Backplane Connectors - Housings

Image Part Number Description / PDF Quantity Rfq
09030009966

09030009966

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CONN SHROUD DIN 41612 96POS

46

09050009924

09050009924

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CONN SHROUD DIN 41612 48POS

48

09050483204

09050483204

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CONN MODULE DIN 41612 48POS

80

02440000006

02440000006

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CONN SHROUD HAR-BUS 160POS

118

09060253203

09060253203

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CONN RCPT HSG 25POS

27

09030009958

09030009958

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CONN SHROUD DIN 41612 96POS

256

09060163302

09060163302

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CONN RCPT HSG DIN 41612 16POS

60

09030009950

09030009950

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CONN SHROUD DIN 41612 96POS

3

09030009961

09030009961

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CONN SHROUD DIN 41612 96POS

0

09062483201222

09062483201222

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CONN RCPT HSG 48POS IN-LINE

692

09050483202

09050483202

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CONN RCPT HSG DIN 41612 48POS

81

09050009922

09050009922

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CONN SHROUD DIN 41612

0

02440000007

02440000007

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CONN SHROUD HAR-BUS 160POS

100

02440000011

02440000011

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DIN 5ROW SHROUD FOR PCB 1.3-1.9M

0

09062483201750

09062483201750

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CONN RCPT HSG 48POS IN-LINE

268

09030009960

09030009960

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CONN SHROUD DIN 41612 96POS

0

17700004003

17700004003

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CONN SHROUD B22 154POS

103

17700007003

17700007003

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CONN SHROUD AB22 154POS

27

09230009950

09230009950

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CONN SHROUD DIN 41612 48POS

100

17700007004

17700007004

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CONN SHROUD AB22 154POS

230

Backplane Connectors - Housings

1. Overview

Backplane connectors housings are critical electromechanical components that enable high-density interconnections between printed circuit boards (PCBs) in complex electronic systems. These housings serve as structural supports and alignment guides for mating contacts while providing environmental protection and mechanical stability. Their importance in modern technology lies in enabling scalable, high-speed data transmission architectures for telecommunications, computing, and industrial equipment.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
High-Density HousingsMiniaturized contact spacing ( 2.54mm), supports >1000 contactsData center switches, blade servers
High-Speed HousingsControlled impedance (100 10 ), supports >25Gbps differential pairs5G base stations, optical transport systems
Modular HousingsField-replaceable contact inserts, tool-less assemblyIndustrial control cabinets, test equipment
Power-Optimized HousingsHigh-current contacts (up to 30A), thermal management featuresPower distribution units, energy storage systems

3. Structure and Composition

Typical backplane housing assemblies consist of:

  • Dielectric Frame: LCP or PBT thermoplastic with UL94 V-0 flammability rating
  • Contact Cavities: Precision-machined compartments with polarizing keys
  • Shielding Elements: Integrated EMI gaskets and conductive plating (often tin-over-nickel)
  • Mounting Features: Through-hole or surface-mount retention pegs with anti-rotation tabs
  • Thermal Management: Ventilation channels and heat-dissipating fins (for power variants)

4. Key Technical Specifications

ParameterTypical RangeImportance
Contact Resistance5-20m Impacts signal integrity and power efficiency
Insulation Resistance>1000M Ensures electrical safety and crosstalk prevention
Current Rating1-30A per contactDetermines power delivery capacity
Voltage Withstand500-1500VACCrucial for high-voltage isolation
Operating Temperature-55 C to +125 CAffects reliability in harsh environments
Insertion Force20-80NInfluences mating durability and tooling requirements

5. Application Fields

Primary industries utilizing backplane connector housings include:

  • Telecommunications (5G NR base stations, core routers)
  • Data centers (U.2 SSD backplanes, AI accelerator racks)
  • Industrial automation (PLC backplanes, CNC controller arrays)
  • Medical imaging (MRI scanner detector interconnects)
  • Military/aerospace (avionics databus backplanes)

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
TE ConnectivityMegArray 2.025Gbps capability, 2000+ contact density
Amphenol ICCCB1-AU SeriesModular architecture with hot-swap capability
MolexImpel SystemScalable from 1U to 10U rack configurations
SamtecArrowstone 0.8mm contact pitch with self-aligning guides

7. Selection Recommendations

Key considerations during component selection:

  1. Signal integrity requirements (rise time vs. bandwidth)
  2. Mechanical mating cycles (500+ for test equipment applications)
  3. Thermal derating curves for high-current scenarios
  4. Compliance with industry standards (IPC-6012, MIL-STD-810)
  5. Field serviceability requirements (modular vs. monolithic design)

8. Industry Trends Analysis

Current development trends include:

  • Migration to 56Gbps+ PAM4 signaling protocols
  • Adoption of hybrid optical/electrical backplane architectures
  • Integration of embedded monitoring sensors (temperature/vibration)
  • Implementation of additive manufacturing for complex geometries
  • Growing demand for RoHS-compliant, halogen-free materials

Market forecasts predict 8.7% CAGR through 2030 driven by 5G infrastructure and AI hardware demands.

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