D-Sub Cables

Image Part Number Description / PDF Quantity Rfq
2302094

2302094

Phoenix Contact

CABLE ASSY DB15 SHIELDED GRAY 3M

0

2926153

2926153

Phoenix Contact

CABLE ASSY DB25 SHLD GRAY 500MM

274

1656259

1656259

Phoenix Contact

CABLE ASSY DB09 SHIELDED GRAY 5M

1

2300009

2300009

Phoenix Contact

CABLE ASSY DB09 SHLDED GRAY 1.5M

234

2926195

2926195

Phoenix Contact

CABLE ASSY DB25 SHIELDED GRAY 3M

7

2305651

2305651

Phoenix Contact

CABLE ASSY DB25 SHIELDED GRAY 3M

9

2926328

2926328

Phoenix Contact

CABLE ASSY DB50 SHIELDED GRAY 2M

79

2302201

2302201

Phoenix Contact

CABLE ASSY DB37 SHIELDED GRAY 1M

0

1656275

1656275

Phoenix Contact

CABLE ASSY DB15 SHIELDED GRAY 2M

81

2305473

2305473

Phoenix Contact

CABLE ASSY DB25 SHIELDED GRAY 1M

6

2302117

2302117

Phoenix Contact

CABLE ASSY DB15 SHIELDED GRAY 6M

9

2305486

2305486

Phoenix Contact

CABLE ASSY DB25 SHIELDED GRAY 2M

3

2305703

2305703

Phoenix Contact

CABLE ASSY DB50 SHIELDED GRAY 2M

45

2299990

2299990

Phoenix Contact

CABLE ASSY DB09 SHIELDED GRAY 1M

25

2926580

2926580

Phoenix Contact

CABLE ASSY DB37 SHIELDED GRAY 1M

14

2926234

2926234

Phoenix Contact

CABLE ASSY DB37 SHIELDED GRAY 1M

58

2302191

2302191

Phoenix Contact

CABLE ASSY DB37 SHLD GRAY 500MM

33

2305541

2305541

Phoenix Contact

CABLE ASSY DB50 SHIELDED GRAY 1M

6

2926438

2926438

Phoenix Contact

CABLE ASSY DB15 SHLD GRAY 500MM

82

2305677

2305677

Phoenix Contact

CABLE ASSY DB37 SHIELDED GRAY 2M

0

D-Sub Cables

1. Overview

D-Sub cables (D-Subminiature cables) are a family of multi-pin connectors characterized by their D-shaped metal shell and parallel pin arrangements. They were first introduced in 1952 by ITT Corporation and became a standard interface for serial and parallel communication in early computing and industrial systems. Despite the rise of modern interfaces like USB and HDMI, D-Sub cables remain critical in legacy systems, industrial automation, and specialized equipment due to their reliability and robust mechanical design.

2. Major Types and Functional Classification

TypePin CountKey FeaturesApplications
DE-99Compact size, low-cost signal transmissionRS-232 serial ports, gaming controllers
DB-1515High-density pin layoutVGA video interfaces, Macintosh serial ports
DB-2525Supports parallel data transferPrinter ports, industrial sensors
DC-3737High-pin-count for complex systemsTelecommunications, military equipment

3. Structure and Components

D-Sub cables consist of three primary elements: 1. D-Shaped Metal Shell: Provides EMI shielding and mechanical durability. 2. Pin Contacts: Typically made of phosphor bronze or beryllium copper with gold/silver plating for conductivity. 3. Dielectric Insulator: Prevents short circuits between pins, often using thermoplastic materials. Cable variants include standard 1:1 wiring and high-density designs with multiple contact rows.

4. Key Technical Specifications

ParameterTypical ValueSignificance
Impedance50 -100 Ensures signal integrity at high frequencies
Current Rating1A-5A per pinDetermines power delivery capability
Operating Temperature-40 C to +85 CDefines environmental tolerance
Shielding Effectiveness60dB-100dBReduces electromagnetic interference
Termination TypeSolder, crimp, or IDCInfluences durability and assembly method

5. Application Fields

  • Industrial automation (PLCs, CNC machines)
  • Legacy computer systems (serial/parallel ports)
  • Test and measurement equipment (oscilloscopes)
  • Aerospace (avionics data buses)
  • Medical devices (diagnostic imaging systems)

6. Leading Manufacturers and Products

ManufacturerKey Product SeriesSpecial Features
TE ConnectivityDELPHI D-Sub CablesHigh-vibration resistance for industrial use
AmphenolDura-Con HD D-SubHigh-density 4-row configuration
MolexPicoBlade D-SubMiniaturized design for compact devices
SamtecQTRADE D-SubQuick-mate alignment system

7. Selection Guidelines

Key considerations include: 1. Match pin count and gender to host interface requirements. 2. Evaluate environmental factors (temperature, vibration). 3. Choose appropriate shielding for EMI-sensitive environments. 4. Consider termination method based on maintenance needs. 5. Verify compliance with industry standards (EIA/TIA-232, MIL-STD-188). Example: Selecting DB-9 cables with ferrite cores for industrial motor control cabinets to reduce noise interference.

8. Industry Trends

While D-Sub cables face declining use in consumer electronics, they remain entrenched in industrial applications. Emerging trends include: 1. Hybrid D-Sub connectors integrating fiber optics alongside traditional pins. 2. Nanocoatings for corrosion resistance in harsh environments. 3. Increased adoption of high-density DA-15 interfaces in robotics. 4. RoHS-compliant materials replacing traditional tin-lead plating. The global D-Sub market is projected to maintain a 1.2% CAGR through 2030, primarily driven by industrial IoT deployments.

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