hochtemperaturbeständig, Liefermöglichkeiten auf Anfrage
Standard /
Standard
Mounting Type
/
Befestigungsarten
W
T
Z
Float mounted (see page 15)
/
Schwimmend (siehe Seite15)
Clinch nut 4-40 UNC (see page 59)
/
Einnietmutter 4-40 UNC (siehe Seite 59)
Clinch nut M3 (see page 59)
/
Einnietmutter M3 (siehe Seite 59)
Einnietmutter 4-40 UNC, selbstsichernd (siehe Seite 59)
Einnietmutter M3, selbstsichernd (siehe Seite 59)
TS
Clinch nut 4-40 UNC, self locking (see page 59)
ZS
Clinch nut M3, self locking (see page 59)
No. of Contacts /
Polzahl
Shell size /
Gehäusegröße
09
1
15
2
25
3
37
4
50
5
Contact Type /
Kontaktart
P
Pin contacts /
Stiftkontakte
S
Socket contacts /
Buchsenkontakte
Contact Design (e. g.)
/
Kontaktvariante (z. B.)
0
1
4
5
14
Solder pot
/
Löttopf
Straight PCB termination /
Leiterplattenanschluss, gerade
Wire-wrap /
Wire Wrap
Right angled PCB termination /
Leiterplattenanschluss, abgewinkelt
Straight PCB termination
/
Leiterplattenanschluss, gerade
For more contacts see page 16 onwards
/
Weitere Kontakte siehe Seite 16 ff.
Machined contacts /
Gedrehte Kontakte
S
Stamped contacts
/
Gestanzte Kontakte
Direction of Right Angled Contacts
/
Richtung der abgewinkelten Kontakte
Standard /
Standard
R
Reverse (Not available with stamped contacts)
/
Revers (nicht mit gestanzten Kontakten möglich)
Performance Classes Available in Accordance with DIN 41652
/
Lieferbare Gütestufen nach DIN 41652
Standard insulator /
Standardisolierkörper
G1
= 500 Contact cycles
/
Steckzyklen
= Performance class 1
/
Gütestufe 1
G2
= 200 Contact cycles
/
Steckzyklen
= Performance class 2
/
Gütestufe 2
G3
= 50 Contact cycles
/
Steckzyklen
= Performance class 3
/
Gütestufe 3
Pin connector with dimples
/
Stiftsteckverbinder mit Kontaktnoppen
FM insulator /
FM-Isolierkörper
All connectors are in accordance with the standards of performance class 1; no performance class
number necessary! (1.3 µm (51 microinches) Au over Ni)
Alle Steckverbinder erfüllen die Anforderungen der Gütestufe 1; Typenbezeichnung ohne Gütestufen!
(1,3 µm Au über Ni)
Modifications
/
Modifikationen
ALL DIMENSIONS IN MILLIMETERS - VALUES FOR INCHES IN BRACKETS - TECHNICAL DATA SUBJECT TO CHANGE
DS 10/2007
9
Technical Data
Technische Daten
Mechanical Data
Mechanische Daten
Mechanical Data
Mechanische Daten
Mating force per signal contact
Steckkraft pro Signalkontakt
Unmating force per signal contact
Ziehkraft pro Signalkontakt
max. torque *
max. Anzugsmoment *
* Not for locking screws
* Nicht für Verriegelungsschrauben
3,4 N
0,2 N
40 Ncm (0,295 ft.lb.)
40 Ncm
Electrical Data
Elektrische Daten
Electrical Data
Elektrische Daten
Current rating at room temperature
Maximale Stromstärke bei Raumtemperatur
Test voltage between 2 contacts / shell and contact
Prüfspannung zwischen 2 Kontakten bzw. Kontakt und Gehäuse
Meets transition resistance requirements per contact pair in line with DIN 41652:
Erfüllt Übergangswiderstand pro Kontaktpaar nach DIN 41652 für:
- Straight contacts
/
gerade Kontakte
- Right angled contacts
/
abgewinkelte Kontakte
- Right angled contacts - 50 way
/
abgewinkelte Kontakte bei 50 Polen
Insulation resistance between contacts
Isolationswiderstand Kontakt / Kontakt
Volume resistivity
Spezifischer Durchgangswiderstand
Dielectric strength
Spezifische Durchschlagsfestigkeit
5A
1200 V / 1 min.
10 m
25 m
35 m
5000 M
10
16
cm
50 kV / mm
Materials and Platings
Materialien und Oberflächen
Materials and Platings
Materialien und Oberflächen
Shell
Gehäuse
Type /
Type
Insulator
Isolierkörper
Steel
Stahl
FH
Polyester, heat resistant,
glass filled (UL94V-0), natural
Polyester,
hochtemperaturbeständig,
glasfaserverstärkt (UL94V-0), natur
150 °C (302 °F)
F
Polyester, glass filled
(UL94V-0), white
Polyester, glasfaserverstärkt
(UL94V-0), weiß
FM
Polyester, glass filled (UL94V-0),
green
Polyester, glasfaserverstärkt
(UL94V-0), grün
Relative temperature index according
to UL 746 B
rel.
Temperaturindex nach
UL 746 B
Heat deflection temperature limit
according to DIN 53461 HDT/A
Formbeständigkeitstemperatur nach
DIN 53461 HDT/A
Sub temperature limit
Untere Grenztemperatur
Shell plating (standard)
Gehäuseoberfläche (Standard)
Shell (standard)
Gehäuse (Standard)
Shell (K120)
Gehäuse (K120)
125 °C (257 °F)
130 °C (266 °F)
200 °C (392 °F)
255 °C ( 491 °F)
210 °C (410 °F)
-55 °C (-67 °F)
Tin plated over nickel
verzinnt über Nickel
-55 °C (-67 °F)
-55 °C (-67 °F)
Yellow chromate over zinc plating
Not RoHS compliant
verzinkt und gelb chromatiert
nicht RoHS konform
Pin connector shell without dimples
Stiftsteckverbindergehäuse ohne
Kontaktnoppen
Tin plated over nickel, pin connector
shell
with
dimples
verzinnt über Nickel,
Stiftsteckverbindergehäuse
mit
Kontaktnoppen
Tin plated over nickel, pin connector
shell
without
dimples
verzinnt über Nickel,
Stiftsteckverbindergehäuse
ohne
Kontaktnoppen
Pin connector shell with dimples
Stiftsteckverbindergehäuse mit Kontaktnoppen
Shell (K121)
Gehäuse (K121)
Contact material
Kontaktmaterial
Copper alloy
Kupfer-Legierung
10
DS 10/2007
TECHNISCHE ÄNDERUNGEN VORBEHALTEN – MAßE IN MILLIMETER (INCHES IN KLAMMERN)
Technical Data
Technische Daten
Modifications
Modifikationen
All FCT D-Sub connectors (including crimp versions etc.) are available in many different combinations of materials and platings. For example, shells can
be supplied in a non – magnetic version made of brass, which can be electroless nickel, or gold plated for use in aerospace technology.
Alle FCT D-Sub Steckverbinder (auch Crimp Versionen, usw.) sind in vielen verschiedenen Material- und Oberflächenkombinationen erhältlich. So z. B.
Gehäuse in nichtmagnetischer Ausführung aus Messing bzw. chemisch vernickelte oder vergoldete Gehäuse für Luft- und Raumfahrtanwendungen.
Contact Arrangements
Polbilder
Face view of socket connector
Blick auf Steckseite Buchsensteckverbinder
Face view of pin connector
Blick auf Steckseite Stiftsteckverbinder
Shell Size
Gehäusegröße
Number of Contacts
Polzahl
Pin Connector, Connecting Side
Stiftsteckverbinder, Ansicht steckseitig
1
9
2
15
3
25
4
37
5
50
DS 10/2007
ALL DIMENSIONS IN MILLIMETERS - VALUES FOR INCHES IN BRACKETS - TECHNICAL DATA SUBJECT TO CHANGE
I have a cc2530+cc3591 Zigbee module. I need to add an RS485 and a power supply to this module. I already have these two circuits. The question is how to connect the RS485 and Zigbee modules? Should I...
[i=s]This post was last edited by Aguilera on 2017-10-19 21:54[/i] [color=rgb(51, 51, 51)][font=PingFangSC,]The code is as follows:[/font][/color] [color=rgb(51, 51, 51)][font=PingFangSC,]#include
con...
I accidentally discovered that the operating voltage range of a microcontroller is 5.5V-28V. This made me very curious in an era when 3.3V is the mainstream?I know that most automotive-grade MCUs are ...
Experimental content: Implement RS232 to RS485 conversion on the development board Experimental platform: MINI STM32F103VET6 Development board platform introduction: Please refer to this post in this ...
A single-chip microcomputer is also called a single-chip microcontroller. It is not a chip that completes a certain logical function, but a computer system integrated into one chip. In general, a c...[Details]
With the rapid development of science and technology, especially the widespread application of digital technology and various ultra-large-scale integrated circuits, electronic equipment, especially...[Details]
In
circuit design,
current
measurement
is widely used, and the main fields are divided into three categories: in measurement,
the electric meter
is used to measure the curre...[Details]
The Portable Digital Data Acquisition System (PDDAS) uses LabVIEW Real-Time and PXI to control the wind tunnel test and record air pressure data from 128 different channels.
"The LabVIEW Real-...[Details]
Power management solutions for today's portable application processors are becoming increasingly integrated. Total power consumption, standby and sleep current consumption affect battery size, bill...[Details]
My colleague and I spent the day chatting in the hotel bar. We had met with several customers. We were both wondering how come these engineers we were meeting knew almost nothing about analog techn...[Details]
1 Introduction
Building Automation System (BAS) is a distributed monitoring system (DCS) designed according to distributed information and control theory. It is the result of the mutual de...[Details]
1 Introduction
With the development of control, computer, communication, network technology, etc., a new control technology, namely fieldbus, has emerged in the field of industrial control...[Details]
In the analysis of electronic circuits, static analysis (also known as DC analysis) is the basis of circuit analysis. However, it is well known that electronic components are nonlinear, so the anal...[Details]
RS-422 and RS-485 are both serial data interface standards, which were developed and published by the Electronic Industries Association (EIA). RS-422 defines a balanced communication interface with a ...[Details]
introduction
MAX6636 is a multi-channel precision temperature monitor that can not only monitor local temperature, but also connect up to 6 diodes externally. Each channel has a programmable...[Details]
Describe how to meet the challenges of complexity with a modern wiring design toolset. Option codes and expressions can simulate the variables of an automotive project. A full-featured tool suite c...[Details]
To understand how and why OLED power supply affects display image quality, you must first understand OLED display technology and power supply requirements. This article will explain the latest OLED...[Details]
introduction
Incandescent bulbs can emit a variety of light, but in specific applications, only green, red, and yellow light are usually needed - such as traffic lights. If an incand...[Details]
This article will introduce a design method for a distributed control system used in a tracking car, which can perform distributed control of motor modules, sensor modules, and lighting control mod...[Details]