D-Sub, D-Shaped Connectors - Contacts

Image Part Number Description / PDF Quantity Rfq
1731120855

1731120855

Woodhead - Molex

FCT TERM HPWR

0

1731120811

1731120811

Woodhead - Molex

FCT TERM HFREQ

0

1731120937

1731120937

Woodhead - Molex

FCT TERM HFREQ

0

1731120786

1731120786

Woodhead - Molex

FCT TERM HFREQ

0

1731120183

1731120183

Woodhead - Molex

CONN D-SUB PIN COAX CRIMP GOLD

0

1731120195

1731120195

Woodhead - Molex

CONN D-SUB SOCKET PCB GOLD

0

1731120808

1731120808

Woodhead - Molex

FCT TERM HFREQ

0

1731121214

1731121214

Woodhead - Molex

FCT TERM HPWR RA PC PLG 40 AMP

0

1731120504

1731120504

Woodhead - Molex

CRIMP CONTACT H/D PLUG

0

1731120928

1731120928

Woodhead - Molex

FCT TERM HFREQ

0

1731121014

1731121014

Woodhead - Molex

FCT TERM HFREQ SDR/CRP RCPT 50 O

0

1731120683

1731120683

Woodhead - Molex

CONN PLUG FCT SIGN

0

1731120547

1731120547

Woodhead - Molex

CONN RCPT FCT HDSIGN

0

1731120549

1731120549

Woodhead - Molex

FCT TERM HPWR SDR RCPT 40 AMP 8-

0

1731120761

1731120761

Woodhead - Molex

FCT TERM HFREQ RA PC RCPT 50 OHM

0

1731120770

1731120770

Woodhead - Molex

FCT TERM HFREQ

0

1731120930

1731120930

Woodhead - Molex

FCT TERM HFREQ

0

1731120648

1731120648

Woodhead - Molex

FCT HDSIGN PLG CRP 24-28AWG

0

1731120173

1731120173

Woodhead - Molex

CONN D-SUB PIN COAX GOLD

0

1731121031

1731121031

Woodhead - Molex

FCT SIGN RCPT CRP 18-22AWG 8U" 5

0

D-Sub, D-Shaped Connectors - Contacts

1. Overview

D-Subminiature connectors, commonly referred to as D-Sub or D-Shaped connectors, are electrical connectors featuring a D-shaped metal shield. They are widely used for data, signal, and power transmission in industrial, computing, and communication systems. Their robust design ensures reliable electrical continuity and mechanical stability in demanding environments.

2. Main Types and Functional Classification

TypeFunction FeaturesApplication Examples
DE-99-pin configuration, compact sizeRS-232 serial interfaces, PC COM ports
DB-2525-pin configuration, parallel signal transmissionOlder printer ports, industrial control systems
DC-3737-pin high-density arrangementMilitary equipment, test instrumentation
HD D-SubHigh-density double-row contactsVideo graphics (VGA), industrial automation

3. Structure and Components

Typical D-Sub connectors consist of: - Metal Shell: Zinc alloy or steel housing with EMI shielding - Insulator: High-temperature resistant thermoplastic or ceramic - Contact Arrangement: Male pins (plug) or female sockets (jack) in staggered rows - Mounting Hardware: Threaded or snap-in fixing mechanisms Contacts are usually made of phosphor bronze or beryllium copper with gold/tin plating for corrosion resistance.

4. Key Technical Specifications

ParameterTypical RangeSignificance
Current Rating1-5 A per contactDetermines power handling capacity
Voltage Rating50-600 V AC/DCEnsures dielectric strength
Contact Resistance 10 m Impacts signal integrity
Insulation Resistance 1000 M Prevents leakage currents
Operating Temperature-55 C to +125 CEnvironmental durability

5. Application Fields

  • Computer peripherals (monitors, keyboards)
  • Industrial automation (PLCs, sensors)
  • Telecommunications (modems, routers)
  • Aerospace (avionics systems)
  • Test and measurement equipment

6. Leading Manufacturers and Products

ManufacturerRepresentative Product
TE ConnectivityDEUTSCH D-Sub series with EMI filtering
AmphenolHigh-density HD D-Sub 90-position connectors
MolexMicro D-Sub for compact industrial applications
SamtecHigh-speed D-Sub with 10 Gbps data rate

7. Selection Guidelines

  • Verify current/voltage requirements against contact ratings
  • Choose shell size based on pin count needs
  • Consider locking mechanisms for vibration-prone environments
  • Specify plating material for corrosion resistance
  • Ensure compliance with industry standards (e.g., MIL-DTL-24308)

8. Industry Trends

Key developments include miniaturization (sub-D connectors), hybrid designs integrating USB-C/HDMI signals, improved EMI shielding for 5G applications, and surface-mount technology (SMT) compatibility. Environmental regulations drive adoption of RoHS-compliant materials and lead-free plating solutions.

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