Rectangular Connectors - Headers, Male Pins

Image Part Number Description / PDF Quantity Rfq
192991-0310

192991-0310

VEAM

TRI SNAP 24 PIN REC PCB GLD MC

0

192991-0536

192991-0536

VEAM

TRI SNAP 9 PIN HEADER PCB AU

0

192991-0321

192991-0321

VEAM

TRI SNAP 6 PIN HEADER PCB TIN

0

192991-0320

192991-0320

VEAM

TRI SNAP 6 PIN HEADER PCB TIN

0

MTV2-21PL79

MTV2-21PL79

VEAM

ALSO SEE MTB2-21PL79

0

192991-0319

192991-0319

VEAM

TRI SNAP 4 PIN HEADER PCB TIN

0

MTB2-5PL1

MTB2-5PL1

VEAM

MTB2-5PL1

0

192991-0294

192991-0294

VEAM

TRI SNAP 6 PIN RECP PCB GLD MC

0

192991-0287

192991-0287

VEAM

TRI SNAP 4 PIN RECP PCB TIN MC

0

MTB1-4PL2

MTB1-4PL2

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MTB1-4PL2

0

TP03R4E02Y

TP03R4E02Y

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CONN HEADER VERT 3POS 2.54MM

0

MTV1-60PL1

MTV1-60PL1

VEAM

MTV1-60PL1

0

MTB1-8PAL1

MTB1-8PAL1

VEAM

MTB1-8PAL1

0

TP10R3E02Y

TP10R3E02Y

VEAM

CONN HEADER R/A 10POS 5.08MM

0

192991-0402

192991-0402

VEAM

TRI SNAP 36 PIN REC PCB GLD MC

0

192991-0324

192991-0324

VEAM

TRI SNAP 10 PIN HEADER PCB TIN

0

TP10R4E02Y

TP10R4E02Y

VEAM

CONN HEADER VERT 10POS 5.08MM

0

192990-3350

192990-3350

VEAM

TRI SNAP 12 IN RECP PCB TIN ST

0

192923-6060

192923-6060

VEAM

TRI SNAP 3 PIN RECP PCB GLD MC

0

192990-3290

192990-3290

VEAM

TRI SNAP 36 PIN RECP PCB TIN

0

Rectangular Connectors - Headers, Male Pins

1. Overview

Rectangular connectors with male pins, commonly referred to as pin headers, are modular electrical interfaces featuring parallel rows of conductive prongs enclosed in a dielectric housing. These components enable reliable signal and power transmission between PCBs (Printed Circuit Boards), cables, and subsystems. Their standardized design, ease of assembly, and scalability make them critical in modern electronics, from consumer devices to industrial machinery.

2. Main Types and Functional Classification

Type Functional Characteristics Application Examples
Single-Row Headers Linear arrangement, 0.1" pitch standard, low-cost solution Prototyping boards, Arduino shields
Double-Row Headers Parallel dual-row configuration, higher contact density Industrial control systems, PLC modules
High-Density Headers Sub-0.05" pitch, optimized for miniaturization Smartphones, medical sensors
Right-Angle Headers 90 oriented pins for vertical space optimization Automotive ECUs, server motherboards

3. Structure and Composition

Typical male pin headers consist of:

  • Contact System: Phosphor bronze or beryllium copper pins with gold-plated contact areas
  • Insulation Housing: High-temperature resistant LCP (Liquid Crystal Polymer) or nylon material
  • Mechanical Features: Polarization keying, anti-wobble design, and retention latches
  • Mounting Options: Through-hole, SMT (Surface Mount Technology), or press-fit terminations

The contacts are arranged in standardized grids (commonly 2.54mm/0.1" pitch) with polarization features to prevent mis-mating.

4. Key Technical Specifications

Parameter Importance
Current Rating (Amps/contact) 0.5-10A determines power handling capability
Contact Resistance (m ) 10-30m affects signal integrity and power efficiency
Dielectric Withstanding Voltage 100-1000V defines insulation reliability
Operating Temperature Range -55 C to +125 C ensures environmental durability
Insertion Force (N) 0.5-5N impacts mating cycle longevity

5. Application Fields

  • Consumer Electronics: Laptops, gaming consoles, smart home devices
  • Automotive: ECU interconnects, sensor harnesses, infotainment systems
  • Industrial: CNC machine controllers, robotics interfaces
  • Medical: Diagnostic equipment, patient monitoring systems
  • Telecom: Base station hardware, fiber optic transceivers

6. Leading Manufacturers and Products

Manufacturer Representative Product
TE Connectivity AMPMODU 205796-1 (0.05" micro pitch header)
Molex PicoBlade 0510210400 (ultra-compact wire-to-board connector)
Amphenol ICC 10118801-01 (high-speed differential pair header)
JAE Electronics DF11 Series (0.5mm pitch FPC-to-PCB connector)

7. Selection Guidelines

Key considerations:

  1. Electrical requirements (current/voltage rating)
  2. Space constraints (pitch size and profile height)
  3. Environmental conditions (temperature, vibration, moisture)
  4. Termination method compatibility (through-hole vs SMT)
  5. Expected mating cycles (durability requirements)
  6. Cost vs performance trade-offs

Example: For automotive applications, select headers with AEC-Q200 certification and 3 m gold plating for vibration resistance.

8. Industry Trends

  • Miniaturization: Development of 0.3mm pitch connectors for wearable devices
  • High-Speed Performance: Optimization for 10+ Gbps data rates in 5G infrastructure
  • Modular Design: Integration with hybrid power/signal transmission capabilities
  • Sustainability: Adoption of halogen-free materials and RoHS compliance
  • Smart Manufacturing: Embedded RFID tags for connector lifecycle tracking
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