EEWORLDEEWORLDEEWORLD

Part Number

Search

MS3124P16-23PY

Description
MIL Series Connector, 23 Contact(s), Aluminum Alloy, Male, Crimp Terminal, Receptacle
CategoryThe connector    The connector   
File Size50KB,1 Pages
ManufacturerAmphenol
Websitehttp://www.amphenol.com/
Download Datasheet Parametric View All

MS3124P16-23PY Overview

MIL Series Connector, 23 Contact(s), Aluminum Alloy, Male, Crimp Terminal, Receptacle

MS3124P16-23PY Parametric

Parameter NameAttribute value
MakerAmphenol
Reach Compliance Codeunknown
ECCN codeEAR99
Other featuresSTANDARD: MIL-C-26482, COMPATIBLE CONTACTS: M39029/31-240, M39029/31-228
Back shell typeSOLID
Body/casing typeRECEPTACLE
Connector typeMIL SERIES CONNECTOR
Contact to complete cooperationGOLD
Contact completed and terminatedGOLD
Contact point genderMALE
Coupling typeBAYONET
DIN complianceNO
empty shellNO
Environmental characteristicsCORROSION RESISTANT; ENVIRONMENT RESISTANT; MOISTURE RESISTANT
Filter functionNO
IEC complianceNO
JESD-609 codee4
MIL complianceYES
Manufacturer's serial numberMS3124
Plug informationMULTIPLE MATING PARTS AVAILABLE
Mixed contactsNO
Installation typePANEL
OptionsGENERAL PURPOSE
Shell surfaceCADMIUM PLATED
Shell materialALUMINUM ALLOY
Housing size16
Termination typeCRIMP
Total number of contacts23
PT07 SE (MS3124)
SP07 SE
jam nut receptacle
S
H
S
TERMINATION ASSEMBLIES
“SE”, MS / “E” Open Wire Seal
“SE” (SR), MS / “F” Strain Relief
“SP”, MS / “P” Potting Boot
L
M
K
R
M
K
L
M
K
L
J A
N
J A
F N
J A
G N
P
PT07SE-XX-XXX
SP07SE-XX-XXX
MS3124E-XX-XXX
R
P
PT07SE-XX-XXX (SR)
SP07SE-XX-XXX (SR)
MS3124F-XX-XXX
R
P
PT07SP-XX-XXX
SP07SP-XX-XXX
MS3124P-XX-XXX
To complete part number see how to order on page 39.
All lockwire holes are .044 Dia. Min.
Receptacle Front
View
Shell
Size
H Hex
Max.
S
Max.
A Dia.
+.001
–.005
J Flat
+.000
–.010
K
+.011
–.010
Receptacle Side View
P
Panel Thickness
M
±.005
Min.
Max.
R
Thread
Class 2A
8
10
12
14
16
18
20
22
24
.767
.892
1.079
1.205
1.329
1.455
1.579
1.705
1.829
.954
1.078
1.266
1.391
1.516
1.641
1.828
1.954
2.078
.473
.590
.750
.875
1.000
1.125
1.250
1.375
1.500
.530
.655
.818
.942
1.066
1.191
1.316
1.441
1.566
.125
.125
.125
.125
.125
.125
.156
.156
.156
.696
.696
.696
.696
.696
.696
.884
.884
.917
.062
.062
.062
.062
.062
.062
.062
.062
.062
.125
.125
.125
.125
.125
.125
.250
.250
.250
.5625-24 UNEF
.6875-24 NEF
.8750-20 UNEF
1.0000-20 UNEF
1.1250-18 NEF
1.2500-18 NEF
1.3750-18 NEF
1.5000-18 NEF
1.6250-18 NEF
Shell
Size
Class “SE”, MS / “E”
L
N
Max.
Max.
F
Min.
Class “SE” (SR), MS / “F”
G Dia.
L
Free
Max.
N
Max.
G
Dia.
Class “SP”, MS /”P”
L
N Dia.
Max.
Max.
8
10
12
14
16
18
20
22
24
1.438
1.438
1.438
1.438
1.438
1.438
1.625
1.625
1.688
.749
.874
.999
1.124
1.249
1.374
1.530
1.655
1.780
.234
.297
.422
.547
.609
.734
.734
.922
.984
.125
.188
.312
.375
.500
.625
.625
.750
.800
1.922
1.922
1.922
1.922
2.000
2.000
2.172
2.172
2.234
.828
.891
1.016
1.141
1.203
1.469
1.469
1.656
1.750
.444
.558
.683
.808
.909
1.034
1.159
1.284
1.656
1.656
1.656
1.656
1.656
1.922
1.922
1.951
.734
.858
.984
1.110
1.234
1.360
1.484
1.610
All dimensions for reference only.
36
What are the disadvantages of centralized power supply for cameras? How to solve them?
What problems will occur when different cameras use centralized power supply? I found that the screen of some cameras is dim. What is the structure of the camera power supply circuit? How to solve suc...
孙树宾 Industrial Control Electronics
Who is the culprit in the Xu Ting case? The mystery is solved
The much-talked-about "Xu Ting Withdrawal Case" has finally come to an end, although the court's verdict is still controversial among netizens. But after the dust settled, we are still reflecting on o...
panzheng57 Embedded System
Create WinCE SDK ListCtrl control, but it does not display. What's going on?
This is the code I used to create a ListCtrl, but it doesn't display. I dragged and dropped a ListCtrl in the Dialog dialog box and it still doesn't display. Does Wince SDK not support ListCtrl? [code...
ryg7 Embedded System
The impact of FPGA clock quality on design
The impact of FPGA clock quality on design...
zxopenljx FPGA/CPLD
About STM32 using PWM and SPWM to drive stepper motors
[i=s]This post was last edited by lizoyu on 2016-3-27 22:36[/i] I have recently been working on my graduation project, which involves a stepper motor. Originally, I used a driver to drive it smoothly,...
lizoyu stm32/stm8

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 855  262  1755  2578  842  18  6  36  52  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