, Solder Terminal, Receptacle

TKJ0E22B21HSB Parametric

Parameter NameAttribute value
MakerITT
Reach Compliance Codecompliant
ECCN codeEAR99
Other featuresSTANDARD: MIL-DTL-38999
Back shell typeSOLID
Body/casing typeRECEPTACLE
Connector typeMIL SERIES CONNECTOR
Contact to complete cooperationGOLD
Contact completed and terminatedGOLD OVER NICKEL
Contact point genderFEMALE
Coupling typeBAYONET
DIN complianceNO
empty shellNO
Filter functionYES
IEC complianceNO
JESD-609 codee4
MIL complianceYES
Manufacturer's serial numberTKJ0
Plug informationMULTIPLE MATING PARTS AVAILABLE
Mixed contactsNO
Installation typePANEL
OptionsGENERAL PURPOSE
Shell surfaceCADMIUM PLATED
Shell materialALUMINUM ALLOY
Housing size22
Termination typeSOLDER
Total number of contacts21
Base Number Matches1
MIL-DTL-38999 Series II Filter Connectors
Wall Mounting Receptacle
TKJ0
POLARIZING
KEYWAY
.322 (8.17) MAX.
1.066
(27.08)
MAX.
T THREAD
.322 (8.17) MAX.
TKJ
1.600
(40.64)
MAX.
T THREAD
J MAX.
M
N
A
DIA.
A
D
P DIA.
BLUE BAND
(INDICTATES REAR
RELEASE CONTACT
RETENTION SYSTEM)
.069 (1.74) MAX.
.069 (1.74)
MAX.
.090 (2.29)
MAX.
Crimp Piggyback
Wall Mounting Receptacle (Back Panel)
TKJ3
.477 (11.35) MAX.
P DIA.
POLARIZING
KEYWAY
J DIA.
M
N
.322 (8.17) MAX.
T THREAD
1.066
(27.08)
MAX.
.477 (11.35) MAX.
.322 (8.17) MAX.
T THREAD
1.600
(40.64)
MAX.
A
DIA.
C
DIA.
BLUE BAND
(INDICATES REAR
RELEASE CONTACT
RETENTION SYSTEM)
A
C
D
.069 (1.74) MAX.
.069 (1.74) MAX.
.090 (2.29)
MAX.
Crimp Piggyback
P
+.005 (0.13)
N
-.010 (0.25)
T.P
.594 (15.09) .125 (3.18)
.719 (18.26) .125 (3.18)
.812 (20.62) .125 (3.18)
.906 (23.01) .125 (3.18)
.969 (24.61) .125 (3.18)
1.062 (26.97) .125 (3.18)
1.156 (27.36) .125 (3.18)
1.250 (31.76) .125 (3.18)
1.375 (34.92) .152 (3.86)
Shell
Size
8
10
12
14
16
18
20
22
24
A
Dia. Max.
.474 (12.04)
.591 (15.01)
.751 (19.08)
.876 (22.25)
1.001 (25.43)
1.126 (28.60)
1.251 (31.78)
1.376 (34.95)
1.501 (38.13)
C
Dia. Max.
.547 (13.89)
.672 (17.06)
.844 (21.43)
.969 (24.61)
1.094 (27.78)
1.219 (30.96)
1.344 (34.13)
1.469 (37.31)
1.594 (40.48)
D
Dia. Max.
.299 (7.59)
.427 (10.85)
.541 (13.74)
.666 (16.92)
.791 (20.09)
.880 (22.35)
1.005 (25.52)
1.130 (28.70)
1.255 (31.88)
G
Dia. Max.
.562 (14.27)
.594 (15.08)
.720 (13.28)
.844 (21.43)
.969 (24.61)
1.063 (27.00)
1.188 (30.17)
1.313 (33.35)
1.438 (36.52)
J
Dia. Max.
.563 (14.30)
.680 (17.27)
.859 (21.82)
.984 (24.99)
1.108 (28.14)
1.233 (31.32)
1.358 (34.49)
1.483 (37.67)
1.610 (40.89)
M
Max.
.828 (21.03)
.954 (24.23)
1.047 (26.59)
1.141 (28.98)
1.234 (31.34)
1.328 (33.73)
1.453 (36.91)
1.578 (39.08)
1.703 (43.26)
T
Thread
.5625-24UNEF-2A
11/16-24UNEF-2A
13/16-20UNEF-2A
15/16-20UNEF-2A
1-1/16-18UNEF-2A
1-1/16-18UNEF-2A
1-3/16-18UNEF-2A
1-5/16-18UNEF-2A
1-7/16-18UNEF-2A
Dimensions shown in inch (mm)
Specifications and dimensions subject to change
www.ittcannon.com
27
What are the algorithms for transmitter nonlinear compensation?
I would like to ask: What are the algorithms for transmitter nonlinear compensation? I heard that there are: fitting, polynomial, least squares method, etc., but I don’t understand them, so I post thi...
yhye2world MCU
News Morning Express: Only LINEAR can achieve such a powerful performance
As the title says, let's take a look at the official introduction:...
tagetage Power technology
Is there any relationship between the sdf file generated by ISE and the constraints before synthesis?
For an RTL design, ISE place & route will generate an sdf file. If certain constraints are added to the RTL design before synthesis, will the generated sdf file change? Is there any relationship betwe...
曳尾鱼 FPGA/CPLD
The necessity of dimming in high-power LED lighting
[hide]The application of dimming technology will further reduce energy consumption and save electricity for lighting. At present, public lighting electricity accounts for one-third of the entire light...
探路者 LED Zone
When drawing a 4-layer PCB, should the middle two layers be ground planes?
[i=s]This post was last edited by littleshrimp on 2015-12-15 17:24[/i] I know that different designs may be required for different applications, and there is probably no definite answer. Recently, I w...
littleshrimp PCB Design

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 37  1071  2020  2692  835  1  22  41  55  17 
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