Backplane Connectors - Contacts

Image Part Number Description / PDF Quantity Rfq
249-1634-005

249-1634-005

VEAM

RP DPXME SPCL RECEPT COAX

0

349-0008-001

349-0008-001

VEAM

RP BKA COAX SIZE 1

0

031-9203-008

031-9203-008

VEAM

RP DPXMA 1620 CONTACT

0

249-1882-000

249-1882-000

VEAM

RP DPX BKA RG58U RG142U COAX

0

249-2018-001

249-2018-001

VEAM

RP DPXME RG 58 C/U COAX RECPT

0

249-1173-001

249-1173-001

VEAM

RP DPGM DPJM COAX

0

127000-1271

127000-1271

VEAM

DL CONT CRIMP 36-38 20AU 10K R

0

249-2203-002

249-2203-002

VEAM

RP BKAD #12 RG-174 RECPT COAX

0

349-0013-001

349-0013-001

VEAM

RP BKAE COAX

0

249-1631-000

249-1631-000

VEAM

RP DPXMA RG 58/U COAX PLUG

0

249-1386-000

249-1386-000

VEAM

RP DPXMAS PIN COAX RG178 196/U

0

349-1088-001

349-1088-001

VEAM

RP BGG 8 PLUG COAX

0

BACC47EF2

BACC47EF2

VEAM

RP 030-2273-000 PIN USED IN RCPT

0

030-1897-000

030-1897-000

VEAM

RP CNT P DPDMA/DPXMA-1616 ALU

0

030-9083-000

030-9083-000

VEAM

RP CONT PIN DPDMA-1616

0

031-1049-000

031-1049-000

VEAM

RP CNT ASM S DPXMA-2020 CHR

0

030-1975-005

030-1975-005

VEAM

RP CONT PIN DPXMA-2222-2 A152

0

A3019241-2

A3019241-2

VEAM

DL CONT CRIMP 18-20 20AU

0

127000-2207

127000-2207

VEAM

DL CONT CRIMP 36-38 20AU

0

031-9206-003

031-9206-003

VEAM

RP CNT ASM S S1616SC-H56

0

Backplane Connectors - Contacts

1. Overview

Backplane connectors - contacts are critical components in electronic systems that establish electrical connections between circuit boards and backplanes. They enable signal transmission and power distribution in complex equipment. With the development of high-speed data communication and modular system architectures, these contacts must meet stringent requirements for reliability, density, and performance. Modern applications demand miniaturization, high mating cycles, and compatibility with advanced PCB technologies.

2. Main Types and Functional Classification

Type Functional Characteristics Application Examples
Wire Spring Contacts High contact force with low insertion force, self-cleaning surface Telecom switches, industrial control systems
Double-Curved Contacts Redundant contact points, vibration resistance Aerospace equipment, medical imaging devices
Elastomeric Contacts Compliant interconnects for high-density PCBs Consumer electronics, wearable devices
Controlled Impedance Contacts Optimized for high-frequency signal integrity 5G base stations, data center servers

3. Structure and Components

Typical backplane contacts feature:

  • Conductive body (phosphor bronze, beryllium copper)
  • Surface plating (gold, silver, tin for corrosion resistance)
  • Retention features for PCB mounting
  • Beam design for contact normal force
  • Insulation displacement or solder tail terminations
The design balances mechanical stability with electrical performance, incorporating stress relief geometries and thermal expansion compensation.

4. Key Technical Parameters

Parameter Typical Range Importance
Contact Resistance 5-20 m Affects power loss and signal integrity
Current Rating 1-10 A per contact Determines power handling capability
Voltage Rating 50-600 V Insulation requirement specification
Mating Cycles 500-10,000 cycles System maintenance interval planning
Temperature Range -55 C to +125 C Environmental reliability indicator

5. Application Fields

Major application areas include:

  • Telecommunications (5G infrastructure, fiber optic networks)
  • Data centers (server backplanes, storage arrays)
  • Industrial automation (PLC backplanes, control cabinets)
  • Medical equipment (CT scanners, diagnostic systems)
  • Transportation (railway signaling, avionics)

6. Leading Manufacturers and Products

Manufacturer Representative Product Key Features
TE Connectivity MATRIX series Modular design, up to 3200V isolation
Amphenol Rack & Panel contacts High vibration resistance, IP67 rated
Molex SL Series contacts 0.8mm pitch, 12 Gbps data rate
ITT Cannon Millennium contacts 10,000+ mating cycles, aerospace qualified

7. Selection Guidelines

Key selection factors:

  • Current/voltage requirements with safety margins
  • Environmental conditions (temperature, humidity, vibration)
  • PCB compatibility (through-hole vs SMT, board thickness)
  • Signal integrity needs (frequency, impedance control)
  • Total lifecycle cost vs initial purchase price

Example: For 10Gbps data center switches, select contacts with 100 in gold plating and controlled impedance geometry.

8. Industry Trends

Current development trends include:

  • Miniaturization (sub-1mm pitch contacts)
  • High-speed signal contacts (25+ Gbps capability)
  • Surface mount technology (SMT) adoption
  • Integrated EMI shielding solutions
  • Lead-free materials compliance
  • Smart connector systems with embedded sensors

Market drivers include 5G infrastructure deployment and AI server growth, with projected CAGR of 6.8% (2023-2030).

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