Backplane Connectors - ARINC

Image Part Number Description / PDF Quantity Rfq
DPXBMA-67-33S-2301

DPXBMA-67-33S-2301

VEAM

RP DPXB CRIMP PLUG W/FLT MTS

0

BKAE2-313B-30014

BKAE2-313B-30014

VEAM

RP BKAE2 CRIMP PLUG

0

DPX2MA-45P-45P-34B-0001

DPX2MA-45P-45P-34B-0001

VEAM

RP DPX2 CRIMP RECPT

0

SGA4F150S0322-SD

SGA4F150S0322-SD

VEAM

RP SGA FRONT REL

0

DPX3NE-E318-33-0301

DPX3NE-E318-33-0301

VEAM

DPX3NE-E318-33-0301

0

BKAD2-327-401

BKAD2-327-401

VEAM

RP BKAD2 RECPT

0

BKAE2-313-30801

BKAE2-313-30801

VEAM

RP BKAE2 PLUG

0

BKAE3-A713-30001-F0

BKAE3-A713-30001-F0

VEAM

RP BKAE3 PLUG

0

DPXBME-A32W4-34P-0001

DPXBME-A32W4-34P-0001

VEAM

RP DPXB CRIMP RECEPT

0

DPX3RNE-A24M-34P-00

DPX3RNE-A24M-34P-00

VEAM

RP DPX4 SPEC ROHS

0

DPXBNE-67M-34P-00

DPXBNE-67M-34P-00

VEAM

RP DPXB CRIMP RECPT

0

BKAD2-244-30001

BKAD2-244-30001

VEAM

CONN PLUG ARINC CRIMP

0

BKAC2-V155M-30001

BKAC2-V155M-30001

VEAM

RP BKAC2 PLUG

0

DPXAMB-57-33S

DPXAMB-57-33S

VEAM

RP DPXA CRIMP PLUG

0

BKAC2-313-30002-F0

BKAC2-313-30002-F0

VEAM

RP BKAC2 PLUG

0

BKAD1-100-400-F0

BKAD1-100-400-F0

VEAM

RP BKAD1 RECPT

0

BKAD2-A164-30001

BKAD2-A164-30001

VEAM

RP BKAD2 PLUG W/WAVE GUIDE

0

DPXAME-A32W4-33S-FO

DPXAME-A32W4-33S-FO

VEAM

RP DPXA CRIMP PLUG 066511-0013

0

DPXBMA-D8-34P-0002

DPXBMA-D8-34P-0002

VEAM

RP DPXB CRIMP RECPT

0

DPXBMA-67-34P-0168

DPXBMA-67-34P-0168

VEAM

RP DPXB CRIMP RECPT

0

Backplane Connectors - ARINC

1. Overview

ARINC backplane connectors are specialized electrical components designed to meet aerospace industry standards set by Aeronautical Radio Inc. (ARINC). Defined by specifications such as ARINC 404 and ARINC 600, these connectors ensure reliable signal transmission in harsh environments. Their modular design and robust mechanical performance make them critical for avionics systems requiring high reliability, including flight control systems, radar equipment, and in-flight communication infrastructure.

2. Major Types and Functional Classification

TypeFunctional FeaturesApplication Examples
ARINC 404 SeriesStandardized rectangular module design, supports up to 100 contactsLegacy aircraft avionics systems
ARINC 600 SeriesEnhanced thermal management, 360 EMI shieldingModern commercial aircraft (e.g., Boeing 787)
ARINC 800 SeriesHigh-speed data transmission (10+ Gbps), fiber optic optionsNext-generation radar systems

3. Structure and Components

Typical ARINC backplane connectors consist of: - Modular housing with MIL-DTL-38999 series III compatibility - Gold-plated copper alloy contacts (0.76-2.8 m plating thickness) - Thermoplastic insulation with UL94 V-0 flammability rating - Aluminum alloy shell with chromate conversion coating - Integrated polarization keys and secondary locking mechanisms

4. Key Technical Specifications

ParameterTypical ValueImportance
Contact Resistance 5m Ensures signal integrity
Insulation Resistance 5000M Prevents leakage currents
Operating Temperature-65 C to +150 CSurvives extreme environments
Current Capacity1.5A per contactSupports power distribution
IP RatingIP67Dust/water ingress protection

5. Application Areas

Primary industries include: - Aerospace: Flight management computers, weather radar systems - Defense: Tactical communication systems, missile guidance units - Industrial: High-reliability automation controllers - Transportation: High-speed train control systems

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Feature
TE ConnectivityARINC 600-2LLiquid cooling integration
Amphenol AerospaceAS7975-600Space-saving stacked design
Delphi Connection SystemsD800-12FHybrid power/signal transmission

7. Selection Guidelines

Key considerations: 1. Environmental requirements (temperature, vibration levels) 2. Signal type (power/data/coaxial combination) 3. Mechanical mating cycles (typically 500+ required) 4. EMI shielding effectiveness ( 60dB at 1GHz) 5. Compliance with DO-160 standards Example: For airborne SATCOM systems, select ARINC 600 connectors with integrated EMI gaskets and fiber optic modules.

8. Industry Trends

Emerging developments: - Integration of optical interfaces (ARINC 810 standard) - Nanocoatings for corrosion resistance - Smart connectors with embedded health monitoring - Increased use of composite materials - Higher speed protocols (100Gbps+ backplane channels)

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